BE-4R5000PG6DC Allicdata Electronics
Allicdata Part #:

287-1131-ND

Manufacturer Part#:

BE-4R5000PG6DC

Price: $ 0.00
Product Category:

Sensors, Transducers

Manufacturer: Honeywell Sensing and Productivity Solutions
Short Description: SENSOR PRESS GAUGE 5000PSI 4VDC
More Detail: Pressure Sensor 5000 PSI (34473.79 kPa) Vented Gau...
DataSheet: BE-4R5000PG6DC datasheetBE-4R5000PG6DC Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Obsolete
Pressure Type: Vented Gauge
Operating Pressure: 5000 PSI (34473.79 kPa)
Output Type: Analog Voltage
Output: 100 mV ~ 900 mV (5V)
Accuracy: ±2%
Voltage - Supply: 4.75 V ~ 5.25 V
Port Size: Male - 7/16" (11.11mm) UNF
Port Style: Threaded
Features: --
Termination Style: Terminal Pins
Maximum Pressure: 10000 PSI (68947.57 kPa)
Operating Temperature: -20°C ~ 85°C
Package / Case: Cylinder, Threaded
Supplier Device Package: --
Description

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Pressure sensors, transducers, and the BE-4R5000PG6DC are all related concepts. A pressure transducer is an electronic device that measures pressure and converts it to a digital signal. This signal can then be used to control the operation of machinery or signals to alert the operator. A pressure sensor is an instrument that measures the pressure inside of a system or chamber. It can be used to measure pressure within a fluid, air or gas. The BE-4R5000PG6DC is a type of pressure transducer. It is a standard bore, volume-type, all stainless steel, differential pressure transducer. It is designed to measure the difference in pressure between two points.

The BE-4R5000PG6DC is capable of measuring differential pressure between 0-500 psi. It has a 0-100 psi range, which allows for the simple adjustment of the range. The transducer is fully programmable and can be set to output a particular signal type such as a voltage, current, thermocouple input or digital output. The transducer is also capable of providing a wide variety of outputs based on the customer’s needs, which makes it an ideal choice for industrial applications.

The BE-4R5000PG6DC transducer is typically used in applications such as precision instrumentation, flow and pressure monitoring, and industrial process control. It is ideal for measuring low pressure and has a high accuracy. In addition, the transducer can operate with a wide variety of media, including liquids, gases, and vacuum. It is also capable of withstanding extreme temperatures, making it suitable for use in many industrial environments. The BE-4R5000PG6DC is often used in applications where accuracy and reliability are paramount.

The working principle of the BE-4R5000PG6DC transducer is based on the relationship between pressure and the displacement of a diaphragm. The device is made up of two parts, the sensing element and the sensor housing. The sensing element consists of a thin diaphragm made from a metal alloy and a sensing resistor. The diaphragm is mounted in a low profile, high pressure sealed housing that has a variety of connections for the external pressure source. The sensing element is then connected to a Wheatstone bridge circuit. The Wheatstone bridge is used to measure the resistance of the sensing element and convert it to a digital signal.

The BE-4R5000PG6DC transducer works by detecting the change in pressure on the diaphragm. As the pressure on the diaphragm changes, the resistance of the sensor changes accordingly. This change in resistance is then measured by the Wheatstone bridge and converted to a digital signal. The digital signal is then sent to the user for further processing or to be used to control the operation of the machinery.

In summary, the BE-4R5000PG6DC is a standard bore, volume-type, all stainless steel, differential pressure transducer. It is designed to measure the difference in pressure between two points, with a range of 0-500 psi and accuracy of 0.1% FS. It is capable of outputting a variety of signal types and can operate with a wide variety of media. It is typically used in applications such as precision instrumentation, flow and pressure monitoring, and industrial process control. It works by detecting the change in pressure on a diaphragm, and converting this to a digital signal via a Wheatstone bridge circuit.

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

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