IT Datacom

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.

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Product VHDM-HSD™
VHDM-HSD™
VHDM-HSD™ is a shielded, high-density, high-speed press-fit connector system optimized for differential pair architectures. The flexible, modular design of the product allows for the differential performance of our VHDM-HSD™ connector to be combined on the same rear organizer as the VHDM® connector which is a single-ended solution.

Product VHDM®
VHDM®
Amphenol's VHDM® connector's modular format and breadth of components provide unmatched design flexibility. VHDM® can be combined with VHDM-HSD™ to incorporate both single-ended and differential signaling within the same connector. VHDM® derivatives provide an upgrade path to 25 Gb/s with backward mate compatibility to allow for scale as needed.

Product Waterproof Micro USB 2.0
Waterproof Micro USB 2.0
Amphenol's Waterproof Micro USB 2.0 comes with full shielding that protects against Electromagnetic Interference (EMI), Radio-Frequency Interference (RFI), and Electromagnetic Discharge (ESD). The USB connector supports fast charging with 1.8A power contacts and is capable to support up to 3A for customized needs. These halogen-free connectors meet IPX4 industry ratings.

Product Waterproof RF Adapters (IP68 Rated)
Waterproof RF Adapters (IP68 Rated)
Amphenol SV Microwave offers a wide range of IP67 and IP68 waterproof interconnect products designed to withstand rigorous environments and harsh elements. SV's waterproof adapters include hermetically sealed connectors to 1 x 10-8 cc/sec, making them ideal for high-pressure, vacuum applications, and the prevention of liquid or gas leakage.

Product WaveTrax Fiber Raceway
WaveTrax Fiber Raceway
WaveTrax®, the Amphenol Network Solutions fiber raceway system, is designed to help engineers deliver reliable fiber optic network performance. Reduce your cost of ownership with the full line of WaveTrax products, including troughs, elbows, cross and T sections, off-ramps, and articulating links - easily installed so you are up and running quickly!

Product X2
X2
DESIGNED TO ACHIEVE 56G DATA RATE REQUIREMENTS X2's upgraded platform maintains backward mating interface compatibility with existing XCede® products while offering new backplane configurations. Mid-plane-based orthogonal solutions are available for 6-Pair along with the others, supporting both 85Ω and 100Ω to meet a wide variety of application needs, including Ethernet and PCI.

Product XCede I/O
XCede I/O
The XCede® I/O interconnect system is comprised of a 32-position, variable pitch connector built for use in high-speed serial applications. Each port offers 4 channels to increase port density which contributes to more board real estate and immense cost savings. The XCede® I/O connector supports next-generation 100G+ applications and transmits up to 25 Gbps/serial-lane.

Product XCede® Family Cable Assemblies
XCede® Family Cable Assemblies
Cable Backplane Systems is part of Amphenol's Highspeed Backplane Product business, dedicated to developing and manufacturing cabled backplane solutions for next-generation system architectures. Our customers are leading providers of data center switches and routers, enterprise servers, and high-performance computers.

Product XCede® HD
XCede® HD
XCede® HD backplane connector achieves high performance (up to 20 Gb/s) in a Hard Metric form factor. Offering a linear density of up to 84 differential pairs per inch (33 differential pairs per centimeter), the XCede® HD connector meets the requirements of high-density architectures with a 35% increase in density as compared to standard XCede®.

Product XCede® HD2
XCede® HD2
DESIGNED TO ACHIEVE 56G DATA RATE REQUIREMENTS WITH HIGHER DENSITY While maintaining the same mating interfaces with XCede® HD and XCede® HD Plus, this connector provides developers with a readily available robust solution for tighter card pitches and chassis designs where space requirements and density are critical.

Product XCede® HD Plus
XCede® HD Plus
The XCede® HD Plus backplane connector achieves high performance (up to 28+ Gb/s) in a Hard Metric form factor. Offering a linear density of up to 84 differential pairs per inch (33 differential pairs per centimeter), the XCede® HD Plus connector meets the high-density needs of today's challenging architectures.

Product XCede® Power Connectors
XCede® Power Connectors
XCede® connector platform is designed to provide headroom for high-speed, serial data rates demanded by data centers and service provider networks. The use of polymers in a resonance-damping shield enables low crosstalk across a wide frequency range. The XCede® backplane header system provides the ruggedness and long-term reliability required by today's systems.

Product XFP
XFP
XFP is a 30pos 0.8mm pitch SMT receptacle designed to support 10 Gigabit Fibre Channel and Gigabit Ethernet with the ability to extend performance to 14 Gbps. It is constructed from a metal frame and the cage assembly is to be bezel-mounted to an I/O panel with compliant pins for pressing onto the host PCB. Its single row cage configuration requires less space & is cost-optimized.

Product XFP 10G Transceivers
XFP 10G Transceivers
XFP 10G optical transceivers include SR, LR, ER, ZR and support Duplex, BiDi, CWDM, and DWDM solutions. They adopt an LC interface and are compatible with IEEE802.3ae, XFP MSA, and other standards. XFP 10G optical transceivers have the characteristics of low power consumption, small size, and high speed. They are most commonly used in Transmission, Storage Area Networks, and other environments.

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