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, is a general duty, touch-proof, thermoplastic rectangular with integrated latch push-pull coupling high power connector. Two poles per connector and up to 120 amps possible with a standard operating temperature from -55°C to +125°C.
This series, utilizing RADSOK® socket contact technology, is an IP67 rated, thermoplastic reverse bayonet coupling, high power connector. With over six insert arrangements ranging from 3 to 5 contacts per connector and up to 70 amps possible with a standard operating temperature from -40°C to +100°C.
The APC 8010 is the perfect machine for every fiber optic production. High reproducibility with all connector geometries ensures high productivity during production. This is made possible by a permanent pressure control, which is adjusted to the connector type and quantity.
Amphenol LTW's waterproof USB connectors are IP67 / IP68 rated and designed with standard Type A/B interfaces in various product configurations -- plastic/metal, screw/bayonet locking, receptacle, receptacle with cables, overmolded cable, and field-installable demands for industrial applications【Quick Guide: https://amphenolltw.com/down.php?supp_download=111】
Automotive Grade PCI Express® Gen 5 Card Edge Connectors
EXTEND DIFFERENTIAL SIGNALING TO 32GT/S FOR NEXT-GENERATION SYSTEMS
PCIe® Gen 5 straddle mount connectors outperform the industry standards with higher speed along with complying to USCAR. The optimized series supports backwards mating and is footprint compatible with PCIe® 4/3/2/1.
HIGH POWER OCP-COMPATIBLE CABLE ASSEMBLY COMPLIANT WITH OPEN COMPUTE POWER DISTRIBUTION ARCHITECTURE
Amphenol's BarKlip® BK1000 HD I/O power cable assemblies feature an OCP-compatible design, compliant with ORv3 power distribution architecture standards. Barklip® BK1000 HD IO can distribute up to 1000A per contact, load and return, and up to 2000A total. Designed similarly to other ORv3 busbar connectors
Amphenol's BarKlip® BK100 I/O provides a convenient method of distributing up to 100A between busbars, cables and circuit boards. It features 12 fully independent cantilevered beams, providing a true compliant spring to adjust for variations in busbar alignment and surface finish. The ultrasonically welded connection between the wire and contact increases the efficiency and reliability of current transition
HIGH POWER OCP-COMPATIBLE CABLE ASSEMBLY COMPLIANT WITH OPEN COMPUTE POWER DISTRIBUTION ARCHITECTURE
Amphenol's BarKlip® BK1200 HD I/O power cable assemblies feature an OCP-compatible design, compliant with ORv3 power distribution architecture standards. Barklip® BK1200 HD I/O can distribute up to 1250A per contact, load and return, and up to 2500A total.
The BarKlip® BK150 connector features 10 independent conducting beams that maintain contact with the mating busbar in common misaligned positions, therefore significantly lowering overall resistance.
BarKlip® BK150's contacts include a stainless- steel helper spring to ensure that proper mating force is maintained and contact resistance is minimized throughout the life of the connection.
BarKlip®BK200 I/O provides a convenient method of distributing up to 200A between busbars, cables and circuit boards. It features 14 fully independent cantilevered beams, providing a true compliant spring to adjust for variations in busbar alignment and surface finish. The ultrasonically welded connection between the wire and contact increases the efficiency and reliability of current transition.