Dynamic pressure sensor, the transmitter is a high frequency sensor.
The high frequency dynamic pressure sensor adopts silicon stack silicon technology. At the same time, it has high responsiveness. At the same time, it also has high accuracy in low frequency or static data. The high-frequency dynamic pressure sensor has its own hybrid temperature compensation, and the special processing can reach 2000℃ instantaneously. It can provide stable performance in a wide temperature range, with good linearity, high natural frequency, short rise time and wide excellent response frequency band.
Sino-Inst offers a variety of Dynamic Pressure Sensors for pressure measurement. If you have any questions, please contact our sales engineers.
Features of High Frequency Dynamic Pressure Sensor
- Wide measuring medium range
- Wide pressure measurement range
- High natural frequency up to 2MHz
- Stable work
- Strong anti-interference ability
- Original imported components, reliable performance.
- Small size, light weight, complete types, high cost performance
Read more about: What is a pressure sensor and how it works?
Specifications of High Frequency Dynamic Pressure Sensor
|Type of pressure||Gauge pressure, absolute pressure, negative pressure|
|Long-term stability||Typical: ±0.1%FS, maximum: ±0.2%FS/year|
|Comprehensive accuracy||≤±0.25%FS, 0.5%FS|
(Comprehensive accuracy includes: linearity + repeatability + hysteresis)
|Overload pressure||2 times full scale pressure |
(100MPa product overpressure is 1.1 times full scale pressure)
|Ambient temperature||-20 … +85℃|
|Medium temperature||-40 … +85℃, special can be -10℃~200℃|
|Vibration influence||≤±0.01%FS (X, Y, Z axis, 200Hz/g)|
|Transmitter frequency response||0~1KHz~200KHz|
|Zero temperature drift||Typical: ±0.02%FS/℃, maximum: ±0.05%FS/℃|
|Sensitivity temperature drift||±0.02%FS/℃, maximum: ±0.05%FS/℃|
|Resolution||Infinitely small in theory, usually 1/100000|
|Medium||Gas or liquid compatible with 316 stainless steel|
|Power supply||Transmitter power supply: 12~36VDC (generally 24VDC), |
±15VDC switching power supply or linear power supply
Sensor power supply: constant current: 1mA~4mA;
constant voltage: 5VDC~24VDC
|Signal output||Analog: 4~20mA, 1~5 V DC, 0~10VDC, 0~5V DC|
Sensor output: 1.5mV~15mV/V
|Insulation resistance||100MΩ, 500VDC|
|Electrical protection||Reverse polarity protection, anti-electromagnetic interference|
|Liquid contact material||316L stainless steel|
|shell material||304 stainless steel|
|Process connection||M20*1.5, G1/4, flush film, other threads can be designed according to customer requirements|
|Electrical connection||The cable is IP67 and the connector connection is IP65|
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Applications of High Frequency Dynamic Pressure Sensor
- Military engineering
- Chemical explosion test
- Petroleum prospecting and well testing
- Fluid mechanics
- Internal combustion engine system
- Scientific tests such as hydraulic power machinery test
- Chemical explosion test
Read more about: What is industrial pressure transmitter?
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Sino-Inst offers over 20 Pressure sensors. A wide variety of Pressure sensors options are available to you. Such as free samples, paid samples. Sino-Instrument is a globally recognized manufacturer of Pressure sensors, located in China.
Sino-Inst sells through a mature distribution network that reaches all 30 countries worldwide. Pressure sensors products are most popular in Europe, Southeast Asia, and Mid East. You can ensure product safety by selecting from certified suppliers. With ISO9001, ISO14001 certification.
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Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.