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The monocrystalline silicon differential pressure transmitter adds a "smart eye" to the compressed air system

2025-09-29 10:43:08 Visits:7333Author:yigeqi

At present, when industrial automation and energy management are attracting much attention, monocrystalline silicon differential pressure transmitter plays a key role in the compressed air system, making the energy consumption of "invisible and untouchable" compressed air become quantifiable and optimize, and promoting enterprises to achieve fine management.

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Compressed air is recognized as the "fourth largest energy source" in industrial applications. However, due to inadequate monitoring methods, many enterprises face challenges such as inefficient systems and severe leakage issues. Traditional differential pressure transmitters often struggle with precision limitations and instability in these systems. In contrast, monocrystalline silicon differential pressure transmitters provide reliable data support for system optimization, boasting a high accuracy of ±0.075% and exceptional long-term stability.

 

In the compressed air system, the monocrystalline silicon differential pressure transmitter mainly plays three roles: 1. In the filter condition monitoring, through real-time monitoring of the pressure difference between the filter front and back, accurately determine the filter blockage, prevent energy waste caused by excessive pressure drop, timely replacement of the filter can reduce the system energy consumption.

2. In the field of flow measurement, when used with throttle device, it can realize accurate measurement of compressed air flow, and provide basis for enterprise energy audit and cost allocation.

3. In terms of system pressure monitoring, the pressure loss at key points of pipe network is monitored to help enterprises find leakage points and optimize pipe network design.

 

Single-crystal silicon differential pressure transmitters demonstrate distinct advantages over traditional products. Featuring a core sensing element made of single-crystal silicon, they exhibit exceptional long-term stability and overload resistance, capable of withstanding common pressure fluctuations and shocks in compressed air systems. Additionally, the device incorporates built-in temperature compensation functionality to maintain measurement accuracy across wide temperature ranges, making it suitable for installation in high-temperature environments such as air compressor rooms.

 

With the advancement of the national "double carbon" target, the application of monocrystalline silicon differential pressure transmitter in the compressed air system will enter a period of rapid growth. This technology is expected to become the standard configuration of industrial enterprises, providing strong support for the green transformation of manufacturing industry.

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