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PHA-200-01J
Piezohannas
PHA-200-01J
200Khz Stainless Steel Ultrasonic Transducer for Ultrasonic Level Gauge
Technical parameters:
Items | Technical Parameters | Image | |
Name | 200KHz Ultrasonic transducer |
| |
Model | PHA-200-01J | ||
Frequency | 200KHz±5% | ||
Detection Distance | 0.10~1.5m | ||
Minimum Parallel lmpedance | 550Ω±20% | ||
530pF±20% @1KHz | |||
Sensitivity | Driving Voltage:800Vpp,Distance:0.3m, Echo Amplitude:30mV | ||
-40~+80℃ | |||
≤8Kilos or 0.8MPa | |||
| (Beamwidth) Half-power Beam Width@-3dB:6°±10%, Sharp Angle:15°±10% | ||
Housing Material | stainless steel | ||
Usage | Ultrasonic level gauge, monitoring, anti - collision | ||
size | thread:M27*1.5 | ||
Protection Level | IP68 | ||
Weight | 195g±5%(Length:20cm) | ||
Wiring instruction | Integrated interface:Red+,White-,Black: shielded wire ( temperature sensor is optional) | ||
Admittance Curve | Product Structure Diagram | ||
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|
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 level measurement
Ultrasonic level transmitter, which performs calculations to convert the distance of wave travel into a measure of level in the tank. The time lapse between firing the sound burst and receiving the return echo is directly proportional to the distance between the transducer and the material in the vessel. The medium is normally air over the material’s surface but it could be a blanket of some other gases or vapours. The instrument measures the time for the bursts to travel down to the reflecting surface and return. This time will be proportional to the distance from the transducer to the surface and can be used to determine the level of fluid in the tank. This basic principle lies at the heart of the ultrasonic measurement technology and is illustrated in the equation: Distance = (Velocity of Sound x Time)/2.
200Khz Stainless Steel Ultrasonic Transducer for Ultrasonic Level Gauge
Technical parameters:
Items | Technical Parameters | Image | |
Name | 200KHz Ultrasonic transducer |
| |
Model | PHA-200-01J | ||
Frequency | 200KHz±5% | ||
Detection Distance | 0.10~1.5m | ||
Minimum Parallel lmpedance | 550Ω±20% | ||
530pF±20% @1KHz | |||
Sensitivity | Driving Voltage:800Vpp,Distance:0.3m, Echo Amplitude:30mV | ||
-40~+80℃ | |||
≤8Kilos or 0.8MPa | |||
| (Beamwidth) Half-power Beam Width@-3dB:6°±10%, Sharp Angle:15°±10% | ||
Housing Material | stainless steel | ||
Usage | Ultrasonic level gauge, monitoring, anti - collision | ||
size | thread:M27*1.5 | ||
Protection Level | IP68 | ||
Weight | 195g±5%(Length:20cm) | ||
Wiring instruction | Integrated interface:Red+,White-,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 level measurement
Ultrasonic level transmitter, which performs calculations to convert the distance of wave travel into a measure of level in the tank. The time lapse between firing the sound burst and receiving the return echo is directly proportional to the distance between the transducer and the material in the vessel. The medium is normally air over the material’s surface but it could be a blanket of some other gases or vapours. The instrument measures the time for the bursts to travel down to the reflecting surface and return. This time will be proportional to the distance from the transducer to the surface and can be used to determine the level of fluid in the tank. This basic principle lies at the heart of the ultrasonic measurement technology and is illustrated in the equation: Distance = (Velocity of Sound x Time)/2.
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