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Industrial Mems Based Gyroscope Sensor , 3 Axis Gyroscope Mems Shockproof

Industrial Mems Based Gyroscope Sensor , 3 Axis Gyroscope Mems Shockproof

Brand Name : SkyMEMS
Model Number : MG302
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 carton with PET strap for MG302 MEMS Gyro
High Performance MEMS Gyroscope : Yes
Axis Number : 3 axis
Range : ±300°/s
Bandwidth : 60Hz
Non-Linearity : ≤0.02%F.R
Output voltage : 0~5v
Input voltage(Vdc) : +5± 5%Vdc
Reliability MTBF : 100000H
Shock resistance : 10000g
Weight : 150g
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3 Axis Gyroscope Orientation Sensor Analog 3 Axis Mems Gyroscope for ROV Application MG302


Product Description

MG302 Triaxial MEMS Gyroscope provides high performance operation under harsh operating conditions, the tri-axis gyro accurately measures angular motion in a compact, lightweight, robust package, and it enjoys high accuracy, small size, and great shockproof property, it is an ideal option for auto electronics, AHRS, robot, missile guide and control, aircraft stability control, inertial navigation, antenna stability, etc.


Main Features

3-Axis angular rate sensor (yaw, pitch, and roll)

IP67 enclosure

Range: ±300°/s (other range can be designed)

High shock survivability

Low Bias Instability

Low Angular Random Walk (0.2°/√hr)

Low Power Consumption

High Shock Rejection

Low g Sensitivity

Wide Bandwidth

Support ODM custom service

Wide working temperature: 40℃~+85℃


Typical Application

MG302 serial 3-axis Analog MEMS Gyroscope has been widely applied in the specific applications, such as:

- Precision Navigation and Pointing

- 3D motion control

- Virtual reality input devices

- Precision Agriculture

- Camera/Antenna/Platform Stabilization

- Robotics

- UAV, IMU systems

- Industrial applications


Technical Specifications


Technical Specs
Parameters ωxωyωz
Range(°/s)±300±300±300
Output voltage (V)0~50~50~5
None-linearity (%F.R)≤0.02≤0.02≤0.02
Cross-axis influence (%)≤3≤3≤3
Startup time (ms)≤50
Bandwidth (Hz, -3dB)60 (other bandwidth less than 1kHz can be designed)
Reliability MTBF (hour)100000
Operating temperature(℃)-45~+85℃
Storage temperature(℃)-55~+100
Shock resistance(g, without power, 0.5ms)10000g
Input voltage(Vdc)+5± 5%Vdc
Weight(g)150
Dimensions(mm)50×50×50mm
Sensitive polarityX, Y, Z axes satisfy right-hand rule.

Competitive Advantages

High Performance Mems Gyroscope

- High-quality components, industrial-grade MEMS sensors only

- Excellent for control and stabilization

- Shock Resistant Package

- Full tests and individual calibration from -40 to 85°C

- High cost effective


FAQ

How does a MEMS gyroscope work??

MEMS gyroscopes are making significant progress towards high performance and low power consumption. They are mass produced at low cost with small form factor to suit the consumer electronics market.

MEMS gyroscopes use the Coriolis Effect to measure the angular rate.

When a mass (m) is moving in direction v→ and angular rotation velocity Ω→ is applied, then the mass will experience a force in the direction of the arrow as a result of the Coriolis force. And the resulting physical displacement caused by the Coriolis force is then read from a capacitive sensing structure.

Most available MEMS gyroscopes use a tuning fork configuration. Two masses oscillate and move constantly in opposite directions . When angular velocity is applied, the Coriolis force on each mass also acts in opposite directions, which result in capacitance change. This differential value in capacitance is proportional to the angular velocity Ω > and is then converted into output voltage for analog gyroscopes or LSBs for digital gyroscopes.

When linear acceleration is applied to two masses, they move in the same direction. Therefore, there will be no capacitance difference detected. The gyroscope will output zero-rate level of voltage or LSBs, which shows that the MEMS gyroscopes are not sensitive to linear acceleration such as tilt, shock, or vibration.


Product Tags:

digital gyroscope sensor

      

solid state gyroscope

      
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