Amphenol is one of the world’s largest designers, manufacturers and marketers of connectors and interconnect systems, antennas solutions, sensors and high-speed cable. Our connector and connector system solutions include fiber optic interconnect, harsh environment interconnect, high-speed interconnect, power interconnect, power distribution and busbars and radio frequency (RF) interconnect products. Our sensors and sensor-based product solutions include gas and moisture sensors, level sensors, position sensor, pressure sensors, temperature sensors and vibration sensors. Our value-added cable assemblies include cable assemblies and harnesses, cable management products and backplane interconnect systems. Our cable solutions include coaxial cable, power cable and specialty cable. We also provide combiner/splitter products, flexible and rigid printed circuit boards, hinges and molded parts.
Antenna that is mounted on the device with connector or a cable assembly with connector. It could be for indoor or outdoor use. Monopole and dipole antennas
Amphenol’s Extremeport-Flash is an extreme low mating height, easy-to-release high-speed cable solution. We designed 95ohm Flash mainly to support near chip (under heat sink) to IO application, and the mating height is lower than 5mm. Flash can support 56G PAM4, and scalable to 112G PAM4 application, and plug is with pull tab design feature for easy release.
Amphenol's Mini Cooledge IO(MCIO) is a high-speed, small mechanical size cable solution. Amphenol MCIO product is now being specified in the SFF group and the project number is SFF-TA-1016. MCIO cable can support PCIe Gen5, and is scalable to PCIe Gen6 and 112G PAM4. We developed 85ohm and 95ohm solutions to support different applications.
Amphenol’s Extremeport-Swift is an extreme low profile(mating height<9mm), robust mechanical, and excellent SI performance cable solution. The cable assembly and connector can support PCIe Gen5, and the SI performance is scalable to PCIe Gen6 and 112G PAM4. We can provide straight, right angle, and side exit plug types with 38pin, 74pin, and 124pin to support customers to optimize system layout.
Amphenol introduces the next-generation OverPass™ solution - ExtremePort™ Flash. The 0.60mm pitch connector comes with an extremely low profile design capable of transmitting a high-speed signal up to 56G PAM4, and allows much greater signal path lengths while maintaining SI performance when compared to conventional PCB routing methods.
Amphenol's ExtremePort™ QSFP DD 112G interconnect system is comprised of a 76 position, 0.8mm pitch connector built for use in high-speed serial applications. Each port supports up to 800Gb/s in aggregate over an 8 x 112Gb/s electrical interface. The cage and connector design provides backward compatibility to QSFP56...
Amphenol's ExtremePort™ QSFP+ interconnect system is comprised of a 38-position, 0.8mm pitch connector built for use in high-speed serial applications. Each port offers 4 channels to increase port density which allows for more board real estate and cost-optimized solutions. The ExtremePort™ QSFP+ connector supports next-generation 200G+ applications and transmits up to 56Gb/s PAM4 per channel.
Amphenol's ExtremePort™ SFP+ interconnect system is comprised of a 20-position hot-swappable I/O connector enclosed in a metal cage mounted to a host PCB.It supports up to 56Gb/s PAM4 aggregate bandwidth with backward compatibility for next-gen Ethernet & Fibre Channel applications. ExtremePort™ SFP+ connector shares the same unique mating interface & EMI cage dimensions as the SFP+ form factor.
Amphenol has developed the ExtremePort™ Swift connector which is used in the application of PCIe® Gen5 signal NRZ 32GT/s, UPI 2.0 24GT/s, 24Gb/s SAS signal. With 0.6mm contact pitch, ExtremePort™ Swift solutions are smaller than mainstream connectors in the current market to save space in the end device.
Amphenol introduces the SFF-TA-1002 standard solution - ExtremePort™ Z-Link, which is a 0.60mm pitch connector that comes with a slim form factor design, capable of transmitting a high-speed signal up to 56G PAM4, and allowing much greater signal path lengths while maintaining SI performance when compared to conventional PCB routing methods.