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Technical content

Features

– Full duplex transmission via a single optical fiber – 10/100Base-T(X) auto negotiation – Auto MDI/MDIx switchover –O p e r a t i n g m o d e a n d s peed can be set manually – Link fault pass through (LFP) – Far End Fault signaling (FEF) – SC simplex connection – Redundant power supply possible – Extended temperature range of -40°C ... +65°C – Mounting on a 35 mm DIN rail – Shipbuilding approval according to DNV WARNING: Explosion hazard when used in potentially explosive areas The device is a category 3 item of electrical equipment. Follow the instructions provided here during installation and observe the safety notes. Make sure you always use the latest documentation. It can be downloaded from the product at phoenixcontact.net/products. For data transmission, you always require a type A device and a type B device for the remote station! This document is valid for the products listed in the “Ordering data”. 104915_en_04 2017-03-20

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FL MC EF WDM ... 104915_en_04 PHOENIX CONTACT 3 / 18 Description Ty pe Order No. Pcs./Pkt. FO converter (replacement device A), for full duplex transmission from 10/100Base-T(X) to individual simplex fiberglass with WDM (wavelength division multiplex) technology, SC simplex fiber optic connection (1310/1550 nm). Device set (type A and type B) required for operation. FL MC EF WDM-A SC 2902658 1 FO converter (replacement device B), for full duplex transmission from 10/100Base-T(X) to individual simplex fiberglass with WDM (wavelength division multiplex) technology, SC simplex fiber optic connection (1550/1310 nm). Device set (type A and type B) required for operation. FL MC EF WDM-B SC 2902659 1 FO converter set, consisting of type A devices and type B devices, for full duplex transmission from 10/100Base- T(X) to individual simplex fiberglass with WDM (wavelength division multiplex) technology. SC simplex fiber optic connection (1550/1310 nm). FL MC EF WDM-SET SC 2902660 1 3O r d e r i n g d a t a Accessories Ty pe Order No. Pcs./Pkt. CAT5-SF/UTP cable (J-02YS(ST)C HP 2 x 2 x 24 AWG), heavy-duty installation cable, 2 x 2 x 0.22 mm², solid conductor, shielded, outer sheath: 7.8 mm diameter, inner sheath: 5.75 mm ± 0.15 mm diameter FL CAT5 HEAVY 2744814 1 CAT5-SF/UTP cable (J-LI02YS(ST)C H 2 x 2 x 26 AWG), light-duty, flexible installation cable 2 x 2 x 0.14 mm², stranded, shielded, outer sheath: 5.75 mm ± 0.15 mm diameter FL CAT5 FLEX 2744830 1 Crimping pliers, for assembling the RJ45 plugs FL PLUG RJ45..., for assembly on site FL CRIMPTOOL 2744869 1 Plug component, Nominal current: 8 A, Nominal current (Ex): 8 A, Nominal voltage (Ex): 125 V, Number of positions: 5, Pitch: 3.81 mm, Articles with gold- plated contacts, bus connectors for connecting with electronic housings ME 22,5 TBUS 1,5/ 5-ST-3,81 GN 2707437 50 Primary-switched MINI POWER supply for DIN rail mounting, input: 1-phase, output: 24 V DC/1.5 A MINI-SYS-PS-100-240AC/ 24DC/1.5 2866983 1 DIN rail connector for DIN rail mounting. Universal for TBUS housing. Gold-plated contacts, 5-pos. Header, Nominal current: 8 A, Number of positions: 5, Pitch: 3.81 mm, Articles with gold-plated contacts, bus connectors for connecting with electronic housings ME 17,5 TBUS 1,5/ 5-ST-3,81 GN 2709561 10 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: LC/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 1 m FL MM PATCH 1,0 LC-SC 2989161 1

