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Embedded Controllers, Avionics Testing, HIL Simulation & Data Acquisition Systems for UAV/UAS Applications

Unlocking Innovation: Discover United Electronic Industries (UEI) / Unlocking Connectivity: The MIL-STD-1553 Dual Channel Interface Board

Unlocking Connectivity: The MIL-STD-1553 Dual Channel Interface Board

Rugged dual-redundant data bus interface for military-grade Ethernet integration

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Unlocking Connectivity: The MIL-STD-1553 Dual Channel Interface Board

Advanced Dual Channel MIL-STD-1553 Interface Board

The Dual Channel MIL-STD-1553 Interface Board is engineered to provide extraordinary, independent dual-redundant connectivity for the MIL-STD-1553 bus, specifically tailored for integration into high-demand unmanned systems and aerospace applications. Functioning as a Bus Controller (BC), Remote Terminal (RT), or Bus Monitor (BM), this board facilitates simultaneous multi-RT simulations, accommodating up to 32 RTs, and adeptly manages 1553A, 1553B (including notices 1 and 2), and 1553C protocols with accuracy. Its transformer-coupled channels, with an option for direct coupling, ensure dependable conversion from 1553 to Ethernet, promoting robust, real-time communication essential for mission-critical operations.

Optimized for Harsh conditions

designed to endure extreme conditions,this interface board operates effectively within a temperature range of -40°C to +85°C and can function at altitudes reaching 60,000 feet. It is built to withstand vibrations of up to 5 g and shocks of 50 g, making it particularly suitable for in-flight testing and rugged unmanned applications. The integrated 1553 API simplifies control while maintaining access to advanced features, and the software drivers are compatible with major operating systems, including Windows, Linux, INtime, QNX, and RT linux, and also tools like LabVIEW.

Seamless Integration and Monitoring

This board’s ability to integrate effortlessly with external systems, along with its customizable configuration options and extensive monitoring capabilities, positions it as a vital component in contemporary military and aerospace data architectures. By delegating most functions to the onboard FPGA, the system minimizes CPU load, thereby preventing interference with other I/O boards and ensuring overall system stability.

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