HCLA02X5-B SENSORTECHNICS | Alldatasheet
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Miniature amplified low pressure sensors 1/15E / 11629 / F www.first-sensor.com www.sensortechnics.com
FEATURES
0 ... ±75 mbar, differential or gage (SPI and switching outputs optional)
- Precision ASIC conditioning
- Calibrated and temperature compensated
- Matched pressure port volumes
- Miniature SMT and SIL housings
- RoHS compliant ELECTRICAL CONNECTION +Vs Vout SC L SD A GND SPECIFICATIONS Maximum ratings Output current Sink 1 mA Source 1 mA Lead specifications Average preheating temperature gradient2.5 K/s Soak time ca. 3 min Time above 217°C 50 s Time above 230°C 40 s Time above 250°C 15 s Peak temperature 260°C Cooling temperature gradient -3.5 K/s Temperature ranges Compensated -25 ... 85°C Operating -25 ... 85°C Storage -40 ... 125°C Humidity limits (non-condensing) 0 ... 95 %RH Note: Pins 5 and 8(connections for digital I2C-bus) are only available for SMD package styles (H, E and Q housings)
Miniature amplified low pressure sensors 2/15E / 11629 / F www.first-sensor.com www.sensortechnics.com PRESSURE SENSOR CHARACTERISTICS (Vs = 5.0 V, TA = 25 °C, analog output signal is ratiometric to VS, digital output signal is not ratiometric to VS, pressure applied to high pressure port) .ontraPe russerpgnitarepOe russerpfoorP 7,5 erusserptsruB 7,6 langistuptuO V2±52.2 V52.4-52.0 Specification notes: 1. Shift is relative to 25°C. 2. Shift is within the first hour of excitation applied to the device. 3. Non-linearity refers to the B est Straight Line fit, measured for lowest specified pressure, highest specified pressure and 1/2 full scale pressure. 4. Full Scale Span (FSS) is the algebraic difference between the output signal for the highest and lowest highest pressure. 5. Proof pressure is the maximum pressure which may be applied without causing durable shifts of the electrical parameters of the sensing element. 6. Burst pressure is the maximum pressure which may be applied without causing damage to the sensing element or leaks to the housing. 7. The common mode pressure for the HCLA series is 2 bar. Common mode pressure is the maximum pressure that can be applied to both ports of a differential pressure sensor simultaneously without damaging the sensor housing. 8. Max. delay time between pressure change at the pressure die and signal change at the output. resolutions and reponse times are available on request. Please contact First Sensor for further information. 10.Sensors with lower current consumption are available on request. Please contact First Sensor for further information.
Miniature amplified low pressure sensors 3/15E / 11629 / F www.first-sensor.com www.sensortechnics.com PERFORMANCE CHARACTERISTICS (Vs = 5.0 V, TA = 25 °C, analog output signal is ratiometric to VS, digital output signal is not ratiometric to VS, pressure applied to high pressure port) scitsiretcarahC. niM. pyT. xaMt inU )LSB(siseretsyhdnaytiraenil-noN 3 50.0±5 2.0± SSF%)C°58ot52-(stceffelamrehT 1 tesffO5 .1± napS0 .2± yaledesnopseR 9,8 5.0s m noituloserD/A 9 21 tibnoituloserA/D 11 )daolon(noitpmusnoctnerruC 01 5A m SCITSIRETCARAHCECNAMROFREPLATIGID tfihspu-mrawtesffO 2 2400± xeHtnuoC)g1±(ytivitisnesnoitisoptesffO 3600± )raeyeno(tfirdmretgnoltesffO 2400± SCITSIRETCARAHCECNAMROFREPEUGOLANA tfihspu-mrawtesffO 2 01± Vm)g1±(ytivitisnesnoitisoptesffO 51± )raeyeno(tfirdmretgnoltesffO 01± HCLA02X5...B scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO5 .2-5 .2+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZA 0739 9938 2C3 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuOr abm5.2+taC CC6 rabm5.2-ta6 660 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.25 2.25 3.2 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuOr abm5.2+ta5 2.4 rabm5.2-ta5 2.0 HCLA02X5... HCLA02X5...U scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO0 5 .2+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZ7 D306 6606 F80 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuoelacslluF CCC6 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.05 2.05 3.0 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuoelacslluF 52.4