FL MC EF WDM ... 104915_en_04 PHOENIX CONTACT 4 / 18 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: LC/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 2 m FL MM PATCH 2,0 LC-SC 2989268 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: LC/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 5 m FL MM PATCH 5,0 LC-SC 2901800 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 1 m FL MM PATCH 1,0 SC-SC 2901805 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 2 m FL MM PATCH 2,0 SC-SC 2901807 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 5 m FL MM PATCH 5,0 SC-SC 2901808 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ B-FOC (STR), degree of protection: IP20, for installation in cable ducts or control cabinets, length: 1 m FL MM PATCH 1,0 SC-ST 2901809 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ B-FOC (STR), degree of protection: IP20, for installation in cable ducts or control cabinets, length: 2 m FL MM PATCH 2,0 SC-ST 2901810 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ B-FOC (STR), degree of protection: IP20, for installation in cable ducts or control cabinets, length: 5 m FL MM PATCH 5,0 SC-ST 2901811 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ SC-RJ, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 1 m FL MM PATCH 1,0 SC-SCRJ 2901812 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ SC-RJ, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 2 m FL MM PATCH 2,0 SC-SCRJ 2901813 1 Assembled FO cable, break out cable, multimode fiberglass 50/125 µm (OM2), connector: SC duplex/ SC-RJ, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 5 m FL MM PATCH 5,0 SC-SCRJ 2901814 1 Rugged GOF installation cable (IP20 heads only) for inner areas with highly tear-proof aramid strain-relief elements. Individual elements consist of highly flexible FRNC material. The cable is halogen-free, ozone and UV resistant and has a rugged polyurethane (PUR) outer sheath. FOC-GDM-RUGGED-1016/ IP20/... 2901558 1 Accessories Ty pe Order No. Pcs./Pkt.

FL MC EF WDM ... 104915_en_04 PHOENIX CONTACT 5 / 18 Rugged GOF installation cable for inner areas with highly tear-proof aramid strain-relief elements. Individual elements consist of highly flexible FRNC material. The cable is halogen-free, ozone and UV resistant and has a rugged polyurethane (PUR) outer sheath. FOC-GDM-RUGGED-1016/... 1402193 1 Highly rugged GOF round cable (IP20 heads only) for assembly and for outdoor installation with integrated moisture barrier as well as rodent-proof scrim. Individual elements made from highly flexible FRNC material. The wire is ozone and UV resistant with a very rugged polyethylene outer sheath. FOC-GDO-1017/IP20/... 2901559 1 Highly rugged GOF round cable for assembly and for outdoor installation with integrated moisture barrier as well as rodent-proof scrim. Individual elements made from highly flexible FRNC material. The wire is ozone and UV resistant with a very rugged polyethylene outer sheath. FOC-GDO-1017/... 1402194 1 Fiberglass cable, duplex 50/125 µm, by the meter, without connector, for outdoor installation PSM-LWL-GDO- 50/125 2799432 1 Fiberglass cable, duplex 50/125 µm, by the meter, without connector, for indoor installation PSM-LWL-GDM-RUGGED- 2799322 1 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: LC/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 1 m FL SM PATCH 1,0 LC-SC 2989190 1 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: LC/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 2 m FL SM PATCH 2,0 LC-SC 2989297 1 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: LC/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 5 m FL SM PATCH 5,0 LC-SC 2901827 1 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: SC duplex/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 1 m FL SM PATCH 1,0 SC-SC 2901829 1 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: SC duplex/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 2 m FL SM PATCH 2,0 SC-SC 2901830 1 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: SC duplex/SC duplex, degree of protection: IP20, for installation in cable ducts or control cabinets, length: 5 m FL SM PATCH 5,0 SC-SC 2901831 1 Accessories Ty pe Order No. Pcs./Pkt.

