KSIMU005M Three Axis Quartz IMU MEMS Accelerometer Sensor
Price:
Negotiable
MOQ:
1PCS
Delivery Time:
5-8 work days
Brand:
kacise
Product Description
KSIMU005M Three Axis Quartz IMU
Product Overview
The KSIMU005M is an advanced inertial measurement module utilizing MEMS technology to accurately measure angular velocity and acceleration across three axes.
MEMS (Micro-Electro-Mechanical Systems) integrates micro-sensors, actuators, mechanical structures, power systems, and signal processing into compact, intelligent systems with micron-scale components. Common applications include accelerometers, gyroscopes, pressure sensors, and environmental sensors.
Key Features
- Compact dimensions: 27mm × 27mm × 10mm
- Simple integration via RS422 digital interface
- Dual redundancy design with integrated gyro and accelerometer sets
- Precision bias < 0.05°
Applications
- Robotics systems
- Flight testing equipment
- Guidance and control systems
- Short-term navigation solutions
- Aerospace applications
Technical Specifications
| Power Supply Parameters | |
|---|---|
| Input Voltage | 5±0.2 V DC |
| Input Current | ≤100mA |
| Gyro Performance | |
|---|---|
| Range | ±400°/s |
| Bias | 0±0.05°/s |
| Bias stability | ≤30°/h |
| Scale factor | 70±3LSB/°/s |
| Scale factor nonlinearity | ≤200ppm |
| Vibration error | ≤0.03°/s |
| Bandwidth | ≥100Hz |
| Accelerometer Performance | |
|---|---|
| Range | ±10g |
| Bias | 0±0.02g |
| Bias stability | ≤0.002g |
| Scale factor | 1000±30LSB/g |
| Bandwidth | ≥400Hz |
| Interface & Environment | |
|---|---|
| Interface | RS422 (1-bit start + 8-bit data + 1-bit even parity check + 1-bit stop) |
| Baud rate | 460800bps |
| Data update speed | ≤2.5ms |
| Operating temperature | -40℃ to +65℃ |
| Random vibration | 6.06 g |
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Xi'an Kacise Optronics Co.,Ltd.
Location
2nd Building, Tianyuan International Mansion, High-tech Zone, Xi'an City, Shaanxi Province, China
Contact Person
Evelyn Wang