Developed in alignment with The Open Group Sensor Open Systems Architecture™ (SOSA) technical standard, MIL-HD2 provides developers with a readily available, robust open architecture solution for tighter card pitches and chassis designs where space requirements and density are critical. These connectors are available in 3-, 4-, and 6-pair configurations, providing the MIL-embedded market with the highest count of differential pairs available today in a 3U configuration at 56Gb/s PAM 4 speeds. This series was selected by the SOSA Consortium and provides a SOSA aligned solution for nextgen switch and payload card requirements enabling the MIL-embedded market to meet next-gen performance levels while still meeting COTS requirements.
Open.Tech's 6U VPX 24-Channel Rugged Ethernet Switch provides high-performance networking for demanding aerospace and military applications. Designed to endure harsh environments, this switch ensures low-latency, reliable communication for mission-critical operations.
Open.Tech's 6U VPX 10G 48-Channel Rugged Ethernet Switch delivers high-performance, reliable networking for aerospace and military applications. Designed to withstand harsh environments, this switch ensures low-latency communication and seamless integration with advanced network infrastructures.
Open.Tech's 3U VPX 25G 56-Channel Rugged Ethernet Switch delivers high-performance, reliable networking for aerospace and military applications. Designed to withstand harsh environments, this switch ensures low-latency communication and seamless integration with advanced network infrastructures.
Open.Tech's 6U VPX 25G 144-Channel Rugged Ethernet Switch delivers unparalleled high-performance networking for aerospace and military applications. Designed to withstand harsh environments, this switch ensures low-latency, reliable communication and seamless integration with advanced network infrastructures.
Developed in alignment with The Open Group Sensor Open Systems Architecture™ (SOSA) technical standard, MIL-HD2 provides developers with a readily available, robust open architecture solution for tighter card pitches and chassis designs where space requirements and density are critical. These connectors are available in 3-, 4-, and 6-pair configurations, providing the MIL-embedded market with the highest count of differential pairs available today in a 3U configuration at 56Gb/s PAM 4 speeds. This series was selected by the SOSA Consortium and provides a SOSA aligned solution for nextgen switch and payload card requirements enabling the MIL-embedded market to meet next-gen performance levels while still meeting COTS requirements.
Our advanced Time Sensitive Networking (TSN) Ethernet Switches deliver high-performance, low-latency networking solutions tailored for industrial automation, aerospace, and military applications. Compliant with VITA standards, these switches ensure synchronized, real-time communication over Ethernet, enhancing reliability and precision in mission-critical systems.
Our compact Small Form Ethernet Switches and Media Converters deliver exceptional performance and versatility, ideal for space-constrained applications in aerospace and military environments. Compliant with VITA standards, these devices ensure reliable and efficient network connectivity.
Open.Tech's Digital Command Center Ethernet Switch Series provides robust, high-performance networking solutions designed for command centers in military, aerospace, and industrial applications. These switches ensure reliable, low-latency communication and seamless integration with advanced network infrastructures.
Open.Tech's 12-Channel 10G SWaP Quick Start Ethernet Switch offers high-performance, ruggedized networking for aerospace and military applications. Designed for rapid deployment, this switch provides reliable, low-latency communication in harsh environments.
Amphenol’s Rugged 156-Channel Ethernet Switch Box is conduction cooled and configurable for system connectivity, speeds, port types, and interoperation with various high-speed media converters and connectors for system interfacing