FL MC EF WDM ... 104915_en_04 PHOENIX CONTACT 6 / 18 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: SC duplex/B-FOC (STR), degree of protection: IP20, for installation in cable ducts or control cabinets, length: 1 m FL SM PATCH 1,0 SC-ST 2901832 1 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: SC duplex/B-FOC (STR), degree of protection: IP20, for installation in cable ducts or control cabinets, length: 2 m FL SM PATCH 2,0 SC-ST 2901833 1 Assembled fiber optic cable, break-out cable, fiberglass single mode 9/125 µm (OS2, Low Water Peak Fiber) connector: SC duplex/B-FOC (STR), degree of protection: IP20, for installation in cable ducts or control cabinets, length: 5 m FL SM PATCH 5,0 SC-ST 2901834 1 RJ45 connector, Degree of protection: IP20, Number of positions: 8, 1 Gbps, CAT5 (IEC 11801:2002), Material: PA, Connection method: IDC fast connection, Connection cross section: AWG 26-23, Cable exit: straight VS-08-RJ45-5-Q/IP20 1656725 1 Patch cable, CAT5, assembled, 0.5 m FL CAT5 PATCH 0,5 2832263 10 Patch cable, CAT5, assembled, 1 m FL CAT5 PATCH 1,0 2832276 10 Patch cable, CAT5, assembled, 2 m FL CAT5 PATCH 2,0 2832289 10 Patch cable, CAT5, assembled, 3 m FL CAT5 PATCH 3,0 2832292 10 Accessories Ty pe Order No. Pcs./Pkt.

4 Technical data

Supply voltage range 18 V DC . .. 30 V DC (Screw connection) 18 V DC ... 30 V DC (as an alternative or redundant, via backplane bus contact and system current supply) Typical current consumption < 110 mA (24 V DC) Protective circuit Reverse polarity protection Electrical isolation VCC // FE // Ethernet Test voltage data interface/power supply 1.5 kV rms (50 Hz, 1 min.) Ethernet interface, 10/100Base-T(X) in acc. with IEEE 802.3u Connection method RJ45 socket, shielded Transmission speed 10/100 Mbps Transmission length 100 m (shielded twisted pair) Transmission medium Copper Auto-negotiation modes Auto Link through Link fault pass through MDI-/MDI-X switchover Auto-MDI(X) Signal LEDs Activity, link status, 10/100 Mbps

FL MC EF WDM ... 104915_en_04 PHOENIX CONTACT 7 / 18 FO interface Data rate 100 Mbps Connection method SC simplex Wavelength 1310 nm 1550 nm Laser protection Class 1 according to DIN EN 60825-1 Transmission length incl. 3 dB system reserve 38 km (with F-E 9/125 0.36 dB/km) 34 km (with F-E 9/125 0.4 dB/km) 28 km (with F-E 9/125 0.5 dB/km) 21 km (with F-G 62,5/125 0,7 dB/km F 1000) 5.5 km (with F-G 62.5/125 2.6 dB/km F 600) 21 km (with F-G 50/125 0,7 dB/km F 1200) 9 km (with F-G 50/125 1,6 dB/km F 800) Transmit capacity, minimum ≥ -14 dBm ((9/125 µm) dynamic in link mode (average)) Transmit capacity, maximum ≤ -8 dBm ((9/125 µm) dynamic in link mode (average)) Minimum receiver sensitivity -31 dBm (dynamic in link mode (average)) Overrange receiver -3 dBm (dynamic in link mode (average)) Signal LEDs Far end fault (red LED), link status (yellow LED) General data Basic functions Store-and-forward media converter Degree of protection IP20 Dimensions (W/H/D) 22.5 mm x 99 mm x 114.5 mm Housing material PA 6.6-FR green Free fall in acc. with IEC 60068-2-32 1 m Vibration resistance in acc. with EN 60068-2-6/ IEC 60068-2-6 5g, 10...150 Hz, 2.5 h, in XYZ direction Shock in acc. with EN 60068-2-27/IEC 60068-2-27 25g, 11 ms period, half-sine shock pulse MTTF (mean time to failure) SN 29500 standard, temperature 25 °C, operating cycle 21 % (5 days a week, 8 hours a day)

