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Technical content

Features

– Safe operation in the Ex ar ea because of international approvals – SIL certification according to IEC 61508:2010 – Reliable measurement operation through sensor moni- toring and device hardware error recognition – Diagnostic information ac cording to NAMUR NE107 – Diverse mounting variants and sensor connection com- binations – Write protection for device parameters Make sure you always use the latest documentation. It can be downloaded at phoenixcontact.net/products This document is valid for all products listed in Section "Ordering data" on page 4. Loop-powered dual-channel temperature transmitter

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 2/8 5 Table of contents

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 3/8 5

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 4/8 5 2O r d e r i n g d a t a Products Description Ty pe Order No. Pcs./Pkt. The output-loop-powered temperature transmitter transmits up to two sensor signals from RTD and TC sensors as well as from resistance-type sensors and voltage sensors via the HART® communication or 4...20mA, configurable, SIL2/3, screw connection MACX MCR-TS-I-OLP 2908662 1 The output-loop-powered temperature transmitter transmits up to two sensor signals from RTD and TC sensors as well as from resistance-type sensors and voltage sensors via the HART® communication or 4...20mA, configurable, SIL2/3, Push-in connection MACX MCR-TS-I-OLP-SP 2908664 1 Output loop-powered temperature transducer, two universal inputs for ther- mocouples, resistance and voltage sensor, HART® communication, freely configurable, installable in Zone 1, SIL 2/3, screw connection, ordering config- uration MACX MCR-TS-I-OLP-C 1012249 1 The output-loop-powered temperature transmitter transmits up to two sensor signals from RTD and TC sensors as well as from resistance-type sensors and voltage sensors via the HART® communication or 4...20mA, configurable, SIL2/3, with intrinsic safety and screw connection MACX MCR-EX-TS-I-OLP 2908660 1 The output-loop-powered temperature transmitter transmits up to two sensor signals from RTD and TC sensors as well as from resistance-type sensors and voltage sensors via the HART® communication or 4...20mA, configurable, SIL2/3, with intrinsic safety and Push-in connection MACX MCR-EX-TS-I-OLP-SP 2908661 1 Output loop-powered temperature transducer, two universal inputs for ther- mocouples, resistance and voltage sensor, HART® communication, freely configurable, installable in Zone 1, SIL 2/3, with intrinsic safety and screw con- nection, ordering configuration MACX MCR-EX-TS-I-OLP-C 1012248 1 Accessories Description Ty pe Order No. Pcs./Pkt. Programming adapter with USB and T port interface, 2.4 m for programming MCR PAC-T-USB 2309000 1 Documentation Description Ty pe Order No. Pcs./Pkt. Packing slip MACX MCR-TS-I-OLP(-SP)(-C) 9076237 1 Packing slip MACX MCR-EX-TS-I-OLP(-SP)(-C) 9076236 1

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 5/8 5

3 Technical data

Input data (see "Input measuring ranges" on page 8) Resistance thermometers Pt, Ni, Cu sensors: 2-, 3-, 4-wire Thermocouple sensors A, B, C, D, E, J, K, L, N, R, S, T, U Linear resistance range 10 Ω ... 2000 Ω (minimum measurement range: 10 Ω) Input voltage range - 2 0m V. . .1 0 0m V Temperature measuring range Range depending on the sensor type Pt 100 -200 °C ... 850 °C Measuring range span Resistance thermometers Thermocouples Resistance Voltage sensors (mV) >10 K >50 K > 10 Ω >5 mV Output data Output signal HART® 4 mA ... 20 mA 20 mA ... 4 mA Output signal maximum current 23 mA HART® coding FSK ±0.5 mA HART® version 7 Transmission speed 1200 baud Mains frequency filter 50/60 Hz Load RB (Ub max. -11 V) / 0.023 A (current output) Communication resistance ≥250 Ω Switch-on delay HART® Measured value approx. 10 s approx. 28 s Residual ripple Permanent residual ripple Uss ≤3V f o r Ub ≥13.5 V, fmax. = 1 kHz Ub 42 V 1348 1098 250 11 V0 36.25 V16.75 V Supply voltage (V DC) Load (Ω) Connection data Screw connection Push-in connection Stripping length 7 mm 8 mm Tightening torque 0.5 ... 06 Nm - Screw thread M3 -

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 6/8 5 Failure information according to NAMUR NE43 Failure information is created when the measuring information is invalid or missing. A complete list of all of errors occurring in the measuring equipment is issued. Failure, e.g. sensor break, sensor short circuit ≤3.6 mA ("low") or ≥21 mA ("high") can be selected The alarm setting "high" can be set between 21.5 mA and 23 mA, in this way providing the necessary flexibility in order to fulfil the requirements of different control systems. Only the alarm setting "low" is possible in SIL mode. General data Supply voltage range Standard SIL active Ex 12 V ... 42 V 12 V ... 32 V 12 V ... 30 V Maximum current consumption ≤23 mA Step response (0 – 99 %) Thermocouples Resistance thermometers 0.8 s Ambient temperature range Operation Operation (SIL active) Storage/Transport -40 °C to 85 °C -40 °C ... 70 °C -40 °C ... 100 °C Humidity, non-condensing permitted 5 % ... 95 % Maximum altitude for use above sea level ≤4000 m Climatic class B2 Degree of protection IP20 Pollution degree 2 Overvoltage category II Electrical isolation of input/output 2 kV AC Dimensions W / H / D 12.5 mm / 99 mm / 114.5 mm Conformance / Approvals CE compliant ATEX  II 3G Ex nA IIC T6...T4 Gc (Order No.: 2908662/2908664/1012249)  II 2 (1) G Ex ib [ia Ga] IIC T6...T4 Gb (Order No.: 2908660/2908661/ 1012248) UL, USA/Canada UL 61010 Recognized CSA See Control Drawing in the packing slip FM See Control Drawing in the packing slip

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 7/8 5

3.1 Safety data MACX MCR-EX-TS-I-OLP(-SP)(-C)

(Order No.: 2908660/2908661/1012248) U = 30 ViD C U= 9 VOD C C = 0.93 μFO U = 12 V ... 30 VbD C D CX Ex ib [ia Ga] IIC T6…T4 Gb L = 5 mO HEx ia IIC T erminals 2.1, 2.2 Max. connection values Electrical connection values I = 130 mAi I = 13 mAO C = 3.8 μFO OUT = 4 mA ... 20 mA L = 20 mHOEx ia IIB Pi = 770 mW PO = 29.3 mW CO = 4.8 μF Current consumption = ≤23 mA LO = 50 mHEx ia IIA Ci = negligible Li = negligible Supply circuit Sensor circuit Temperature classes Technical data intrinsic safety Approved associated apparatus Nonhazardous locationHazardous location Zone 0, 1, 2 EPL Ga, Gb, Gc Zone 1, 2 EPL Gb, Gc Associated intrinsically safe device with max. connection values according to table e. g. RTD or TC sensor (Simple Apparatus) remote mounted optional 2 channels MACX MCR-EX -- -T SIO L P 2.1 2.2 PWR ERR 4.1 5.1 6.1 4.2 5.2 6.2 Ex ib [ia Ga] IIC T6…T4 GbType of proctection (IEC)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 8/8 5

3.2 Input measuring ranges

– Connection method: 2-, 3-, or 4-wire termination, sensor voltage: ≤0.3 mA – Possible for 2-wire conductor compensation of the ca- ble resistance (0 Ω…3 0 Ω) – For 3-, and 4-wire termination, sensor cable resistance up to max. 50 Ω per cable Table 1 Resistance thermometers and resistances Standard Designation Measuring range thresholds Measurement deviation (±) Repeatability (±) Digital 1 D/A 2 Digital 1 D/A 3 IEC 60751:2008 Pt 100 (1) –200 … +850 °C (–328 … +1562 °F) (4.8 μA) (2 μA) Pt 200 (2) –200 … +850 C (–328 … +1562 °F) Pt 500 (3) –200 … +500 °C (–328 … +932 °F) Pt 1000 (4) –200 … +250 °C (–328 … +482 °F) JIS C1604:1984 Pt 100 (5) –200 … +510 °C (–328 … +950 °F) DIN 43760 IPTS-68 Ni 100 (6) –60 … +250 °C (–76 … +482 °F) Ni 120 (7) –60 … +250 °C (–76 … +482 °F) GOST 6651-94 Pt 50 (8) –185 … +1100 °C (–301 … +2012 °F) Pt 100 (9) –200 … +850 °C (–328 … +1562 °F) OIML R84: 2003, GOST 6651-2009 Cu 50 (10) –180 … +200 °C (–292 … +392 °F) Cu 100 (11) –180 … +200 °C (–292 … +392 °F) Ni 100 (12) –60 … +180 °C (–76 … +356 °F) Ni 120 (13) –60 … +180 °C (–76 … +356 °F) OIML R84: 2003, GOST 6651-94 Cu 50 (14) –50 … +200 °C (–58 … +392 °F) Resistance-type sensor Resistance Ω 10 ... 400 Ω 40 mΩ 15 mΩ 10 ...2000 Ω 500 mΩ≤ 200 mΩ

1 Measured value transmitted with HART®

2 Percent values with regard to the configured measurement range of the analog output signal

3 Percent values with regard to the voltage range of the analog output signal

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 9/8 5 – Cold junction internal (Pt 100) – Cold junction external: Adjustable value – Maximum sensor cable resistance 10 k Ω (SIL mode: 1k Ω) If the sensor cable resistance is greater than 10 kΩ, an error message is issued according to NAMUR NE89. Table 2 Thermocouple and voltage sensor Standard Designation Measuring range thresholds Measurement deviation (±) Repeatability (±) Recommended temperature range Digital 1 D/A 2 Digital 1 D/A 3 IEC 60584-1 Type A (W5Re- W20Re) (30) 0…+ 2 5 0 0° C (+32 … +4532 °F) 0 … +2500 °C (+32 … +4532 °F) ≤1.62 K (2.92 °F) 0.03 % (4.8 μA) ≤0.52 K (0.94 °F) 0.013 % (2 μA) Type B (PtRh30- PtRh6) (31) +40 … +1820 °C (+104 … +3308 °F) +100 … +1500 °C (+212 … +2732 °F) ≤2.02 K (3.64 °F) ≤0.67 K (1.21 °F) Type E (NiCr- CuNi) (34) –270 … +1000 °C (–454 … +1832 °F) 0 … +750 °C (+32 … +1382 °F) ≤0.21 K (0.38 °F) ≤0.07 K (0.13 °F) Type J (Fe-CuNi) (35) –210 … +1200 °C (–346 … +2192 °F) +20 … +700 °C (+68 … +1292 °F) ≤0.26 K (0.47 °F) ≤0.08 K (0.14 °F) Type K (NiCr-Ni) (36) –270 … +1372 °C (–454 … +2501 °F) 0 … +1100 °C (+32 … +2012 °F) ≤0.32 K (0.58 °F) 0.11 K (0.20 °F) Type N (NiCrSi- NiSi) (37) –270 … +1300 °C (–454 … +2372 °F) 0 … +1100 °C (+32 … +2012 °F) ≤0.43 K (0.77 °F) ≤0.16 K (0.29 °F) Type R (PtRh13- Pt) (38) –50 … +1768 °C (–58 … +3214 °F) 0 … +1400 °C (+32 … +2552 °F) ≤1.92 K (3.46 °F) ≤0.76 K (1.37 °F) Type S (PtRh10- Pt) (39) –50 … +1768 °C (–58 … +3214 °F) 0 … +1400 °C (+32 … +2552 °F) ≤1.9 K (3.42 °F) ≤0.74 K (1.33 °F) Type T (Cu-CuNi) (40) –260 … +400 °C (–436 … +752 °F) –185 … +350 °C (–301 … +662 °F) ≤0.32 K (0.58 °F) ≤0.11 K (0.20 °F) IEC 60584-1; ASTM E988-96 Type C (W5Re- W26Re) (32) 0…+ 2 3 1 5° C (+32 … +4199 °F) 0 … +2000 °C (+32 … +3632 °F) ≤0.86 K (1.55 °F) ≤0.33 K (0.59 °F) ASTM E988-96 Type D (W3Re- W25Re) (33) 0…+ 2 3 1 5° C (+32 … +4199 °F) 0 … +2000 °C (+32 … +3632 °F) ≤1.05 K (1.89 °F) ≤0.41 K (0.74 °F) DIN 43710 Type L (Fe-CuNi) (41) –200 … +900 °C (–328 … +1652 °F) 0 … +750 °C (+32 … +1382 °F) ≤0.26 K (0.47 °F) ≤0.07 K (0.13 °F) Type U (Cu-CuNi) (42) –200 … +600 °C (–328 … +1112 °F) –185 … +400 °C (–301 … +752 °F) ≤0.24 K (0.43 °F) ≤0.10 K (0.18 °F) GOST R8.8585- 20 01 Type L (NiCr- CuNi) (43) –200 … +800 °C (–328 … +1472 °F) 0 … +750 °C (+32 … +1382 °F) ≤2.27 K (4.09 °F) ≤0.15 K (0.27 °F) Voltage sensors (mV) –20 … 100 mV 10 μV4 μV 3 Percent values with regard to the voltage range of the analog output signal 4 .. 20 mA => 16 mA

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 10 / 85 Sample calculation with Pt 100, measuring range 0 °C … +200 °C (+32 °F … +392 °F), ambient temperature 25 °C (77 °F), supply voltage 24 V Measurement deviation digital 0.14 K (0.25 °F) Repeatability digital 0.05 K (0.09 °F) Measurement deviation D/A = 0.03 % of 200 K (360 °F) 0.06 K (0.108 °F) Repeatability D/A = 0.013 % of 200 K (360 °F) 0.03 K (0.05 °F) Measurement deviation of digital value (HART®): √(Measurement deviation digital² + repeatability digital²) 0.15 K (0.27 °F) Measurement deviation of analog value (voltage output): √(Measurement deviation digital² + repeatability digital² + measurement deviation D/A² + repeatability D/A²) 0.16 K (0.29 °F) In SIL mode, other measurement deviations apply (see "Safety measurement deviation" on page 65).

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 11 / 85 Operational influences The information on the measurement deviation correspond to an extended measuring insecurity of ±2 s (Gaussian nor- mal distribution). Information under reference conditions. Total measurement deviation of the transmitter at the volt- age output = measurement deviation digital + measurement deviation D/A. Operational influences taken into account: – Long-term drift – Influence of the ambient temperature – Influence of the supply voltage Table 3 Resistance thermometers and resistances Resistance thermometer (RTD) accord- ing to standard Designa- tion Ambient temperature: Effect (±) per 1 °C (1.8 °F) change Supply voltage: Effect (±) per V change Long-term drift: Effect (±) per year 2-, 3-, 4-wire RTD Digital 1 Digital1 D/A 2 Digital 1 D/A 2 JIS C1604:1984 Pt 100 (5) ≤0.14 K (0.25 °F) DIN 43760 IPTS- Ni 120 (7) OIML R84: 2003, GOST 6651- 2009 OIML R84: 2003, GOST 6651-94 Resistance-type sensor Resistance Ω ≤6m Ω≤ 6m Ω 48 mΩ ≤30 mΩ≤ 30 mΩ 290 mΩ

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 12 / 85 Table 4 Thermocouple and voltage sensor Thermocouples according to standard Designation Ambient temperature: Effect (±) per 1 °C (1.8 °F) change Supply voltage: Effect (±) per V change Long-term drift: Effect (±) per year Digital 1 D/A 2 Digital1 D/A 2 Digital 1 D/A 2 IEC 60584-1 Type A (W5Re- W20Re) (30) Type B (PtRh30- PtRh6) (31) Type E (NiCr- CuNi) (34) Type J (Fe-CuNi) (35) Type K (NiCr-Ni) (36) Type N (NiCrSi- NiSi) (37) ≤0.4 K (0.72 °F) Type R (PtRh13- Pt) (38) Type S (PtRh10- Pt) (39) Type T (Cu-CuNi) (40) IEC 60584-1; ASTM E988-96 Type C (W5Re- W26Re) (32) ASTM E988-96 Type D (W3Re- W25Re) (33) ≤1K ( 1 . 8° F ) DIN 43710 Type L (Fe-CuNi) (41) Type U (Cu-CuNi) (42) GOST R8.8585- 20 01 Type L (NiCr- CuNi) (43) Voltage sensors (mV) ≤3 μV ≤3 μV ≤10 μV

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 13 / 85 Sample calculation with Pt 100, measuring range 0 °C … +200 °C (+32 °F … +392 °F), ambient temperature 35 °C (95 °F), supply voltage 30 V Measurement deviation digital 0.14 K (0.25 °F) Repeatability digital 0.05 K (0.09 °F) Measurement deviation D/A = 0.03 % of 200 K (360 °F) 0.06 K (0.108 °F) Repeatability D/A = 0.013 % of 200 K (360 °F) 0.03 K (0.05 °F) Influence of the ambient temperature (digital), 0.02 °C/K: 0.2 K (0.36 °F) Influence of the ambient temperature (D/A), 0.001 %/K: ( 3 5° C - 2 5° C ) x ( 0 . 0 0 1% o f 2 0 0° C ) 0.02 K (0.036 °F) Influence of the supply voltage (digital), 0.02 K/V: (30 V -24 V) x 0.02 K/V 0.12 K (0.216 °F) Influence of the supply voltage (D/A), 0.001 %/V: (30 V -24 V) x (0.001 % of 200 °C) Measurement deviation of digital value (HART®): √(Measurement deviation digital² + repeatability digital² + influence ambient temperature (digital)² + influence supply voltage (digital)²) 0.28 K (0.50 °F) Measurement deviation of analog value (voltage output): √(Measurement deviation digital² + repeatability digital² + measurement deviation D/A² + repeat- ability D/A² + influence ambient temperature (digital)² + influence ambient temperature (D/A)² + influence supply voltage (digital)²) + influence supply voltage (D/A)²) 0.29 K (0.52 °F)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 14 / 85 4S a f e t y n o t e s 4.1 MACX MCR-TS-I-OLP(-SP)(-C) (Order No.: 2908662/2908664/1012249)

4.1.1 Installation notes

  • The category 3 device is designed for installation in Zone 2 potentially explosive areas. It meets the require- ments of EN 60079-0:2012 and EN 60079-15:2010.
  • Only qualified specialist personnel may install, start up, and operate the device.
  • Follow the installation instructions as described.
  • Install the device according to the manufacturer's infor- mation and the valid standards and regulations (e.g. EN/IEC 60079-14).
  • When installing and operating the device, the applica- ble regulations and safety directives (including national safety directives), as well as the general codes of prac- tice, must be observed. The technical data is provided in this packing slip and on the certificates (conformity assessment, additional approvals where applicable).
  • Do not open or make changes to the device.
  • Make sure when installing the device that IP20 protec- tion for housing in accordance with EN/IEC 60529 is ob- served.
  • Do not repair the device yourself; replace it with an equivalent device instead. Repairs may only be carried out by the manufacturer. The manufacturer is not liable for damage resulting from noncompliance.
  • The device complies with the EMC regulations for in- dustrial areas (EMC class B). When used in residential areas, the device may cause radio interference.
  • Operate the device only under the approved ambient conditions.
  • Operate the device only in a faultless and operationally reliable state.
  • Do not use the programming interface for configuration in a potentially explosive area.

