200Khz Rubber Housing Piezoelectric Ultrasonic Transducer for Ultrasonic Gas Flow Meter

Product Description

200Khz Piezoelectric Ultrasonic Transducer for Gas Flow Measurement 

Technical parameters:


Items

Technical Parameters

Image

Name

200KHz ultrasonic transducer

 

 

Model

PHAL-200-01F

Frequency

200KHz±5%

Detection Distance

0.101.5m

Minimum Parallel lmpedance

800Ω±20

Capacitance

660pF±20@1KHz

Sensitivity

emitting voltage:800Vpp,Distance:30cm,self-transmit self-received

receipt signal 25 mV

Operating Voltage

Peak Voltage1000Vpp

Operating Temperature

-40+80℃

Pressure

3Kilos or 0.3MPa

Angle

(Beamwidth)Half-power Beam Width@-3dB:7.2°±10%

Sharp Angle:22.7°±10%

Housing Material

rubber

usage

ultrasonic gas flowmeter

dimension

(Can be customized according to customer requirements)

Protection Level

IP68

Weight

6.7g±5

Wiring Instructions

interface: red: transducer +, white: transducer -, black: shielded wire, ( temperature sensor is optional)

Admittance Curve

Product Structure Diagram

 

 




Block diagram of ultrasonic distance transducer :



Schematic Diagram of Temperature Sensor (model: MF58_502F3470):


Integrated type Cable instruction:   
1.Wiring instruction of transducer: interface (3pin, 2.54mm terminal)
Red: transducer +      
White: transducer -         
Black: shielding



2.Cable Instruction of Temperature Sensor: interface (3pin, 2.0mm terminal)

Red and black are temperature sensor wiring



Split type: standard 10m cable, with each additional 50m of cable, the signal attenuation is 6dB

Three-core wiring instructions:                
                        
    Red: Transducer +
     Blue: temperature sensor +
     Black: Public-


 Four-core wiring instructions:

Red: Transducer +                      
Yellow: Transducer-
Blue, black: temperature sensor



Application for Ultrasonic Gas Flowmeter :


Industrial gas flow meters are widely utilised for liquid and water applications, it has long been accepted that clamp on gas flowmeter technology could not be applied to mass gas flow measurement primarily due to fundamental theoretical measurement limits. the transmitted sound energy is received by traditional ultrasonic transducers. However, advances in clamp on gas flow measurement technology and processing have meant that despite lower acoustic impedance levels and higher attenuation levels in most gases, a clamp on gas flow meter can now measure transit times in gases where signal-to-noise ratios are extremely low. It is now possible to measure natural gas, steam, compressed air, hydrogen, compressed air and many more using clamp on flow meters.


Production Department :


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