Miniature amplified low pressure sensors 4/15E / 11629 / F www.first-sensor.com www.sensortechnics.com scitsiretcarahC. niM. pyT. xaMt inU )LSB(siseretsyhdnaytiraenil-noN 3 50.0±5 2.0± SSF%)C°58ot52-(stceffelamrehT 1 tesffO0 .1± napS0 .1± yaledesnopseR 9,8 5.0s m noituloserD/A 9 21 tibnoituloserA/D 11 )daolon(noitpmusnoctnerruC 01 5A m SCITSIRETCARAHCECNAMROFREPLATIGID tfihspu-mrawtesffO 2 1200± xeHtnuoC)g1±(ytivitisnesnoitisoptesffO 1200± )raeyeno(tfirdmretgnoltesffO 1200± SCITSIRETCARAHCECNAMROFREPEUGOLANA tfihspu-mrawtesffO 2 5± Vm)g1±(ytivitisnesnoitisoptesffO 5± )raeyeno(tfirdmretgnoltesffO 5± HCLA12X5...B scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO5 .21-5 .21+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZA 0739 9938 2C3 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuOr abm5.21+taC CC6 rabm5.21-ta6 660 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.25 2.25 3.2 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuOr abm5.21+ta5 2.4 rabm5.21-ta5 2.0 HCLA12X5... HCLA12X5...U scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO0 5 .21+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZ7 D306 6606 F80 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuoelacslluF CCC6 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.05 2.05 3.0 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuoelacslluF 52.4 PERFORMANCE CHARACTERISTICS (cont.) (Vs = 5.0 V, TA = 25 °C, analog output signal is ratiometric to VS, digital output signal is not ratiometric to VS, pressure applied to high pressure port)
Miniature amplified low pressure sensors 5/15E / 11629 / F www.first-sensor.com www.sensortechnics.com scitsiretcarahC. niM. pyT. xaMt inU )LSB(siseretsyhdnaytiraenil-noN 3 50.0±5 2.0± SSF%)C°58ot52-(stceffelamrehT 1 tesffO5 .0± napS0 .1± yaledesnopseR 9,8 5.0s m noituloserD/A 9 21 tibnoituloserA/D 11 )daolon(noitpmusnoctnerruC 01 5A m SCITSIRETCARAHCECNAMROFREPLATIGID tfihspu-mrawtesffO 2 1200± xeHtnuoC)g1±(ytivitisnesnoitisoptesffO 1200± )raeyeno(tfirdmretgnoltesffO 1200± SCITSIRETCARAHCECNAMROFREPEUGOLANA tfihspu-mrawtesffO 2 5± Vm)g1±(ytivitisnesnoitisoptesffO 5± )raeyeno(tfirdmretgnoltesffO 5± HCLA0025...B scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO5 2-5 2+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZA 0739 9938 2C3 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuOr abm52+taC CC6 rabm52-ta6 660 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.25 2.25 3.2 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuOr abm52+ta5 2.4 rabm52-ta5 2.0 HCLA0025... HCLA0025...U scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO0 5 2+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZ7 D306 6606 F80 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuoelacslluF CCC6 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.05 2.05 3.0 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuoelacslluF 52.4 PERFORMANCE CHARACTERISTICS (cont.) (Vs = 5.0 V, TA = 25 °C, analog output signal is ratiometric to VS, digital output signal is not ratiometric to VS, pressure applied to high pressure port)
Miniature amplified low pressure sensors 6/15E / 11629 / F www.first-sensor.com www.sensortechnics.com scitsiretcarahC. niM. pyT. xaMt inU )LSB(siseretsyhdnaytiraenil-noN 3 50.0±5 2.0± SSF%)C°58ot52-(stceffelamrehT 1 tesffO5 .0± napS0 .1± yaledesnopseR 9,8 5.0s m noituloserD/A 9 21 tibnoituloserA/D 11 )daolon(noitpmusnoctnerruC 01 5A m SCITSIRETCARAHCECNAMROFREPLATIGID tfihspu-mrawtesffO 2 1200± xeHtnuoC)g1±(ytivitisnesnoitisoptesffO 1200± )raeyeno(tfirdmretgnoltesffO 1200± SCITSIRETCARAHCECNAMROFREPEUGOLANA tfihspu-mrawtesffO 2 5± Vm)g1±(ytivitisnesnoitisoptesffO 5± )raeyeno(tfirdmretgnoltesffO 5± HCLA0050...B scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO0 5-0 5+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZA 0739 9938 2C3 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuOr abm05+taC CC6 rabm05-ta6 660 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.25 2.25 3.2 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuOr abm05+ta5 2.4 rabm05-ta5 2.0 HCLA0050... HCLA0050...U scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO0 0 5+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZ7 D306 6606 F80 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuoelacslluF CCC6 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.05 2.05 3.0 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuoelacslluF 52.4 PERFORMANCE CHARACTERISTICS (cont.) (Vs = 5.0 V, TA = 25 °C, analog output signal is ratiometric to VS, digital output signal is not ratiometric to VS, pressure applied to high pressure port)
Miniature amplified low pressure sensors 7/15E / 11629 / F www.first-sensor.com www.sensortechnics.com scitsiretcarahC. niM. pyT. xaMt inU )LSB(siseretsyhdnaytiraenil-noN 3 50.0±5 2.0± SSF%)C°58ot52-(stceffelamrehT 1 tesffO5 .0± napS0 .1± yaledesnopseR 9,8 5.0s m noituloserD/A 9 21 tibnoituloserA/D 11 )daolon(noitpmusnoctnerruC 01 5A m SCITSIRETCARAHCECNAMROFREPLATIGID tfihspu-mrawtesffO 2 1200± xeHtnuoC)g1±(ytivitisnesnoitisoptesffO 1200± )raeyeno(tfirdmretgnoltesffO 1200± SCITSIRETCARAHCECNAMROFREPEUGOLANA tfihspu-mrawtesffO 2 5± Vm)g1±(ytivitisnesnoitisoptesffO 5± )raeyeno(tfirdmretgnoltesffO 5± HCLA0075...B scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO5 7-5 7+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZA 0739 9938 2C3 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuOr abm57+taC CC6 rabm57-ta6 660 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.25 2.25 3.2 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuOr abm57+ta5 2.4 rabm57-ta5 2.0 HCLA0075... HCLA0075...U scitsiretcarahC. niM. pyT. xaMt inU egnarerusserpgnitarepO0 5 7+r abm SCITSIRETCARAHCECNAMROFREPLATIGID tesffoerusserporeZ7 D306 6606 F80 xeHtnuoC)SSF(napselacslluF 4 6D366 6665 F86 tuptuoelacslluF CCC6 SCITSIRETCARAHCECNAMROFREPEUGOLANA tesffoerusserporeZ5 1.05 2.05 3.0 V)SSF(napselacslluF 4 09.30 0.40 1.4 tuptuoelacslluF 52.4 PERFORMANCE CHARACTERISTICS (cont.) (Vs = 5.0 V, TA = 25 °C, analog output signal is ratiometric to VS, digital output signal is not ratiometric to VS, pressure applied to high pressure port)
Miniature amplified low pressure sensors 8/15E / 11629 / F www.first-sensor.com www.sensortechnics.com I²C BUS Introduction The HCLA is capable to generate a digital output signal. The device runs a cyclic program, which will store a corrected pressure value with 12 bit resolution about every 250 µs within the output registers of the internal ASIC. In order to use the sensor for digital signal readout, it should be connected to a bidirectional I²C-bus. According to the I²C-bus specification, the bus is controlled by a master device, which generates the clock signal, controls the bus access and generates START and STOP conditions. The HCLA is designed to work as a slave, hence it will only respond to requests from a master device. Digital I²C interface The HCLA complies with the following protocol (Fig. 1): Bus not busy: During idle periods both data line (SDA) and clock line (SCL) remain HIGH. START condition (S): HIGH to LOW transition of SDA line while clock (SCL) is HIGH is interpreted as START con- dition. START conditions are always generated by the master. Each initial request for a pressure value has to begin with a START condition. STOP condition (P): LOW to HIGH transition of SDA line while clock (SCL) is HIGH determines STOP condition. STOP conditions are always generated by the master. More than one request for the current pressure value can be trans- mitted without generation of intermediate STOP condition. DATA valid (D): State of data line represents valid data when, after START