4.1.2 Installation in the potentially explosive area

(Zone 2)

  • Observe the specified conditions for use in potentially explosive areas! Install the device in a suitable, ap- proved housing that meets the requirements of IEC/ EN 60079-15 and has at least IP54 protection. Also ob- serve the requirements of IEC/EN 60079-14.
  • Only devices that are designed for operation in Ex zone 2 and are suitable for the conditions at the installation location may be connected to the circuits in Zone 2.
  • In potentially explosive areas, only connect and discon- nect cables when the power is disconnected.
  • The device has to be stopped and immediately re- moved from the Ex area if it is damaged, was subjected to an impermissible load, stored incorrectly, or if it mal- functions.
  • Use suitable cables for the operation of the field trans- mitter housing at an ambient temperature below –20 °C and approved cable entries for this application.
  • Connect the housing to the equipotential bonding line.
  • During installation ensure that the used housing and ca- ble glands correspond to the requirements of the IEC/ EN 60079-0 for category 3 or group III housing.
  • At ambient temperatures above +70 °C, use suitable heat-resistant cables, cable entries, and seals whose operating temperature is Ta +5 K above the ambient temperature.
  • Set up the device in such a way that even in infrequent cases an ignition source through impact or friction be- tween metal/steel and the housing is eliminated.

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 15 / 85 4.2 MACX MCR-EX-TS-I-OLP(-SP)(-C) (Order No.: 2908660/2908661/1012248)

4.2.1 Installation notes

  • The category 3 device is designed for installation in Zone 2 potentially explosive areas. It meets the require- ments of EN 60079-0:2012 and EN 60079-15:2010.
  • Only qualified specialist personnel may install, start up, and operate the device.
  • Follow the installation instructions as described.
  • Install the device according to the manufacturer's infor- mation and the valid standards and regulations (e.g. EN/IEC 60079-14).
  • When installing and operating the device, the applica- ble regulations and safety directives (including national safety directives), as well as the general codes of prac- tice, must be observed. The technical data is provided in this packing slip and on the certificates (conformity assessment, additional approvals where applicable).
  • Do not open or make changes to the device.
  • Make sure when installing the device that IP20 protec- tion for housing in accordance with EN/IEC 60529 is ob- served.
  • Do not repair the device yourself; replace it with an equivalent device instead. Repairs may only be carried out by the manufacturer. The manufacturer is not liable for damage resulting from noncompliance.
  • The device complies with the EMC regulations for in- dustrial areas (EMC class B). When used in residential areas, the device may cause radio interference.
  • Operate the device only under the approved ambient conditions.
  • Operate the device only in a faultless and operationally reliable state.
  • Do not use the programming interface for configuration in a potentially explosive area.

4.2.2 Installation in the potentially explosive area

  • In potentially explosive areas, only connect and discon- nect cables when the power is disconnected.
  • The device has to be stopped and immediately re- moved from the Ex area if it is damaged, was subjected to an impermissible load, stored incorrectly, or if it mal- functions.
  • During installation make sure that the safety distance between the intrinsic safety and the non-intrinsically safe circuits amounts to 50 mm.
  • When interconnecting the measuring device with certi- fied intrinsically safe circuits of the category "ib" with the explosion protection group IIC or IIB, the type of protec- tion changes: Ex ib IIC or Ex ib IIB.
  • Do not use the programming interface for configuration in a potentially explosive area.
  • Connect the device (connection head) to the potential equalization conductor. Safety notes for zone 1 and zone 2
  • The device is approved for intrinsically safe (Ex i) cir- cuits up to Zone 0 (gas) in the Ex area. Observe the safety values for intrinsically safe equipment and the connecting cables during connection (IEC/EN 60079- 14); the values specified in these installation notes and the EC-type examination certificate must be observed.
  • Install the device in such a way that it meets at least pro- tection class IP20.
  • When carrying out measurements on the intrinsically safe side, observe the relevant regulations regarding the connection of intrinsically safe equipment. In intrin- sically safe circuits, only use measuring devices that are approved for these circuits.
  • If the device has been used in non-intrinsically safe cir- cuits, it must not be used again in intrinsically safe cir- cuits. The device must be clearly marked as non- intrinsically safe.
  • The device may be used in accordance with the manu- facturer's information in Zone 1 (category 2) GB or Zone 2 (category 3) GC.
  • The safe sensor circuit may be inserted into Zone 0 (category 1) GA.

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 16 / 85

4.3 Occupational safety

When working on and with the device, wear the required personal safety equipment as stipulated by national regula- tions.

4.4 Operational reliability

– Only operate the device when it has no errors and is in an operationally reliable condition. – The operator is responsible for error-free operation of the device.

4.5 Product safety

This measuring device has been built and tested for opera- tional reliability in line with the latest technology and good engineering practice. The device left the factory in safe and error-free condition. The device fulfils general safety and legal requirements. The device complies with the EC directives that are listed in the device-specific EC declaration of conformity. By affixing the CE mark, Phoenix Contact confirms this situation.

5 Scope of supply

The scope of supply of the device consists of: – Temperature transmitter – Packing slip with installation and safety notes and initial commissioning

6 Installation

6.1 Transport and storage

Please note the following points:

  • Pack the device for storage and transport so that it is protected against impact. The original packing provides optimal protection for this.
  • The permissible storage temperature is

6.2 Installation conditions

Operating temperature range: – S I L o p e r a t i o n : – 4 0° C…7 0° C ( - 4 0° F…1 5 8° F )

6.3 Installation dimensions

6.4 Mounting location

The device can be snapped onto all 35 mm DIN rails accord- ing to EN 60715. 116 (SP) 112,5 12,5 7 114,

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 17 / 85

6.5 Installation

An ME 6,2 TBUS-2 DIN rail connector (Order No.: 2869728) is used to supply active devices. A DIN rail connector is not required to operate this passive device. This device can be snapped onto a DIN rail connector – an electrically conductive connection is not established. This means that you do not need to disconnect an existing DIN rail connector element connection.

6.6 Installation check

  • Is the device undamaged (visual inspection)?
  • Do the ambient conditions correspond to the device specification?

6.7 Electrical connection

Figure 2 Terminal connection assignment MACX MCR- TS-I-OLP(-SP)(-C) (Order No.: 2908662/ 2908664/1012249) Figure 3 Terminal connection assignment MACX MCR- EX-TS-I-OLP(-SP)(-C) (Order No.: 2908660/ 2908661/1012248) A minimum load of 250 Ω is required in the signal circuit for device operation via the HART® protocol (terminals 1 and 2). NOTE: Electrostatic discharge Take protective measures against electrostatic discharge before opening the front cover! WARNING: Risk of electric shock Keep the device off the power supply when mak- ing electrical connections. NOTE: Damage to the electronics Assign the programming interface only with the programming adapter. Violation can lead to the destruction of the elec- tronics. NOTE: Damage to the device by high-energy transients Provide suitable upstream surge protection. IN 4.1 5.1 5.2 6.2 6.1 4.2 OUT 2.2 2.1 HHT 4.1 5.1 5.2 6.2 6.1 4.2 Sensor Interface / PLC / DCS Zone 1,2 IN 4.1 5.1 5.2 6.2 6.1 4.2 OUT 2.2 2.1 4.1 5.1 5.2 6.2 6.1 4.2 Zone 1,2 HHT Sensor Interface / PLC / DCS

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 18 / 85

6.7.1 Connecting the cables

  • Strip the conductor by 7 mm and crimp with ferrules.
  • Insert the conductor into the corresponding connection terminal block.
  • Use a screwdriver to tighten the screw in the opening above the connection terminal block. Tightening torque: 0.6 Nm Push-in connection Figure 5 Push-in connection
  • Strip the conductor by 8 mm and crimp with ferrules.
  • Insert the conductor into the corresponding connection terminal block.
  • Push in the pushbutton with a screwdriver to release. 0,5-0,6 Nm 5-7 lb In 7 mm AWG 24-14 0,2-2,5 mm 2MACX MCR-... A B

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 19 / 85

6.7.2 Connection sensor cables

The following assignments are possible:

6.7.3 Connection signal line (supply)

Without HART® communication, a normal installation cable is sufficient. With HART® communication, we recommend a shielded cable. The signal line connectors (2.1 + and 2.2 -) are protected against polarity reversal.

6.7.4 Connection inspection

  • Is there any damage to the device or cables?
  • Does the supply voltage comply with the specifications on the rating plate?
  • Are the cables installed strain-free?
  • Are the auxiliary energy and signal cables correctly connected?
  • Are all the screw terminal blocks securely tightened and the connections of the spring clamps checked?
  • Are all the cable entries mounted, securely tightened and sealed?
  • Are all the housing covers mounted and securely tight- ened? NOTE: Invalid measured values Make sure that while connecting the two sensors there is no direct connection between the sensors (e.g. through the grounding of both sensors). The resulting compensating currents lead to con- siderable distortions of the measurement. If you cannot ensure this, then you must use two measuring transducers. Sensor input 1 RTD or resistance- type sensor, 2-wire RTD or resistance- type sensor, 3-wire RTD or resistance- type sensor, 4-wire Thermocouple (TC), voltage trans- mitter Sensor input 2 RTD or resistance- type sensor, 2-wire Yes Yes No Yes RTD or resistance- type sensor, 3-wire Yes Yes No Yes RTD or resistance- type sensor, 4-wire No No No No Thermocouple (TC), voltage trans- mitter Yes Yes Yes Yes

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 20 / 85

7 Configuration

7.1 Standard configuration

To change the configuration data via PC, use the program- ming adapter MCR-PACT-T-USB (Order. No.: 2309000) and the FDT/DTM solution, which is available free of charge at phoenixcontact.net/products. The device is supplied with the following standard configu- ration: Sensor input 1 active , Pt 100 3-wire, -200 °C ...850 °C, sensor input 2 inactive

7.2 Configuration via software

PC software configuration interface To configure the device using the software solution, connect the device to your PC. This requires the MCR-PAC-T-USB programming adapter (Order No.: 2309000) and the FDT / DTM software packages, which already contain the driver for the programming adapter. The software solution can be downloaded free of charge from the following address: phoenixcontact.net/products Be sure to download and install both the FDT framework ap- plication and the DTM package. Setting the communication connection To do this, proceed as follows:

  • Load the DTM for the programming adapter MCR-PAC- T-USB in your project.
  • Right-click on the MCR-PAC-T-USB. Select "Configu- ration". The "Configuration" window opens.
  • In the field "Selected COM port", select the entry "USB Serial Port (COM xxx)".
  • Confirm your selection with "Enter".
  • Load the DTM of the display into your project. Communication is established. CAUTION: Undefined behavior of output and relays during parameterization possible Do not parameterize the device while a process is running. Use the MCR-PAC-T-USB programming adapter (Order No.: 2309000) for connecting with the de- vice, or one of the possibilities from Section "Overview of operating possibilities" on page 22. When you create a new project in your FDT/DTM program, you have to select once the communi- cation connection in the configuration window.

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 21 / 85

7.3 HART® communication interface

The configuration of HART® functions as well as device- specific parameters is via the HART® communication or the service interface of the device. For this, there are special configuration tools on offer from different manufacturers. For further information, contact the Phoenix Contact sales employee assigned to you.

7.4 Device stat us display

The device has the following operating and indication ele- ments. Figure 6 Operating and indication elements

1 COMBICON pluggable screw or Push-in connection

2 Service interface

3 Green "PWR" LED for power supply

4 Red "ERR" LED as error display

5 Snap-on foot for DIN rail mounting

A description of the categories can be found in "Status sig- nals" on page 56. LED Color / status Description PWR Green Supply voltage On Supply voltage is present ERR Red Diagnostics Flashing Diagnostic message from category C, S or M On Diagnostic message from category F 5.1 4.1 42. 62. 61. 52. 2.1 2 OUT HHT OUT PWR IN 2.1 2.2 4.1 5.1 4.2 5.2 PW R 2.1 2.2 MACX M CR-EX -- - S PT SIO PL- Ord.-No .: 2908661 PHOENIX CONT ACT GmbH & Co .KG Flachsmarktstr

32825 Blom

berg, German y LOOP P owered Temper ature Transducer HAR T WARNIN GDO NO T SEP ARATE WHEN ENER GIZED AND INS TALLED IN Z ONE 2 www.phoenix contact.com Supp lyVoltage: 19,2 ... 30V DC Output 1/2 0/4 ... 20mA HART only on OUT 1 253V AC, 125V DC m amb Input 0/4 ...20mAMax.Values Zone Div. 4.1 4.2: U, V = 25,2V Oo c OS C P = 587 mW OO 5.1 5.2: U, V = 30V im ax l = 150 mA im a x see manual 1.1 MACX MCR-EX -- -TS I OLP MACX MCR-EX -- -TS I OLP-SP 2.1 2.2 PW R ERR ERR 4.1 5.1 6.1 6.1 4.2 5.2 6.2 6.2 MACX M CR-EX - -I-TS O PL Ord.-No .: 2908660 PHOENIX CONT ACT GmbH & Co .KG Flachsmarktstr berg, German y LOOP P owered Temper ature Transducer HAR T Supply Voltage: 12 ... 30V DC WARNIN GDO NO T SEP ARATE WHEN ENER GIZED see manual AND INS TALLED IN Z ONE 2 www.phoenix contact.comOutpu t 4 ...20 mA ... mA / 20 Class 2 circuit or SELV circuit 0 °.. .+ °C / - 4 0 ... amb InputRTD,T C , m V, R 5.1 4.1 42. 62. 61. 52. 2.1 2 OUT HHT OUT PWR IN 2.1 2.2

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 22 / 85 8S t a r t u p

8.1 Installation check and switching on the device

Perform all final checks before starting up the device. – Checklist "Installation check" on page 17 – Checklist "Connection inspection" on page 19 During initial startup of the device, program the setup ac- cording to the description in the following sections.

8.2 General information on device configuration

You can start up and parameterize your device as follows: – Via the HART® protocol – Via the MCR PAC-T-USB adapter per PC

8.3 Overview of operating possibilities

Figure 7 Overview of operating possibilities

1 PLC (Programmable logic controller)

2 Measuring transducer supply device, e.g. MACX MCR- EX-SL-RPSSI-I-SP (Order No.: 2924016) (with commu- nication resistance) 3 Handheld, e.g. from Fisher Rosemount 4 PC with operating tool (e.g. M&M Container or IFS Conf)

5 HART® modem

6 Programming adapter MCR-PAC-T-USB (Order No.: 2309000)

7 Temperature transmitter

8.4 Integrate transmit ter via HART® protocol

For HART® communication, measured values are transmit- ted from the transmitter via the HART® protocol to a con- nected control system where they are processed further.

