
Allicdata Part #: | P51-15-G-UC-I12-4.5V-000-000-ND |
Manufacturer Part#: |
P51-15-G-UC-I12-4.5V-000-000 |
Price: | $ 90.19 |
Product Category: | Sensors, Transducers |
Manufacturer: | SSI Technologies Inc |
Short Description: | SENSOR 15PSI 1/4-18NPT .5-4.5V |
More Detail: | Pressure Sensor 15 PSI (103.42 kPa) Vented Gauge M... |
DataSheet: | ![]() |
Quantity: | 1000 |
5 +: | $ 81.99100 |
Series: | MediaSensor™ |
Part Status: | Active |
Pressure Type: | Vented Gauge |
Operating Pressure: | 15 PSI (103.42 kPa) |
Output Type: | Analog Voltage |
Output: | 0.5 V ~ 4.5 V |
Accuracy: | ±1% |
Voltage - Supply: | 5V |
Port Size: | Male - 1/4" (6.35mm) NPT |
Port Style: | Threaded |
Features: | Amplified Output, Temperature Compensated |
Termination Style: | Cable 1' |
Maximum Pressure: | -- |
Operating Temperature: | -40°C ~ 105°C |
Package / Case: | Cylinder |
Supplier Device Package: | -- |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Pressure sensors, transducers, and the P51-15-G-UC-I12-4.5V-000-000 are all part of the same family of sensing devices. All of these devices measure pressure and convert it into an electrical output. In this article, we will look at the application field and working principle of the P51-15-G-UC-I12-4.5V-000-000 pressure sensor and transducer.
Pressure sensors and transducers are used in a variety of applications, such as industrial process control, laboratory analysis, biomedical research, automotive and aerospace industries, and meteorology. In terms of laboratory analysis, pressure sensors and transducers are used to measure the pressure of a gas or liquid in order to obtain a sample reading. In terms of industrial process control, pressure sensors and transducers are used to monitor the pressure within various parts of a system in order to ensure an optimal and safe operation. In terms of automotive and aerospace industries, pressure sensors and transducers are used to measure the pressure of fluids such as fuel and oil in order to optimise the performance of the engine.
The P51-15-G-UC-I12-4.5V-000-000 pressure sensor and transducer is a single-piece, reliable and accurate device. It is made up of a metal-to-metal membrane, a permanent magnet, and a capacitor. The metal-to-metal membrane is responsible for sensing the pressure and converting it into an electrical signal. The permanent magnet is used to provide a bias field for the sensor. Finally, the capacitor is used to measure the electrical signal and generate the output. The unit is capable of operating in a wide range of temperatures and is resistant to shock and vibration.
The working principle of the P51-15-G-UC-I12-4.5V-000-000 pressure sensor and transducer is based on the piezoresistive effect. This effect occurs when the membrane is subjected to a pressure. The membrane is composed of two layers of material with different properties. When a pressure is applied to the membrane, the resulting strain causes a change in the electrical resistance of the membrane. This change can be measured and converted into a voltage signal. This signal is then passed through the capacitor in order to measure the magnitude of the applied pressure.
The P51-15-G-UC-I12-4.5V-000-000 pressure sensor and transducer is reliable and accurate, making it suitable for a variety of applications. It is capable of reading pressures up to 15 psi and generating a 4.5V signal. It is also resistant to shock and vibration, making it suitable for industrial environments. In addition, the device is compact and lightweight, making it easy to install in tight spaces. Finally, the unit is easy to calibrate and comes with a range of accessories, such as pressure connectors and mounting hardware.
In conclusion, the P51-15-G-UC-I12-4.5V-000-000 pressure sensor and transducer is a reliable and accurate device. It is capable of reading pressures up to 15 psi and generating a 4.5V signal. The unit is easy to install and calibrate, and is resistant to shock and vibration. The working principle behind the device is based on the piezoresistive effect, which causes a change in the electrical resistance of the membrane when a pressure is applied. This change can then be measured and converted into a voltage signal, which is passed through a capacitor in order to measure the magnitude of the applied pressure.
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