1400 Years

MTTF (mean time to failure) SN 29500 standard, temperature 40 °C, operating cycle 34.25 % (5 days a week, 12 hours a day)

599 Years

MTTF (mean time to failure) SN 29500 standard, temperature 40 °C, operating cycle 100 % (7 days a week, 24 hours a day)

101 Years

Electromagnetic compatibility Conform ance with EMC Directive 2014/30/EU Ambient conditions Ambient temperature (operation) -40 °C ... 65 °C Ambient temperature (storage/transport) -40 °C ... 85 °C Permissible humidity (operation) 30 % ... 95 % (non-condensing) Permissible humidity (storage/transport) 30 % ... 95 % (non-condensing) Altitude 5000 m (For restrictions see manufacturer's declaration) 2000 m (With UL approval)

FL MC EF WDM ... 104915_en_04 PHOENIX CONTACT 8 / 18 Approvals / Certificates Conformance CE-compliant Free from substances that could impair the application of coating according to P-VW 3.10.7 57 65 0 VW-AUDI-Seat central standard ATEX Please follow the special installation instructions in the documentation!  II 3 G Ex nA IIC T4 Gc X UL, USA/Canada cULus listed UL 508 Class I, Zone 2, AEx nA IIC T4 Class I, Zone 2, Ex nA IIC T4 Gc X Class I, Div. 2, Groups A, B, C, D Standards/regulations EN 60950-1 Shipbuilding approval DNV Conformance with EMC Directive 2014/30/EU Noise immunity according to EN 61000-6-2 Electrostatic discharge EN 61000-4-2 Contact discharge ± 6 kV (Test Level 3) Discharge in air ± 8 kV (Test Level 3) Indirect discharge ± 6 kV Comments Criterion B Electromagnetic HF field EN 61000-4-3 Frequency range 80 MHz ... 3 GHz (Test Level 3) Field intensity 10 V/m Comments Criterion A Fast transients (burst) EN 61000-4-4 Input ± 2 kV (Test Level 3) Signal ± 2 kV (Test Level 3) Comments Criterion B Surge current loads (surge) EN 61000-4-5 Input ± 0.5 kV (DC supply) Signal ± 1 kV (Data line, asymmetrical) Comments Criterion B Conducted interference EN 61000-4-6 Frequency range 0.15 MHz ... 80 MHz Voltage 10 V Comments Criterion A Emitted interference in acc. with EN 61000-6-4 Interference emission EN 55032, Class A, industrial applications Criterion A Normal operating behavi or within the specified limits Criterion B Temporary impairment of operating be havior that is corrected by the device itself

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5 Safety regulations and installation notes

5.1 Installation notes

  • The category 3 device is designed for installation in zone 2 potentially explosive areas. It meets the requirements of EN 60079-0:2012+A11:2013 and EN 60079-15:2010.
  • Installation, operation, and maintenance may only be carried out by qualified electricians. Follow the installation instructions as described.
  • When installing and operating the device, the applicable regulations and safety directives (including national safety directives), as well as general technical regulations, must be observed. The technical data is provided in the package slip and on the certificates (conformity assessment, additional approvals where applicable).
  • The device must not be opened or modified apart from the configuration of the DIP switches. Do not repair the device yourself but replace it with an equivalent device. Repairs may only be carried out by the manufacturer. The manufacturer is not liable for damage resulting from a failure to comply.
  • The IP20 protection (IEC 60529/EN 60529) of the device is intended for use in a clean and dry environment. The device must not be subject to mechanical strain and/or thermal loads, which exceed the limits described.
  • The device is not designed for use in atmospheres with a danger of dust explosions.
  • If dust is present, it is necessary to install into a suitable approved housing, whereby the surface temperature of the housing must be taken into consideration.

