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Microchip Technology Unveils Radiation-Hardened Space CSAC-SA65 Chip-Scale Atomic Clock for Precision Small Satellite Timing

GlobeNewswire USA
Overview
Microchip Technology has released the Space CSAC-SA65, a radiation-hardened chip-scale atomic clock designed for demanding space applications. This compact device offers over 30 kRad Total Ionizing Dose (TID) immunity and operates across a wide temperature range of -40°C to +80°C while consuming less than 120mW. It provides precise timing crucial for small, low-power satellites involved in satellite-to-cellular communication and Earth imaging, significantly reducing the size, weight, power, and cost (SWaP-C) for satellite developers.
In Depth

Key Findings

Microchip Technology has announced the Space CSAC-SA65, a groundbreaking chip-scale atomic clock (CSAC) engineered to deliver unparalleled precision timing in the harsh radiation environments of space. This advanced device boasts radiation tolerance exceeding 30 kRad Total Ionizing Dose (TID) and maintains stable operation across an extended temperature range from -40°C to +80°C. Critically, it achieves this while consuming less than 120mW of power, making it an ideal solution for power-constrained small satellite missions requiring highly accurate timing.

Technical / Clinical Details

The Space CSAC-SA65 integrates robust design features to ensure reliability and performance in orbit. Its superior radiation hardening is achieved through a combination of proprietary circuit design techniques and shielding, allowing it to withstand the cumulative effects of radiation exposure in Low Earth Orbit (LEO) and beyond. The device’s low power consumption and compact footprint are pivotal for small satellite platforms where every milliwatt and cubic centimeter is valuable. It provides a stable frequency reference essential for critical satellite functions such as autonomous navigation, secure communications, Earth observation data synchronization, and high-precision GPS applications. This innovation significantly surpasses the capabilities of traditional quartz oscillators and offers a miniaturized alternative to bulkier rubidium atomic clocks, providing comparable accuracy with drastically reduced SWaP-C.

Background & Context

The rapidly expanding small satellite market, driven by the ‘New Space’ economy, demands components that are not only high-performing but also compact, energy-efficient, and radiation-tolerant. Historically, high-precision timing solutions for space have been large, power-hungry, and expensive, limiting their integration into smaller platforms. The Space CSAC-SA65 directly addresses these limitations, enabling a new generation of more capable and cost-effective small satellites. This technological leap supports the development of extensive satellite constellations for global connectivity and enhanced Earth monitoring, democratizing access to space-based services.

Strategic Significance & Outlook

The introduction of the Space CSAC-SA65 represents a significant advancement in space-grade timing technology, solidifying Microchip Technology’s position as a key enabler for next-generation space missions. By offering a high-performance, radiation-tolerant, and low-power timing solution, the company is facilitating the deployment of more sophisticated small satellite systems. This will accelerate innovation in areas like satellite internet, climate monitoring, and national security applications. The enhanced capabilities provided by this CSAC are expected to drive down mission costs, increase operational efficiency, and pave the way for more ambitious and complex space endeavors in the coming years, further expanding the commercialization of space.

Source: https://www.globenewswire.com/news-release/2026/08/13/3344445/0/en/microchip-advances-space-grade-timing-with-enhanced-radiation-tolerance-and-extended-temperature-performance.html

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