8.4.1 HART® device variab les and measured values

The device variables are assigned the following measured values by default. 3 4 Flachsmarktstr. 8

32825 Blomberg, Germany

WARNINGDO NOT SEPARATEWHEN ENERGIZED AND INSTALLED IN ZONE 2 SupplyVoltage: 19,2 ...30V DC Output 1/2 0/4 ... 20mA HART only on OUT 1 253V AC, 125V DC m amb 4.1 4.2: U, V = 25,2V Oo cOS C P = 587 mW OO 5.1 5.2: U, V = 30V im ax l = 150 mA im ax see manual 1.1 MACX MCR- T SIO L P 2.1 2.2 PWR ERR 4.1 5.1 6.1 4.2 5.2 6.2 MACX MCR- -I-TS O PL Ord.-No.: 2908662 PHOENIX CONTACT GmbH & Co.KG Flachsmarktstr.8 SupplyVoltage: 12 ... 30V DC WARNINGDO NOT SEPARATEWHEN ENERGIZED see manualAND INSTALLED IN ZONE 2 www.phoenixcontact.com Output 4 ... 20 mA ... mA / 20 Class 2 circuit or SELV circuit 0 °.. .+ °C / - 4 ° 0 ... amb InputRTD, TC, mV, R 5.1 4.1 42. 62. 6 1. 52. 2.1 2.2 OUT HHT OUT PWR IN 2.1 2.2 Table 1 Version data of the device Firmware ver- sion 01.01.zz On rating plate Firmware version parameters Diagnostics, Device informa- tion, Firmware version Manufacturer ID 0xB0 Manufacturer ID parameters Diagnosis, device info, manu- facturer ID Device type ID MACX MCR- (EX)-TS- I-OLP(- SP)(-C) Device type parameters Diagnosis, device info, device type HART® protocol revision 7.0 --- Device revision 2 On transmitter rating plate Device revision parameters Diagnosis, device info, device revision Device variable Measured value PV Sensor 1 SV Device temperature TV Sensor 1 QV Sensor 1 The assignment of the device variables to the pro- cess variable can be changed in the following menu: Expert, Communication, HART output

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 23 / 85

8.4.2 Device variables and measured values

The individual device variables are assigned the following measured values:

8.4.3 Supported HART® commands

The HART® protocol makes possible transmission of mea- sured and device data between HART® master and the cor- responding field device for configuration and diagnosis pur- poses. HART® masters, e.g., the hand-held operator panel or PC-based operating programmed (e.g. M&M Container) require device description files (DD = Device Descriptions, DTM) that help enable access to all information in a HART® device. Transmission of such information is solely via "com- mands". Universal commands: Universal commands are supported and used by all HART® devices. Connected functions include the following: – Detection of HART® devices – Reading digital measured values Common practice commands: The common practice commands provide functions that can be supported or executed by many but not all field devices. Device-specific commands: This commands allow access to device-specific functions that are not standardized for HART®. These commands ac- cess individual field device information. Device variable Measured values 0S e n s o r 1 1S e n s o r 2

2 Device temperature

3 Mean value from sensor 1 and sensor

4 Difference from sensor 1 and sensor 2

5 Sensor 1 (backup sensor 2)

6 Sensor 1 with switchover to sensor 2 if

7 Mean value from sensor 1 and sensor

The device variables can be retrieved from a HART® master via HART® command 9 or 33. Command no. Designation Universal commands 0, Cmd0 Read unique identifier 1, Cmd001 Read primary variable 2, Cmd002 Read loop current and percent of range 3, Cmd003 Read dynamic variables and loop cur- rent 6, Cmd006 Write polling address 7, Cmd007 Read loop configuration 8, Cmd008 Read dynamic variable classifications 9, Cmd009 Read device variables with status 11, Cmd011 Read unique identifier associated with TAG 12, Cmd012 Read message 13, Cmd013 Read TAG, descriptor, date 14, Cmd014 Read primary va riable transducer infor- mation 15, Cmd015 Read device information 16, Cmd016 Read final assembly number 17, Cmd017 Write message 18, Cmd018 Write TAG, descriptor, date 19, Cmd019 Write final assembly number 20, Cmd020 Read long TAG (32-byte TAG) 21, Cmd021 Read unique identifier associated with long TAG 22, Cmd022 Write long TAG (32-byte TAG) 38, Cmd038 Reset configuration changed flag 48, Cmd048 Read additional device status Common practice commands 33, Cmd033 Read device variables 34, Cmd034 Write primary variable damping value 35, Cmd035 Write primar y variable range values 36, Cmd036 Set primary variable upper range value 37, Cmd037 Set primary variable lower range value 40, Cmd040 Enter/Exit fixed current mode 42, Cmd042 Perform device reset 44, Cmd044 Write primary variable units 45, Cmd045 Trim loop current zero 46, Cmd046 Trim loop current gain 50, Cmd050 Read dynamic variable assignments 51, Cmd051 Write dynamic variable assignments 54, Cmd054 Read device variable information 59, Cmd059 Write number of response preambles 103, Cmd103 Write burst period 104, Cmd104 Write burst trigger 105, Cmd105 Read burst mode configuration

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 24 / 85 107, Cmd107 Write burst device variables 108, Cmd108 Write burst mode command number 109, Cmd109 Burst mode control Command no. Designation

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 25 / 85

8.5 Operating menu and parameter description

The following table lists all parameters that contain the oper- ating menus "Setup", "Diagnosis", and "Expert". The page numbers refer to the description of the corresponding pa- rameter. Not all submenus and parameters are available in every de- vice depending on the parameterization. Details of this are given with the description of the parameters under the "Pre- requisite" category. The parameter groups for the expert setup contain all pa- rameters of the operating menu "Setup", "Diagnosis", as well as additional parameters that are exclusively reserved for the experts. The parameterization in SIL mode is different from standard mode and is described in "Use in safety equipment" on page 71. Setup, Measuring point designation on page 31 Unit on page 31 Sensor type 1 on page 31 Connection method 1 on page 31 2-wire compensation 1 on page 31 Cold junction 1 on page 32 Cold junction preset value 1 on page 32 Sensor type 2 on page 31 Connection method 2 on page 31 2-wire compensation 2 on page 31 Cold junction 2 on page 32 Cold junction preset value 2 on page 32 Current output assignment (PV) on page 32 Start of measuring range on page 33 End of measuring range on page 33 Setup, Advanced. Setup, Enter release code on page 34 Operating software access rights on page 34 Interlock status on page 34 Device temperature alarm on page 34 Setup, Advanced. Setup, Sensors, Sensor offset 1 on page 35 Sensor offset 2 on page 35 Corrosion detection on page 35 Drift/Difference monitoring on page 35 Drift/Difference alarm category on page 35 Drift/Difference alarm delay on page 36 Drift/Difference limit value on page 36 Sensor switchover limit value on page 36

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 26 / 85 Setup, Advanced. Setup, Current output, Output current on page 36 Measuring mode on page 37 Out of range category on page 37 Error handling on page 37 Residual current on page 37 Voltage trim 4 mA on page 37 Voltage trim 20 mA on page 37 Setup, Advanced. Setup, Display, Interval display on page 38 Format display on page 38 1st display value on page 38 1st decimal places on page 38 2nd display value on page 39 2nd decimal places on page 39 3rd display value on page 39 3rd decimal places on page 39 Setup, Advanced. Setup, SI L, SIL option on page 40 Operating state on page 40 Enter SIL checksum on page 40 Time stamp SIL parameterization on page 40 SIL startup mode on page 40 SIL HART mode on page 41 Force safe state on page 41 Setup, Advanced. Setup, Administ ration, Reset device on page 41 Define write-protect code on page 41 Diagnostics, Current diagnostics on page 42 Troubleshooting measure on page 42 Last diagnostics 1 on page 42 Operating time on page 42 Diagnostics, Diagnostic list, Number of current diagnostic messages on page 43 Current diagnostics on page 43 Current diagnostics channel on page 43 Diagnostics, Event log, Last diagnostics n on page 43 Last diagnostics channel n on page 43 Diagnostics, Device information, Me asuring point designation on page 44 Serial number on page 44 Firmware version on page 44 Device name on page 44 Configuration counter on page 44

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 27 / 85 Diagnostics, Measured values, Value sensor 1 on page 44 Value sensor 2 on page 44 Device temperature on page 44 Diagnostics, Measured values, Min./Max. values, Sensor n min. value on page 45 Sensor n max. value on page 45 Reset min./max. values sensor on page 45 Device temperature min. on page 45 Device temperature max. on page 45 Reset device temperature max./min. on page 45 Diagnostics, Simulation, Simulation current output on page 46 Current output value on page 46 Expert, Enter release code on page 34 Operating software access rights on page 34 Interlock status on page 34 Expert, System, Unit on page 31 Attenuation on page 46 Alarm delay on page 46 Mains frequency filter on page 46 Device temperature alarm on page 46 Expert, System, Display, Interval display on page 38 Format display on page 38 1st display value on page 38 1st decimal places on page 38 2nd display value on page 39 2nd decimal places on page 39 3rd display value on page 39 3rd decimal places on page 39 Expert, System, Administration, Reset device on page 41 Define write-protect code on page 41 Expert, Sensors, Sensor n 1, Sensor type n on page 31 Connection method n on page 31 2-wire compensation n on page 31 Cold junction n on page 32 Cold junction preset value on page 32 Sensor offset n on page 35 Lower sensor limit n on page 47 Upper sensor limit n on page 47 Serial number sensor on page 47 1 n = number of sensor inputs (1 and 2)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 28 / 85 Expert, Sensors, Sensor n, 1 Sensor trim, Sensor trim on page 47 Sensor trim initial value on page 48 Sensor trim final value on page 48 Sensor trim min. range on page 48 1 n = number of sensor inputs (1 and 2) Expert, Sensors, Sensor n 1, Linearization, Lower sensor limit n on page 48 Upper sensor limit n on page 48 Call.-V. Dusen coeff. R0, A,B, C on page 49 Polynomial coeff. R0, A, B on page 49 1 n = number of sensor inputs (1 and 2) Expert, Sensors, Diagnostics settings, Corrosion detection on page 35 Drift/Difference monitoring on page 35 Drift/Difference alarm category on page 35 Drift/Difference alarm delay on page 36 Drift/Difference limit value on page 36 Sensor switchover limit value on page 36 Calibration counter start on page 49 Calibration counter alarm category on page 49 Calibration counter start value on page 49 Countdown calibration on page 50 Expert, Output, Output current on page 36 Measuring mode on page 37 Start of measuring range on page 33 End of measuring range on page 33 Out of range category on page 37 Error handling on page 37 Residual current on page 37 Voltage trim 4 mA on page 37 Voltage trim 20 mA on page 37 Expert, Communication, HART configuratio n, Measuring point designation on page 44 HART short description on page 50 HART address on page 50 Preamble number on page 50 Configuration changed on page 50 Configuration changed, reset flag on page 51

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 29 / 85 Expert, Communication, HART info, Device type on page 51 Device revision on page 51 HART revision on page 51 HART description on page 51 HART message on page 52 Hardware revision on page 52 SWRev on page 52 HART date on page 52 Expert, Communication, HART output, Current output assignment (PV) on page 32 PV on page 52 Assignment SV on page 52 SV on page 53 Assignment TV on page 53 TV on page 53 Assignment QV on page 53 QV on page 53 Expert, Communication, Burst configuration, Burst mode on page 53 Burst command on page 53 Burst variables 0...3 on page 54 Burst trigger mode on page 54 Burst trigger value on page 54 Burst min. time period on page 55 Burst max. time period on page 55 Expert, Diagnostics, Current diagnostics on page 42 Troubleshooting measure on page 42 Last diagnostics 1 on page 42 Operating time on page 42 Expert, Diagnostics, Diagnostic list, Number of current diagnostic messages on page 43 Current diagnostics on page 43 Current diagnostics channel on page 43 Expert, Diagnostics, Event log, Last diagnostics n on page 43 Last diagnostics channel on page 43

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 30 / 85 Expert, Diagnostics, Device information, Measuring point designation on page 31 Serial number on page 44 Firmware version on page 44 Device name on page 44 ENP version on page 55 Device revision on page 55 Manufacturer ID on page 55 Manufacturer on page 55 Hardware revision on page 55 Configuration counter on page 44 Expert, Diagnostics, Measured valu es, Value sensor n on page 44 Sensor n raw value on page 56 Device temperature on page 44 Expert, Diagnostics, Measured values, Min./Max. values, Sensor n min. value on page 45 Sensor n max. value on page 45 Reset min./max. values sensor on page 45 Device temperature min. on page 45 Device temperature max. on page 45 Reset device temperature max./min. on page 45 Expert, Diagnostics, Simulation, Simu lation current output on page 46 Current output value on page 46

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 31 / 85 8.5.1 "Setup" menu All parameters used for basic device settings are available here. You can start up the transmitter with this limited parameter record. n = place-holder for number of sensor inputs (1 and 2) Measuring point designation Navigation Setup, Measuring point designation Diagnostics, Device information, Measuring point designation Expert, Diagnostics, Device information, Measuring point designation Description Entry of a clear designation for the measur- ing point in order to be able to quickly identify it within the system. It is indicated in the header of the plug-in display (on page 21). Input Max. 32 characters such as letters, numer- als, or special characters (e.g. @, %, /) Default set- tings -none- Unit Navigation Setup, Unit Expert, System, Unit Description Selection of the measuring unit for all mea- sured values Selection – °C –° F –° R –o h m –m V Default set- tings Sensor type n Navigation Setup, Sensor type n Expert, Sensors, Sensor n, Sensor type n Descrip- tion Selection of the sensor type for the respective sensor input – Sensor type 1: settings for sensor input 1 – Sensor type 2: Settings for sensor input 2 Observe the terminal assignment when con- necting the individual sensors (on page 17). In the case of 2-channel operation, also observe the possible connection combinations. Selection You can find a list of all possible sensor types in "Technical data" on page 5. Default settings – Sensor type 1: Pt 100 IEC751 – Sensor type 2: no sensor Connection method n Navigation Setup, Connection method n Expert, Sensors, Sensor n, Connection method n Require- ments An RTD sensor has to be specified as sensor type. Descrip- tion Selection of connection method of the sensor Selection – Sensor 1 (connection method 1): 2-wire, 3-wire, 4-wire – Sensor 2 (connection method 2): 2-wire, 3-wire Default settings – Sensor 1 (connection method 1): 4-wire – Sensor 2 (connection method 2): 2-wire 2-wire compensation n Navigation Setup, 2-wire compensation n Expert, Sensors, Sensor n, 2-wire compensa- tion n Require- ments An RTD sensor has to be specified as sensor type with 2-wire connection method. Description Determination of re sistance value for two-wire compensation in the case of RTDs Input 0 ... 30 ohm Default set- tings

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 32 / 85 Cold junction n Navigation Setup, Cold junction n Expert, Sensors, Sensor n, Cold junction n Require- ments A thermocouple (TC) sensor has to be se- lected as sensor type. Description Selection of cold junction measurement for temperature compensation of thermocouples (TC) – In the case of the "p reset value", the com- pensation value is specified via the Cold junction preset value parameter. – A temperature measurement for channel 2 has to be configured for the "Measured value sensor 2" selection Selection – No compensation: no temperature com- pensation is used. – Internal measurement: internal cold junc- tion temperature is used. – Preset value: fixed preset value is used. – Measured value sensor 2: measured val- ue of sensor 2 is used. The measured val- ue sensor 2 selection is not possible for the cold junction 2 parameter. Default set- tings Internal measurement Cold junction preset value n Navigation Setup, Cold junction preset value Expert, Sensors, Sensor n, Cold junction, Pre- set value Require- ments The preset value parameter has to be set for the cold junction n selection. Descrip- tion Determination of the fixed preset value for temperature compensation Input –50 … +85 °C Default settings 0.00 Current output assignment (PV) Navigation Setup, Current output assignment (PV) Expert, Communication, HART output, As- signment, Current output (PV) Descrip- tion Assignment of a measured variable for the first HART® value (PV) Selection – Sensor 1 (measured value) – Sensor 2 (measured value) – Mean value of the tw o measured values: 0.5 x (SV1+SV2) – Difference between Sensor 1 and Sensor 2: SV1-SV2 – Sensor 1 (backup Sensor 2): If Sensor 1 fails, the value of Sensor 2 automatically becomes the first HART® value (PV): Sensor 1 (OR Sensor 2) – Sensor switchover: If the set threshold value T is exceeded for Sensor 1, the measured value of Sensor 2 becomes the first HART® value (PV). Sensor is switched back to when the measured val- ue of Sensor 1 is at least 2 K below T: Sensor 1 (Sensor 2, if Sensor 1 > T) – Mean value: 0.5 x (SV1+SV2) with back- up (measured value of Sensor 1 or Sen- sor 2 in the case of sensor errors of the other sensor) The threshold value can be set with the Sen- sor switchover limit value parameter (on page 36). 2 sensors can be combined through the temperature-dependent switchover, which have their advantages in different temperature ranges. Default settings Sensor 1

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 33 / 85 "Advanced setup" submenu Corrosion monitoring The corrosion of sensor connection lines can lead to a falsi- fication of the measured value. The device thus offers you the possibility of recognizing the corrosion before a mea- sured value falsification occurs. The corrosion monitoring is only possible for a RTD with 4-wire termination and thermo- couples. Drift/Difference monitoring A signal status is generated as diagnostic event when the measured values differ by a specified value in the case of two connected sensors. The correctness of the measured values can be verified with the drift/difference monitoring, and a mutual monitoring of the connected sensors per- formed. The drift/difference monitoring is activated with the Drift/Difference monitoring parameter. A distinction is made between two different modes. A status message is issued for underrange selection (ISV1-SV2I < Drift/Difference limit value) if the limit value is not reached, or, for Overrange (Drift) selection (ISV1-SV2I > Drift/ Difference limit value), if the limit value is exceeded. Configuration procedure of drift/difference monitoring 1. For drift/difference monitoring, select Overrange for drift detection, Underrange for difference monitoring. 2. Set alarm category for drift/difference monitoring to Does not conform to the specification (S), Maintenance required (M) or Failure (F) according to your needs. 3. Set limit value for drift/difference monitoring to desired value. Figure 8 Drift/Difference monitoring Start of measuring range Navigation Setup, Start of measuring range Expert, Output, Start of measuring range Descrip- tion Assignment of a measured value to the cur- rent value 4 mA The adjustable limit value depends on the sensor type used in the Sensor type parame- ter (on page 31), and the assigned measured variable in the Current output assignment (PV) parameter. Input Depending on the sensor type and the current output assignment (PV) Default settings End of measuring range Navigation Setup, End of measuring range Expert, Output, End of measuring range Descrip- tion Assignment of a measured value to the cur- rent value 20 mA The adjustable limit value depends on the sensor type used in the Sensor type parame- ter (on page 31), and the assigned measured variable in the Current output assignment (PV) parameter. Input Depending on the sensor type and the current output assignment (PV) Default settings 100 A Below limit value B Above limit value D Drift L+, L- Upper (+) or lower (-) limit value t Time x Diagnostic event, status signal is created D t D t AB x x