5.2 Installation in Zone 2

  • Observe the specified conditions for use in potentially explosive areas.
  • The device should be installed so that a degree of protection of at least IP54 is achieved in accordance with EN 60529. To this end, a suitable, approved housing that meets the requirements of EN 60079-15 should be used.
  • Only devices that are designed for operation in Ex Zone 2 and the conditions at the installation location may be connected to the circuits in Zone 2.
  • In potentially explosive areas, terminals may only be snapped onto or off the DIN rail connector and wires may only be connected or disconnected when the power is switched off.
  • The switches of the device that can be accessed may only be actuated when the power supply to the device is disconnected.
  • The device must be stopped and immediately removed from the Ex area if it is damaged, was subject to an impermissible load, stored incorrectly or if it malfunctions.
  • For reliable operation, the RJ45 plug needs to have a fully functioning locking clip. Repair any damaged plugs immediately. CAUTION: Observe the following safety notes when using the device. WARNING: Explosion hazard when used in potentially explosive areas Please make sure that the following notes and instructions are observed.

FL MC EF WDM ... 104915_en_04 PHOENIX CONTACT 10 / 18 UL note INDUSTRIAL CONTROL EQUIPMENT 11AE Wire Range: 24-14 AWG Torque: 5-7 (Lbs-Ins) Environmental designation: "Open Type Device" "Pollution Degree 2 Installation Environment" PROCESS CONTROL EQUIPMENT FOR HAZARDOUS LOCATIONS 31ZN This equipment is suitable for use in Class I, Zone 2, AEx nA IIC T4;E x nA IIC T4G c X or Class I, Division 2, Groups A, B, C, D or non-hazardous locations only. Provis ion shall be made to prevent transient disturbances of more than 140% of the rated supply voltage. The device must be installed in a Class I, Zone 2 certified overall enclosure rated IP54 with tool-accessible only cover or door and in degree of pollution 2 environment only. Unit shall be supplied by Limited Energy circuit according to clause 9.4 of UL 61010-1 3rd edition of Limited Power Source according to clause 2.5 of UL 60950-1 or NEC Class 2. Conductor temperature rating must be 72°C or higher. Maximum relative humidity 80 % for temperatures up to 31°C decreasing linearly to 50 % relative humidity at 40°C.

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6 Structure

6.1 Dimensions

Figure 1 Housing dimensions

6.2 Block diagram

114,5 22,5 FL MC EF WDM-A SC Ord.-No.: 290 2 658 LINK FEF VCC

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6.3 Function elements

Figure 3 Function elements

6.4 Diagnostics and status indicators

Far End Fault signal (FEF) If the copper connection is interrupted at one of the FO converters, data communication for both FO converters in both the optical and copper segment is disabled by the link fault pass through function. In this case, all Link LEDs go out. However, in order that error diagnostics can be carried out, the red FEF LED lights up on the FO converter where the copper segment is interrupted. 1 24 V DC Supply voltage 2 24 V DC Supply voltage, redundant

3 Fiber optic (FO-) interface, SC simplex

4 RJ45 Ethernet port, 10/100 Base-T(X)

5 LED Link/Activity/10/100

6 LED HD/FD

7 LED LINK

8 LED FEF

9 LED VCC

10 Functional earth ground

11 DIP switch

Ord.-No. 2902854 VCC FEF LINK 10 21 113 Ethernet interface (TP port)

5 Link/Activity/10/100

Flashing 10 Mbps link - active data transmission Green ON 100 Mbps link Flashing 100 Mbps link - active data transmission

6 HD/FD Green OFF Half duplex transmission

ON Full duplex transmission Fiber optics interface (FO port)

7 LINK Yellow ON Fiber optics link

available, no data communication Flashing Data transmission at FO port

8 FEF Red ON Far end fault has

occurred. Remote station reports: "no light". Supply voltage

9 VCC Green ON Supply voltage OK

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7 Configuration via DIP switches

Figure 4 Opening the housing

  • Disengage the housing cover with a screwdriver (A).
  • Then carefully pull the PCB out of the housing as far as possible (B). By default, all DIP switches are in the “OFF” position. The copper side of the device operates in “Auto negotiation” mode. Figure 5 DIP switches

