SSCMNNN015PA5A3 Allicdata Electronics
Allicdata Part #:

SSCMNNN015PA5A3-ND

Manufacturer Part#:

SSCMNNN015PA5A3

Price: $ 16.03
Product Category:

Sensors, Transducers

Manufacturer: Honeywell Sensing and Productivity Solutions
Short Description: BRD MNT PRESSURE SENSORS
More Detail: Pressure Sensor 15 PSI (103.42 kPa) Absolute 12 b...
DataSheet: SSCMNNN015PA5A3 datasheetSSCMNNN015PA5A3 Datasheet/PDF
Quantity: 1000
250 +: $ 14.57040
Stock 1000Can Ship Immediately
$ 16.03
Specifications
Series: TruStability® SSC
Part Status: Active
Pressure Type: Absolute
Operating Pressure: 15 PSI (103.42 kPa)
Output Type: I²C
Output: 12 b
Accuracy: ±0.25%
Voltage - Supply: 3 V ~ 3.6 V
Port Size: --
Port Style: No Port
Features: Amplified Output, Temperature Compensated
Termination Style: Surface Mount
Maximum Pressure: 30 PSI (206.84 kPa)
Operating Temperature: -40°C ~ 85°C
Package / Case: 8-SMD, J-Lead
Supplier Device Package: 8-SMT
Description

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Pressure Sensors, Transducers

The SSCMNNN015PA5A3 is a type of pressure sensor/transducer, which is a device used to measure pressure. It is used in industrial control, environmental metrology, and automotive applications, and is typically mounted inside of a system for continuous sensing. The pressure transducer is an electronic sensor that uses mechanical components to convert pressure into a voltage output. The most common type of components used are capacitors, but other types of components may be used as well. The pressure sensor works by sensing the difference in pressure on either side of the diaphragm. The voltage output produced is proportional to the pressure being sensed, which can then be used to control various aspects of a system.

Applications

The SSCMNNN015PA5A3 pressure sensor/transducer is often used in industrial applications, such as in process control systems for monitoring process parameters like temperature and pressure. Pressure sensors are used in a variety of other applications, such as automotive fuel systems, air conditioning systems, environmental metrology, and medical monitoring. Pressure transducers may also be used in pollution control systems, airbags in cars, or any other application that requires the measurement of pressure.

Working Principle

The SSCMNNN015PA5A3 pressure transducer works by sensing the difference in pressure on either side of the diaphragm. The diaphragm acts as a flexible barrier that is able to change shape in response to pressure changes. The diaphragm is usually made of a metal or plastic material. When pressure is applied to one side of the diaphragm, it will flex in response to the pressure change. The diaphragm then interacts with two strain gauges, one on either side of the diaphragm. The strain gauges are connected in a Wheatstone bridge configuration. As the diaphragm flexes, the strain gauges will produce a small electrical output, which is proportional to the pressure change. The output is then processed by the transducer’s circuitry, which amplifies the signal and converts it into a usable voltage signal. The voltage signal is then used as a control input for various systems.

Advantages

  • Accurate: Pressure transducers are extremely accurate and consistent in their measuring capabilities.
  • Versatile: They can be used for a variety of different applications, from industrial process control to environmental metrology.
  • Robust: Pressure transducers are designed to withstand high pressure and are able to survive in harsh environments.
  • Reliable: Pressure transducers are reliable and will last for many years, even in harsh environments.
  • Highly Connectable: Pressure transducers are typically equipped with digital interfaces for numerous network communication protocols.

Disadvantages

  • High Cost: Pressure transducers are relatively expensive due to their intricate design.
  • Fragile: Pressure transducers are sensitive to shock and vibration, and must be carefully handled.
  • Struggle in Hot Conditions: Pressure transducers can malfunction in hot environments as the materials they are made of expand and contract in extreme temperatures.
  • Difficult Installation: Pressure transducers often require experienced personnel to properly install and maintain them.
  • Calibration needed: Pressure transducers need periodic calibration to ensure accurate readings.

Conclusion

The SSCMNNN015PA5A3 pressure sensor/transducer is a highly versatile and reliable device for measuring pressure in a variety of different settings. It is commonly used in industrial process control, automotive, environmental metrology, and medical settings. The pressure transducer works by sensing the difference in pressure on either side of the diaphragm, which then produces a small electrical output. This output is then processed by the transducer’s circuitry, which amplifies the signal and converts it into a usable voltage signal. The pressure transducer has many advantages including accuracy, versatility, robustness, reliability, and connectability. However, it also has a few drawbacks, such as high cost, fragility, susceptibility to hot conditions, difficult installation, and the need for periodic calibration.

The specific data is subject to PDF, and the above content is for reference

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