SSCDRRN010ND7A3 Allicdata Electronics
Allicdata Part #:

SSCDRRN010ND7A3-ND

Manufacturer Part#:

SSCDRRN010ND7A3

Price: $ 36.91
Product Category:

Sensors, Transducers

Manufacturer: Honeywell Sensing and Productivity Solutions
Short Description: SENSOR PRESS DIFF 10" H2O 8DIP
More Detail: Pressure Sensor ±0.36 PSI (±2.49 kPa) Differential...
DataSheet: SSCDRRN010ND7A3 datasheetSSCDRRN010ND7A3 Datasheet/PDF
Quantity: 18
1 +: $ 33.55380
5 +: $ 32.03170
10 +: $ 28.98060
Stock 18Can Ship Immediately
$ 36.91
Specifications
Series: TruStability® SSC
Part Status: Active
Pressure Type: Differential
Operating Pressure: ±0.36 PSI (±2.49 kPa)
Output Type: I²C
Output: 12 b
Accuracy: ±0.25%
Voltage - Supply: 3.27 V ~ 3.33 V
Port Size: Male - 0.08" (1.93mm) Tube, Dual
Port Style: Barbed
Features: Amplified Output, Temperature Compensated
Termination Style: PC Pin
Maximum Pressure: ±12.65 PSI (±87.21 kPa)
Operating Temperature: -40°C ~ 85°C
Package / Case: 8-DIP (0.524", 13.30mm), Dual Ports, Same Side
Supplier Device Package: 8-DIP
Description

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Pressure Sensors, Transducers

SSCDRRN010ND7A3 is a pressure measuring device that can transform pressure into a measurable, describable output signal. Pressure is an expression of force per unit area, and can measure either the force of a static pressure or dynamic pressure. Pressure sensors are used in a wide variety of applications and come in many configurations, including capacitive, differential, force, inductive, thermal, and even piezoelectric. This article will discuss the application field and working principle of SSCDRRN010ND7A3.

Application field of SSCDRRN010ND7A3

SSCDRRN010ND7A3 Pressure sensors are used in a variety of applications. They are most commonly used in medical and industrial applications. In medical applications, pressure sensors are used to measure the pressure of blood in arteries and veins, in IVs and catheters, or in combination with ventilators or patient monitoring systems. In industrial applications, pressure sensors are used to measure the pressure of hydraulic fluids, oil, and gas. Pressure sensors can also be used to measure the pressure of liquids, such as in the food and beverage industry, or to monitor the pressure of rotating machinery. Pressure sensors can also be used in automotive applications, such as tire pressure monitoring systems.

Working principle of SSCDRRN010ND7A3

The working principle of SSCDRRN010ND7A3 is based on a pressure-sensitive diaphragm. This diaphragm responds to changes in pressure by deforming in proportion to the pressure applied to it. The deflection of the diaphragm changes the distance between two electrical connections. The electrical signaling device, such as a strain-gauge transducer or sensing element, measures the distance and then transmits this information as an electrical output. This electrical output is then sent to a remote controller that interprets the information and sends an appropriate response. This response could be to open or close a valve, or to activate an alarm.

This is the basic working principle of SSCDRRN010ND7A3. The most important part of the pressure sensor is the diaphragm. It is essential to accurately read the pressure. The diaphragm must be made from a material that is highly sensitive to changes in pressure. It must also be strong enough to withstand the pressure and temperature variations that it will be exposed to. In addition, the diaphragm must not be affected by any chemicals or other contaminant that may be present with the medium being measured.

Conclusion

SSCDRRN010ND7A3 is a pressure measuring device that can convert pressure into a measurable, describable output signal. The working principle of SSCDRRN010ND7A3 is based on a pressure-sensitive diaphragm that responds to the pressure by changing the distance between two electrical contacts. These sensors are used in a variety of medical and industrial applications to measure the pressure of liquids, gases, and other media. The most important part of the pressure sensor is the diaphragm, which must be made from a material that is highly sensitive to pressure and temperature changes but is strong enough to withstand them.

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

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