7.1 Setting data transmission (DIP 1, DIP 2, and

DIP 3) DIP 1 = OFF: the connected end devices negotiate 10/100 Mbps transmission speed and half/full transmission mode directly. The entire path behaves like a directly connected copper cable. DIP 1 = ON: you set the transmission speed and mode manually with DIP switches 2 and 3. NOTE: electrostatic discharge! The device contains components that can be damaged or destroyed by electrostatic discharge. When handling the device, observe the necessary safety precautions against electrostatic discharge (ESD) according to EN 61340-5-1 and IEC 61340-5-1. Only select the mode of operation when the power is disconnected! The change is activated after renewed power up. A B US1 GND US2 GN D FL MC EF 1300 MM ST Ord.-No. 2902854 VCC FEF LINK A DIP ON OFF (default setting)

6 LFP deactivated (local) LFP activated (global)

5 Not used

4 Pass pause frame Drop pause frame

3 Half duplex transmission Full duplex transmission

1 Fixed transmission

DIP 1 OFF Auto negotiation DIP 1 ON DIP 2 OFF 100 Mbps ON 10 Mbps DIP 3 OFF Full duplex transmission ON Half duplex transmission If DIP switch 1 is in the “OFF” position, the position of DIP switch 2 and 3 is not queried. FL MC EF 1300 DIP ON Local Link not used Pass Pause Frame Half Duplex

10 MBit/s

100 MBit/s

OFF (DEFAULT) LED GN - VCC RD - FEF YE - LINK GN - RJ45 GN/YE - RJ45 Device ON Far End Fault Link FO Full Duplex 100/10 MBit/s permanent flashing Activity FO Activity CU ON

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7.2 Pause frame (DIP 4)

A pause frame signal can request an Ethernet device to temporarily interrupt data transmission. This avoids overloading the partner when, for example, communication takes place with different transmission speeds. DIP 4 = OFF: the device does not respond to an incoming pause frame signal. It is also not forwarded. A pause frame signal cannot be generated by the device itself. The transmission of pause frame signals is negotiated in sections. DIP 4 = ON: the device responds to pause frame signals or forwards them. A pause frame signal can be generated by the device itself.

7.3 Link fault pass through (DIP 6)

The LFP (link fault pass through) function provides permanent connection monitoring. The link on the fiber optic connection switches off if the connection is lost on the copper side of a FO converter. The FO converter on the other side registers the aborted link via the fiber optic path and likewise interrupts the connection for its twisted pair segment. The entire connection over the optical path is therefore as transparent as it would be were communication purely copper-based. Both sides of the network connection can therefore detect a lost link immediately and respond accordingly. In the event of an error, this keeps the network load low and ensures that redundancy mechanisms can be activated. DIP 6 = OFF: the LFP function is activated. In the event of a fault, the entire connection is disabled (global). DIP 6 = ON: the LFP function is deactivated. In the event of a fault, only the interrupted segment is disabled (local). This is useful during startup and in the event of an error.

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8 Assembly

8.1 Mounting on a DIN rail

Figure 6 Mounting on a DIN rail

  • To avoid contact resistance, only use clean, corrosion- free 35 mm DIN rails according to DIN EN 60715.
  • Install an end bracket next to the left-hand device to prevent the devices from slipping.
  • Place the device onto the DIN rail from above. Push the module from the front toward the mounting surface until it audibly engages.
  • Snap the other devices that are to be contacted onto the DIN rail next to one another.

8.2 Combined assembly

Figure 7 Combined assembly The DIN rail connector is used to bridge the power supply and communication.

  • Connect the DIN rail connectors (Order No. 2707437, 1 pc. per device) together for a connection station.
  • Push the connected DIN rail connectors into the DIN rail.
  • Place the device onto the DIN rail from above. Push the module from the front toward the mounting surface until it audibly engages.

