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Nanjing Sky MEMS Technology Co.,Ltd.
Focus on MEMS Inertial Measurement Technologies and Products Aerospace Level Quality, Reliable Selection AHRS Inclinometer Fiber Optic Gyro IMU INS GNSS/INS MEMS Acc MEMS Gyro E-compass VG MRU Shock
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High Accuracy Imu 6dof , Navigation Grade Imu Low Weight 45*40*40mm

High Accuracy Imu 6dof , Navigation Grade Imu Low Weight 45*40*40mm

Brand Name : SkyMEMS
Model Number : IMU300
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 IMU300 Inertial Measurement Unit
Integrated sensors : gyros, accelerometers, magnetic sensors
Enhanced MEMS sensing technology : Yes
Accelerometer Range : ±10g (custom design)
Gyro Dynamic Range : ±400°/s
Magnetic sensor range : ±6gauss
Overload resistance : 10,000g
Bandwidth : 40Hz
Output interface : 0~3V analog output
Working temperature  : -40~+85°C
acceleromenter Bias Stability : 0.005g
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High Accuracy 6dof Imu Sensor MEMS Imu Inertial Measurement Unit for Aviation IMU300


Product Description

IMU300 Miniature High Overload Resistance MEMS Inertial Measurement Unit is a small, tactical grade, low weight, high performance non-GPS aided Inertial Measurement Unit (IMU), it adopts the newest MEMS technologies, it is a new type of micro inertial measurement unit which enjoys high reliability, high stability, and adjustment in harsh environment.

The sensors in the IMU300 have excellent stability characteristics. IMU300 has been successfully deployed on a wide range of weaponry, UAVs, stabilized platforms and commercial applications.


Main Features

High stability, high accuracy, high reliability, high survivability
Best in Class Performance
Small size, low weight and low cost
Insensitive to magnetic fields
Fully calibrated, temperature-compensated
Range: acc ±10g, gyro ±400°/s, magnetic ±6gauss (custom design)
Bias stability: acc 0.005g, gyro 80°/h
Triaxial accelerometer, gyroscope sensors and magnetic sensors achieve the best combination of measurement qualities
Overload resistance:10000g, IP67 protection
Wide temperature: -40°C~+85°C
Small size: 45*40*40mm


Typical Application

The IMU300 IMU is well suited for stabilization, guidance and navigation applications in Industrial, Aerospace and Defense markets. It is a crucial building block for inertial navigation systems in UAVs, AUVs, AGVs, UGVs and ROVs.
IMU300 is also used for camera turret stabilization.


Technical Specifications


Technical Specs
NameSpecsRemarks
Rangeacceleromenter±10gsupport custom service
gyroscope±400°/ssupport custom service
magnetic sensor±6gausssupport custom service
Resolutionacceleromenter≤0.01g
gyroscope≤0.5°/s
magnetic sensor0.001guass
Bias stabilityacceleromenter0.005g1σ standard
gyroscope80°/h1σ standard
Bias repeatabilityacceleromenter0.005g1σ standard
gyroscope80°/h1σ standard
Bandwidth40Hz
Cross coupling≤0.5%
Power supply3.3V
Output interface0~3V analog output
Weight80g
Demension45*40*40mm
Working temperature-40~+85°C
Overload resistance10,000g

Competitive Advantages

High Performance Imu Inertial Measurement Unit

- High-quality components, industrial-grade MEMS only

- Excellent for control and stabilization

- Proven and robust filter design

- Overload resistance: 10,000g

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

- High cost effective


FAQ

What is the Degrees of freedom of IMU sensor?

IMUs measure six degrees of freedom. This includes the measurement of linear motion over three perpendicular axes (surge, heave, and sway), as well as rotational movement about three perpendicular axes (roll, pitch, and yaw). This yields six independent measurements that together define the movement of an object or vehicle.

What is the Sensor types that IMU sensor is composed of?

The IMU is comprised of at least two dedicated sensors, one or more linear accelerometers and one or more gyroscopes or angular accelerometers. An optional magnetometer may be integrated into the unit to calibrate against orientation drift.

Accelerometers detect the direction and magnitude of change in velocity. Simple accelerometers measure linear motion while biaxial and triaxial accelerometers detect a change in velocity over a plane or three-dimensional space, respectively. The IMU possesses a triaxial (sometimes referred to as a triad) accelerometer, or otherwise uses multiple accelerometers that are aligned across perpendicular axes.

Gyroscopes detect the angular rate or orientation about a given directional vector. The angular rate is relative to a reference surface. The IMU uses multi-axis gyros to provide measurements in three orthogonal directions. These angular movements must be aligned with those of the accelerometer.


Product Tags:

inertial measuring unit

      

navigation grade imu

      
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