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Nanjing Sky MEMS Technology Co.,Ltd.
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Dual Axis Vibration Motion Sensor , Wireless Vibration Sensor IP67 Protection

Nanjing Sky MEMS Technology Co.,Ltd.
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Nanjing Sky MEMS Technology Co.,Ltd.
City: Nanjing
Province/State: Jiangsu
Country/Region: China
Tel: +86-25-83356968
Contact Person:
Mr David zhu

Dual Axis Vibration Motion Sensor , Wireless Vibration Sensor IP67 Protection

Brand Name : SkyMEMS
Model Number : VSH2100
Certification : CE, FCC, ROHS
Place of Origin : Nanjing, Jiangsu
MOQ : 1PCS
Price : discuss personally
Payment Terms : Western Union, MoneyGram, L/C, T/T, D/A, D/P
Supply Ability : 1000PCS for month
Delivery Time : 3-5 days after payment
Packaging Details : Strong cartn with PET strap for VSH2100 Single Axis Low Frequency Vibration Measurement Sensor
Enhanced MEMS sensing technology : Yes
Axis Qty. : 2
Range : ±100g
Frequency Characteristic : 20~2000Hz in-band roughness≤1dB, out-of-band attenuation>40dB
Accuracy : ≤1%
Power supply : 15±0.1V
Zero voltage : 2.5±0.1V
Dynamic Output Voltage : 0.1±0.1~4.9±0.1V
Current : +15V ≤70mA, -15V ≤7mA
Connector Type : Y8B-7ZJBM
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Compact Dual Axis Solid State Piezoresistive High Frequency Vibration Measurement Sensors VSH2100


Product Description

VSH2100 High Frequency Vibration Measurement Sensor is a compact, factory calibrated dual axis device based on piezoresistive technology. Its housing has a flat design for easy screw mount. Due to its low mass this model is perfect for testing light weight structures. Its ranges is ±100 g and high frequency response. The sensing element has integrated overload stops which guarantees high shock performance. Signal amplified versions are optional.

VS2100 enjoys high reliability, high stability, high accuracy, low temperature drift, and strong adjustment in harsh environment.

It is an ideal option for auto measurement, inertial navigation, aircraft safety system, earthquake monitor, tilt, speed and position inertia, test platform of vibration and shocking, etc.


Main Features

- 2-axis MEMS vibration sensor

- Range: 2-axis ±100g, excellent bias stability

- Advanced MEMS Sensing Element

- High-sensitivity accelerometer

- Built-in electronics

- Isolated case, IP67 protection

- Qualified for Critical Safety Avionics Application

- Individually calibrated, real actual precision

- Extremely reliable in Harsh environment

- Wide operating temperature range: -40℃~+60℃

- Overload resistance: 10000g


Typical Application

VS2100 Single Axis Low Frequency Vibration Measurement Sensor can measures the low frequency vibration. And it enjoys high overload resistance up to 10000g, VS2100 has been widely applied in the following solutions, such as:

- Crash Testing

- Motion studies

- Vibration & Shock Monitoring

- Car Testing

- Road Testing

- Transportation Testing


Technical Specifications


Technical Specs
ModelVSH2100
Name2-axis vibration sensor
Dimension(mm)32*30*23
Axis Qty.2
Range(g)2-axis ±20
Frequency Characteristic10~2000Hz in-band roughness≤1dB, out-of-band attenuation>32dB
Accuracy≤3%
Power supply(V)±15±1
Zero voltage(V)2.5±0.1
Dynamic Output Voltage(V)0.2±0.2~4.8±0.2
Current(mA)+15V ≤60, -15V ≤60
Output Resistance(Ω)≤100
Cable Length(mm)500
Connector TypeY4-7ZJLM
Working Temperature(°C)-40~60
Weight(g)≤80

Competitive Advantages

High Performance Piezoresistive Vibration Measurement Sensor

- Highly accurate, reliable and temperature stable

- Full temperature calibration of all sensing elements.

- Environmentally sealed (IP67), compact design

- Overload resistance: 10,000g

- Full tests and individual calibration from -40 to 60°C

- High cost effective


FAQ

How do I choose the sensitivity of an accelerometer?

Accelerometers with integral electronics have a maximum output voltage determined by the circuit design and the input voltage. The maximum output for an IEPE accelerometer is typically 4-8 volts. An accelerometer with a sensitivity of 100mV/g with electronics that has a maximum output of 5V will obviously have a dynamic range of +/- 50g while an accelerometer of sensitivity of 10mV/g will have a dynamic range of +/- 500g If the maximum g levels likely to be experienced is known then dividing this number by 5 volts will give the maximum sensitivity that should be used to get this dynamic range

Example: Vibration expected to be seen is 300g. Sensitivity will be 5 divided by 200 which equals 16.6 mV/g. The nearest sensitivity would be a 10mV/g accelerometer.


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