8.3 Removal

  • Push down the locking tab with a screwdriver, needle- nose pliers or similar.
  • Slightly pull the bottom edge of the device away from the mounting surface.
  • Pull the device away from the DIN rail. CAUTION: Electric shock The device is only intended for operation with SELV according to IEC 60950/EN 60950/ VDE 0805. NOTE: device damage Only mount and remove devices when the power supply is disconnected. NOTE: Malfunction Use a grounding terminal block to connect the DIN rail to protective earth ground. The devices are grounded when they are snapped onto the DIN rail (installation according to PELV). This ensures that the shielding is effective. Connect protective earth ground with low impedance. A B A connection station must not consist of more than ten devices. Observe the snap-in direction of the device and DIN rail connector: snap-on foot below and plug on the left. A B C

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8.4 Power Supply Voltage

The device is operated using a 24 V DC SELV. Operation as a single device

  • Supply voltage to the device via terminal blocks 1 (24 V) and 2 (0 V).
  • Optional: for a redundant power supply, connect an additional power supply unit to terminal blocks 3 and 4. Combined operation with a system power supply
  • Connect a system power supply to two DIN rail connectors on the left of the group. – MINI-SYS-PS-100-240AC/24DC/1.5, Order No. 2866983 or – MINI-PS100-240AC/24DC/1 .5/EX, Order No.: 2866653 – Two DIN rail connectors, Order No. 2709561
  • A second power supply unit can be used to create a redundant supply concept.

9 Twisted pair interface (TP port)

  • Only twisted pair cables with an impedance of 100 Ω can be connected to the RJ45 Ethernet interface. The data transmission speed is 10/100 Mbps Figure 8 Pin assignment
  • Insert the Ethernet cable with the RJ45 plug into the TP interface until the plug engages audibly. Observe the plug keying. 1 24 V DC Supply voltage 2 0 V DC Supply voltage 3 24 V DC Supply voltage, redundant 4 0 V DC Supply voltage, redundant VCC FL MC EF WDM-A SC Ord.-No.: 29 02 658 FEF LINK 12 3 4 NOTE: Interference Only use shielded twisted pair cables and corresponding shielded RJ45 connectors. RD + RD - TD+ TD - n.c. n.c. n.c. n.c. RJ45

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10 Fiber optic interface (FO port)

Figure 9 Connect SC simplex plug

  • Remove the dust protection cap.
  • Insert the fiber optics cable into the SC simplex connector of the transmit and receive channel. Make sure that the coding is in the correct position.
  • Ensure the connector is secure by gently pulling it. Figure 10 Slip ring communication For fiber optic transmission, an optical rotary transformer with a single fiber is used. The rotary transformer is integrated in the axis of the existing copper slip ring. Special application: redundant data communication in wind turbine generators Figure 11 Redundant slip ring communication In this example, a redundant network ensures data communication between the hub and the nacelle. Independent transmission paths are used for data communication. With the use of fiber optic technology, standard Ethernet data transmission is based on two WDM media converters. The redundant path is constructed with the aid of Ethernet extenders. The available copper slip ring is used for the SHDSL connection. The redundancy management is guaranteed by means of managed switches. Phoenix Contact provides various RSTP-capable switches, e.g., FL SWITCH LM 8TX, 2832632 or FL SWITCH SMCS 8TX, 2989226. WARNING: Risk of eye injury During operation, do not look directly into transmitter diodes or use visual aids to look into the glass fibers. The infrared light is not visible. Avoid contamination. Remove the dust protection caps just before the connectors are connected! When using fiber optics, observe the fiber optic installation guidelines, DB GB IBS SYS FOC ASSEMBLY, Order No. 9423439. US1 GND US2 GND FL M C EF 1300 MM ST Ord.-N o. 2902854 VCC FEF LINK VCC FL MC EF WDM- SCSET Ord.-No.: 29 02 660 FEF LINK VCC FL MC EF WDM- SCSET Ord.-No.: 29 02 660 FEF LINK TX (1310nm) RX (1310nm) RX (1550nm) TX (1550nm) SHDSL SHDSL VCC FL MC EF WDM- SCSET Ord.-No.: 29 02 660 FEF LINK 1FO VCC FL MC EF WDM- SCSET Ord.-No.: 29 02 660 FEF LINK 1 2 3 4 LINK Mode 5 6 7 8 X12 V.24 MODE 1 3 5 7 2 4 6 8 US2 FAILUS1 SPD FDACT FL SWITCH SMSC 8TX Ord. No. 2989226 US1 GND US2 GND X10 R1 R2 X11 MEM MAC Address TC EXTENDER 2001 ETH-2S US DIAG ACT LINK ERR LINK STAT LINK STAT DSL ADSL BLANETH USB TC EXTENDER 2001 ETH-2S US DIAG ACT LINK ERR LINK STAT LINK STAT DSL ADSL BLANETH USB 1 2 3 4 LINK Mode 5 6 7 8 X12 V.24 MODE 1 3 5 7 2 4 6 8 US2 FAILUS1 SPD FDACT FL SWITCH SMSC 8TX Ord. No. 2989226 US1 GND US2 GND X10 R1 R2 X11 MEM MAC Address

