CGDJMT1000nT Aerospace Magnetometer China Suppliers and Factory
The CG-DJ-MT-1000nT Magnetometer is a high-precision aerospace-grade instrument engineered for the rigorous demands of spacecraft and satellite systems. Designed to measure the intensity and direction of magnetic fields, it serves as a critical component for attitude determination and navigation, allowing satellites to reference the Earth's magnetic field or other celestial bodies to maintain precise orientation in Low Earth Orbit (LEO) and deep space missions.
By integrating advanced sensing technologies—including fluxgate, optically pumped, or Hall effect sensors—this magnetometer detects minute magnetic variations with exceptional accuracy. When synchronized with star trackers and sun sensors, it provides a robust feedback loop for orientation control, ensuring mission stability and high-pointing accuracy for complex aerospace applications.
| Product Code | CG-DJ-MT-1000nT | Measurement Range | -0.9 Gauss to +0.9 Gauss |
|---|---|---|---|
| Accuracy (25℃) | 1000nT | Gyroscope Range | ±125°/s (MEMS) |
| Zero Bias Stability | 12°/h (1 σ) | Envelope Size | Φ 98mm × 80mm |
| Unit Weight | 195g | Power Consumption | 0.54W |
| Working Voltage | +12V | Communication Interface | RS422 (10Hz Update Rate) |
Engineered to withstand the harsh vacuum and temperature fluctuations of deep space environments.
10Hz data update rate ensures real-time attitude adjustments for dynamic satellite maneuvers.
1000nT accuracy allows for extremely fine-tuned orientation relative to planetary magnetic fields.
Built-in MEMS gyroscope provides complementary angular velocity data for enhanced stability.
Lightweight (195g) and compact design optimize the satellite's mass budget and space allocation.
Standard RS422 interface allows for plug-and-play compatibility with satellite data subsystems.
Full lifecycle traceability for every satellite component from manufacturing to deployment.
Integrated software for processing magnetic field data into actionable orientation commands.
Real-time telemetry monitoring of power consumption and sensor bias stability.
Automatic calibration algorithms to eliminate zero-bias drift in MEMS gyroscopes.
Unified interface for combining magnetometer data with star trackers and sun sensors.
Intelligent power management ensuring stable 0.54W consumption across all modes.
| Performance Metric | Standard Sensors | CG-DJ-MT-1000nT |
|---|---|---|
| Measurement Accuracy | ±5000nT | 1000nT |
| Power Efficiency | 1.2W - 2.0W | 0.54W |
| Weight Impact | 400g+ | 195g |
| Data Refresh Rate | 1Hz - 5Hz | 10Hz |
| Mission Reliability | Commercial Grade | Space-Level Grade |
It measures the strength and direction of the local magnetic field, providing essential data for attitude determination and navigation to maintain the spacecraft's orientation.
The MEMS gyroscope measures angular velocity, which, when combined with magnetic field data, allows for more precise and stable attitude control and drift compensation.
Yes, it is specifically designed for LEO and deep space missions where magnetic fields serve as a reliable reference for navigation.
It utilizes the RS422 communication interface, ensuring high-speed and noise-resistant data transmission with an update rate of 10Hz.
By using high-precision sensors (fluxgate/Hall effect) and advanced processing, it can distinguish between external celestial fields and internal noise when properly calibrated.
The standard supply cycle for the CG-DJ-MT-1000nT magnetometer is 6 months to ensure rigorous quality control and space-level testing.