1MHz Underwater Piezoelectric Ultrasonic Transducer for Flow Measurement

Product Description

1MHz Underwater Piezoelectric Ultrasonic Transducer for Flow Measurement


Technical parameters:

Items

Technical Parameters

Image

Name

1MHz underwater ultrasonic transducer

 

Model

PHW-1M-01V

Frequency

1MHz±5%

Detection Distance

0.05 3m

Minimum Parallel lmpedance

15Ω±20

Capacitance

6000pF±20@1KHz

Sensitivity

driving voltage:24 VDistance:0.3mEcho Amplitude:1000 mV

Operating Voltage

Peak Voltage300Vpp

Operating Temperature

-40+80

Pressure

10Kilos or 1MPa

Angle

(Beamwidth)Half-power Beam Width@-3dB:1.8°±10%

Sharp Angle:4.4°±10%

Housing Material

composite material

usage

flow rate,rate

Installation Dimension

See product structure drawing for details

Protection Level

IP68

Weight

80g±5%(wire length30cm

Wiring Instructions

White: transducer +, black: transducer -, shield wire; ( temperature sensor is optional)

Admittance Curve

Product Structure Diagram

 

 


Block diagram of ultrasonic 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




Ultrasonic Flowmeter Application :


Ultrasonic water flow meters measure the speed of fluid passing through the pipe using ultrasound to measure the volumetric flow. In a transit-time ultrasonic liquid flow meter, an ultrasonic signal is transmitted in the direction of the flowing fluid downstream, and then another signal is transmitted against the flowing fluid upstream. In its most basic form, the time for the sonic pulse to travel downstream is compared to the time for the pulse to travel upstream. Using this differential time, the velocity of the following fluid is calculated. Then the meter calculates the volumetric flow rate in the pipe using this fluid velocity. In addition, BTU energy measurement can be derived from the volumetric flow rate and the temperature difference between the hot and cold legs. Clamp-on ultrasonic meters can measure water from outside of the pipe by shooting pulses of sound through the pipe walls, thus having application flexibility and making them suitable for water flow measurements in large pipes.




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