In the era of modern technology, precise navigation and positioning technology has become a key factor for the development of many industries. To meet this demand, we have launched the ER-GNSS/MINS-05 integrated navigation system, which combines economy and efficiency, providing comprehensive and reliable positioning and heading information.
Core Advantages
ER-GNSS/MINS-05 integrates high-reliability MEMS gyroscopes and accelerometers. The bias instability of the gyroscope is as low as 2°/h, with a measurement range of ±450deg/s; the bias instability of the accelerometer is <25ug, and it maintains excellent performance within the wide temperature working range of -40°C to +80°C, complemented by temperature compensation technology to ensure stable operation of the system in various environments.
The built-in full-frequency, dual-antenna GNSS module is another highlight of the system. It not only supports single-antenna high-precision positioning and speed measurement, but also utilizes dual antennas for fast orientation, providing strong support for applications such as drones and intelligent unmanned vehicles that require immediate response. In addition, the system provides high-precision combined navigation information, with attitude precision of 0.1° (post-processing can reach 0.03°), heading precision of 0.1° (post-processing can reach 0.05°), meeting various strict requirements.
Rich Data Interfaces, Flexible Applications
To meet the needs of different applications, ER-GNSS/MINS-05 is equipped with RS422, RS232, and CAN bus data interfaces, and provides standardized user communication protocols. This design simplifies the installation process, improves data processing flexibility, and facilitates system integration and secondary development.
Reliable and Durable
The system features a precision aluminum alloy case design, not only enhancing the physical protection capabilities of the product, but also ensuring stability over a long period of use. For users who demand high performance and reliability, ER-GNSS/MINS-05 is an ideal choice.
More Technical Questions
1. What Is GNSS-aided MEMS INS and How Does It Work?
2. How to Improve the Performance of MEMS Inertial Navigation Systems?
3. Why Should We Use MEMS GNSS/INS?
4. Classification And Performance Improvement Of MEMS Gyroscope
5. MEMS Accelerometer Packaging Technology
6. Performance Analysis of GNSS RTK Timing