Amphenol is a technology leader in the design, manufacture and supply of high-performance interconnect systems, sensors and antennas for a broad range of industrial applications. Our core competencies include application-specific industrial interconnect solutions utilizing integrated assemblies. Our primary end applications for industrial include agriculture equipment, alternative and traditional energy generation, batteries and hybrid drive systems, entertainment, factory automation, heavy equipment, instrumentation, internet of things (IoT), LED lighting, marine, medical equipment, oil and gas, power distribution, public safety, rail mass transit, smart manufacturing (IIoT), and transportation.
Electrically conductive seals for frequency ranges from 15 kHz to 4 GHz: Seals for square flange sockets for installation type: Front wall and back wall, seals for sockets with single hole mounts, seals for protective caps, seals for D-SUB connectors.
SV Microwave streamlines this with our innovative Embedded Phase Tuner. This component allows customers to independently adjust the phase of cable assemblies without external vendor involvement. The Embedded Phase Tuner operates by adjusting the transmission line length using a threaded coupling nut, simplifying the process.
SV Microwave has just released a series of SMA and 2.92mm cable connectors and adapters with built-in electromagnetic interference (EMI) shielding. These interconnects feature a gasket that improves EMI shielding over similar products, resulting in minimal to no electromagnetic interference.
The ExaMAX2® backplane connector system supports 112Gb/s PAM4 industry specifications. It maintains mating interface compatibility with previous ExaMAX products to allow cost/performance flexibility for designers. The mating interface and connector design are optimized to support the demanding electrical and mechanical requirements of 112G systems. ExaMAX2 delivers industry-leading SI performance.
The ExaMAX+® backplane connector system is designed to meet 56Gb/s PAM4 industry specifications with plenty of SI margin while maintaining mating interface compatibility with previous ExaMAX® products. The optimized connector design delivers superior signal integrity performance resulting in lower crosstalk noise and higher insertion loss-to-crosstalk ratio.
The ExaMAX® 85Ohms backplane connector system is designed for higher bandwidth applications from 25Gb/s to 56Gb/s. Optimized connector design delivers superior signal integrity performance resulting in low crosstalk noise and low insertion loss. Each signal wafer incorporates an innovative one-piece, embossed ground structure to improve crosstalk performance through 56Gb/s.
ExaMAX® backplane connector system is designed for higher bandwidth applications from 25Gb/s to 56Gb/s. The optimized connector design delivers superior signal integrity performance resulting in low crosstalk noise and low insertion. Each signal wafer incorporates an innovative one-piece, embossed ground structure to improve crosstalk performance through 56Gb/s.
The ExaMAX® high-speed orthogonal connector system is designed to enable superior 25Gb/s electrical performance and provide a path to 56Gb/s in anticipation of further increases in bandwidth requirements. The 6-Pair orthogonal right-angle header connector solution further expands the range of applications supported by the ExaMAX® connector system.
The ExaMAX® VS backplane system is a scalable, cost-optimized connector system designed for higher bandwidth applications up to 25Gb/s. The high-performance connector system provides both mechanical robustness and superior signal integrity, minimizing channel performance variation for every differential pair.
ExaMEZZ® 56Gb/s High Speed Mezzanine Connector System
The ExaMEZZ® connector is designed to enable superior 25Gb/s electrical performance and provide a path to 56Gb/s in anticipation of further increases in bandwidth requirements and high-speed signaling. ExaMEZZ® connectors feature a revolutionary beam-on-beam contact interface that minimizes the residual stub for improved signal integrity performance.