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High precision miniaturized pressure transmitter

NegotiableUpdate on 01/03
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Overview
High precision miniaturized pressure transmitter: high stability: better than 0.1% of full range per year; Small temperature deviation: Due to the elimination of the intermediate liquid in the measuring element, the sensor not only achieves high measurement accuracy, but is also less affected by temperature.
Product Details

High precision miniaturized pressure transmitterKey Features:

1. High stability: better than 0.1% of full scale per year.
2. Small temperature deviation: Due to the elimination of the intermediate liquid in the measuring element, the sensor not only achieves high measurement accuracy, but is also less affected by temperature.
3. Good reliability: Using large-scale ICs, the circuit has good reliability and strong anti-interference performance.
4. Wide applicability: The product has multiple models, various process connection forms, and multiple manufacturing materials, which can adapt to various media in industrial measurement.
5. Easy installation and maintenance: The product has a reasonable structure, small size, light weight, and can be installed directly at any position.



High precision miniaturized pressure transmitterWorking Principle:
The instrument converts the temperature signal into an electrical signal through a temperature sensor, which is then amplified and filtered by a preamplifier before being sent to the A/D conversion module of the CPU for analog-to-digital conversion. Finally, the data is processed, displayed, and PWM output is performed by the CPU.

The pressure of the measured medium is directly applied to the ceramic diaphragm of the sensor, causing the diaphragm to produce a small displacement proportional to the pressure of the medium. Under normal working conditions, the maximum displacement of the diaphragm is not more than 0.025 millimeters. After the electronic circuit detects this displacement, it is converted into a standard industrial measurement signal corresponding to this pressure. When overpressure occurs, the diaphragm is directly attached to a sturdy ceramic substrate. Due to the gap between the diaphragm and the substrate being only 0.1 millimeters, the maximum displacement of the diaphragm during overpressure can only be 0.1 millimeters. Therefore, the structure ensures that the diaphragm will not undergo excessive deformation, and the sensor has good stability and high reliability.

        

Technical Specifications
Accuracy level: Level 0.5
Return difference: 0.1% FS
Temperature influence: ± 0.1%/10 ℃
Working voltage: DC 13V~30V
Annual stability: ± 0.2%
Signal output: 4-20mA
Allowable overvoltage: 150% range
Dimensions: 120 × 60 × 100 max
Maximum pressure: 200% range
Allowable temperature: medium -20~70 ℃, environment -20~80 ℃

Standard range table

measurement range

code name

Range adjustment range

0-4kPa

D1

0.7-7kPa

0-6kPa

D2

0.7-7kPa

0-10kPa

D3

1.0-10kPa

0-16kPa

D4

10.0-20kPa

0-20kPa

D5

10.0-20kPa

0-25kPa

D6

12.0-30kPa

0-40kPa

D7

12.0-40kPa

0-60kPa

D8

20.0-60kPa

    

    

    

0-100kPa

E1

30.0-100kPa

0-160kPa

E2

60.0-200kPa

0-200kPa

E3

60.0-200kPa

0-250kPa

E4

120.0-400kPa

0-400kPa

E5

120.0-400kPa

    

    

    

0-0.6MPa

F1

0.2-0.6MPa

0-1.0MPa

F2

0.3-1.0MPa

0-1.6MPa

F3

0.6-2.0MPa

0-2.0MPa

F4

0.6-2.0MPa

0-2.5MPa

F5

1.2-4.0MPa

0-4.0MPa

F6

1.2-4.0MPa

0-6.0MPa

F7

2.0-6.9MPa

    

    

    

0-10MPa

H1

3.0-10MPa

0-20MPa

H2

6.0-20MPa

-2-2kPa

C1

2.0-7.0kPa

5-5kPa

C2

5.0-20kPa

10-10kPa

C3

2.0-20kPa

-20-20kPa

C4

-8.0-20kPa

50-50kPa

C5

10.0-100kPa

    

    

    

-100-0kPa

B1

40-100kPa

100-100kPa

B2

40-100kPa

100-300kPa

B3

50-400kPa

100-900kPa

B4

240-1000kPa






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