condition, data line is stable for duration of HIGH period of clock signal. Data on line must be changed during LOW period of clock signal. There is one clock pulse per bit of data. Acknowledge (A): Data is transferred in pieces of 8 bits (1 byte) on serial bus, MSB first. After each byte receiving device – whether master or slave – is obliged to pull data line LOW as acknowledge for reception of data. Master must generate an extra clock pulse for this pur- pose. When acknowledge is missed, slave transmitter becomes inactive. It is on master either to send last com- mand again or to generate STOP condition in that case. Slave address: The I²C-bus master-slave concept requires a unique address for each device. The HCLA has a preconfigured slave address (1111000xb). By factory programming it is possible to define a secondary slave address additional to the general one. According to I²C specification 127 different addresses are available. The sensor will then listen to both slave addresses. After generating a START condition the master sends the address byte containing a 7 bit address followed by a data direction bit (R/W). A "0" indicates a transmission from master to slave (WRITE), a "1" indicates a data request (READ). DATA operation: The sensor starts to send 2 data bytes containing the current pressure value as a 15 bit information placed in the output registers. SDA SCL START condition Data valid Data allowed to change STOP condition R/W Read out of first pressure value Read out of n pressure values (optional) S Data Byte 1 A Data Byte 2Slave Address A A PData Byte 1 generated by master generated by slave S = START condition A = Acknowledge P = STOP condition Data Byte 1 = High Byte (MSB first) Data Byte 2 = Low Byte (LSB last) Fig. 1:I²C bus protocol
Miniature amplified low pressure sensors 9/15E / 11629 / F www.first-sensor.com www.sensortechnics.com retemaraPl obmyS. niM. pyT. xaMt inU levelhgihtupnI 090 01 sVfo%levelwoltupnI 00 1 levelwoltuptuO 01 rotsiserpu-lluP 005 Ω ADS@ecnaticapacdaoL C ADS 004 FpLCS/ADS@ecnaticapactupnI C NI_C2I 01 ycneuqerfkcolcLCS F LCS *0010 04z Hk noitidnocTRATSdnaPOTSneewtebemiteerfsuB t FUB 3.1 sµ ,noitidnocTRATS)detaeper(emitdloHe slupkcolctsrifot t ATS.DH 8.0 LCSfodoirepWOL t WOL 3.1 LCSfodoirepHGIH t HGIH 6.0 noitidnocTRATSdetaeperemitputeS t ATS.US 1 emitdlohataD t TAD.DH 0 emitputesataD t TAD.US 2.0 LCSdnaADShtobfoemitesiR tR 3.0 LCSdnaADShtobfoemitllaF tF 3.0 noitidnocPOTSrofemitputeS t OTS.US 6.0 tHD;STA tSU;DAT tHD;DAT tSU;STA tR tF SCL SDA tHIGH tLOW tSU;STO tBUF tHD;STA SDA SCL Note: First Sensor recommends communication speeds of at least 100 kHz (max. 400 kHz). Please contact us for further information. * recommended Fig. 2:Timing characteristics I²C Interface Parameters
Miniature amplified low pressure sensors 10/15E / 11629 / F www.first-sensor.com www.sensortechnics.com PHYSICAL DIMENSIONS AND ELECTRICAL CONNECTIONS SIL dual port, same side dimensions in mm SMD dual port, same side niP noitcennoC 1s V+ 2D NG 3t uoV 4* C/I 5L CS 6 *C/I7 8A DS dimensions in mm first angle projection first angle projection * Internal connection. Do not connect for any reason niP noitcennoC 1s V+ 2D NG 3t uoV 4* C/I * Internal connection. Do not connect for any reason 0.46 2.54 7.62 16.00 12.70 17.00 2.54 10.30 1.00 2.65 6.50 0.70 4.20 3.80 Ø 2.00 15.90 7.70 14.90 11.90 0.25 3.00 4.70 Ø 3.00 1.57 26.30 2.70 Label 1 2 3 4 Low pressure port High pressure port 16.00 2.65 1.00 12.70 6.50 2.54 2.54 7.62 3.00 4.70 Ø 3.00 4.06 16.70 6.90 15.32 2.06 6.76 0.46 0.70 3.80 4.20 4.76 7.70 Ø 2.00 15.90 8.26 14.90 11.90 Label 8 7 6 5 1 2 3 4 Low pressure port High pressure port
