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PH2110B
Piezohannas
PH2110B
Stock 2MHz Ultrasonic Transducer for Water Meter
Technical parameters:
Model | PH2110B |
Centre working frequency (kHz) | 2.00MHZ±4% |
Bandwidth (-6dB) | 10% |
Integrated sensitivity 0 dB=3 Vp-p;cycle:5;distance:8cm | >0.2V |
Measuring Distance: | 1.0M |
Blind zone | 3cm |
Beam angle(-3dBfull angle) | 3° |
electrostatic capacity | 2300PF±20% |
Minimal parallel impedance | 100Ω±30% |
Maxim operating voltage impulse wave(Pulse Duty cycle ratio 2%) | <200V |
Operating temperature | 4~50℃ |
The material of the housing | PPS |
Protection class | IP68 |
The above tests were conducted in 25 °environment.
Image:
Outline Dimension:
Admittance - phase curve
Sensitivity test
Transmitting voltage: 3Vp-p;
period: 5; distance: 8cm
Water Meter Application:
Water metering is the practice of measuring water use. Water meters measure the volume of water used by residential and commercial building units that are supplied with water by a public water supply system. They are also used to determine flow through a particular portion of the system.
Stock 2MHz Ultrasonic Transducer for Water Meter
Technical parameters:
Model | PH2110B |
Centre working frequency (kHz) | 2.00MHZ±4% |
Bandwidth (-6dB) | 10% |
Integrated sensitivity 0 dB=3 Vp-p;cycle:5;distance:8cm | >0.2V |
Measuring Distance: | 1.0M |
Blind zone | 3cm |
Beam angle(-3dBfull angle) | 3° |
electrostatic capacity | 2300PF±20% |
Minimal parallel impedance | 100Ω±30% |
Maxim operating voltage impulse wave(Pulse Duty cycle ratio 2%) | <200V |
Operating temperature | 4~50℃ |
The material of the housing | PPS |
Protection class | IP68 |
The above tests were conducted in 25 °environment.
Image:
Outline Dimension:
Admittance - phase curve
Sensitivity test
Transmitting voltage: 3Vp-p;
period: 5; distance: 8cm
Water Meter Application:
Water metering is the practice of measuring water use. Water meters measure the volume of water used by residential and commercial building units that are supplied with water by a public water supply system. They are also used to determine flow through a particular portion of the system.
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