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High Precision Ultrasonic Distance Sensor 40000Hz 140Vp-P Max.Input Voltage

MSW-A1640H10TR

Description

High Precision Ultrasonic Distance Sensor 40000Hz 140Vp-P Max.Input Voltage

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Quick details:

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1. Dimension: 16mm(D)*10.0mm(H)

2. Center?frequency?:60.0±1.0KHz
3. Using Method: act both as?transmitter and?receiver.
4. Construction:Enclosed type

5. Echo Sensitvity: ≥230mV

6. Decay Time: ≤1.2ms

7. Directivity?Deg?:70°±15°??(-6dB)
8. Capacitance?:1800±20%pF?

9. Max.Input?Voltage:140Vp-p

10. Typical?Sensing?Range?:?0.3~3.0m?
11. Operating?Temperature?:-20℃?~+70℃
12. Storage?Temperature:-40℃?~+85℃

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Drawing(mm)

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# Features

2.1) High?sensitivity?and?sound?pressure

2.2)?Compact?and?light?weight.

2.3)?Water proof?and?dual?use

2.4)?Less?power?consumption

2.5)?High?reliability

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Ultrasonic sensor is designed by ultrasonic characteristics.Ultrasonic is a kind of mechanical wave which vibration frequency is higher than the sound wave. ?It has high frequency and short wavelength, especially the good direction, Which can transmit to the specified direction and location.Ultrasonic sensors can used in gas, Liquid and solid. Ultrasonic has the big ability to penetrate liquid and solid.Especially in the sunshine opaque solid, it can penetrate tens meters depth.
Ultrasonic sensors are widely used in car parking assistance, proximity alarms,Medical ultrasounds, and distance measurement.?

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What is an Ultrasonic Sensor?

An Ultrasonic sensor can measure the distance to an object by using sound waves. It measures distance by sending out a sound wave at a specific frequency and listening for sound wave to bounce back. Recording the elapsed time between the sound wave being generated and the sound wave bouncing back, it is possible to calculate the distance between the sonar sensor and the object.

It’s important to understand that some objects might not be detected by ultrasonic sensors. Because some objects are shaped or positioned in such a way that the sound wave bounces off the object, but are deflected away from the Ultrasonic sensor. It is also possible for the object to be too small to reflect enough of the sound wave back to the sensor to be detected. Other objects can absorb the sound wave all together,which means that there’s no way for the sensor to detect them accurately. These’re important factors to consider when designing and programming a robot using an ultrasonic sensor.

As the name indicates, ultrasonic sensors measure distance by using ultrasonic waves.
The sensor head emits an ultrasonic wave and receives the wave reflected back from the target. Ultrasonic Sensors measure the distance to the target by measuring the time between the emission and reception.

An optical sensor has a transmitter and receiver, whereas an ultrasonic sensor uses a single ultrasonic element for both emission and reception. In a reflective model ultrasonic sensor, a single oscillator emits and receives ultrasonic waves alternately. This enables miniaturization of the sensor head.

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CHANGZHOU MANORSHI ELECTRONICS CO.LTD.

Ultrasonic Distance Sensor,Long Range Ultrasonic Sensor,Waterproof Ultrasonic Sensor

Address: No.5 Baizhang Longwei Road,New District Changzhou, Jiangsu, China,
Changzhou, Jiangsu
China, 213000

Tel: 86-519-89185720
Fax: 86-519-89185710

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