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 34 / 85 Enter release code Navigation Enter Setup, Adva nced setup, Release code Enter Expert, Release code Description Release of service parameters via operation tool. If an incorrect release code is entered, the user keeps his current access rights. If an entered value is not equal to the release code, the parameter is automatically set to 0. The service parameters should only be changed by the service organization. Additional information The software device write-protection is also switched on and off via this parameter. Software device write-protection linked to the download from an off-line capable operating tool – A download where th e device has no de- fined write-protect code is carried out nor- mally. – Download with defined write-protect code: the device is not locked. – Enter release code parameter (offline) contains the correct write-protect code: The download is performed; the device is not locked after the download. The write-protect code in the enter release code parameter is set to 0. – Enter release code parameter (offline) does not contain the correct write-pro- tect code: The download is performed; the device is locked after the download. The write-protect code in the Enter re- lease code parameter is reset to 0. – Download with defined write-protect code: the device is locked. – Enter release code parameter (offline) contains the correct write-protect code: The download is performed; the device is locked after the download. The write- protect code in the Enter release code parameter is reset to 0. – Enter release code parameter (offline) does not contain the correct write-pro- tect code: The download is not per- formed. No values in the device are changed. The value of the Enter release code parameter (offline) is not changed either. Input 0 ... 9 999 Default set- tings Operating software access rights Navigation Setup, Advanced setup, Operating software access rights Expert, Operating software access rights Description Display of access rights on the parameters Additional in- formation If an additional write-protect is active, this further limits the current access rights. The write-protect can be displayed via the Inter- lock status parameter. Selection – Operator –S e r v i c e Default set- tings Operator Interlock status Navigation Setup, Advanced setup, Interlock status Expert, Interlock status Description Display of status of device interlock The DIP switch for the hardware interlock is mounted on the optional display module (only head transmitter). Device temperature alarm Navigation Setup, Advanced setup, Device temperature alarm Description Selection of category (status signal) of how the device reacts in the case of exceeding or falling below the electronic temperature of the transmitter <-40 °C (-40 °F) or >+85 °C (+185 °F) Selection – Off – Does not conform to the specification (S) – Failure (F) Default set- tings Does not conform to the specification (S)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 35 / 85 "Sensors" submenu Sensor offset n n = place-holder for number of sensor inputs (1 and 2) Navigation Setup, Advanced setup, Sensors, Sensor offset n Expert, Sensors, Sensor n, Sensor offset n Description Setting the zero point correction (offset) of the sensor measured value. The specified value is added to the measured value. Default set- tings 0.0 Corrosion detection Navigation Setup, Advanced setup, Sensors, Corrosion detection Expert, Sensors, Diagnostic settings, Corro- sion detection Description Selection of category (status signal) with which the sensor connection lines are dis- played for corrosion detection Only possible for RTD sensors with 4-wire termination and thermocouples (TC). Selection – Maintenance required (M) – Failure (F) Default set- tings Maintenance required (M) Drift/Difference monitoring Navigation Setup, Advanced setup, Sensors, Drift/Dif- ference monitoring Expert, Sensors, Diagnostic settings, Drift/ Difference monitoring Description Selection of whether the device reacts to the drift/difference limit value being exceeded or fallen below Can only be selected for 2-channel operation Additional information – A status signal is displayed for the Over- range (Drift) selection when the absolute sum of the difference value exceeds the drift/difference limit value – A status signal is displayed for the Un- derrange selection when the absolute sum of the difference value falls below the drift/difference limit value. Selection – Off – Overrange (Drift) – Underrange Default set- tings Off Drift/Difference alarm category Navigation Setup, Advanced setup, Sensors, Drift/Dif- ference alarm category Expert, Sensors, Diagnostic settings, Drift/ Difference alarm category Require- ments The Drift/Difference monitoring parameter must be activated with the Overrange (Drift) or Underrange selection. Description Selection of the category (status signal) of how the device reacts between Sensor 1 and Sensor 2 in the case of drift/difference detec- tion Selection – Does not conform to the specification (S) – Maintenance required (M) – Failure (F) Default set- tings Maintenance required (M)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 36 / 85 "Current output" submenu Adjustment of analog output (4 mA and 20 mA voltage trim) The voltage trim is for the compensation of the analog out- put (D/A conversion). The output current of the transmitter can be adapted so that it matches the expected value at the higher-level system. Procedure 1. Install exact ampere meter (higher precision than trans- mitter) in the current loop. 2. Switch on simulation of the current output and set the simulation value to 4 mA. 3. Measure loop current with the ampere meter and take a note of it. 4. Set the simulation value to 20 mA. 5. Measure loop current with the ampere meter and take a note of it. 6. Enter determined current values as comparison values in the voltage trim parameter 4 mA or 20 mA Drift/Difference alarm delay Navigation Setup, Advanced setup, Sensors, Drift/Dif- ference alarm delay Expert, Sensors, Diagnostic settings, Drift/ Difference alarm delay Require- ments The Drift/Difference monitoring parameter must be activated with the Overrange (Drift) or Underrange selection (on page 35). Description Alarm delay of drift detection monitoring Helpful, e.g., in the case of different thermal masses of sensors in conjunction with a high temperature gradient in the process Input 0 … 255 s Default set- tings 0 s Drift/Difference limit value Navigation Setup, Advanced setup, Sensors, Drift/Dif- ference limit value Expert, Sensors, Diagnostic settings, Drift/ Difference limit value Require- ments The Drift/Difference monitoring parameter has to be activated with the Overrange (Drift) or Underrange selection. Description Setting of maximum permitted measured value deviation between Sensor 1 and Sen- sor 2 that leads to a drift/difference detection. Default set- tings 999.0 Sensor switchover limit value Navigation Setup, Advanced setup, Sensors, Sensor switchover, Limit value Expert, Sensors, Diagnostic settings, Sensor switchover, Limit value Description Setting of the threshold value of the sensor switchover (on page 32) Additional information The threshold value is relevant if a HART® variable (PV, SV, TV, QV) is assigned to the sensor switchover function. Selection Depending on the selected sensor types Default set- tings 850 °C The voltage trim has no influence on the digital HART® value. This can lead to the displayed measured value on the plugged-in display (only head transmitter) differing minimally from the dis- play value in the higher-level system. The adaption of the digital measured values can be performed with the Sensor trim parameter in the "Expert, Sensors, Sensor trim" menu. Output current Navigation Setup, Advanced setup, Current output, Output current Expert, Output, Output current Description Display of the ca lculated output current in mA.

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 37 / 85 Measuring mode Navigation Setup, Advanced setup, Current output, Measuring mode Expert, Output, Measuring mode Description Enables the inve rsion of the output signal Additional information –S t a n d a r d The output current rises when the tem- perature increases –I n v e r t e d The output current lowers when the tem- perature increases Selection – Standard –I n v e r t e d Default set- tings Standard Out of range category Navigation Setup, Advanced setup, Current output, Out of range category Expert, Output, Out of range category Description Selection of the ca tegory (status signal), how the device reacts when leaving the set mea- suring range. Selection – Does not conform to the specification (S) – Maintenance required (M) – Failure (F) Default set- tings Maintenance required (M) Error handling Navigation Setup, Advanced setup, Current output, Error handling Expert, Output, Error handling Description Selection of the fa ilure signal level that the current output issues in the case of an error Additional information For the max. selection, the failure signal level is specified via the Residual current parame- ter. Selection – Min. –M a x . Default set- tings Max. Residual current Navigation Setup, Advanced setup, Current output, Re- sidual current Expert, Output, Residual current Require- ments The Max. selection is activated in the Error handling parameter. Description Setting the curren t value that the current out- put issues in the event of a malfunction Default set- tings 22.5 Voltage trim 4 mA Navigation Setup, Advanced setup, Current output, Voltage trim 4 mA Expert, Output, Voltage trim 4 mA Description Setting the corre ction value for the current output at measuring range start 4 mA (on page 36) Default set- tings 4m A Voltage trim 20 mA Navigation Setup, Advanced setup, Current output, Voltage trim 20 mA Expert, Output, Voltage trim 20 mA Description Setting the corre ction value for the current output at measuring range end 20 mA (on page 36) Default set- tings 20.000 mA

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 38 / 85 "Display" submenu The settings for the measured value representation on the optional plug-in display (only for head transmitters) are per- formed in the "Display" menu. These settings have no influence on the output values of the transmitter. They are only used for the form of presentation on the display. Interval display Navigation Setup, Advanced setup, Display, Interval display Expert, System, Display, Interval display Description Setting the displa y duration of measured val- ues on the on-site display when these are displayed alternatingly. Such a change is only automatically created if more measured values are specified. – The parameter 1st display value ...3 is used to define which measured values are displayed on the on-site display. Display value specified (on page 38). – The form of presentation of the dis- played measured values is specified via the Format display parameter. Input 4 … 20 s Default set- tings Format display Navigation Setup, Advanced setup, Display, Format dis- play Expert, System, Display, Format display Description Selection of the measured value representa- tion on the on-site display. The Measured value or Measured value with bar graph form of presentation can be set. Selection – Value – Value + bar graph Default set- tings Value 1st display value Navigation Setup, Advanced setup, Display, 1st display value Expert, System, Display, 1st display value Description Selection of one of the measured values dis- played on the on-site display. The Format display parameter (on page 38) is used to define how the measured values are pre- sented. Selection – Process value – Sensor 1 –S e n s o r 2 – Output current – % measurement range – Device temperature Default set- tings Process value 1st decimal places Navigation Setup, Advanced setup, Display, 1st decimal places Expert, System, Display, 1st decimal places Require- ments A measured value is specified in the 1st dis- play value parameter (on page 38). Description Selection of the number of decimal places for the display value This setting does not influence the measuring or calculation precision of the device. The maximum possible number of decimal places is always displayed on the display for the Automatic selection. Selection – x –x . x –x . x x – x.xxx – x.xxxx –A u t o m a t i c Default set- tings Automatic

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 39 / 85 2nd display value Navigation Setup, Advanced setup, Display, 2nd display value Expert, System, Display, 2nd display value Description Selection of one of the measured values dis- played on the on-site display The Format display parameter is used to de- fine how the measured values are presented. Selection – Off – Process value –S e n s o r 1 –S e n s o r 2 – Output current – % measurement range – Device temperature Default set- tings Off 2nd decimal places Navigation Setup, Advanced setup, Display, 2nd deci- mal places Expert, System, Display, 2nd decimal places Require- ments A measured value is specified in the 2nd dis- play value parameter. Description Selection of the number of decimal places for the display value This setting does not influence the measuring or calculation precision of the device. The maximum possible number of decimal places is always displayed on the display for the Automatic selection. Selection – x –x . x –x . x x –x . x x x – x.xxxx –A u t o m a t i c Default set- tings Automatic 3rd display value Navigation Setup, Advanced setup, Display, 3rd display value Expert, System, Display, 3rd display value Description Selection of one of the measured values dis- played on the on-site display The Format display parameter is used to de- fine how the measured values are pre- sented. Selection – Off – Process value –S e n s o r 1 – Sensor 2 – Output current – % measurement range – Device temperature Default set- tings Off 3rd decimal places Navigation Setup, Advanced setup, Display, 3rd decimal places Expert, System, Display, 3rd decimal places Require- ments A measured value is specified in the 3rd dis- play value parameter. Description Selection of the number of decimal places for the display value This setting does not influence the measur- ing or calculation precision of the device. The maximum possible number of decimal places is always displayed on the display for the Automatic selection. Selection – x –x . x –x . x x – x.xxx – x.xxxx –A u t o m a t i c Default set- tings Automatic

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 40 / 85 "SIL" submenu The SIL option parameter displays whether the device can be operation in SIL mode. In order to activate SIL mode for the device, the menu-guided operation, Activate SIL, has to be performed (see "Use in safety equipment" on page 71). SIL option Navigation Setup, Advanced setup, SIL, SIL option Description Display of the SIL option Selection – No –Y e s Default set- tings Yes Operating state Navigation Setup, Advanced setup, SIL, Operating state Description Display of the de vice operating state in SIL mode Display – Check SIL option – Startup in normal operation – Waiting for checksum – Self-diagnostics – Normal operation – Download active –S I L m o d e a c t i v e – Start safe parameterization – Safe parameterization active – Save parameter values – Parameter test – Reboot pending – Rest checksum – Safe state - Active –C h e c k d o w n l o a d –U p l o a d a c t i v e – Safe state - Passive – Safe state - Panic In the case of a device restart with the setting "SIL startup mode, not active", the display "Waiting for checksum" appears in this pa- rameter. The SIL checksum has to be manu- ally entered here. Default set- tings Normal operation Enter SIL checksum Navigation Enter Setup, Advanced setup, SIL, SIL checksum Description Enter the SIL checksum during the safe pa- rameterization and startup in connection with the parameter setting "SIL startup mode, not active". Entering the value "0" in connection with the parameter setting "SIL startup mode, active" terminates automatic startup and discards the SIL settings. Input 0 ... 65535 Default set- tings Time stamp SIL parameterization Navigation Setup, Advanced setup, SIL, Time stamp SIL parameterization Description Entry of date and time at which the safe pa- rameterization concludes or the SIL check- sum was calculated This is not automatically created by the de- vice. The data and time must be entered manually. Input DD.MM.YYYY hh:mm Default set- tings SIL startup mode Navigation Setup, Advanced setup, SIL, SIL startup mode Description Setting the repeat automatic startup of the device in SIL mode, e.g. after a "power cycle" The "not active" setting requires the manual entry of the SIL checksum in order to be able to start the device again in SIL mode. Selection – Not active –A c t i v e Default set- tings Active

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 41 / 85 "Administration" submenu SIL HART mode Navigation Setup, Advanced setup, SIL, SIL HART mode Description Setting HART® communication during SIL mode The setting "HART not active" deactivates HART® communication in SIL mode (only 4 mA … 20 mA communication is active). Selection – HART not active –H A R T a c t i v e Default set- tings HART active Force safe state Navigation Setup, Advanced setup, SIL, Force safe state Require- ments The Operating state parameter displays SIL mode active. Description During the SIL repeat test, the error detec- tion and the safe state of the device are tested with this parameter. Please see "Startup or repeat test of the transmitter" on page 78 for a detailed de- scription of the SIL repeat test. Selection – On –O f f Default set- tings Off Resetting the device Navigation Setup, Advanced setup, Administration, Reset device Expert, System, Reset device Description Reset the entire de vice configuration or part of it to a defined state. Selection – Not active The parameter is exited without action. – To default setting All parameters are reset to default set- tings. – To delivery state All parameters are reset to the delivery state. The delivery state can differ from the default setting if customer-specific parameter values are specified when or- dering. –R e s t a r t d e v i c e The device restarts with unchanged de- vice configuration. Default set- tings Not active Define write-protect code Navigation Setup, Advanced setup, Administration, De- fine write-protect code Expert, System, Define write-protect code Description Setting a device write-protect code If the code is saved in the device firmware, this code is saved in the device and the oper- ating tool displayed the value 0, so that that defined write-protect code cannot be dis- played in a way that can be freely read. Input 0 ... 9 999

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 42 / 85 8.5.2 "Diagnostics" menu All the information that describes the device status and the process conditions are found in this group. Default set- tings The device write protection is not active if de- livered with this default setting. Additional information – Activate the device write protection: For this, enter a value in the Enter release code parameter that does not corre- spond with the write-protect code de- fined here. – Deactivate the device write protection: Enter the defined write protect code in the Enter release code parameter if there is active device write protection. – After resetting the device to default or configured delivery state, the defined write-protect code is no longer valid. The code takes on the default setting (= 0). – The hardware write protection (DIP switch) is active: – The hardware write protection has a higher priority than the software write protection described here. – No value can be entered in the Enter release code parameter. The pa- rameter can now be read. – The device write-protect via soft- ware can first be defined and activat- ed if the hardware write protection is deactivated via the DIP switch ("De- vice status display" on page 21). If the write-protect code was forgotten, it can be deleted or over-written by the service or- ganization. Define write-protect code Current diagnostics 1 Navigation Diagnostics, Current diagnostics Expert, Diagnostics, Current diagnostics 1 Description Display of the cu rrently pending diagnostic message. If multiple messages occur simul- taneously, the highest priority message will be displayed first. Display Symbol for event behavior and diagnostic event Additional in- formation Example of display format: F261 electronics modules Troubleshooting measure Navigation Diagnostics, Troubleshooting measure Expert, Diagnostics, Troubleshooting mea- sure Description Display of the troubleshooting measures for current diagnostic message Last diagnostics 1 Navigation Diagnostics, Last diagnostics 1 Expert, Diagnostics, Last diagnostics 1 Description Display of the la st pending diagnostic mes- sage with the highest priority Display Symbol for event behavior and diagnostic event Additional in- formation Example of display format: F261 electronics modules Operating time Navigation Diagnostics, Operating time Expert, Diagnostics, Operating time Description Display of time th at the device is in opera- tion up to the present time Display Hours (h)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 43 / 85 "Diagnostic list" submenu In this submenu, up to 3 currently pending diagnostic mes- sages are displayed. If more than 3 messages are pending, those with the highest priority are displayed. Information on the diagnostic mea- sures of the device and all diagnostic messages at a glance (see "Troubleshooting" on page 56). "Event log" submenu Number of current diagnostic messages Navigation Diagnostics, Diagnostic list, Number of cur- rent diagnostic messages Expert, Diagnostics, Diagnostic list, Number of current diagnostic messages Description Display of number of diagnostic messages currently in the device Current diagnostics Navigation Diagnostics, Diagnostic list, Current diag- nostics Expert, Diagnostics, Diagnostic list, Current diagnostics Description Display of the currently pending diagnostic messages with the highest to third-highest priority Display Symbol for event behavior and diagnostic event Additional information Example of display format: F261 electronics modules Current diagnostics channel Navigation Diagnostics, Diagnostic list, Current diag- nostics, Channel Expert, Diagnostics, Diagnostic list, Current diagnostics, Channel Description Display of the sensor input to which the diag- nostic message refers Display – Sensor 1 –S e n s o r 2 – - - - - - - Last diagnostics n n = number of diagnostic messages (n = 1 ... 5) Navigation Diagnostics, Diagnos tic list, Last diagnostics n Expert, Diagnostics, Diagnostic list, Last di- agnostics n Description Display of the diagnostic messages occurring in the past. The last 5 messages are listed chronologically. Display Symbol for event behavior and diagnostic event Additional information Example of display format: F261 electronics modules Last diagnostics channel Navigation Diagnostics, Diagnostic list, Last diagnos- tics channel Expert, Diagnostics, Diagnostic list, Last di- agnostics channel Description Display of the possible sensor input which the diagnostic message refers to Display – Sensor 1 – Sensor 2 – - - - - - -

