We detect you are using an unsupported browser. For the best experience, please visit the site using Chrome, Firefox, Safari, or Edge. X
Maximize Your Experience: Reap the Personalized Advantages by Completing Your Profile to Its Fullest! Update Here
Stay in the loop with the latest from Microchip! Update your profile while you are at it. Update Here
Complete your profile to access more resources.Update Here!
0
$0.00
Item Qty
Your cart is empty.

Elevate Your Missions with Our New SOSA™ Standard-Compliant Products


For over 30 years, military and defense customers worldwide have relied on our timing systems. As a market leader that continuously challenges conventional wisdom, we have a commitment to reinventing timing architectures to enable autonomous, adaptable, and resilient operations.

Our new PNT portfolio showcases significant domain knowledge in timing systems and fiber-based two-way time transfer. Developed in alignment with the Sensor Open Systems Architecture™ (SOSA) Technical Standard, our OpenVPX form-factor timing products are based on the Modular Open System Approach (MOSA) and C5ISR Modular Open Suite of Standards (CMOSS) that enable PNT technologies to be interconnected without limitations.

Let our engineering team work with you to provide card-level, system-level and customized solutions for your most demanding PNT applications and missions. We provide a variety of PNT technologies, products and engineering services for missions that use platforms developed in alignment with the SOSA Technical Standard or the CMOSS standard.

Timing Card

The timing card is radial slot plug-in compatible and capable of measuring and providing frequency signals and PNT data across a chassis or system in alignment with the SOSA Technical Standard. The timing card can steer to an external reference or an on-chassis reference such as the PNT source card's miniature atomic clock.

PNT Source Card

The PNT source card is payload plug-in compatible and is used to precisely measure and publish PNT data to the timing card. The card can be equipped with a military or civilian GNSS receiver and a miniature atomic clock (MAC). The card also houses a tactical grade Inertial Measurement Unit (IMU).

MD-015

The MD-015 offers atomic stability and accuracy and uses a Chip Scale Atomic Clock (CSAC) or Miniature Atomic Clock (MAC-D) as the reference clock to provide optimal holdover time. This is achieved using algorithms that correct for temperature change, frequency aging and pressure sensitivity.

MD-013

The MD-013 is a standard platform module that provides 1 pps TTL, 10 MHz sinewave and 10 MHz square-wave outputs that are disciplined to an external 1 pps reference. The internal reference oscillator is an ultra-stable OCXO.

MD-175

Our fully integrated, low-noise GNSS disciplined module is available in a compact, surface-mount 40 × 50 mm footprint. It has an embedded GPS- and GLONASS-compatible 34-channel receiver and provides a 10 MHz sinewave and 1pps HCMOS output. An onboard OCXO provides stability in the unlocked mode.

OCXOs

Our Oven-Controlled Crystal Oscillators (OCXOs) are temperature-controlled oscillators with optimal frequency, temperature, aging, phase noise and short-term stability (ADEV).

CSAC

World’s lowest-power commercial atomic clock suitable for power-limited and battery-powered applications.

MAC

The MAC-SA5X is designed for applications that require rubidium atomic clock holdover performance but are constrained by size and low power requirements.