KSGYR321M MEMS Gyroscope ±300°/s Range High Precision
Price:
Negotiable
MOQ:
1PCS
Delivery Time:
5-8work days
Brand:
KACISE
Product Description
KSGYR321M High Precision MEMS Gyroscope ±300°/s Range
Key Specifications
| Attribute | Value |
|---|---|
| Range (°/s) | ±300 (options) |
| Bias stability (deg/h, allan deviation) | ≤12 |
| Bias repeatability (deg/s) | ≤0.15 |
| Nonlinearity (%F.R) | ≤0.1 |
| Resolution (deg/s) | ≤0.05 |
| Bandwidth (Hz) | ≥80 |
Product Overview
The KSGYR321M is a high-performance three-axis digital gyroscope featuring compact size and exceptional overload resistance. Designed for precision navigation, control systems, and dynamic measurement applications in demanding environments, this MEMS-based inertial device delivers reliable angular velocity measurement under harsh conditions.
Applications
Ideal for systems requiring wide operating temperature range, fast startup, and high precision including:
- Weapon guidance and control systems
- Engineering equipment control
- Platform stabilization
- Pipeline robotics
- Underwater vehicles
Key Features
- Exceptional stability and precision
- Optional analog and digital outputs
- Wide measurement range
- Rapid startup capability
Technical Specifications
| Parameter | Specification |
|---|---|
| Number of Axes | 3 |
| Power Voltage | 5V DC |
| Power Consumption @25°C | 1W |
| Supply Current | ≤200mA |
| Output | RS422 |
| Data Update Rate | 400Hz (configurable) |
| Dimensions | Ø39.5mm × 28.5mm |
| Startup Time | 1s |
| Bias | ±1°/s |
| Bias Stability | ≤12°/h |
| Bias Temperature Sensitivity | ≤3°/s |
| Scale Factor Nonlinearity | ≤0.1% |
| Threshold | ≤0.05°/s |
| Resolution | ≤0.05°/s |
| Bandwidth | ≥80Hz |
| Weight | <100g |
| Range | ±300°/s |
| Operating Temperature | -40°C to +80°C |
| Storage Temperature | -55°C to +85°C |
| Shock Resistance | 10000g |
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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