Phase adjustment resolution: 10ps
Phase adjustment range: <1s
Frequency adjustment resolution: 1E-15
Frequency adjustment range: 1Hz (Frequency accuracy 1E-7)
Optional built-in satellite receiver and rubidium clock
The system runs the Linux operating system and can execute user programs
Lossless transmission of time-frequency signals
Automatic delay compensation, dynamic calibration
Frequency transmission stability<2E-14/s,<5E-17/day
Support point-to-point or point to many transmission
Suitable for multi-user networking, radar array and other occasions
Time synchronization accuracy better than 100 picoseconds
With optical fiber, synchronization distance can exceed 80 kilometers
Supports PTPv2, Sync-E
High reliability and redundant backup capabilities
Automatic compensation for latency, dynamic calibration
Supports remote configuration and monitoring
Can operate in static or dynamic environments
Can receive network or B2b satellite data
Can receive external 10MHz, 1PPS+TOD signals for remote measurement or time transfer
Can achieve time-frequency synchronization for one-to-many points
Single point positioning accuracy: 0.08m/horizontal, 0.1m/vertical
Time synchronization accuracy: 1ns
Frequency traceability accuracy: 5E-13 per day
Supports standard/real-time co-visibility technology
Can perform co-visibility through Beidou (B1/B3) and GPS satellites
Can receive external 10MHz, 1PPS+TOD signals for remote measurement or time transfer
Can choose between a rubidium clock or crystal oscillator as the clock source and output time-frequency signals
Can establish co-visibility links using communication methods such as RD short messages, 4/5G wireless communication, and Ethernet
Can generate RINEX, GGTTS protocol comparison standard data files, accessible via FTP
Co-visibility comparison accuracy: Zero baseline <1ns; Long baseline <3ns
The up and down conversion modules are integrated into the comparison equipment.
Can operate in static or dynamic environments.
Transmit and receive working frequency bands can be customized.
Can achieve one-to-many working modes.
Time transfer or synchronization accuracy: 2ns.
Frequency transfer accuracy: <5E-13 per day.