FL MC EF WDM ... 104915_en_04 18 / 18PHOENIX CONTACT GmbH & Co. KG • 32823 Blomberg • Germany phoenixcontact.com

12 Error localization

12.1 Normal operation

Figure 12 Diagnostics indicators in normal operation

12.2 Fault on the copper cable

The diagnostics indicator depends on DIP 6. LFP activated, global (DIP 6 = OFF, default setting) Figure 13 LAN fault with LFP activated, global DIP 6 = OFF: by default, all Link LEDs go out in the event of a fault in a twisted pair segment. The red FEF LED indicates the FO converter where the twisted pair segment failed. LFP deactivated, local (DIP 6 = ON) Figure 14 LAN fault with LFP deactivated, local DIP 6 = ON: in the “LFP deactivated, local” setting, only the Link LEDs of the corresponding port go out in the event of a fault in a twisted pair segment. The Link LEDs at the copper port on the other media converter and for the fiber optic connection are on. The “LFP deactivated, local” setting therefore enables more precise diagnostics.

12.3 Fault on the fiber optic cable

Figure 15 Fiber optic fault In the case of FL MC EF WDM... FO converters, only one glass fiber is used to transmit and receive. Therefore, in the event that the fiber optic connection is lost, it may not be easy to detect which FO converter was the first to stop receiving data. In this case, the FEF LED cannot be used to determine whether and at which FO converter the fiber optic connection is interrupted. US1 GND US2 GND FL MC EF 1300 MM SC Ord.-No. 2902853 TD VCC FEF LINK LAN FO LAN US1 GND US2 GND FL MC EF 1300 MM SC Ord.-No. 2902853 TD VCC FEF LINK WDM A WDM B VCC FEF LINK VCC FEF LINK US1 GND US2 GND FL MC EF 1300 MM SC Ord.-No. 2902853 TD VCC FEF LINK LAN FO LAN US1 GND US2 GND FL MC EF 1300 MM SC Ord.-No. 2902853 TD VCC FEF LINK X WDM A WDM B VCC FEF LINK VCC FEF LINK US1 GND US2 GND FL MC EF 1300 MM SC Ord.-No. 2902853 TD VCC FEF LINK LAN FO LAN US1 GND US2 GND FL MC EF 1300 MM SC Ord.-No. 2902853 TD VCC FEF LINK X WDM A WDM B VCC FEF LINK VCC FEF LINK US1 GND US2 GND FL MC EF 1300 MM SC Ord.-No. 2902853 TD VCC FEF LINK LAN FO LAN US1 GND US2 GND FL MC EF 1300 MM SC Ord.-No. 2902853 TD VCC FEF LINK X WDM A WDM B VCC FEF LINK VCC FEF LINK