For illustrative purpose only
Digitus 100G QSFP28 DAC Cable 1m, AWG 30
Digitus 100G QSFP28 DAC Cable 1m, AWG 30, 1 m, DAC, QSFP28, QSFP28
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Product Information
| Information | |
|---|---|
| Manufacturer | Digitus |
| Product code | 167594736 |
| EAN | 04016032481041 |
| Manufacturer part number | DN-81601 |
| Category | Fibre Optic Cables |
Product Description
100G QSFP28 DAC cable, 1 m AWG30
- QSFP+ 100G 1m DAC
- Maximum aggregate data rate: 100Gb/s (4 x 25Gb/s)
- 100G QSFP28 to QSFP28
- AWG 30 Twinax cable
- Channel data rates : 28.3125Gbps
- Compliant with the SFF-8665 specifications
- Single +3.3V power supply
- Wire AWG : 30
- Type: Passive / Copper
The Digitus® QSFP28 100G DAC cables are the ideal connection between switches in the backbone area. The 100G QSFP28 to QSFP28 Direct Attach Cable copper cable assemblies(DAC) are a low cost alternative for short reach applications. It is compliant with 100G Ethernet (100GBASE-CR4) specifications. It contains four high-speed copper pairs, each operating at data rates of up to 25GbE. So the QSFP28 DAC cable assembly is suitable for power-efficient connectivity for short distance interconnects, such as Data center, enterprise storage systems and High-Performance Computing.
- QSFP+ 100G 1m DAC
- Maximum aggregate data rate: 100Gb/s (4 x 25Gb/s)
- 100G QSFP28 to QSFP28
- AWG 30 Twinax cable
- Channel data rates : 28.3125Gbps
- Compliant with the SFF-8665 specifications
- Single +3.3V power supply
- Wire AWG : 30
- Type: Passive / Copper
The Digitus® QSFP28 100G DAC cables are the ideal connection between switches in the backbone area. The 100G QSFP28 to QSFP28 Direct Attach Cable copper cable assemblies(DAC) are a low cost alternative for short reach applications. It is compliant with 100G Ethernet (100GBASE-CR4) specifications. It contains four high-speed copper pairs, each operating at data rates of up to 25GbE. So the QSFP28 DAC cable assembly is suitable for power-efficient connectivity for short distance interconnects, such as Data center, enterprise storage systems and High-Performance Computing.