
Power and Energy
It guarantees high-precision synchronization of power dispatching and substation systems, and meets the requirements of smart grid and 5G power bearer network for microsecond clock precision and long-term stability.
GNSS signal interference and spoofing have always been the biggest challenge for the industry, Compass Bontec has newly launched a fully independent and controllable anti-jamming high-precision receiver, which can effectively inhibit suppression interference of broadband, narrowband, multi-tone, single-tone, frequency sweep, pulse, continuous wave, and multi-system combinations, etc., and at the same time, realize multi-system joint positioning and timing. It supports carrier phase and pseudo-range differential positioning at BDS-B3 and BDS-B1 frequency points under anti-jamming, and can realize high-precision positioning in broadband interference scenarios at BDS-B3 frequency points. It is suitable for high dynamic and high precision positioning and timing applications in complex electromagnetic environment and strong interference environment. By integrating high-precision atomic clocks, GNSS satellite timing and trusted time scale, Beidou Bontec's newly launched Virtual Primary Reference Clock (vPRTC) builds a network timing architecture with high security, redundancy and anti-spoofing capabilities, thus meeting the increasing demand for accurate and reliable time synchronization of today's critical infrastructures.
Interference Type Coverage: Effectively suppresses broadband, narrowband, multi-tone, single-tone, swept frequency, pulse, continuous wave and multi-regime combination interference.
Effect: Even under strong interference conditions, it can still maintain stable signal capture and tracking, guaranteeing the continuity of positioning and timing.
Core Advantage:Support carrier phase and pseudorange differential positioning at BDS-B3 and BDS-B1 frequency points under anti-interference, which can realize high-precision positioning in broadband interference scenarios at BDS-B3 frequency points.
Application value: suitable for high dynamic and high precision positioning in complex electromagnetic environment (such as aerospace, unmanned systems, ship navigation).
Fusion of high-precision atomic clocks, GNSS satellite timing, and trusted time scales to build a time synchronization architecture with security, redundancy, and anti-spoofing capabilities.
Effect: Ensure that the system can still provide stable and trustworthy time services in the event of spoofing attacks.
It guarantees high-precision synchronization of power dispatching and substation systems, and meets the requirements of smart grid and 5G power bearer network for microsecond clock precision and long-term stability.
Provide precise synchronization between industrial control, edge computing and distributed devices to support the efficient and cooperative operation of TSN networks, industrial robots and industrial internet.
Provides secure and stable time services for medical imaging systems, remote surgery platforms and hospital information networks, meeting the stringent requirements for synchronization and data consistency in the medical field.
It supports the core requirements of frequency standard, phase noise, stability test, etc., and widely serves in metrology research institutes, scientific research laboratories, national defense test stations and time statistics units.
It realizes microsecond or even nanosecond timestamps, providing highly reliable and traceable financial-grade timing services for high-frequency trading, securities settlement and compliance auditing scenarios.
Provide a unified time source in distributed databases, virtualization platforms and cloud resource scheduling to ensure data consistency among multiple nodes and parallel computing synchronization efficiency.