With our industry-leading high-speed, power and fiber optic technologies, together with superior simulation and testing capability and cost-effectiveness, Amphenol is a market leader in interconnect development for the information technology (IT) and datacom market. Whether industry standard or application-specific designs are required, we can provide customers with products that enable performance at the leading edge of next-generation, high-speed, power and fiber optic technologies. Our primary end applications include cloud computing and data centers, gaming systems, internet appliances, networking equipment, servers, storage systems, transmission and web service providers.
This series, utilizing RADSOK® socket contact technology for board-to-board mezzanine application, compact footprint, metal circular, press-fit high power connector. With five sizes ranging from 2.4mm, 3.0mm, 3.6mm, 4.8mm, and 6.0mm contact sizes and up to 120 amps possible with a standard operating temperature from -40°C to +125°C.
RCx is a simple, high density, low cost, passive connector and cable system specifically designed for intra-rack connectivity of 25 Gb, 50 Gb, and 100 Gb Ethernet allowing for a seamless intra-rack switch to adapter deployments. RCx is density optimized and can accommodate more than 128/25 Gbps lanes in a RU faceplate.
Amphenol's RCx is a low-cost passive copper connector and cable system, specifically designed for intra-rack connectivity of 25Gb, 50Gb, and 100Gb Ethernet. It is designed to address multiple high-speed high-performance hardware needs. It provides lower cost and higher density solutions compared to traditional SFP28/QSFP28 cables.
Amphenol LTW's RF connector (radio frequency connector) is an electrical connector designed to work at radio frequencies in the multi-megahertz range. RF connectors are typically used with coaxial cables and are designed to maintain the shielding that the coaxial design offers. Available in SMA, N-Type, with various termination choices.
Amphenol's MRU series of USB 2.0 Type A connectors provide IP67 protection for enclosures per IEC 60529. With data rates up to 480Mb/s, the connector series is designed to provide a standard USB interface for enclosures exposed to harsh environments. While these connectors are offered as mating pairs, the receptacles can also mate with any other standard USB 2.0 plug.
SAS 4.0 connectors for next-generation servers with 24Gb/s speeds. The 29-position receptacle & plug connectors feature hot-plugging & blind-mating, connector misalignment compensation, and a PCB retention mechanism for robust SMT attachment. It is SATA compliant and meets a wide range of vertical and R/A configurations for usage across server and storage equipment, HDDs, HDD carriers, and SSDs.
SAS/PCIe 3.0 connectors are designed for next-generation servers with 12Gb/s speeds. The 68-position, SAS/PCIe receptacle, and header enable high-speed Serial Attached SCSI (SAS) hard disk drive (HDD) interface as well as Peripheral Component Express (PCIe)-based devices. These connectors are backward compatible with 6Gb/s SAS, SATA, and 3Gb/s SFF8482 connectors.
SCA-2 connectors consist of headers and receptacles that enable the hard disk drive to backplane interface in enterprise storage systems. The header resides on the HDD while the receptacle is attached to the backplane. 40pos SCA-2 receptacles are designed to accept Fibre Channel drives, while 80pos receptacle accepts SCSI drives.
Design your own connector with our Scorpion series! The Scorpion modular connector can be configured as a power connector, a signal connector, or both, and it offers nearly limitless combinations. Perfect to achieve that ideal blend of size, weight, and power (SWaP). Add options for blind mating, float mount, panel mount, and cable connector options, as well as integral locking systems.
Amphenol's SFP product family supports applications for up to 6 Gbps per channel. The connector accepts multiple transceivers per INF-8074i and combines, transmits, and receives functions in a low-cost, compact format. The assemblies are designed to maximize valuable space on the PCB.