XDB307-5 Refrigerant Pressure Transmitter

$36.98

XDB307-5 series air conditioning refrigeration pressure transmitter is a highly reliable and durable product produced in large quantities at a low cost, with customization options available. It utilizes internationally advanced pressure resistance sensor cores, ensuring accurate and consistent performance. Its compact design, wide operating temperature range, and dedicated valve needle for pressure ports are specifically designed for precise measurement and control of fluid pressure in the air conditioning and refrigeration industry.

Pressure Range *

Optional Range:-1~100 bar

Accuracy

Input Voltage

Output Signal

Thread: 7/16-20UNF Female

Electrical Connector

Cable Length

Measuring Medium *

Product price: $36.98
Total options:
Order total:

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Selection guide for supply voltage and output signal

DC5VDC12VDC9~36(24)VDC3.3V
0.5~4.5V, 1~5V, 0.4-2.4V4-20mA, 0-10V, 0.5-4.5V
0-5V, 1-5V
4-20mA, 0-10V, 0.5-4.5V
0-5V, 1-5V
0.4~2.4V, I2C
The output signal cannot usually be greater than the supply voltage, mainly based on the following principles:
01.

From a physical perspective, the potential difference that electronic components can achieve when working is limited by the supply voltage. If you try to generate an output signal greater than the supply voltage, it is like asking a container to hold more liquid than its capacity, which is physically impossible.

02.

From the perspective of circuit principles, the supply voltage provides energy and working conditions for each component in the circuit. When trying to generate a signal higher than the supply voltage, the transistors, amplifiers and other components in the circuit cannot provide sufficient gain or energy conversion, and thus such an output cannot be achieved.

03.

In addition, from the perspective of signal integrity and stability, an output signal that exceeds the supply voltage will cause signal distortion, increase noise, and may even damage components in the circuit, affecting the normal operation of the entire system.