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10VDC Power HT24V Silicon Pressure Sensor with 316L Stainless Steel Housing for Industrial Applications

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10VDC Power HT24V Silicon Pressure Sensor with 316L Stainless Steel Housing for Industrial Applications

10VDC power HT24V silicon pressure sensor cell
HT24V Silicon Piezoresistive Pressure Sensor

Introduction:
HT24V is a flush diaphragm pressure sensor equipped with a highly stable diffused silicon chip. Its innovative design allows for the transmission of pressure to the sensitive chip through a stainless steel diaphragm, with the added protection of sealed silicon oil .The flush diaphragm structure enhances the ease of cleaning and contributes to its exceptional reliability. As a result, this sensor is a perfect fit for various applications, particularly in industries such as food and hygiene, where stringent requirements for cleanliness and accuracy are crucial.
10VDC Power HT24V Silicon Pressure Sensor Cell G1/2 Level Sensor
10VDC Power HT24V Silicon Pressure Sensor Cell G1/2 Level Sensor
10VDC Power HT24V Silicon Pressure Sensor Cell G1/2 Level Sensor


Product Features:
  1. Utilizing advanced technology and 316L stainless steel housing, along with materials such as titanium and Hastelloy for the diaphrag
  2. Employing thick-film circuits for temperature compensation and zero-point correction.outstanding reliability, repeatability, and stability
  3. Flush diaphragm structure, which makes it easy to clean
Applications:
  1. Suitable for measuring non-corrosive gas and liquid pressure with 316L stainless steel compatibility.
  2. Food and beverage industry.
  3. Industrial process control.
  4. Pharmaceutical industry
Electrical performance:
  1. Power Supply: ≤10VDC
  2. Common Mode Voltage Output: 50% of the input (typical)
  3. Input Impedance:4KΩ~20KΩ
  4. Output Impedance:2.5KΩ~6KΩ
  5. Electrical Connection:100mm high-temperature wire ,paper ribbon cable
Measurement RangeGauge(G)10KPa,20KPa,35KPa,100KPa,200KPa,350KPa,1000KPa,2000Kpa

Absolute(A)100KPaA,200KPaA,350KPaA,700KPaA,1000KPaA,2000KPaA

Sealed(S)3500KPaS,7MPaS,10MPaS,20MPaS,35MPaS

TypMaxUnit
Nonlinearity±0.15±0.3%F.S
Repeatability0.050.1%F.S
Hysteresis0.050.1%F.S
Zero Offset Output0±10±2mV
Full Scale Output≤20KPa50±150±2mV

≥35kPa100±1100±2mV
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.≤20KPa0~50ºC

≥35kPa0~70ºC
Operating Temperature-20~80ºC
Storage Temperature-40~125ºC
Allowable OverloadTake the smaller value between 3 times the full scale or 60MPa

Burst Pressure5X the full scale

Long-term Stability0.2 %F.S/Year
Diaphragm Material316L

Insulation Resistance≥200MΩ 100VDC

VibrationNo change under conditions of 10gRMS, 20Hz to 2000Hz

Shock100g,11ms

Response Time≤1ms

O-ring SealNitrile rubber or Fluoro rubber

Filling MediumSilicon Oil

Weight~55g

The parameters are tested under the following conditions: Constant voltage of 10V and ambient temperature of 25ºC
Outline Construction
Dimension


10VDC Power HT24V Silicon Pressure Sensor Cell G1/2 Level Sensor





Electrical connection and compensation
10VDC Power HT24V Silicon Pressure Sensor Cell G1/2 Level Sensor
Selection Examples

10VDC Power HT24V Silicon Pressure Sensor Cell G1/2 Level Sensor

Ordering tips
1. Pay attention to the fit between the core size and the transmitter housing during assembly to achieve the
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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