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 44 / 85 "Device information" submenu "Measured values" submenu Measuring point designation Navigation Setup, Measuring point designation Diagnostics, Device information, Measuring point designation Expert, Diagnostics, Device information, Measuring point designation Description Entry of a clear designation for the measuring point in order to be able to quickly identify it within the system. It is indicated in the header of the plug-in display (head transmitter). Input Max. 32 characters such as letters, numer- als, or special characters (e.g. @, %, /) Default set- tings -none- Serial number Navigation Diagnostics, Device information, Serial number Expert, Diagnostics, Device information, Serial number Description Display of the serial number of the device. It is also found on the rating plate. Display Max. 11-digit string of letters and numerals Firmware version Navigation Diagnostics, Device information, Firmware version Expert, Diagnostics, Device information, Firmware version Description Display of the installed device firmware ver- sion Firmware changes of the back two positions zz have no influence on the behavior of the device. Display Max. 6-digit string in xx.yy.zz format Device name Navigation Diagnostics, De vice information, Device name Expert, Diagnostics, Device information, Device name Description Display of the device name. It is also found on the rating plate. Configuration counter Navigation Diagnostics, Devi ce information, Configura- tion counter Expert, Diagnostics, Device information, Configuration counter Description Display of the counter state for changes of device parameters Static parameters whose value changes during optimization or configuration cause the incrementing of this parameter by 1. This supports the parameter version manage- ment. The counter can display a higher value if sev- eral parameters are changed, e.g., by load- ing parameters of M&M Container, etc. in the device. The counter can never be reset and even after a device reset is not reset to a de- fault value. If the counter overruns (16 bit), it begins again at 1. Value sensor n n = place-holder for number of sensor inputs (1 and 2) Navigation Diagnostics, Measured value, Value sensor n Expert, Diagnostics, Measured values, Value sensor n Description Display of the cu rrent measured value at the respective sensor input Device temperature Navigation Diagnostics, Measured values, Device tem- perature Expert, Diagnostics, Measured values, De- vice temperature Description Display of the current electronic tempera- ture

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 45 / 85 "Min./Max. values" submenu Sensor n min. value n = place-holder for number of sensor inputs (1 and 2) Navigation Diagnostics, Measured values, Min./Max. values, Sensor n min. value Expert, Diagnostics, Measured values, Min./Max. values, Sensor n min. value Description Display of minimum temperature measured in the past at sensor input 1 or 2 (drag pointer). Sensor n max. value n = place-holder for number of sensor inputs (1 and 2) Navigation Diagnostics, Measured values, Min./Max. values, Sensor n max. value Expert, Diagnostics, Measured values, Min./Max. values, Sensor n max. value Description Display of maximum temperature measured in the past at sensor input 1 or 2 (drag pointer). Reset min./max. values sensor Navigation Diagnostics, Measured values, Min./Max. values, Reset sensor Min./Max. values Diagnostics, Measured values, Min./Max. values, Reset sensor min./max. values Description Resets the drag pointer of the minimum and maximum measured temperature at the sensor inputs Selection – No –Y e s Default set- tings No Device temperature min. Navigation Diagnostics, Measured values, Min./Max. values, Device temperature min. Expert, Diagnostics, Measured values, Min./Max. values, Device temperature min. Description Display of minimum electronics tempera- ture measured in the past (drag pointer). Device temperature max. Navigation Diagnostics, Measured values, Min./Max. values, Device temperature max. Expert, Diagnostics, Measured values, Min./ Max. values, Device temperature max. Description Display of maxi mum electronics temperature measured in the past (drag pointer). Reset device temperature max./min. Navigation Diagnostics, Measured values, Min./Max values, Reset device temp. max./min. Expert, Diagnostics, Measured values, Min./ Max values, Reset device temp. max./min. Description Resets the drag pointer of the minimum and maximum measured electronic temperature Selection – No –Y e s Default set- tings No

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 46 / 85 “Simulation” submenu 8.5.3 "Expert" menu The parameter groups for the expert setup contain all pa- rameters of the operating menu "Setup" and "Diagnosis", as well as additional parameters that are exclusively reserved for the experts. This section contains the descriptions of the additional pa- rameters. All basic parameter settings for commissioning and diagnostic evaluation of the device are described in ""Setup" menu" on page 31 and ""Diagnostics" menu" on page 42. "System" submenu Simulation current output Navigation Diagnostics, Simulation, Simulation current output Expert, Diagnostics, Simulation, Simulation current output Description Switching on and of f the simulation of the cur- rent output. If the simulation is active, a diag- nostic message of the function control (C) category is displayed in the change to the measured value display. Display Measured value display ↔ C491 (Simulation current output) Selection – Off –O n Default set- tings Off Additional information The desired simulation value is specified in the Current output value parameter. Current output value Navigation Diagnostics, Simulation, Current output value Expert, Diagnostics, Simulation, Current out- put value Additional information The Simulation current output parameter has to be set with the On selection. Description Setting a current value for the simulation. In this way, the correct adjustment of the current output and the correct function of down- stream evaluation devices can be checked. Default set- tings 3.59 mA Attenuation Navigation Expert, System, Attenuation Description Setting the time constants for attenuation of the power output. Input 0 ... 120 s Default set- tings 0.00 s Additional information Measured value fluctuations take effect at the power output with an exponential delay whose time constant is specified through these parameters. In the case of a low time constant, the power output follows the mea- sured value quickly. If there is a high time constant, however, following is delayed. Alarm delay Navigation Expert, System, Alarm delay Description Setting the delay time by which a diagnostics signal is suppressed before it is issued. Input 0 ... 5 s Default set- tings 2 s Mains frequency filter Navigation Expert, System, Mains frequency filter Description Selection of the mains filter for A/D conver- sion Selection – 50 Hz –6 0 H z Default set- tings 50 Hz Device temperature alarm (on page 34) Navigation Expert, System, Device temperature alarm

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 47 / 85 "Display" submenu For a detailed description, see on page 38. "Administration" submenu For a detailed description, see on page 41. "Sensors" submenu "Sensor 1/2" submenu "Sensor trim" submenu Adjustment of sensor error (sensor trim) The sensor trim is for adapting the actual sensor signal to the linearization of the selected sensor type saved in the transmitter. In contrast to sensor transmitter matching, the sensor trim is only performed at the start and end value, and so does not achieve the same high precision. The sensor trim is not for adapting the measuring range, rather for adapting the sensor signal to the linearization saved in the transmitter. Procedure 1. Set Sensor trim parameter to the customer-specific se- lection. 2. Bring the sensor connected to the transmitter to a known and stable temperature with water/oil bath or ov- en. We recommend a temperature near the set measur- ing range start. 3. Enter reference temperature for the value at the mea- suring range start at the Sensor trim initial value param- eter. The transmitter calculates internally a correction factor from the difference between the specified refer- ence temperature and the actual measured tempera- ture at the input. This is now used for the linearization of the input signal. 4. Bring the sensor connected to the transmitter to a known and stable temperature close to the set measur- ing area end with water/oil bath or oven. 5. Enter reference temperature for the value at the mea- suring range end at the Sensor trim initial value param- eter. n = place-holder for number of sensor inputs (1 and 2) Lower sensor limit n Navigation Expert, Sensors, Sensor n, Lower sensor limit n Description Display of minimum physical measuring range final value Upper sensor limit n Navigation Expert, Sensors, Sensor n, Upper sensor limit n Description Display of maximum physical measuring range final value Serial number sensor Navigation Expert, Sensors, Sensor n, Serial number, Sensor Description Entry of serial number of the connected sen- sor Input Number and text entry up to 12 positions Default set- tings " " (no text) Sensor trim Navigation Expert, Sensors, Sensor n, Sensor trim, Sen- sor trim Description Selection of which linearization method is used for the connected sensor. The original linearization can be reestab- lished by resetting this parameter to the De- fault setting selection. Selection – Default settings – Customer-specific Default set- tings Default settings

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 48 / 85 "Linearization" submenu Procedure for setting a linearization while using the Callen- der-Van Dusen coefficients from a calibration certificate Procedure 1. Set current output assignment (PV) = sensor 1 (mea- sured value). 2. Select unit (°C). 3. Select sensor type (linearization type) "RTD platinum (Callendar-Van Dusen)". 4. Select connection method e.g. 3-wire. 5. Set lower and upper sensor limits. 6. Enter the 4 coefficients A, B, C and R0. 7. If a special linearization is also used for the second sen- sor, repeat steps 1 to 6. Sensor trim initial value Navigation Expert, Sensors, Sensor n, Sensor trim, Sen- sor trim initial value Require- ments The Customer-specific selection is activated in the Sensor trim parameter (on page 47). Description The lower point fo r linear characteristic curve adjustment (offset and gradient are influ- enced by this) Input Depending on the selected sensor type and the current output assignment (PV) Default set- tings -200 °C Sensor trim final value Navigation Expert, Sensors, Sensor n, Sensor trim, Sensor trim final value Require- ments The Customer-specific selection is activated in the Sensor trim parameter. Description The upper point for linear characteristic curve adjustment (offset and gradient are in- fluenced by this) Input Depending on the selected sensor type and the current output assignment (PV) Default set- tings 850 °C Sensor trim min. range Navigation Expert, Sensors, Sensor n, Sensor trim, Sen- sor trim min. range Require- ments The Customer-specific selection is activated in the Sensor trim parameter. Description Display of minimum possible range between sensor trim start and final value Lower sensor limit n Navigation Expert, Sensors, Sensor n, Linearization, Lower sensor limit n Require- ments The selection RTD platinum, RTD poly nickel or RTD polynomial copper is activated in the Sensor type parameter Description Setting of lower calculation limit for the spe- cial sensor linearization Input Depends on the selected sensor type Default set- tings -200 °C Upper sensor limit n Navigation Expert, Sensors, Sensor n, Linearization, Upper sensor limit n Require- ments The selection RTD platinum, RTD poly nickel or RTD polynomial copper is activated in the Sensor type parameter Description Setting of upper calculation limit for the spe- cial sensor linearization Input Depends on the selected sensor type Default set- tings 850 °C

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 49 / 85 "Diagnostics settings" submenu Call.-V. Dusen coeff. R0 Navigation Expert, Sensors, Sensor n, Linearization, Call.-V. Dusen coeff. R0 Require- ments The selection RTD platinum (Callendar-Van Dusen) is activated in the Sensor type pa- rameter Description Setting the R0 value for the linearization with the Callendar-Van Dusen polynomial Default set- tings 100.000 ohm Call.-V. Dusen coeff. A, B, and C Navigation Expert, Sensors, Sensor n, Linearization, Call.-V. Dusen coeff. A, B, C Require- ments The selection RTD platinum (Callendar-Van Dusen) is activated in the Sensor type pa- rameter Description Setting the coeffi cients for the sensor linear- ization according to the Callendar-Van Dusen method Default set- tings – A: 3,910000e-003 Polynomial coeff. R0 Navigation Expert, Sensors, Sensor n, Linearization, Polynomial coeff. R0 Require- ments The selection RTD poly nickel or RTD poly- nomial copper is activated in the Sensor type parameter Description Setting the R0 va lue for the linearization of nickel/copper sensors Default set- tings 100.00 ohm Polynomial coeff. A, B Navigation Expert, Sensors, Sensor n, Linearization, Polynomial coeff. A, B Require- ments The selection RTD poly nickel or RTD poly- nomial copper is activated in the Sensor type parameter Description Setting the coefficients for the sensor linear- ization of copper/nickel resistance ther- mometer Default set- tings – Polynomial coeff. A = 5.49630e-003 – Polynomial coeff. B = 6.75560e-006 Calibration counter start Navigation Expert, Sensors, Diagnostic settings, Cali- bration counter start Description Selection in order to control the calibration counter – The duration (in days) of the countdown is specified with the Calibration counter start value parameter. – The status signal for reaching the limit value is specified with the Calibration counter alarm category parameter. Selection – Off: stopping the calibration counter – On: starting the calibration counter – Reset + starting: resetting to the set start value and starting the calibration count- er Default set- tings Off Calibration counter alarm category Navigation Expert, Sensors, Diagnostic settings, Cali- bration counter alarm category Description Selection of the category (status signal) of how the device reacts at elapse of the set calibration countdown. Selection – Maintenance required (M) – Failure (F) Default set- tings Maintenance required (M) Calibration counter start value Navigation Expert, Sensors, Diagnostic settings, Cali- bration counter start value Description Setting the star t value for the calibration counter Input 0 ... 365 d (days) Default set- tings 365

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 50 / 85 "Output" submenu "Communication" submenu "HART configuration" submenu Countdown calibration Navigation Expert, Sensors, Diagnostic settings, Count- down calibration Description Display of remainin g time until the next cali- bration The countdown of the calibration counter only runs when the device is active. Example: If the calibration counter was set to 365 days on 1.1.2011 and the device is disconnected for 100 days, the alarm for calibration appears on 10 April 2012. Measuring mode Navigation Expert, Output, Measuring mode Description Enables the inve rsion of the output signal Additional information –S t a n d a r d The output current rises when the tem- perature increases –I n v e r t e d The output current lowers when the tem- perature increases Selection – Standard –I n v e r t e d Default set- tings Standard Measuring point designation (on page 31) Navigation Diagnostics, Devi ce information, Measuring point designation Expert, Communication, HART configuration, Measuring point designation HART short description Navigation Expert, Communication, HART configura- tion, HART short description Description Definition of a short description for the mea- suring point Input Up to 8 alphanumer ic characters (letters, numbers, special characters) Default set- tings SHORTTAG HART address Navigation Expert, Commun ication, HART configura- tion, HART address Description Definition of HART® address of the device Input 0 ... 63 Default set- tings Additional in- formation Only for the address "0" is a measured value transfer possible via the current value. With all other addresses, the current is fixed to 4.0 mA (multi-drop mode). Preamble number Navigation Expert, Communication, HART configura- tion, Preamble number Description Specification of the preamble number in the HART® telegram Input 2 ... 20 Default set- tings Configuration changed Navigation Expert, Commun ication, HART configura- tion, Configuration changed Description Display of whethe r the configuration of the device was changed by a master (primary or secondary)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 51 / 85 "HART Info" submenu Configuration changed, reset flag Navigation Expert, Communication, HART configura- tion, Configuration changed, Reset flag Description Resetting the information Configuration changed by a master (primary or second- ary) Device type Navigation Expert, Communic ation, HART info, Device type Description Display of device type with which the device is registered at the HART® Communication Foundation. The device type is specified by the manufacturer. It is required in order to as- sign the matching device description file (DD) to the device. Display 2-digit hexadecimal number Default set- tings 0xB005 Device revision Navigation Expert, Communication, HART info, Device revision Description Display of device revision with which the de- vice is registered at the HART® Communi- cation Foundation. It is required in order to assign the matching device description file (DD) to the device. Default set- tings HART revision Navigation Expert, Communic ation, HART info, HART revision Description Display of the HART® revision of the device HART description Navigation Expert, Communication, HART info, HART

description

Description Definition of a description for the measuring point Input Up to 32 alphanumeric characters (letters, numbers, special characters) Default set- tings The respective device name

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 52 / 85 "HART output" submenu HART message Navigation Expert, Communic ation, HART info, HART message Description Definition of a HART® message that is sent on request from the master via the HART® protocol. Input Up to 32 alphanumeric characters (letters, numbers, special characters) Default set- tings The respective device name Hardware revision Navigation Expert, Diagnostics, Device information, Hardware revision Expert, Communication, HART info, Hard- ware revision Description Display of the hardware revision of the device SWRev Navigation Expert, Communication, HART info, SWRev Description Display of the software revision of the device HART date Navigation Expert, Communic ation, HART info, HART date Description Definition of date information for individual use Input Date in format year-month-day (YYYY-MM- DD) Default set- tings 2010-01-01 Current output assignment (PV) Navigation Expert, Communic ation, HART output, As- signment, Current output (PV) Description Assignment of a measured variable for the first HART® value (PV) Selection – Sensor 1 (measured value) – Sensor 2 (measured value) – Device temperature – Mean value of the two measured values: 0.5 x (SV1+SV2) – Difference between Sensor 1 and Sen- sor 2: SV1-SV2 – Sensor 1 (backup Sensor 2): If Sensor 1 fails, the value of Sensor 2 automatically becomes the first HART® value (PV): Sensor 1 (OR Sensor 2) – Sensor switchover: If the set threshold value T is exceeded for Sensor 1, the measured value of Sensor 2 becomes the first HART® value (PV). Switching back to Sensor 1 is when the measured value of Sensor 1 is at least 2 K below T: Sensor 1 (Sensor 2, if Sensor 1 > T) – Mean value: 0.5 x (SV1+SV2) with backup (measured value of Sensor 1 or Sensor 2 in the case of sensor errors of the other sensor) The threshold value can be set with the sen- sor switchover limit value parameter. 2 sen- sors can be combined through the tempera- ture-dependent switchover, which have their advantages in different temperature ranges. Default set- tings Sensor 1 PV Navigation Expert, Communication, HART output, PV Description Display of the first HART value Assignment SV Navigation Expert, Communic ation, HART output, As- signment SV Description Assignment of a measured variable for the second HART® value (PV) Selection See Current output assignment (PV) param- eter (on page 52) Default set- tings Device temperature

