T900-P Fiber Optic High Precision Time Transfer
Building a high-precision backbone transmission core for future time-frequency networks
BeiDou provides optical fiber time and frequency transmission technology for major national projects in the fields of deep space exploration and basic science, achieving 50ps time synchronization over 100km.
High-precision time transfer solution
The T900-P fiber-optic high-precision time transfer device is a high-precision timing system based on a wavelength division multiplexing (WDM) link. The system consists of a central station and a terminal station. The central station primarily comprises a time-frequency interface unit, a time-frequency measurement unit, a time-frequency signal encapsulation unit, an optical/electrical and electrical/optical conversion unit, and a wavelength multiplexing/demultiplexing unit. The terminal station comprises a wavelength multiplexing/demultiplexing unit, an optical/electrical and electrical/optical conversion unit, and a time-frequency measurement servo unit. This timing system utilizes classic two-way time comparison methods over fiber channels (DWDM wavelength channels) to achieve high-precision time and frequency synchronization. The device offers stable operation and strong interference resistance, achieving a synchronization accuracy of 50 ps at a distance of 100 km.
Applicable fields: deep space exploration, national defense, scientific research and other fields that require high synchronization accuracy.

Important Features
Our T900-P is a high-precision time transfer device based on a bidirectional fiber optic link. It offers high stability, interference resistance, and engineering adaptability, making it suitable for scenarios requiring the highest accuracy and reliability in time synchronization. It is suitable for critical applications such as deep space exploration, national defense security, and scientific research experiments. The following are some key features of the T900-P:
- 100km synchronization accuracy can reach 50ps
- Optional working wavelength
- Can support longer distance customization
- Industrial-grade design, compact structure
- Unique interference monitoring and mitigation technology
- Support UTC information transmission
Application Scenario
Deep space exploration
In deep space exploration missions, such as Mars rovers, lunar landers, or deep space relay links, the T900-P provides high-precision, low-latency time signals, making it a key device for ensuring the accuracy of ranging and velocity data between ground stations and spacecraft.
Precision measurement and control link synchronization
In precision measurement and control systems such as large array telescopes, quantum physics experiments, and benchmark ranging, the T900-P can build a high-stability time channel through optical fiber links to ensure phase consistency and coordinated sampling of multi-point measurement and control systems.
National defense time and frequency support
The T900-P boasts excellent anti-interference and stability, making it suitable for military communication networks, guidance systems, and electronic countermeasure platforms, ensuring time-frequency consistency for command, dispatch, and system collaboration.
National timing backbone link
As the transmission backbone of the time and frequency network, the T900-P supports sub-nanosecond synchronization accuracy at distances exceeding 100 kilometers, helping national-level timing services build a secure, reliable, and intrusion-resistant high-precision time service network.
Performance Indicators
Product Features | Specification name | Indicator parameters | Remark |
---|---|---|---|
power supply | Supply voltage | AC220V±10% | |
power supply | Power consumption | ≤80W | |
1PPS input | Number of way | 1-way | |
Amplitude | 2.5~5V | ||
rising edge | <5ns | ||
Connectors | SMA | ||
Time Input | Number of way | 1-way | 10MHz and 1PPS signals have the same origin |
Level | RS232 baud rate: 115200 | ||
Time format | NMEA: ZDA | ||
Pin Definition | 2:TX 3:RX 5:GND | ||
Connectors | DB9 female | ||
10MHz Input | Number of way | 1-way | |
Amplitude | 7±3dBm | ||
Connectors | SMA | ||
1PPS output | Output channels | 1-way | 50Ω impedance |
Amplitude | ≥2VPP | ||
Pulse Width | 100ms | ||
Rising/falling edge | <1ns | ||
Transfer Jitter | <50ps (RMS) | ||
Connectors | SMA | ||
10MHz RF output | Output channels | 1-way | |
Rate of work | ≥8dBm | ||
Harmonic suppression | ≥30dBc | ||
Spurious suppression | ≥70dBc | ||
Additional frequency stability 1s | ≤5E-12 | ||
Additional frequency stability 10s | ≤5E-13 | ||
Additional frequency stability 100s | ≤7E-14 | ||
Connectors | SMA | ||
Time code data output | Output channels | 1-way | |
Communication level | RS-232 baud rate: 115200 | ||
Pin Definition | 2:TX 3:RX 5:GND | Other pins NC | |
Output information | Default NMEA: ZDA | ||
Connectors | DB9 female | ||
monitor | Number of way | 1-way | |
Connectors | RJ45 | ||
Fiber optic transceiver | Number of way | 1-way | |
wavelength | 1310nm | ||
interface | FC flange | ||
Temperature requirements | Working temperature | -20℃~+50℃ | |
Storage temperature | -55℃~+85℃ | ||
Appearance | size | 19-inch 2U chassis (width * height * depth: 440 × 89 × 350 mm) |
System Block Diagram

Measurement method

Test data
