ODM OEM Silicon Piezoresistive Pressure Sensor 10mv/V Diaphragm Based Pressure Sensor
Product Details
| Model NO.: | HT26V | Output Signal Type: | Analog Type |
|---|---|---|---|
| Range: | 0-10kpa~60Mpa | Material: | 316L Stainless Steel |
| Wiring Type: | Four-Wire Or Paper Bank | Measuring Medium: | Air And Liquid |
| Power: | 5-10VDC POWER | Output: | 10mv/V |
| Dia: | 19mm | Customization: | OEM And ODM |
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ODM OEM Silicon Piezoresistive Pressure Sensor,Silicon Piezoresistive Pressure Sensor 5V,10V Diaphragm Based Pressure Sensor |
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Product Description
OEM HT26V 5-10V supply silicon pressure sensor core components factory
HT26V Piezoresistive silicon Pressure Sensor
Introduction of silicon pressure sensor core:
HT26V is a piezoresistive silicon pressure sensor core. It uses the piezoresistive effect of diffused silicon to measure the pressure of liquids and gases. Constant voltage power supply output is relatively standard, lower than normal HT19 height, suitable for special case assembly.
This product is a customized product, can be customized constant voltage power supply or constant current power supply, the height can be customized according to the field needs, and finally fully applicable to customer requirements.



- Constant voltage supply and outputs standard signals
- High reliability and excellent stability
- The min height is 7mm, various structures can be customized
- Applied in various industrial process sites.
- including petroleum, chemical, metallurgy,power, and hydrology .
- Used in marine and aviation industries
- Suitable for hydraulic and pneumatic control systems.
- Power Supply: ≤10VDC (5-10VDC)
- Common Mode Voltage Output: 50% of the input (typical)
- Input Impedance:4KΩ~20KΩ
- Output Impedance:2.5KΩ~6KΩ
- Electrical Connection:100mm high-temperature wire,ribbon cable and pin connectors.
| Performance Parameters of silicon pressure sensor core: | |||||
| Measurement Range | Gauge(G) | 10KPa,20KPa,35KPa,100KPa,200KPa,350KPa,1000KPa,2000KPa | |||
| Absolute(A) | 100KPaA,200KPaA,350KPaA,700KPaA,1000KPaA,2000KPaA | ||||
| Sealed(S) | 3500KPaS,7MPaS,10MPaS | ||||
| Typ | Max | Unit | |||
| NonLinearity | ±0.15 | ±0.3 | %F.S | ||
| Repeatability | 0.05 | 0.1 | %F.S | ||
| Hysteresis | 0.05 | 0.1 | %F.S | ||
| Zero Offset Output | 0±1 | 0±2 | mV | ||
| Full Scale Output | ≤20KPa | 50±1 | 50±2 | mV | |
| ≥35kPa | 100±1 | 100±2 | mV | ||
| Zero Offset Temp. Drift | ≤20KPa | ±1 | ±2.5 | %F.S | |
| ≥35kPa | ±0.8 | ±1.5 | %F.S | ||
| Full Scale Temp. Drift | ≤20KPa | ±1 | ±2 | %F.S | |
| ≥35kPa | ±0.8 | ±1.5 | %F.S | ||
| Compensated Temp. | ≤20KPa | 0~50 | ºC | ||
| ≥35kPa | 0~70 | ºC | |||
| Operating Temperature | -20~80 | ºC | |||
| Storage Temperature | -40~125 | ºC | |||
| Allowable Overload | 3 times the full scale | ||||
| Burst Pressure | 5X the full scale | ||||
| Long-term Stability | 0.2 % | F.S/Year | |||
| Diaphragm Material | 316L | ||||
| Insulation Resistance | ≥200MΩ 100VDC | ||||
| Vibration | No change under conditions of 10gRMS, 20Hz to 2000Hz | ||||
| Shock | 100g,11ms | ||||
| Response Time | ≤1ms | ||||
| O-ring Seal | Nitrile rubber or Fluoro rubber | ||||
| Filling Medium | Silicon Oil | ||||
| Weight | ~25g | ||||
| The parameters are tested under the following conditions: 10V @ 25ºC | |||||
| Outline Construction of silicon pressure sensor core | |
| Pressure Tube <3.5MPaS |
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| Normal ≥3.5MPaS <40MPaS |
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| Electrical connection and compensation |
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| Selection Examples |
| Ordering tips |
required airtightness
2. During the assembly of the housing, ensure it is aligned vertically and apply even pressure to avoid jamming or damaging the compensation plate.
3. If the measured medium is not compatible with the core diaphragm and the housing material (316L), special instructions should be provided when placing the order.
4. Avoid pressing the sensor diaphragm with hands or sharp objects to prevent damage to the core due to diaphragm deformation or piercing.
5. Keep the pressure port of the gauge pressure core open to the atmosphere and prevent the entry of water, water vapor, or corrosive media into the core negative pressure chamber.
6. If there are any changes to the pin leads, follow the label on the actual core for reference.
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