Honeywell Gauge Pressure SensorSurface 8 DIP

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RS-stocknr.:
211-9916
Fabrikantnummer:
HSCDANN001BG2A5
Fabrikant:
Honeywell
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Merk

Honeywell

Sensor Type

Gauge Pressure Sensor

Product Type

Gauge Pressure Sensor

Maximum Overload Pressure

200kPa

Mount Type

Surface

Package Type

DIP

Pin Count

8

Minimum Supply Voltage

5V

Maximum Operating Pressure

100 kPa

Maximum Supply Voltage

6V

Accuracy

±0.25 %

Port Type

Single Axial Barbed

Maximum Operating Temperature

85°C

Series

HSC

Standards/Approvals

No

Width

13.3 mm

Height

13.75mm

Maximum Output Voltage

3.3V

Length

10mm

Minimum Operating Pressure

0bar

Minimum Operating Temperature

-25°C

Automotive Standard

No

Honeywell Pressure Sensor, PCB Mount, 100kPa - HSC Series - HSCDANN001BG2A5


Mount this Honeywell pressure sensor onto a printed circuit board (PCB) to accurately measure the pressure of gases and liquids. This component is piezo-resistive, so it uses thin sections of silicon to detect minute changes in electrical resistance. Thanks to its DIP (dual in-line package) pin setup with eight pins arranged in parallel rows, mounting onto PCBs is quick and simple. It also offers full analogue and digital output so you can take readings easily. You can use this component for a variety of applications, such as monitoring dynamic pressure changes in pyrotechnic devices.

Features & Benefits


• Maximum operating pressure of 100kPa for use in most everyday operating conditions

• Maximum overload pressure of 200kPa for added safety

Applications


• Haemodialysis machines

• Ventilators

• Gas flow and air pressure measurement

How can I protect this pressure sensor against failure?


Pressure sensors can fail due to mechanical damage, as well as electrical overload from lighting, a misconnection during maintenance or a tripped circuit. This means it's important to protect your circuit against electrical hazards. Moisture and chemicals can also cause the pressure sensor to fail or give an inaccurate reading, so it's important to protect the sensor from harsh conditions when possible.

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