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 53 / 85 "Burst configuration" submenu Up to 3 burst modes can be configured. SV Navigation Expert, Commun ication, HART output, SV Description Display of the second HART® value Assignment TV Navigation Expert, Communication, HART output, As- signment TV Description Assignment of a measured variable for the third HART® value (TV) Selection See Current output assignment (PV) pa- rameter (on page 52) Default set- tings Sensor 1 TV Navigation Expert, Commun ication, HART output, TV Description Display of the third HART® value Assignment QV Navigation Expert, Communic ation, HART output, As- signment QV Description Assignment of a measured variable for the fourth HART® value (QV) Selection See Current output assignment (PV) pa- rameter (on page 52) Default set- tings Sensor 1 QV Navigation Expert, Communication, HART output, QV Description Display of the fourth HART® value Burst mode Navigation Expert, Communication, Burst configuration, Burst mode Description Activation of the HART® burst mode for the burst message X. Message 1 has the highest priority, message 2 the second highest, etc. Selection – Off The device only sends data to the bus on request of a HART® master. –O n The device regularly sends data to the bus without being requested. Default set- tings Off Burst command Navigation Expert, Communicat ion, Burst configuration, Burst command Require- ments This parameter can only be selected if the Burst mode selection is activated. Description Selection of th e command whose response is sent in activated burst mode to the HART® master. Selection – Command 1 Reading out the primary variable – Command 2 Reading out the current and the main measured value in percent – Command 3 Reading out the dynamic HART® vari- ables and the current – Command 9 Reading out the dynamic HART® vari- ables including the corresponding status – Command 33 Reading out the dynamic HART® vari- ables including the corresponding unit Default set- tings Command 2 Additional information Command 1, 2, 3, and 9 are universal HART® commands. Command 33 is a "Common Practice" HART® command. Details on this are given in the HART® spec- ifications. Burst mode

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 54 / 85 Burst variable n n = number of burst variables 0 ... 3 Navigation Expert, Communicat ion, Burst configuration, Burst variable n Require- ments This parameter can only be selected if the Burst mode selection is activated. Description Assignment of a me asured variable for slot 0 to 3 This assignment is only relevant for burst mode. The measured variables are assigned to the 4 HART® variables (PV, SV, TV, QV) in ""HART output" submenu" on page 52. Selection – Sensor 1 (measured value) – Sensor 2 (measured value) – Device temperature – Mean value of the two measured values: 0.5 x (SV1+SV2) – Difference between Sensor 1 and Sen- sor 2: SV1-SV2 – Sensor 1 (backup Sensor 2): If Sensor 1 fails, the value of Sensor 2 automatically becomes the first HART® value (PV): Sensor 1 (OR Sensor 2) – Sensor switchover: If the set threshold value T is exceeded for Sensor 1, the measured value of Sensor 2 becomes the first HART® value (PV). Switching back to Sensor 1 is done when the mea- sured value of Sensor 1 is at least 2 K be- low T: Sensor 1 (Sensor 2, if Sensor 1 > The threshold value can be set with the sen- sor switchover limit value parameter. 2 sen- sors can be combined through the tempera- ture-dependent switchover, which have their advantages in different temperature ranges. Mean value: 0.5 x (SV1+SV2) with backup (measured value of Sensor 1 or Sensor 2 in the case of sensor errors of the other sensor) Default set- tings – Burst variable 0: Sensor 1 – Burst variable 1: Device temperature – Burst variable 2: Sensor 1 – Burst variable 3: Sensor 1 Burst trigger mode Navigation Expert, Communicat ion, Burst configuration, Burst trigger mode Require- ments This parameter can only be selected if the Burst mode selection is activated. Description Selection of the ev ent that triggers the burst message X – Continuously: The message is triggered time-controlled: at least at the interval of the time span specified in Burst min time period X. – Interval: The message is triggered when the specified measured value has changed by the value in the Burst trigger value X parameter. – Increasing: The message is triggered when the specified measured value ex- ceeds the value in the Burst trigger value X parameter. – Falling: The message is triggered when the specified measured value falls below the value in the Burst trigger value X pa- rameter. – If changed: The message is triggered when any desired measured value has changed the message. Selection – Continuous –I n t e r v a l –I n c r e a s i n g – Falling –I f c h a n g e d Default set- tings Continuous Burst trigger value Navigation Expert, Communicat ion, Burst configuration, Burst trigger value Require- ments This parameter can only be selected if the Burst mode selection is activated. Description Entry of the value that determines the time of the burst message 1 together with the trigger mode. This value determines the time of the message. Default set- tings -1.0e+20

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 55 / 85 "Diagnostics" submenu "Diagnostic list" submenu For a detailed description, see on page 55. "Event log" submenu For a detailed description, see on page 43. "Device information" submenu Burst min. time period Navigation Expert, Communicat ion, Burst configuration, Burst min. time period Require- ments This parameter can only be selected if the Burst mode selection is activated. Description Entry of the minimum time period between two burst commands of burst message X. Entry is made in the unit 1/32 milliseconds. Input 500 ... [entered value of the maximum time period in the Burst max. time period parame- ter] in whole numbers Default set- tings 1000 Burst max. time period Navigation Expert, Communication, Burst configuration, Burst max time period Require- ments This parameter can only be selected if the Burst mode selection is activated. Description Entry of the maximum time period between two burst commands of burst message X. Entry is made in the unit 1/32 milliseconds. Input [Entered value of the minimum time period in the Burst min. time period parameter] ... 3600000 in whole numbers Default set- tings 2000 ENP version Navigation Expert, Diagnostics, Device information, ENP version Description Display of the version of the electronic rating plate (Electronic Name Plate) Display 6-digit number in xx.yy.zz format Device revision Navigation Expert, Diagnosis, Device info, Device revi- sion Expert, Communication, HART info, Device revision Description Display of device revision with which the de- vice is registered at the HART® Communi- cation Foundation. It is required in order to assign the matching device description file (DD) to the device. Display 2-digit hexadecimal number Manufacturer ID Navigation Expert, Diagnostics, Device information, Manufacturer ID Description Display of manufacturer ID with which the device is registered at the HART® Commu- nication Foundation. Display 2-digit hexadecimal number Default set- tings 176 Manufacturer Navigation Expert, Diagnosti cs, Device information, Manufacturer Description Display of the manufacturer's name Hardware revision Navigation Expert, Diagnostics, Device information, Hardware revision Expert, Communication, HART info, Hard- ware revision Description Display of the ha rdware revision of the de- vice

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 56 / 85 "Measured values" submenu "Min./Max. values" submenu For a detailed description, see on page 45. “Simulation” submenu For a detailed description, see on page 46.

9 Maintenance

The device requires no special service or maintenance work.

10 Troubleshooting

10.1 Diagnostics results

Diagnostic event and event text The malfunction can be identified using the diagnostic event. The event text helps by supplying information on the malfunction. If multiple diagnostic events occur simultaneously, only the diagnostic message with the highest priority will be dis- played. Further pending diagnostic messages are displayed in the "Diagnostic list" submenu (see on page 55). Past diagnostic messages that are no longer pending are displayed in the "Event logbook" submenu (on page 43). Sensor n raw value n = place-holder for number of sensor inputs (1 and 2) Navigation Expert, Diagnostics, Measured values, Sen- sor n raw value Description Display of the non-linearized mV/ohm value at the respective sensor input Table 1 Status signals Icon Event cate- gory Meaning FO p e r a t i o n a l error An operational error has oc- curred. The measured value is no longer valid. C Service mode The device is in service mode, for example, during a simulation. S Does not con- form to the specification The device is being operated outside of its technical specifica- tions, for example, during start- up or cleaning. M Maintenance required Maintenance is required. The measured value is still valid. Table 2 Diagnostic behavior Alarm The measurement is interrupted. The signal outputs take on the defined alarm status. A di- agnostic message is generated (status signal F). Warning The device continues measuring. A diagnos- tic message is generated (status signals M, C, or S). Diagnostic event Status sig- nal Event number Event text ↓ ↓ ↓ Example F 042 Sensor corrosion 3-digit number

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10.2 Overview of diagnostic events

Every diagnostic event is assigned to a certain event behav- ior by default. The users can change this assignment for cer- tain diagnostic events. The sensor input relevant for these diagnostic events can be identified with the Current diagnos- tics channel parameter (see on page 43). Diagnostic number Short text Remedy measure Default sta- tus signal Default diag- nostic behav- ior Can be changed into Diagnostic for sensor 001 Device fault 1. Restart device 2. Check electronic conn ection of sensor 1. 3. Check/Replace sensor 1. 4. Replace electronics. F Alarm 006 Redundancy active 1. Check electronic wiring. 2. Replace sensor. 3. Check configuration of the connection meth- od. M Warning 041 Sensor failure 1. Check electronic wiring. 2. Replace sensor. 3. Check configuration of the connection meth- od. F Alarm 042 Sensor corrosion 1. Check electronic wiring of sensor. 2. Replace sensor. MW a r n i n g 1 F 043 Short circuit 1. Check electronic wiring. 2. Replace sensor. F Alarm 044 Sensor drift 1. Check sensors. 2. Check process temperatures. MW a r n i n g 1 F, S 045 Operating range 1. Chec k ambient temperature. 2. Check external reference measuring point. F Alarm 062 Sensor connection 1. Ch eck electronic wiring. 2. Replace sensor. 3. Check configuration of the connection meth- od. 4. Contact service. FA l a r m

101 Drop below operating

  1. Check process temperatures. 2. Check sensor. 3. Check sensor type. SW a r n i n g F

102 Operating range ex-

  1. Check process temperatures. 2. Check sensor. 3. Check sensor type. SW a r n i n g F

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 58 / 85 104 Backup active 1. Check electronic wiring of Sensor 1. 2. Replace Sensor 1. 3. Check configuration of the connection meth- od. MW a r n i n g 105 Calibration interval 1. Carry out ca libration and reset calibration in- terval. 2. Switch off calibration counter. MW a r n i n g 1 F 106 Backup not available 1. Check electronic wiring of Sensor 2. 2. Replace Sensor 2. 3. Check configuration of the connection meth- od. M Warning Diagnostics for electronics 201 Device fault Replace electronics. F Alarm

221 Reference measure-

Replace electronics. F Alarm 241 Software 1. Restart device. 2. Execute device reset. 3. Replace device. FA l a r m

242 Software incompati-

Contact service. F Alarm 261 Electronics module Replace electronics. F Alarm

262 Module connection

  1. Check seat of the display module on the head transmitter. 2. Test display module with other, suitable head transmitter. 3. Display module defective? Replace module. MW a r n i n g 282 Data storage Replace device. F Alarm 283 Storage contents Replace electronics. F Alarm 301 Supply voltage 1. Increase supply voltage. 2. Check connection wires for corrosion. F Alarm Diagnostics for configuration 401 Factory reset Please wait until the reset process ends. C Warning 402 Initialization Please wait until the start process is completed. C Warning 410 Data transmission Check HART® communication. F Alarm 411 Download active Please wait until th e up-/download is complete. F, M or C 2 - 431 Factory calibration 3 Replace electronics. F Alarm 435 Linearization 1. Check the configuration of the sensor param- eters. 2. Check the configuration of the special sensor linearization. 3. Contact service. 4. Replace electronics. FA l a r m Diagnostic number Short text Remedy measure Default sta- tus signal Default diag- nostic behav- ior Can be changed into

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11 Disposal

The device contains electronic components. It must there- fore be disposed of as electronic waste. Observe local dis- posal regulations. 437 Configuration 1. Check the configuration of the sensor param- eters. 2. Check the configuration of the special sensor linearization. 3. Check the configuration of the transmitter set- tings. 4. Contact service. FA l a r m 438 Data record Perform new sa fe parameterization. F Alarm 451 Data processing Please wait until the data processing is complete. C Warning 483 Simulation input Switch off simulation. C Warning

485 Simulation mea-

491 Simulation current

501 PC connection Remove programming connector. C Warning

525 HART® communica-

  1. Check commun ication path. 2. Check HART® master. 3. Is energy supply sufficient? 4. Check HART® communication settings. 5. Contact service. F Alarm Diagnostics for process 803 Loop current 1. Check cabling. 2. Replace electronics. FA l a r m 842 Process limit value Check sca ling of analog output. M Warning 1 F, S

925 Device temperature Maintain ambien t temperature according to speci-

fication. SW a r n i n g F

1 Diagnostic behavior is changeable: "Alarm" or "Warning"

2 The status signal depends on the communication system used and cannot be changed. 3 With this diagnostic event, the device always emits the alarm state "low" (output current ≤3.6 mA). Diagnostic number Short text Remedy measure Default sta- tus signal Default diag- nostic behav- ior Can be changed into

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12 Safety function

12.1 Definition of the safety function

Permitted safety functions of the device are:

  • "Limit value monitoring" on page 61
  • "Safe measurement" on page 62

12.1.1 Safety-related output signal

The safety-related signal of the device is the analog output signal 4 mA … 20 mA according to NAMUR NE43. All safety measures are exclusively related to this signal. The safety-related output signal is conveyed to a down- stream logic unit, e.g., a programmable logic controller or a limit switch, and is monitored there. – Exceeding and/or falling belo w a specified limit value – Occurrence of a malfunction, e.g., residual current (≤3.6 mA, ≥21 mA, interruption or short circuit of the signal line). The current output cannot be parameterized to an inverse display in SIL mode.

12.1.2 Dangerous undetected error in this analysis

An incorrect output signal is viewed as a "dangerous unde- tected error", which deviates from the value specified in this document, while the output signal remains in the range of 4m A…2 0m A .

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12.1.3 Limit value monitoring

The safety function is for monitoring the measured value. In SIL mode, in the case of measurement outside a user-de- fined measuring range (Xmin …X max), a residual current is emitted depending on the setting of the "Area infringement category" parameter (F, S, M). Example in the illustration: I4m A = -100 °C, I20 mA = +400 °C Figure 9 Limit value monitoring

1 Out of range category curve = Status signal failure (F)

2 Out of range category curve = Status signal failure out-

side the specification (S) or maintenance required (M) -100°C-200°C-201°C 400°C 850°C 851°C Good=0 x842x842 F 102F 101 X = F F 102F 101 X = F 4.0 mA 20.0 mA -106.25 °C 415.625 °C 20.5 mA 4.0 mA 20.0 mA 3.8 mA /c74[°C] I [mA] /c74[°C] I [mA] Good=0 x842x842 F 102F101 X = M, S F 102F101 X = M, S

1 Out Of Range Category

=Failure (F)

2 Out Of Range Category= Out of specification (S) or maintenance required (M)

„Measured value“ Current output SIL „Measured value“ „Error current“ Sensor-limit or recommended limit (TC) Sensor-limit or recommended limit (TC) (3.58 mA) „Error current“ (3.58 mA)„Error current“(3.58 mA)„Error current“

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12.1.4 Safe measurement

The safety function of the transmitter consists in the emis- sion of a current at the output that is proportional to the cur- rent, resistance, or temperature value. In order to be able to use the safety functions, the device must be safely parame- terized using an operating tool and changed into SIL mode ("Increased parameterization safety mode, safe parameter- ization (SiPA)" on page 73 or "Expert mode, SIL mode acti- vation (SiMA)" on page 75). Ensure that only the measured value of a sensor or the value of a function (mean value/difference of both measured val- ues) can always be emitted at the current output. A limit value monitoring can be set separately for both inputs.

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12.2 Restrictions for use in safety-related operation

  • Use the measuring system for the specified purpose and in consideration of the medium's properties and ambient conditions. Observe the information on critical process situations and installation behavior. The appli- cation-specific limits are to be maintained.
  • Information on the safety-related signal (see on page 60)
  • The specifications in this document must not be exceed- ed (see "Dokumentation" ).
  • The following restriction also applies for safety-related use: The tolerance range (safety measurement deviation) is sensor specific and is defined by default according to FMEDA (Failure Modes, Effects and Diagnostic Analy- sis). All the influencing factors described in the associ- ated documentation are already included: non-linearity, non-repeatability, hysteresis, zero point deviation, tem- perature drift, EMC influence. The safety technology errors are divided into different categories according to IEC / EN 61508 (see following table). The table shows the effects on the safety-related output signal and the measuring insecurity. Safety technology error Explanation Effect on the safety-related output signal (posi- tion, see following illustration) No device error Safe: no error occurred 1: Is within the specification λSD Safe detected: safe and detected error 3: Device goes to failure signal ("Device behavior in operation and in the event of a malfunction" on page 71) λSU Safe undetected: safe but undetected error 2: Is within the specified tolerance range ("Safety measurement deviation" on page 65) λDD Dangerous detected: dangerous but de- tected error (diagnostics in the device) 3: Device goes to failure signal ("Device behavior in operation and in the event of a malfunction" on page 71) λDU Dangerous undetect ed: Dangerous and undetected error 4: Can be outside the specified tolerance range ("Safety measurement deviation" on page 65)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 64 / 85 I [mA] B C A t A High alarm ≥21 mA B Tolerance range ("Safety meas urement deviation" on page 65) CL o w a l a r m ≤3.6 mA

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12.3 Safety measur ement deviation

Standard Designation Min. mea- surement range Limited safety measurement area Measurement deviation (+A/D), -40 ... +70 °C (-40 ... +158 °F) Measure- ment devi- ation (D/A) Long-term drift in °C/ year IEC 60584-1 Type A (W5Re- W20Re) (30) 5 0K ( 9 0° F ) 0…+ 2 5 0 0° C (+32 … +4532 °F) Type B (PtRh30- PtRh6) (31)

50 K (90 °F) +500 … +1820 °C

(+932 … +3308 °F) Type E (NiCr- CuNi) (34)

50 K (90 °F) –150 … +1000 °C

(–238 … +1 832 °F) Type J (Fe- CuNi) (35)

50 K (90 °F) –150 … +1200 °C

(–238 … +2192 °F) Type K (NiCr-Ni) (36) (–238 … +2192 °F) Type N (NiCrSi- NiSi) (37)

50 K (90 °F) –150 … +1300 °C

(–238 … +2372 °F) 5.5 K (9.9 °F) 073 Type R (PtRh13-Pt) (38) (+122 … +3214 °F) Type S (PtRh10- Pt) (39) (+122 … +3214 °F) Type T (Cu- CuNi) (40) (–238 … +752 °F) IEC 60584-1; ASTM E988-96 Type C (W5Re- W26Re) (32) 5 0K ( 9 0° F ) 0…+ 2 0 0 0° C (+32 … +3632 °F) ASTM E988-96 Type D (W3Re- W25Re) (33) 5 0K ( 9 0° F ) 0…+ 2 0 0 0° C (+32 … +3632 °F) DIN 43710 Type L (Fe- CuNi) (41) (–238 … +1652 °F) Type U (Cu- CuNi) (42) (–238 … +1112 °F) 5.0 K (9 °F) 0.52 GOST R8.8585-20 01 Type L (NiCr- CuNi) (43) (–328 … +1472 °F) Voltage sensors (mV) 5 mV –20 … 100 mV 200 μV 27.39 μV/a 1 Entries for 25 °C: values must be calculated for other temperatures, if necessary.

