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Unlocking Innovation: How LCR Champions Open Standards with Modular Chassis Design

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Mission-Critical Integrated Systems, Chassis & Backplanes for UAVs, UGVs & Unmanned Systems

Unlocking Innovation: How LCR Champions Open Standards with Modular Chassis Design

LCR Embedded Systems’ modular chassis design supports rapid deployment and interoperability in open standards-based defense systems aligned with VPX and SOSA architectures

The U.S. Department of Defense is making meaningful strides with its Modular open Systems Approach (MOSA), prompting companies like LCR Embedded Systems to adapt their technologies to meet these new demands. Discover more >>

LCR's Contribution to Open Standards via Modular Chassis Design

LCR is playing a pivotal role in enabling integrators to adopt open standards-based computing systems through its innovative modular chassis design. This approach enhances flexibility, upgradeability, and deployment efficiency, particularly in conjunction with architectures like VPX and SOSA.

While MOSA primarily focuses on the interoperability of software and electronic components, it is crucial that the physical infrastructure supporting these systems evolves concurrently. LCR’s modular design leverages established chassis components, such as standardized sidewalls and adaptable front panel features, across configurations that typically accommodate 5 to 10 plug-in cards. This strategy not only shortens development timelines and minimizes non-recurring engineering expenses but also meets the thermal and mechanical demands necessary for robust deployments.

The comprehensive article delves into how LCR’s chassis design philosophy facilitates the effective application of open standards, addressing mechanical factors, customization possibilities, and compatibility with both OpenVPX and SOSA. Readers will gain valuable insights into how hardware modularity accelerates system development and ensures long-term flexibility in defense-related applications.

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Mission-Critical Integrated Systems, Chassis & Backplanes for UAVs, UGVs & Unmanned Systems

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Conversion between Base-T I/O and KR/KX backplane signals
14-slot forced air & conduction-cooled enclosure with mission-configurable backplane
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16-slot 19” rackmount chassis with air & conduction cooling
3U OpenVPX system for high-performance onboard UAV computing
SOSA-aligned 3U HPEC modular open sensor system
Versatile VPX & SOSA-aligned chassis for real-world testing
Functional demonstration & verification testing for VPX & SOSA aligned payloads
12-slot 19″ development chassis for VPX and SOSA-aligned modules
Compact Rugged Chassis for VPX Module Evaluation and Deployment
Ruggedized 18-slot deployment chassis with MIL-compliant power options
Development platform for high-speed modules with 100Gb data rates

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