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 optical transceiver comes with a maximum link length of 100m on OM4 multimode fiber and is capable of a 400Gb/s data rate with each channel transmitting up to 53.125Gb/s. The module also features outstanding BER and high sensitivity because of its reliable design and excellent coupling efficiency. It is compliant with IEEE 802.3cm, QSFP DD CIMS 4.0, and QSFP DD Hardware 5.1.
Amphenol RF offers a full range of 4.3-10 connectors and adapters, which are engineered for the wireless market and are ideal for applications requiring low passive intermodulation, or PIM.
SUPPORTS 53.12Gb/s DATA RATE & LOW POWER
The module is compliant with IEEE 802.3 cd, SFF-8472 Rev 12.4, and compatible with SFF-8432 and applicable portions of SFF-8431 Rev. 4.1.
- Supports 53.125Gb/s data rate
- 1.8W maximum power consumption with established link
- Up to 10km on 9/125μm SMF
- Operating temperature range: -40°C to 85°C
- Electrically hot-pluggable
SUPPORTS 53.125Gb/s DATA RATE & LOW POWER
The module is compatible with IEEE 802.3 cd 50G SR. Maximum link length of 70m on OM3 multimode fiber or 100m on OM4 multimode fiber.
- Low power - 1.5W
- Mature COB technology
- Outstanding BER and sensitivity
- Supports 53.125Gb/s data rate
- Electrically hot-pluggable
AOC series includes QSFP28 AOC, QSFP+ AOC, SFP28 AOC, SFP+ AOC, QSFP28 to SFP28 BO, and QSFP+ to SFP+ AOC BO, compliant with MSA and other standards. It is characterized by low power consumption, small size, and high reliability, which is beneficial to increase capacity of data centers, improve port density, and reduce power consumption.
From a dedicated Base-8 architecture to a standard 12 or 24 fiber system, Amphenol Network Solutions' Advanced Optical Modules (AOMs) offer the complete solution. Our AOM portfolio is easily configurable and adaptable to create a solution that meets your network needs. Modules are deployed in the C2X or C2E chassis.
AgilBrick™ 1.27mm Board-to-Board Header G802 Series offers a cost-effective solution with a flexible structure and 1 to 4 A current rating. These headers from Amphenol ICC can be customized to meet various customer requirements. It comes in customizable pin length, including contact pin and solder tail, which makes it an ideal choice for several applications and specific designs.
AgilBrick™ 2.00mm Board-to-Board Header G825 Series offers a cost-effective solution with a flexible structure and 1 to 4 A current rating. These headers from Amphenol ICC can be customized to meet various customer requirements. It comes in customizable pin length, including contact pin and solder tail, which makes it an ideal choice for several applications and specific designs.
AgilBrick™ 2.54mm Board-to-Board Header G800 Series offers a cost-effective solution with a flexible structure and 1 to 4 A current rating. These headers from Amphenol ICC can be customized to meet various customer requirements. It comes in customizable pin length, including contact pin and solder tail, which makes it an ideal choice for several applications and specific designs.
AgilLink™ 2.00mm Wire-to-Board Header G823 Series is the most common solution for transferring power and signal. It can mate with both wire-to-board and board-to-board applications. This series can carry a maximum current rating of 4A. Amphenol ICC offers a comprehensive range of these headers including, V/T DIP, V/T SMT, R/A DIP to meet various customer requirements.