Star sensor
Features
High Precision and Accuracy:
Capable of detecting and identifying stars with high precision.
Provides accurate attitude data for precise control of spacecraft orientation.
Wide Field of View:
Designed to capture a large portion of the sky, increasing the probability of detecting multiple stars.
Enhances attitude determination accuracy by using multiple reference points.
Robust Algorithms:
Utilizes advanced star recognition and matching algorithms.
Ensures reliable performance even in the presence of background noise and other celestial objects.
Thermal and Radiation Resistance:
Engineered to withstand the harsh environmental conditions of space, including extreme temperatures and radiation.
Ensures long-term operational reliability and stability.
Compact and Lightweight Design:
Optimized for minimal impact on spacecraft payload and overall design.
Easy to integrate with existing systems without significant modifications.
Autonomous Operation:
Provides real-time data and autonomous operation capabilities.
Enables continuous attitude control without the need for constant ground intervention.
Advantage
Exceptional Precision and Accuracy:
Equipped with high-precision optics capable of detecting and identifying stars with exceptional accuracy.
Ensures accurate attitude data critical for the precise control of spacecraft orientation.
Wide Field of View:
Designed to capture a broad portion of the sky, increasing the likelihood of detecting multiple reference stars.
Enhances attitude determination accuracy through the use of multiple celestial reference points.
Advanced Recognition Algorithms:
Utilizes robust star recognition and matching algorithms to ensure reliable performance.
Capable of functioning effectively even in challenging conditions with background noise.
Durable and Resilient Design:
Built to withstand extreme temperatures and high radiation levels encountered in space.
Ensures long-term reliability and stable performance throughout the mission lifecycle.
Compact and Lightweight:
Optimized to minimize impact on spacecraft payload and overall design constraints.
Facilitates easy integration into existing spacecraft systems.
Autonomous and Real-time Operation:
Provides continuous real-time data for autonomous operation.
Reduces the need for constant ground intervention, enhancing mission efficiency.
Quality Assurance:
Rigorously tested to meet the highest standards of performance and reliability in space environments.
Complies with industry standards for aerospace components.
Choose us
We have extensive experience in the research and development of satellite integration and platform;
We have extensive experience in the research and development of remote sensing, communication, and navigation electronic equipment;
We have extensive experience in establishing research and production conditions;
We have extensive experience in the development of numerical control, testing, and data processing systems;
We have a large number of satellites to name;