Low power consumption assists in making the passive copper cable assembly an economic solution for within rack, or rack-to-rack applications.
40G QSFP+ to 4 x 10G SFP+ Direct Attach Passive Copper Cables
1. Applications
Ø 10G/40G Ethernet
Ø InfiniBand, Fiber Channel 4G/8G/10G
Ø Sonet Multiplatform support
Ø High Performance Computing Clusters
Ø High End Servers
Ø Metro Network Switch/Cross Connect
2. Features
Ø Passive Copper (Paddle cards plus Copper cable) (Cable Length: 1~5m)
Ø 4-Channel Full Passive Copper Cable Transceiver
Ø QSFP+ conforms to the Small Form Factor SFF-8436 and SFF-8431
Ø Support for multi-gigabit data rates up to 10.5Gbps
Ø Data rates backward compatible to 1Gbps
Ø Maximum aggregate data rate: 40 Gbps (4 x 10Gbps)
Ø Hot-DensityQSFP 38-PINfootprint
Ø I/O Connector designed for high speed differential signal applications
Ø Improved Pluggable Form Factor(IPF) compliant for enhanced EMI/EMC performance
Ø Compatible with industry standard SFP cages +Switches
Ø EEPROM signature can be customized.
Ø Temperature Range: 0~ 70 °C
Ø RoHS-6 Compliant
3. Description
Handar's High Speed 40G QSFP+ to 4×10G SFP+ Direct Attach Cable copper cable assemblies are a low cost alternative for short reach 4X applications. They are designed to be fully compatible in form factor and optical/electrical connections according to the QSFP Multi-Source Agreement.
QSFP+ connectors provide four channels of data in one pluggable interface. Each channel is capable of transferring data at 10Gbps and supports a total of aggregate 40Gbps as specified for QSFP+. These interconnects have three times the density of SFP+ interconnects(MSA) and have been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference.
QSFP+ cable assemblies are hot swappable and the programmed EEPROM signature enables the host to differentiate
between a copper cable assembly and a fiber optic module.
Low power consumption assists in making the passive copper cable assembly an economic solution for within rack, or rack-to-rack applications.

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