
Allicdata Part #: | P51-50-G-G-M12-5V-000-000-ND |
Manufacturer Part#: |
P51-50-G-G-M12-5V-000-000 |
Price: | $ 103.38 |
Product Category: | Sensors, Transducers |
Manufacturer: | SSI Technologies Inc |
Short Description: | SENSOR 50PSI 1/8-27NPT 1-5V |
More Detail: | Pressure Sensor 50 PSI (344.74 kPa) Vented Gauge M... |
DataSheet: | ![]() |
Quantity: | 1000 |
5 +: | $ 93.98620 |
Series: | MediaSensor™ |
Part Status: | Active |
Pressure Type: | Vented Gauge |
Operating Pressure: | 50 PSI (344.74 kPa) |
Output Type: | Analog Voltage |
Output: | 1 V ~ 5 V |
Accuracy: | ±1% |
Voltage - Supply: | 8 V ~ 30 V |
Port Size: | Male - 1/8" (3.18mm) NPT |
Port Style: | Threaded |
Features: | Amplified Output, Temperature Compensated |
Termination Style: | M12, 4 Pin |
Maximum Pressure: | -- |
Operating Temperature: | -40°C ~ 105°C |
Package / Case: | Cylinder |
Supplier Device Package: | -- |
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- Pressure Sensors
P51-50-G-G-M12-5V-000-000 Application Field
The P51-50-G-G-M12-5V-000-000 is a miniature pressure sensor manufactured by Dynapar. It is specifically designed for use in low- to medium-pressure applications such as medical, industrial, automotive, and HVAC applications. It can measure a variety of pressures ranging from absolute pressure (gauge) to differential pressure (relative/gauge). The sensor utilizes a highly-sensitive vibrating capacitive sensing element with good linearity, accuracy and stability.
It has a wide temperature range of -20 to +85°C (-4 to +185°F) and can be used in harsh environmental conditions. It is available in both single- and dual-channel versions and comes with a variety of I/O options including 12V and 5V outputs. The sensor is also certified to meet the safety and electromagnetic compatibility (EMC) requirements of the IEC 61000-6-3 standard.
P51-50-G-G-M12-5V-000-000 Working Principle
The sensor uses a vibrating capacitive sensing element. The sensing element consists of a Capacitor that is connected to a capacitor driver which is placed in a specially designed housing. The capacitor driver sends an AC signal to the capacitor, which is then modulated by a pressure-sensitive diaphragm that is exposed to the pressure of the media being monitored. As the pressure of the media changes, the modulated signal is converted into a voltage output that is proportional to the pressure.
The sensor features low power consumption and is rugged enough to withstand harsh environmental conditions while still maintaining accuracy and stability. Additionally, the sensor is self-compensating for pressure, temperature, and aging, which eliminates the need for external compensated elements.
- Transducers
Application Field
A transducer is a device that converts energy from one form to another. Most commonly it is used to convert electrical or mechanical energy into sound, light or heat energy. Transducers are commonly used in a range of industries such as medical, industrial and scientific. For example, medical ultrasonic transducers are used for imaging applications such as ultrasound, while industrial transducers are used for sensing temperature, pressure, force, or displacement.
Working Principle
Transducers work by converting one form of energy into another. For example, an electrical transducer would convert electrical energy into sound, light or heat energy. The transducer works by using an input, such as voltage, and using a transducer element, such as a coil, to convert the energy into a different form. The transducer element is placed in an electrical field which consists of a voltage or current source, an external device that generates an electrical field, and an output device that detects the changes in the transducer element.
The transducer element then converts the input into an output, which is usually in a different form such as sound, light or heat. This output can then be used as an indication of the input, for example to measure pressure or force. Transducers can also be used to convert one type of energy into another, such as converting mechanical energy into electrical energy.
The specific data is subject to PDF, and the above content is for reference
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