Precision Timing Devices
High-precision atomic clocks and timing instruments for space, laboratory, and commercial applications
16 products
SolarWing precision timing devices deliver exceptional accuracy and reliability for critical applications. Our atomic clocks provide the foundation for navigation, communication, and scientific measurements in space and terrestrial environments.
Available products
16 products in Precision Timing Devices
Cesium Atomic Clocks
Cesium atomic clocks utilize optically-pumping technology to deliver unrivaled frequency accuracy and stability. These high-performance devices are vital for applications such as satellite navigation, power grid synchronization, and precision telecommunications.
TA1000 Optically-pumping Cesium Atomic Clock
- Frequency accuracy
- ≤1E-12
- Frequency stability
- ≤1.2E-11 (1 s)
- Frequency reproducibility
- ≤5E-13
TA1100 Optically-pumping Cesium Atomic Clock
The TA1100 Optically-pumping Cesium Atomic Clock combines advanced optical-pumping technology and laser testing, providing precise frequency standards for communication, power, and transportation systems.
CPT Atomic Clocks
CPT atomic clocks leverage Coherent Population Trapping technology to achieve compact, low-power, and high-stability designs. These advanced timekeeping devices are tailored for modern applications requiring precise timing, including satellite navigation, underwater systems, and communication networks.
XHTF1025-S CPT Atomic Clock
XHTF1025-S CPT Atomic Clock: 10 MHz single output, compact (86×86×42 mm), high frequency accuracy, low power consumption.
XHTF1040 CPT Atomic Clock
The XHTF1040 CPT Atomic Clock features ultra-low power consumption, miniature structure, and comprehensive timing capabilities including 1PPS synchronization and TOD output.
XHTF1040B CPT Atomic Clock
The XHTF1040B CPT Atomic Clock features miniature design, low power consumption, and advanced timing capabilities with TOD short message output, suitable for high dynamic situations.
Rubidium Atomic Clocks
Rubidium atomic clocks are high-performance, compact, and low-power-consumption devices delivering precise 10 MHz outputs. They are widely used in aerospace, defense, communication, and other high-reliability applications.
XHTF1003-C1 Rubidium Frequency Standard
The XHTF1003-C1 is a high-performance rubidium frequency standard featuring excellent phase noise characteristics, compatible with LPRO Rb atomic clock, and offering RS-232C communication capabilities.
XHTF1003-H Rubidium Frequency Standard
The XHTF1003-H is a high-performance rubidium frequency standard featuring excellent phase noise characteristics, compatible with LPRO Rb atomic clock, and offering RS-232C communication capabilities.
XHTF1011 Rubidium Frequency Standard
The XHTF1011 High Accuracy Rubidium Oscillator delivers wide-temperature operation from -40°C to +70°C with selectable stability, phase-noise, and temperature options, fast 1PPS disciplining, and RS-232C control for airborne, vehicular, and shipborne time-frequency systems.
XHTF1012LN Low Phase Rubidium Atomic Clock
The XHTF1012LN Low Phase Rubidium Atomic Clock offers ultra-low phase noise and high short-term frequency stability, making it ideal for precision applications in radar, communication systems, and scientific research.
XHTF1021 Compact Rubidium Atomic Clock
The XHTF1021 Compact Rubidium Atomic Clock offers precise timing and synchronization with low power consumption, making it suitable for aerospace, aviation, navigation, and communication industries.
XHTF1022C Ultra-thin Rubidium Atomic Clock
The XHTF1022C Ultra-thin Rubidium Atomic Clock offers precise timing, low power consumption, and compact design, making it ideal for critical applications in aerospace, navigation, and power systems.
XHTF1031R Miniature Rb Atomic Clock
The XHTF1031R is a miniature rubidium atomic clock featuring low power consumption, compact structure, and compatibility with SA.3 series atomic clock, ideal for aviation and aerospace applications.
Space-borne Rb Atomic Clock (Custom)
High-precision space-borne rubidium atomic clock designed for navigation satellites, communication satellites, and space stations, featuring exceptional frequency stability and radiation resistance.