2 With regard to the measurement range

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 66 / 85 No deviations because of the influence of EMC are consid- ered in these specifications. In the case of EMC malfunc- tions that are not negligible, add an additional deviation of 0.5 % of the measurement range to the above values. Table 2 Resistance temperature detectors Standard Designation Min. mea- surement range Limited safety measurement area Measurement deviation (+A/D), -40 °C ... +70 °C Measure- ment deviation (D/A), Long-term drift in °C/ year or Ω/ year IEC 60751:2008 Pt 100 (1) 10 K (18 °F) –200 … +600 C (–328 … +1112 °F) Pt 200 (2) 10 K (18 °F) –200 … +600 C (–328 … +1112 °F) Pt 500 (3) 10 K (18 °F) –200 … +500 °C (–328 … +932 °F) Pt 1000 (4) 10 K (18 °F) –200 … +250 °C (–328 … +482 °F) 0.6 K (1.1°F) 0.19 JIS C1604:1984 Pt 100 (5) 10 K (18 °F) –200 … +510 °C (–328 … +950 °F) DIN 43760 IPTS-68 Ni 100 (6) 10 K (18 °F) –60 … +250 °C (–76 … +482 °F) N i1 2 0 ( 7 ) 1 0K ( 1 8° F ) – 6 0…+ 2 5 0° C (–76 … +482 °F) GOST 6651-94 Pt 50 (8) 10 K (18 °F) –180 … +600 °C (–292 … +1112 °F) Pt 100 (9) 10 K (18 °F) –200 … +600 °C (–328 … +1112 °F) OIML R84: 2003, GOST 6651-2009 Cu 50 (10) 10 K (18 °F) –180 … +200 °C (–292 … +392 °F) Cu 100 (11) 10 K (18 °F) –180 … +200 °C (–292 … +392 °F) Ni 100 (12) 10 K (18 °F) –60 … +180 °C (–76 … +356 °F) Ni 120 (13) 10 K (18 °F) –60 … +180 °C (–76 … +356 °F) OIML R84: 2003, GOST 6651-94 Cu 50 (14) 10 K (18 °F) –50 … +200 °C (–58 … +392 °F) Resistance-type sensor Ω 1 Entries for 25 °C: values must be calculated for other temperatures, if necessary.

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 67 / 85 Validity of the specifications on safety measurement devia- tion: – Total permitted temperature range of the transmitter in SIL mode – Defined range of supply voltage – Limited safety measurement area of the sensor element – Precision includes all linearization and rounding errors – Observe the minimum measurement range of each sensor – Housing design of DIN rail and head transmitter – Specifications are 2 σ values, i.e., 95.4 % of all mea- sured values are within the specifications

12.4 Restrictions of the device specification in safe

– Comply with the ambient conditions according to IEC 61326-3-2 Appendix B. – Permitted voltage range in SIL mode: V cc = 12 V … 32 V – The power supply has to be short-circuit-proof, and be able to drive the upper residual current at any time. – Use a shielded cable for the DIN rail variant from a sen- sor cable length of 30 m (98.4 ft). The use of shielded sensor cables is generally recommended. – Permissible storage temperature: – Permissible ambient temperature –40 °C … +70 °C (–40 °F … +158 °F) – The use of the programming adapter MCR PAC-T-USB (Order No.: 2309000) is not possible for safe parame- terization (only with HART® communication). – Set correct mains frequency filter (50 Hz/60 Hz). – Maximum permitted sensor cable resistance for voltage measurement: 1000 Ω

12.5 Parameters and default settings for the in-

creased parameter safety and expert mode HART® communication The transmitter also carries out the communica- tion via HART® in SIL mode. This includes all the supported HART® features with additional de- vice information. The HART® communication is not part of the safety function. NOTE: Use shielded supply lines. Parameters Default settings Firmware ver- sion Display of the installed device firmware version Display of max. 6-digit string in xx.yy.zz format. Refer to the rating plate or the associated documentation for the currently valid firmware version. Serial number Display of the serial number of the device It is also found on the rating plate. Max. 11-digit string from letters and numbers. Enter release code Release of service parameters via oper- ating tool Default setting: 0 Reset device Reset the entire device configuration or part of it to a defined state. Default setting: Not active Hardware revi- sion Display of the hardware revision of the device Simulation cur- rent output Switching on and off the simulation of the current output If the simulation is active, a diagnostic message of the function control (C) cate- gory is displayed in the change to the measured value display. Default setting: Off (cannot be changed in the safe parameterization) Simulation cur- rent output value Setting a current value for the simulation In this way, the correct adjustment of the current output and the correct function of downstream evaluation devices can be checked. Default setting: 3.58 mA (cannot be changed in the safe parameterization) Voltage trim 20 mA Setting the correction value for the cur- rent output at measuring range end 20 mA Default setting: 20.000 mA (cannot be changed in the safe parameterization) Voltage trim 4m A Setting the correction value for the cur- rent output at measuring range start at 4m A Default setting: 4m A (cannot be changed in the safe parameterization)

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 68 / 85 Start of measur- ing range Assignment of a measured value to the current value 4 mA Default setting: 0 End of measur- ing range Assignment of a measured value to the current value 20 mA Default setting: 100 Residual cur- rent Setting the current value that the current output issues in the event of a malfunc- tion SIL mode: 3.58 mA (cannot be changed in the safe parameterization) Error handling Selection of th e failure signal level that the current output issues in the case of an error Default setting: Min. (cannot be changed in the safe parameterization) Out of range category Selection of the category (status signal), how the device reacts when leaving the set measuring range. Default setting: Maintenance require- ment (M) Minimum mea- surement range A measurement range is the difference between the temperature at 4 mA and at 20 mA. The minimum measurement range is the minimum permitted setting or sensible setting for a sensor type of this difference in the transmitter. HART® ad- dress Definition of HART® address of the de- vice Default setting: 0 (cannot be changed in the safe parameterization) Minimum mea- surement range A measurement range is the difference between the temperature at 4 mA and at 20 mA. The minimum measurement range is the minimum permitted setting or sensible setting for a sensor type of this difference in the transmitter. HART® ad- dress Definition of HART® address of the de- vice Default setting: 0 (cannot be changed in the safe parameterization) Device revision Display of device revision with which the device is registered at the HART® Com- munication Foundation. It is required in order to assign the matching device de- scription file (DD) to the device. Default setting: 2 (fixed value) Parameters Default settings Measuring mode Possibility of the inversion of the output signal. Selection: Standard (4 mA … 20 mA) or inverted (20 mA … 4 mA) Default setting: Standard (cannot be changed in the safe parameterization) Sensor type n Selection of the sensor type for the re- spective sensor input n: – Sensor type 1: Settings for sensor in- put 1 – Sensor type 2: Settings for sensor in- put 2 Default setting: – Sensor type 1: Pt 100 IEC751 – Sensor type 2: No sensor Upper sensor limit n Display of maximum physical measuring range final value Default setting: – For sensor type 1 = Pt 100 IEC751: –S e n s o r t y p e 2 = N o s e n s o r Lower sensor limit n Display of minimum physical measuring range final value Default setting: – For sensor type 1 = Pt 100 IEC751: –200 °C (–328 °F) –S e n s o r t y p e 2 = N o s e n s o r Sensor offset n Setting the zero point correction (offset) of the sensor measured value. The spec- ified value is added to the measured value. Default setting: 0.0 Connection method n Selection of connection method of the sensor Default setting: – Sensor 1 (connection method 1): 4-wire – Sensor 2 (connection method 2): 2-wire Cold junction n Selection of cold junction measurement for temperature compensation of thermo- couples (TC) Default setting: Internal measurement Parameters Default settings

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 69 / 85 Cold junction preset value n Determination of the fixed preset value for temperature compensation. The Pre- set value parameter has to be set for the Cold junction n selection. Default setting: 0.00 Call.-V. Dusen coeff. A, B, and C Setting the coefficients for the sensor lin- earization according to the Callendar- Van Dusen method Prerequisite: The selection RTD platinum (Callendar-Van Dusen) is activated in the Sensor type parameter. Default setting: – Coefficient A: 3.910000e-003 – Coefficient B: -5.780000e-007 – Coefficient C: -4.180000e-012 Call.-V. Dusen coeff. R0 Setting the R0 value for the linearization with the Callendar-Van Dusen polyno- mial Prerequisite: The selection RTD platinum (Callendar-Van Dusen) is activated in the Sensor type parameter. Default setting: 100 Ω Polynomial co- eff. A, B Setting the coefficients for the sensor lin- earization of copper/nickel resistance thermometer Prerequisite: The selection RTD poly nickel or RTD polynomial copper is acti- vated in the Sensor type parameter. Default setting: – Polynomial coeff. A = 5.49630e-003 – Polynomial coeff. B = 6.75560e-006 Polynomial co- eff. R0 Setting the R0 value for the linearization of nickel/copper sensors Prerequisite: The selection RTD poly nickel or RTD polynomial copper is acti- vated in the Sensor type parameter. Default setting: 100 Ω Sensor trim Selection of which linearization method is used for the connected sensor Default setting: FactoryTrim (cannot be changed in the safe parameterization) Unit Selection of the measuring unit for all measured values Default settings: °C Parameters Default settings Mains fre- quency filter Selection of the mains filter for A/D con- version Default setting: 50 Hz Drift/Difference monitoring Selection of whether the device reacts to the drift/difference limit value being ex- ceeded or fallen below. Can only be se- lected for 2-channel operation. Default setting: Off Drift/Difference alarm category Selection of the category (status signal) of how the device reacts between Sensor 1 and Sensor 2 in the case of drift/differ- ence detection. Requirement: The Drift/Difference monitoring parameter must be activated with the Overrange (Drift) or Under- range selection. Default setting: Maintenance require- ment (M) Drift/Difference limit value Setting of maximum permitted measured value deviation between Sensor 1 and Sensor 2 that leads to a drift/difference detection. Requirement: The Drift/Difference monitoring parameter must be activated with the Overrange (Drift) or Under- range selection. Default setting: 999.0 Drift/Difference alarm delay Alarm delay of drift detection monitoring Requirement: The Drift/Difference monitoring parameter must be activated with the Overrange (Drift) or Under- range selection. Default setting: 0s (cannot be changed in the safe parameterization) Device tem- perature alarm Selection of category (status signal) of how the device reacts in the case of ex- ceeding or falling below the electronic temperature of the transmitter < –40 °C Default setting: Error (F) (cannot be changed in the safe parameterization) Parameters Default settings

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 70 / 85 SIL HART mode Setting of HART® communication during SIL mode. The setting HART not active in SIL mode deactivates HART® com- munication in SIL mode (only 4 mA … 20 mA communication is ac- tive). Default settings: HART activated in SIL mode SIL startup mode Setting the repeat automatic startup of the device in SIL mode, e.g., after a "power cycle" Default settings: Activated Force safe state During startup or repeat test, the error de- tection and the safe state of the device are tested with this parameter. Requirement: The Operating state pa- rameter displays SIL mode active. Default setting: Off Current output assignment (PV) Assignment of a measured variable for the first HART® value (PV) Default setting: Sensor 1 Assignment SV Assignment of a measured variable for the second HART® value (PV) Default setting: Device temperature Assignment TV Assignment of a measured variable for the third HART® value (TV) Default setting: Sensor 1 Assignment QV Assignment of a measured variable for the fourth HART® value (QV) Default setting: Sensor 1 Attenuation Setting the time constants for attenuation of the power output Default setting: 0.00 s (cannot be changed in the safe parameterization) Burst mode Activation of the HART® burst mode for the burst message X. Message 1 has the highest priority, message 2 the second highest, etc. Default setting: Off (cannot be changed in the safe parameterization) Parameters Default settings

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13 Use in safety equipment

13.1 Device behavior in oper ation and in the event of

13.1.1 Device behavior during power on

After switching on, the device goes through a diagnostics phase. During this time, the power output is at fault current (low alarm). No communication is possible via the programming inter- face or via HART® during the diagnostics phase.

13.1.2 Device behavior during normal operation (SIL measuring mode)

The device issues a current value that corresponds to the monitoring measured value. This must be monitored and further processed in a connected automation system.

13.1.3 Device behavior in the case of demand of the safety function

In the case of demand, the power is ≤3.6 mA (low-alarm - safe state).

13.1.4 Safe states

Depending on the recognized error, the system takes on one of the two states. The system only continues in the ac- tive safe state, without a restart being triggered by itself. Table 3 Device behavior during power on depending on the parameterization SIL startup mode parameter ON OFF SIL HART mode parameter ON Approx. 30 s start time, SIL measuring mode Waiting for SIL checksum entry OFF Approx. 120 s start time, SIL measuring mode Within this time period, a termination of the SIL mode is possible by entering a SIL checksum = 0. Waiting for SIL checksum entry Safe state Active safe state Passive safe state Output residual current, ≤3.6 mA (= low alarm) Outp ut residual current, ≤3.6 mA (= low alarm) System reset is initiated automatically. In the active safe state, communication with the transmitter can continue via HART®; the current output, however, per- manently outputs a residual current. This state is maintained until the transmitter is restarted. All parameters can be read and parameters not relevant to safety can be be changed. In the passive safe state, communication with the transmitter is not possible via HART®. The system stops immediately and restarts after 0.5 seconds at the latest. The device does not issue any more error messages. Parameters cannot be changed any more.

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13.1.5 Device behavior in the event of alarms and

The output current in the case of an alarm ≤3.6 mA. In some cases (e.g. short circuit of supply line), output currents are ≥21 mA independently of the defined residual current. For alarm monitoring, the downstream logic unit has to be able to recognize high alarms (≥21 mA) and low alarms (≤3.6 mA). Alarm and warning messages The alarm and warning messages in the form of diagnostic events and corresponding event texts issued on the on-site display or in the operating tool are additional information. For an overview of the diagnostic events, refer to Section 10.2 on page 57. The following diagnostic events that are configurable in nor- mal mode lead to the active safe state in SIL mode, and thus to a residual current being emitted. – Permitted device ambient temperature exceeded/not reached (diagnostic message F925) – Sensor corrosion (diagnostics F042) During the subsequent restart of the device, a self-test takes place, and the error message is reset, if necessary.

13.2 Device parameterizati on for safety-related

applications

13.2.1 Configuration of the measuring point

When using the devices in PLT safety equipment, the de- vice parameterization must fulfil two requirements: –C o n f i r m a t i o n c o n c e p t Proven independent test of entered safety-relevant pa- rameters. – Interlock concept Interlock of the device after conclusion of parameteriza- tion (according to IEC 61511-1 Section 11.6.4) To activate SIL mode, an operating sequence has to be gone through, whereby operation can be in the Asset Man- agement Tool, (e.g. M&M Container, AMS, PDM, Field Communicator 375/475) for which the device driver files (DD or DTM) are available. Two methods for device parameterization are available. Their essential difference lies in the confirmation concept: Increased parameterization safety mode (safe param- eterization = SiPA, on page 73) At the start of the increased parameterization safety mode – all safety-relevant parameters are set to defined values, and – the transmitters configured with a guided safe parame- terization. A limited parameter record is available for this. Expert mode (SIL mode activation = SiMA, on page 75) The current settings of the transmitter for SIL mode are taken on here (for restrictions, see "Parameters and default settings for the increased parameter safety and expert mode" on page 67). In this way, defined or pre-configured settings can be used for the suitable application. Figure 10 Methods for device parameterization: in- creased parameterization safety mode and ex- pert mode During transfer of the device into SIL mode, addi- tional diagnostics are activated (e.g. a compari- son of the read-back output current to the set point). If one to these diagnostics causes an error message (e.g. F041 sensor break), a residual current is emitted. After the error is rectified, it is necessary to restart the device.

  • For this, briefly disconnect the device from the power supply, or
  • send a corresponding command via HART®, or execute a comparable function in the operating tool.

