164PC01D37
Pressure Sensor, Amplified, 10 Inch-H2O, Voltage, Differential, 8 VDC, Straight, 8 mA
- Manufacturer: HONEYWELL
- Product type: Pressure Transducers
- Port Style: Straight
- Sensor Output: Voltage
- Supply Current: 8mA
- Voltage Rating: 8VDC
- Operating Pressure Max: 10Inch-H2O
- Pressure Measurement Type: Differential
| Delivery and price | |
|---|---|
| Units per pack | 40 |
| Price | 230.61 € |
| Current stock | 10+ |
| Lead time | 30 days |
160PC Series @ <q ## 1d [-SS7 & BIA4 Pressure Sensors “13 Low Pressure Differential, Gage, Vacuum Gage/Amplified e@FEATURESLow pressure measurement @ PCB terminals on opposite side from ~ the ports @ Fully signal conditioned | | 160PC SERIES PERFORMANCE CHARACTERISTICS at 8.0 +0.01 VDC Excita- ## tion, 25°C |tion, 25°C|||||| |---|---|---|---|---|---| |||Min.|Typ.|—° Max.|Units| |Excitation||6.00|8.00|16|VDC| |Supply Current||-—|8.00|20|mA| |Current Sourcing Output||—|—|10|mA| |Null Offset (161/162/164PC)*||0.95|1.00|1.05|Vv| |Null Offset (163PC)**||3.45|3.50|3.55|V| |Output at Full Pressure (161/162/164PC)||5.90|6.00|6.10|V| |Output at FullVacuum (163PC)||0.80|1.00|1.20|Vv| |Span (161/162/164PC)||4.85|5.00|5.15|Vv| |Span (163PC)**||—|5.00|=|Vv| |Ratiometricity Error<br>7to8Vor8to9V<br>9to12V||-<br>-|+0.50<br>+2.00|_<br>_|%Span| |Stability overOneYear||_|+0.50|_|%Span| |Response Time||—|_|1.00|msec| |Weight||_|28|_|grams| |Short Circuit Protection||Output may be shorted indefinately to ground|||| |Output Ripple||None, DC device|||| |Ground Reference||Supply and output arecommon|||| |*Positive (or negative) pressure measurement.|||||| |**PositiveAND negative pressure measurement.|||||| |ENVIRONMENTAL SPECIFICATIONS|||||| |Operating Temperature|-~40° to|+85°C (-40° to +185°F)|||| |StorageTemperature|~55° to|+125°C (-67° to|+257°F)||| |Compensated Temperature|-18° to|+63°C (0° to +145°F)|||| |Shock|MIL-STD-202, Method 213 (50 g,|||half sine, 11 msec)|| |Vibration|MIL-STD-202, Method 204 (10 to|||2000 Hz at 10|g)| |Media|P2 port|Wetted materials; polyester housing, epoxy|||| |||adhesive, silicon, borosilicate glass,and silicon-to-|||| |||glass bond*|||| ||P1port|Drygasesonly|||| ptiquid media containing some highly ionic solutions could potentially neutralize the chip-to-glass tube 30 Honeywell ¢ MICRO SWITCH Sensing and Control For application help: call 1-800-537-6945. Pressure Sensors Low Pressure Differential, Gage, Vacuum Gage/Amplified 160PC Series » ) > = @ Q **==> picture [275 x 31] intentionally omitted <==** **----- Start of picture text -----**<br> 160PC SERIES ORDER GUIDE, VACUUM GAGE AND GAGE TYPE<br>**----- End of picture text -----**<br> **==> picture [510 x 386] intentionally omitted <==** **----- Start of picture text -----**<br> ||||||||||||||||| |---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---| |Combined|Null|&|Sensitivity|Shift|.|.| |(% Span)|Linearity,|B.F.S.L.| |Pressure|25 to 5°|25 to|18|25 to|~40|Overpressure|||& Hysteresis| |Catalog|Range|25 to 45°C|| 25to|+63°C ||25 to 85°C|Sensitivityaes|psi:|%|Span|6% Span| |161PCO01D|0-27.68|-|+1.00|+2.00|0.18|5|aan|+1.00|+0.15 Vacuum| |Gage| |160PC|SERIES|ORDER|GUIDE,|DIFFERENTIAL TYPE| |Combined|Null(% Span)&|Sensitivityy|Shift|Linearity,.|.|B.F.S.L.| |Catalog|PressureRange|2525 to to 4|5°|C|| 2525 to to +6318|°|C ||25|toto 85°C~40|Sensitivity|Overpressurepsi|& Hysteresis% Span| |fasapcotoar ||oro|[2100|||—|||—|||oso|||5|||#20]|~|||2025| |160PC|SERIES|ORDER|GUIDE,|DIFFERENTIAL TYPE| |Combined Null(% &Span) Sensitivityity|Shift|Linearity, B.F.S.L..|.| |Catalog|Pressure|25 to 5°|25 to|18"|25 to~40|Overpressure|& Hysteresis| |Time|Range|25 to 45°C|| 25 to|+|69°C ||25 to 85°C|Sensitivity|cmH,0|% Span| |cmH.|||Max,|||Max|||Max.|||Viemb,o|||Max|||Max.|[Max||Typ.