Miniature amplified low pressure sensors 11/15E / 11629 / F www.first-sensor.com www.sensortechnics.com PHYSICAL DIMENSIONS AND ELECTRICAL CONNECTIONS (cont.) SMD single port SIL single port dimensions in mm niP noitcennoC 1s V+ 2D NG 3t uoV 4* C/I 5L CS 6 *C/I7 8A DS dimensions in mm first angle projection first angle projection * Internal connection. Do not connect for any reason niP noitcennoC 1s V+ 2D NG 3t uoV 4* C/I * Internal connection. Do not connect for any reason 16.00 1.00 12.70 6.50 2.65 2.54 7.62 2.54 16.70 Ø 3.00 4.06 15.32 6.76 4.27 2.00 0.46 Ø 2.00 8.26 15.90 0.70 3.80 4.20 14.90 11.90 3.65 Label 8 7 6 5 1 2 3 4 High pressure port 16.00 12.70 10.30 17.00 0.46 2.54 7.62 2.54 1.00 2.65 6.50 26.30 Ø 3.00 1.57 0.25 4.27 2.00 4.68 Ø 2.00 3.10 0.70 2.70 15.90 14.90 11.90 3.65 Label 1 2 3 4 High pressure port
Miniature amplified low pressure sensors 12/15E / 11629 / F www.first-sensor.com www.sensortechnics.com HOUSING OPTIONS Different housing options are available on request. Please contact First Sensor. dimensions in mm niP noitcennoC 1s V+ 2D NG 3t uoV 4* C/I 5L CS 6 *C/I7 8A DS dimensions in mm first angle projection first angle projection * Internal connection. Do not connect for any reason niP noitcennoC 1s V+ 2D NG 3t uoV 4* C/I * Internal connection. Do not connect for any reason 2.54 2.54 7.62 2.65 1.00 6.50 12.70 16.00 6.90 16.70 15.32 6.76 4.06 8.26 Ø 2.00 0.70 4.70 7.70 0.46 2.06 19.10 14.90 11.90 3.50 Label 8 7 6 5 1 2 3 4 Low pressure port High pressure port 16.00 2.65 1.00 12.70 17.00 10.30 2.54 2.54 7.62 0.46 6.50 Ø 3.00 1.57 0.25 26.30 4.20 Ø 2.00 0.70 3.80 19.10 4.70 7.70 14.90 11.90 Label 1 2 3 4 Low pressure port High pressure port
Miniature amplified low pressure sensors 13/15E / 11629 / F www.first-sensor.com www.sensortechnics.com HOUSING OPTIONS (cont.) Different housing options are available on request. Please contact First Sensor. dimensions in mm first angle projection * Internal connection. Do not connect for any reason niP noitcennoC 1s V+ 2D NG 3t uoV 4* C/I 2.65 1.00 12.70 16.00 10.30 17.00 18.55 4.85 2.54 2.54 7.62 0.46 Ø 2.00 7.70 27.85 4.20 3.80 0.25 1.57 14.90 11.90 3.00 Ø 3.00 4.70 0.70 Label 1 2 3 4 Low pressure portHigh pressure port
Miniature amplified low pressure sensors 14/15E / 11629 / F www.first-sensor.com www.sensortechnics.com Dual Inline Packages (DIP) (Available for all housing styles. Sample package shown: DIP dual port, same side) Barbed pressure ports (Available for all housing styles. Sample package shown: SMD dual port, same side) dimensions in mm dimensions in mm HOUSING OPTIONS (cont.) Different housing options are available on request. Please contact First Sensor. first angle projection first angle projection 16.00 12.70 2.65 1.00 6.00 5.50 2.54 2.54 7.62 5.14 10.14 16.70 5.00 12.72 5.00 6.90 7.29 0.70 Ø 2.20 Ø 3.00 2.50 8.00 11.64 17.70 4.35 7.99 0.46 16.70 3.80 Label 8 7 6 5 1 2 3 4 Low pressure port High pressure port 12.7 16.00 2.65 1.00 6.50 2.54 2.54 7.62 16.70 3.00 6.90 4.70 Ø 3.00 0.25 9.28 Ø 2.00 0.70 3.59 8.29 4.20 6.29 7.70 0.46 15.90 14.90 11.90 3.80 13.48 Label 8 7 6 5 1 2 3 4 Low pressure port High pressure port
Miniature amplified low pressure sensors 15/15E / 11629 / F www.first-sensor.com www.sensortechnics.com
ORDERING INFORMATION
Custom specific pressure ranges and mechanical or electronic sensor modifications are widely available:
- up to 15 bit resolution
- 3 V power supply
- SPI, switching and custom specific outputs
- barbed pressure ports
- Dual Inline Packages (DIP) ... etc. Please contact First Sensor for further information. seireS egnarerusserP gnisuoH noitarbilaC snoitpOA LCH 5X20 rabm5.2 *D edisemasLISffiD B lanoitceridiB 5X21 rabm5.21 E edisemasDMSffiD U lanoitceridinU 5200 rabm52 *G LISegaG 0500 rabm05 H DMSegaG 5700 rabm57 *)P(e disetisoppoLISffiD )Q(e disetisoppoDMSffiD *)T(e dispotemasLISffiD .tseuqernoelbaliavaT,Q,PsgnisuoH .rosneStsriFtcatnocesaelP tuptuolatigidhtiwelbaliavaton* :elpmaxE ALCH 5X20 E B First Sensor reserves the right to make changes to any products herein. First Sensor does not assume any liability arising out of the application or use of any product or circuit described herein, neither does it convey any license under its patent rights nor the rights of others.