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13.2.2 Increased parameteriza tion safety mode, safe

parameterization (SiPA) The user interface may deviate from the illustrations shown here depending on the operating tool used and the selected language. During the safe parameterization process, the transmitter emits a residual current ≤3.6 mA (low alarm). If an error oc- curs during the safe parameterization, or if a parameter check is negative, the safe parameterization has been un- successful and needs to be repeated. Safe parameterization procedure 1. The safe parameterization can only be performed during online operation. Start safe parameterization in the "Setup, Advanced setup, SIL" submenu using the "Increased parameterization safety mode" wizard. The "Release code" window opens 2. Enter the number code "7452" in the "Enter release code" input window. 3. Confirm by pressing "Enter". 4. Then continue with the "Next" button. The safety-relevant parameters are reset to the default settings ("Parameters and default settings for the in- creased parameter safety and expert mode" on page 67). The input windows for the device settings then open in a specified sequence, starting with the unit of measured variables. 5. Check the input parameters in the subsequent window. 6. In the case of agreement, select YES in the "confirm" selection and confirm with the "Enter" key. 7. Continue with the "Next" button. An overview of all non-changeable standard values fol- lows the entering of all safety relevant parameters. After confirmation, all the entered safety-relevant parameters are displayed to be checked again. Performance of the safe parameterization has to be documented. Enter the configured parameters in the documen- tation. The date, time, and the subsequently dis- played SIL checksum have to be noted. It generally has to be ensured that burst and multi- drop mode are deactivated. If for Callendar-Van Dusen or polynomial copper/ nickel sensors, the units Fahrenheit (°F) or Ran- kine (°R) are selected, it may occur during the pa- rameter test, that the saved parameter value deviates by 0.01 °F or °R from the entered param- eter value. This deviation can occur with the fol- lowing parameters: Start of measuring range (4 mA), End of measuring range (20 mA), Sensor offset, Drift/Difference monitoring, Upper sensor limit, and Lower sensor limit.

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 74 / 85 8. If all the settings are correct , select YES in the "confirm" selection and confirm with the "Enter" key. 9. Continue with the "Next" button. 10. Enter the displayed SIL checksum in the field "Enter SIL checksum", and fill the current date and time into the "Time stamp SIL parameterization" field. 11. Confirm the entry by pressing "Enter". 12. Continue with the "Next" button. The safe parameterization is completed. After actuation of the "Next" button, the device independently restarts in SIL mode ("Device behavior in operation and in the event of a malfunction" on page 71). 13. Check the operating state of the transmitter (SIL mode active) before use in safety equipment. Figure 11 Operating state display 14. Carry out a startup test in SIL mode before commission- ing the transmitter (on page 77). This value in the SIL checksum display is required in order to activate the SIL mode when the SIL startup mode is set to DEACTIVATED. Always note the value in the SIL checksum dis- play for this measuring point in the documenta- tion.

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13.2.3 Expert mode, SIL mode activation (SiMA)

The user interface may deviate from the illustrations shown here depending on the operating tool used and the selected language. During the SIL mode activation process in expert mode, the transmitter emits a residual current ≤3.6 mA (low-alarm). If an error occurs during the SIL mode activation in expert mode, or if this is terminated, the SIL mode activation has not been successful and has to be repeated. SIL mode activation procedure If the transmitter is not in the original delivery state, do the following: 1. Select "TO DEFAULT SETT INGS" in the "Setup, Ad- vanced setup, Administration" menu in the "Reset De- vice" selection. 2. Confirm with the "Enter" key. 3. Set all the parameters that are required for use in the safety equipment. All tools that the device supports can be used for this. 4. SIL mode activation can only be carried out in online op- eration via the HART® communication. Start the "Expert mode" wizard in the "Setup, Advanced setup, SIL" submenu. The "Expert mode" wizard opens. 5. Enter the number code 7452 in the "Enter release code" input window. 6. Confirm by pressing "Enter". 7. Continue with the "Next" button. The parameters that are relevant for the safety of the device and that may not be changed in SIL mode are re- set to default setting (see "Parameters and default set- tings for the increased parameter safety and expert mode" on page 67). All other safety-relevant parame- ters are taken on by the device and protected against manipulation. After actuation of the "Next" button, the device inde- pendently restarts in SIL mode. SIL mode activation in expert mode is completed. 9. The Time stamp SIL parameterization parameter can be set to the most current value in SIL mode. 10. Note the SIL checksum. This can be used to verify the setting of several devices. 11. Check the operating state of the transmitter (SIL mode active) before use in safety equipment. 12. Carry out a startup test in SIL mode before commission- ing the transmitter (on page 77).

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13.2.4 Deactivating SIL mode

There are two possibilities (A or B) of deactivating SIL mode. Switch off the hardware write-protect of the transmitter, if necessary. A) Enter the number 0 in the "SIL checksum" field. 2. Confirm with the "Enter" key. 3. Restart device: Execute the "Restart device" function or by interrupting the supply voltage for the transmitter. After restarting, the device is in non-secure mode (normal mode). In order, in turn, to change to SIL mode, another safe parameterization (SiPA, on page 73) or SIL mode activation (SiMA, on page 75) must be started at this point. B) Start the "Deactivate SIL" function in the submenu: Setup, Advanced setup, SIL 4. Activate the "Deactivate SIL" field again. After automatic restart, the device is in non-secure mode (normal mode). You can check the current setting of the transmit- ter in SIL mode, e.g., using the hand-held opera- tor panel FC475. Parameters to be tested Use of the function key sequence on the FC475 (HART7) Operating state (SIL mode active) 3, 3 Start of measuring range (4 mA) 3, 6, 3 End of measuring range (20 mA) 3, 6, 4 PV 3, 7, 3, 1 Sensor type 1 1, 3 Sensor type 2 1, 7 Connection method 1 1, 4 Connection method 2 1, 8 Sensor offset 1 3, 5, 1, 5 Sensor offset 2 3, 5, 2, 5 Unit 1, 2 Mains frequency filter 3, 4, 4

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13.3 Startup and repeat test

Test the function of the transmitter in SIL mode during com- missioning and at appropriate time intervals.

13.3.1 Repeat test of the safety function

  1. Test the safety function at appropriate intervals for its function. 2. The operator specifies the te sting interval and this has to be considered when determining the probability of failure PFDavg of the sensor system. In the case of single-channel system architecture, the mean probability of failure PFDavg of the measurement sensor results approximately from the testing interval Ti of the failure rate of the dangerous non-recognizable er- ror λdu, the test depth PTC, and the assumed duration of use: PFDavg ≈ λdu × (PTC/2 × Ti + (1 - PTC) / 2 × MT) 3. The operator also specifies the procedure for the repeat test. Diagnostics are deactivated by ending SIL mode. The device can no longer perform the safety func- tion. Therefore it has to be ensured through ap- propriate measures that no hazard can occur during the time in which SIL mode is deactivated. – In the event that HA RT® communication is switched off in SIL mode (SIL HART mode parameter = deactivated), restart the device. Deactivation methods A and B are available for 90 s in the start phase of the transmitter. (HART® is active during this time). In order to change back to SIL mode, another safe pa- rameterization has to be started (see "In- creased parameterization safety mode, safe parameterization (SiPA)" on page 73). NOTE: The safety function is not guaranteed during a startup or repeat test. Process safety has to be guaranteed during the test by suitable measures. – The safety-related output signal 4 mA … 20 mA must not be used for the safe- ty equipment during the test. – Document a test that has been carried out. MT Duration of use PTC Proof Test Coverage T i Test interval NOTE: According to IEC 61511, an independent repeat test of the subsystems, e.g., the transmitter, is permitted as an alternative to testing the safety function of the entire system. Mean probability of failure and duration of use PF- D avg for a single-channel system (without per- forming repeat tests).

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13.4 Startup or repeat test of the transmitter

If no operator-specific information for the repeat test is avail- able, the following alternative possibility for testing the trans- mitter dependent on the measured variable used for the safety function. The respective coverage levels (PTC = proof test coverage) are specified for the following test se- quences that can be used for calculation. The device can be tested as follows: – Test sequence A: complete test with HART® operation – Test sequence C: simplified test with or without HART® operation MT Duration of use in years PFD avg Mean probability of failure of a hazardous fail- ure on demand 1oo1 Single-channel architecture 0,00E+00 1,75E-04 3,50E-04 5,25E-04 7,00E-04 8,75E-04 1,05E-03 1,23E-03 1,40E-03 1,58E-03 1,75E-03 PFD avg 1oo1 0 1 2 3 4 5 6 7 8 9 10 MT Observe in the case of test sequences: – Test sequence C is not permitted for a startup test. – The test of the transmitter without sensor can be done with a corresponding sensor simula- tor (resistance decade, reference voltage source, etc.) The transmitter goes into the safe state because of the sensor error trig- gered by reclamping, and has to be restarted. – The precision of the measuring device used must suffice for the specification of the trans- mitter. – If both input channels of the transmitter are used, repeat the test for the second sensor accordingly. – When a customer-specific linearization is used (e.g. with CvD coefficients), perform a three-point calibration.

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13.4.1 Test sequence A

  1. Two-point calibration Test the power output by applying the reference tem- perature to the sensor or a corresponding reference signal (resistance, current) at two points. For the mea- surement start: 4 mA to +20 % of the range and for the measurement end: select 20 mA to –20 % of the range. The measurement results have to be within the speci- fied safety measurement deviation, otherwise the test is not passed. 2. Test of the safe state (low alarm) Force the safe state of the transmitter by provoking a sensor error (e.g. by cable break or short circuit of the sensor lines). Check if the power emitted at the power output corresponds to low alarm (≤3.6 mA). Triggering of a device restart with the corresponding function in the operating tool used or with HART® com- mand 42. 96 % of the dangerous undetected failures are detected by this test (diagnostics coverage level of the repeat test, PTC = 0.96). During the test procedure, the power output of the device typically behaves as shown in "Current flow during repeat test A" on page 80. NOTE: For test sequences A, C: The influence of system- atic errors on the safety function is not completely covered by the test. Systematic errors can be caused, for example, by measuring material prop- erties, operating conditions, buildup, or corrosion. – Take measures for reducing systematic er- rors. – If one of the test criter ia of the described test sequences is not fulfilled, the transmitter may no longer be used as part of safety equip- ment. Observe the following in the case of a startup test in addition to test sequence A: – If both input channels of the transmitter are used, the dual-channel functions like sensor drift or backup (channel assignment at the power output) also have to be tested. – When using thermocouples, check the set- ting of the Cold junction selection and its pre- set value. – The function of the out of range category has to be tested at its limits, 3.8 mA or 20.5 mA. – The operating state of the transmitter has to be tested (SIL mode active).

MACX MCR(-EX)-TS-I-OLP(-SP)(-C) 108133_en_00 PHOENIX CONTACT 80 / 85 Figure 12 Current flow during repeat test A

13.4.2 Testing procedure C

  1. Test current measuring signal for plausibility. The mea- sured value needs to be evaluated based on values ex- perienced while operating the plant. This is the operator's responsibility. 2. Triggering of a device restart with the corresponding function in the operating tool used, or with HART® command 42. 3. Check if the power emitted at the power output corre- sponds to the low alarm (≤3.6 mA). See the following diagram. 58 % of the dangerous undetected failures are detected by this test (diagnostics coverage level of the repeat test, PTC = 0.58). Test sequence C is not permitted for a startup test. Figure 13 Current flow during repeat test C A2 0 m A B4 m A C ≤3.6 mA 1M e a s u r i n g m o d e

2 Adjustment of measurement start (two-point calibra-

tion)

3 Adjustment of measuremen t end (two-point calibra-

tion) 4L o w a l a r m t e s t

5 Restart of the transmitter (via HART® or plug-in dis-

play) 6M e a s u r i n g m o d e A t B C I [mA] A 20 mA B4 m A C ≤3.6 mA 1M e a s u r i n g m o d e

2 Restart of the transmitter (via HART®)

3 Low alarm test

4M e a s u r i n g m o d e A B C I [mA]

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14 Lifecycle

14.1 Personnel requirements

Personnel for installation, startup, diagnostics, and mainte- nance must meet the following requirements: – Trained personnel, qualified for this function and activity – Authorized by the plant operator – Familiar with the national regulations – Before beginning work: read and understand instruc- tions in manual and additional documentation, as well as certificates (depending on use) – Follow instructions and general conditions The operating personnel must meet the following require- ments: – Instructed and authorized by the plant operator accord- ing to the task requirements – Follow instructions in this manual

14.2 Installation

Assembly and wiring of the device, as well as the permitted mounting position, are described in the corresponding packing slip (see "Dokumentation" ).

14.3 Startup

The startup of the device is described in "Startup" on page 22. Perform a startup test before operation in safety equipment.

14.4 Operation

Operation of the device is described in "Startup" on page 22. → ? 9

14.5 Maintenance

Maintenance instructions can be found in "Maintenance" on page 56. Undertake alternative monitoring measures to guarantee process safety during parameterization, the repeat test, and maintenance work at the device.

14.6 Repair

The following components may be exchanged by the cus- tomer's specialist personnel if original spare parts are used, and the respective assembly instructions observed: The exchanged components must be submitted to the man- ufacturer for error analysis if the device was operated in safety equipment, and a device fault cannot be excluded.

14.7 Modification

Modifications are changes to already delivered or installed SIL devices. Normally, modifications of SIL devices are car- ried out at the manufacturer's plant. Modifications to SIL de- vices on-site at the user's are possible after release by the manufacturer. In this case, the modifications must be under- taken and documented by a service technician from the manufacturer's. Component Device test after repair Housing cover Visual check if all parts are present and mounted prop- erly, and if the device is in its proper state. Connection terminal blocks and fixing slide NOTE: Modifications of SIL devices by the user are not allowed.

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15 Measuring function

15.1 Dual-channel functions

Two sensors can be connected to the transmitter and the following, safe functions, operated: – Two independent measurements: Here, two possibly different sensors, e.g., TC and 3- wire RTD, are connected to the transmitter. Both mea- suring channels can be used for safety-relevant func- tions. In order to evaluate the measured values of both sensors, the safe proprietary HART® protocol exten- sion must be used here. – Function mean value: The measured values M1, M2 of the two sensors are emitted as arithmetical mean (M1+M2)/2. – Function difference: The measured values M1, M2 of the two sensors are emitted as difference M1-M2. – Function backup: If a sensor fails, the other measurement channel is au- tomatically switched to. Here, the sensor types must be identical, e.g. two x 3-wire RTD Pt 100. The backup function is for increasing the availability or improving the diagnostics capabilities. The following sensor types are thus permitted in SIL mode: –2 x t h e r m o c o u p l e ( T C ) – 2x RTD, 2/3-wire – Sensor drift function: When redundant sensors are used, the long-term drift of a sensor can be recognized, for example. This is a di- agnostics measure as the signal of the second sensor is used exclusively for this diagnosis. If identical sen- sors are used, the backup function can additionally be used.

15.2 Homogenous redundant SIL 3 configuration

Two temperature transmitters, each with one sensor, are re- quired for a SIL 3 measuring point. The measured values of the two transmitters are evaluated in a logic unit with the aid of a secure voter. NOTE: Electrical isolation Ensure electrical isolation of the sensors when connecting two sensors to the transmitter. The set drift difference limit value should corre- spond to at least 2x the value of the safety preci- sion.

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16 Safety characteristics

Device designation and permitted versions FA MCR(-EX)-HT-TS-I-OLP-PT MACX MCR(-EX)-TS-I-OLP(-SP)(-C) Safety-related output signals 4 mA … 20 mA Residual current 3.58 mA Evaluated measured variable / Function Temperature / Voltage / Resistance Safety function(s) Min., Max., Range Device type according to IEC 61508-2 Type B Operating mode Low Dema nd Mode, High Demand Valid hardware version Head tr ansmitter: 01.00.07 or higher DIN rail connector transmitter: 01.00.06 or higher Valid firmware version 01.01.12 or later (dev. rev.: 2 or later) Safety manual Head transmitter: 108101_en_00 DIN rail connector transmitter: 108133_en_00 Type of evaluation Complete HW/SW evalua tion accompanying development, includ- ing FMEDA and modification process according to IEC 61508-2, 3 Test documents Development docume nts, test reports, data sheets SIL Integrity Systematic safety integrity SIL 3 capable Hardware safety integrity Single-ch annel use (HFT = 0) SIL 2 capable Multi-channel use (HFT ≥ 1) SIL 3 capable FMEDA Head transducer DIN rail connector transmitter Safety function(s) Min., Max., Range Min., Max., Range λDU 1, 2 40 FIT 41 FIT λDD 1, 2 258 FIT 258 FIT λSU 1, 2 127 FIT 123 FIT λSD 1, 2 3 FIT 3 FIT SFF - Safe Failure Fraction 91 % 90 % PFDavg for T1 = 1 year 2 (single-channel architecture) 1.75 * 10 -4 1.79 * 10 -4 PFDavg for T1 = 5 years 2 (single-channel architec- ture) 8.76 * 10-4 8.98 * 10 -4 PTC 3 96 % 96 % MTBF 4 156 years 156 years Diagnostic test interval 5 32 min 32 min Error response time 6 <10.7 s <10.7 s Process safety time 7 53 h 53 h Explanation Our internal company quality management secures the information on safety-relevant systematic errors that become known in the future.

1 FIT = Failure In Time, number of failures per 109 h

2 Valid for mean ambient temperatures up to +40 °C (+104 °F). A factor of 2.1 should be considered in the case of an average permanent usage tempera- ture near +60 °C (+140 °F).

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4 This value considers all failure types of the electronic components according to Siemens SN 29500

5 In this time, all diagnostic functions are executed at least once.

6 Maximum time between error detection and error reaction

7 The process safety time is: diagnostics test interval x 100 (calculation according to IEC 61508)

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