| |* Null|shift. Span|shift|is|+1.00/Span| **----- End of picture text -----**<br> For application help: call 1-800-537-6945. Honeywell e MICRO SWITCH Sensing and Control 31 160PC Series 6 ## Pressure Sensors Low Pressure Differential, Gage, Vacuum Gage/Amplified INTERNAL CIRCUITRY s SENS. TEMPERATURENULL AND SENSITIVITYSHIFT COMP. Amplified pressure sensor are 100% posed to the entire temperature range, tested to insure that the maximum null the maximum null and sensitivity shift will and sensitivity temperature shift does not actually be less than the value specified. NULL exceed the specification. The diagram This diagram indicates the temperature COMP. Vo below illustrates how null and sensitivity _ shift pertainingto a few listings. Maximum 1 shift relates to temperature. Note thatthe null and sensitivity shift varies from listing ~ maximum shift occurs at temperature exto listing. tremes. Therefore, if a sensor is not ex- ## NOTES 1. Terminals are labeled on the sensor. 2. Input and output share a common ground. 3. RL must be greater than or equal to 3000 ohms. **==> picture [147 x 16] intentionally omitted <==** **----- Start of picture text -----**<br> NULL AND SENSITIVITY SHIFT (% F.S.O.)<br>**----- End of picture text -----**<br> **==> picture [338 x 440] intentionally omitted <==** **----- Start of picture text -----**<br> 163PCOID36<br>: 2.0 164PCOID37<br>\s 1e2PC01D<br>1.0 /<br>| oo ZT! +- T(°C)<br>5 Se<br>H15<br>20°<br>SORS WITH BV EXCITATIONS<br>Vo (Output Voltage)<br>oneee ee gy 5 -- -- -- ---------<br>1 ho<br>S/o. Ss |<br>| % ig ©<br>| ~ oo)<br>| [|]<br>1<br>Vocuum Lov Pressure |<br>t<br>i [|]<br>=I psi -5"H20 OPSIG t5*t420 +Ipsi<br>(Gage Scale) - 27.68 H20 +2768 H20<br>161PC01D Vacuum Gage Vo = 1VatO psig & 6 V at -1 psig<br>162PC01D Differential Vo = 1VatOpsig &6 V at 1 psig<br>163PC01D36 Differential Vo = 1Vat-5" H20 & 6 V at -5” HoO<br>NOTE: 161PC sensors are scaled for greater pressure on the P1 side of the chip. 162PC sensors<br>are scaled for greater pressure on the P2 side of the chip. Other scalings available upon request.<br>**----- End of picture text -----**<br> **==> picture [180 x 105] intentionally omitted <==** **----- Start of picture text -----**<br> RATIOMETRICITY<br>woe nee ee eeee it<br>“BB pe stom 5 i irae<br>LitW Il<br>PRESSURE<br>t--y-4 zis. f<br>**----- End of picture text -----**<br> Ratiometricity refers to the output voltage age.being160PC directlysensors proportionalin thisto supplycatalog volt-are calibrated at 8 VDC supply voltage to provide a 1-6 volt (5 V Span) output swing. For example, if supply increases by 50% by 50% to 1.5-9 volts (7.5 V Span). NOTE The output is not perfectly ratiometric. See Accuracy specifications for the degree of error. **==> picture [7 x 19] intentionally omitted <==** **----- Start of picture text -----**<br> ))<br>**----- End of picture text -----**<br> 32 Honeywell ¢ MICRO SWITCH Sensing and Control For application help: call 1-800-537-6945.
Updated at February 9, 2023
Honeywell is a globally recognized leader in the design and manufacture of advanced sensing and switching solutions. Renowned for engineering components that deliver enhanced precision and ruggedness, Honeywell provides essential technologies for demanding applications across critical healthcare, aerospace, and industrial equipment. With a comprehensive portfolio built to address both basic and complex design challenges, the company stands at the forefront of reliable electronic component manufacturing. The core of our Honeywell offering is an extensive selection of high-performance sensors and transducers. This includes a robust lineup of pressure sensors and transducers engineered for accurate fluid and gas measurement in challenging environments. Furthermore, we provide a wide array of temperature sensors and specialized temperature sensing NTC thermistors designed for stable thermal management, alongside precision current sensors and load cells that deliver critical feedback for control systems. Beyond advanced sensing technology, Honeywell’s expertise extends to essential circuit protection and electromechanical components. Our selection encompasses power relays, thermal magnetic circuit breakers, and standard terminal blocks, ensuring safe and efficient power distribution. Whether integrating core components or sourcing specialized accessories, design engineers can rely on Honeywell for uncompromising quality and operational excellence.
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