About Cisco QSFP-H40G-AOC7M Transceiver Modules
Product Description
| Specification |
Description |
| Type |
Active Optical Cable (AOC) |
| Data Rate |
40 Gigabit per second (Gbps) |
| Interface |
QSFP+ to QSFP+ |
| Reach |
7 meters (23 feet) |
| Fiber Type |
Multimode |
| Color |
Blue |
| Product Tag |
QSFP-H40G-AOC7M |
| Property |
Value |
| Product Code |
QSFP-H40G-AOC7M |
| Description |
Cisco 40GBase-AOC QSFP direct-attach Active Optical Cable, 7-meter |
| Dimensions |
13.5 x 18.4 x 72.4 mm |
| Wavelength (nm) |
- |
| Cable Type |
Active optical cable assembly |
| Core Size (microns) |
- |
| Modal Bandwidth (MHz-km) |
- |
| Cable Distance |
7m |
| Power Consumption (W) |
1.5 |
| Pull Tab Color |
Blue |
| Feature |
Specification |
| Description |
Cisco 40GBase-AOC QSFP direct-attach Active Optical Cable, 7-meter |
| Dimensions (mm) |
13.5 x 18.4 x 72.4 |
| Cable Type |
Active optical cable assembly |
| Cable Distance (m) |
7 |
| Power Consumption (W) |
1.5 |
| Pull Tab Color |
Blue |
| Commercial Temperature (°C) |
0 to 70 |
| Storage Temperature (°C) |
-40 to 85 |
| Standards |
GR-20-CORE: Generic Requirements for Optical Fiber and Optical Fiber Cable GR-326-CORE: Generic Requirements for Single-Mode Optical Connectors and Jumper Assemblies GR-1435-CORE: Generic Requirements for Multifiber Optical Connectors IEEE 802.3ba (-SR4, -LR4) IEEE 802.3ae (-CSR4) QSFP+ MSA SFF-8436 SFP+ MSA SFF-8431 and -8461 RoHS 6 |
| Safety |
Cable jacket of QSFP copper modules is UL E116441 Compliant QSFP copper cables are ELV Compliant |
Description
The Cisco QSFP-H40G-AOC7M is a high-performance transceiver module that enables 40Gbps data transmission over a distance of up to 7 meters using multimode fiber. It is a cost-effective solution for short-reach, high-bandwidth applications within data centers and enterprise networks. AOCs are known for their thin and lightweight design compared to copper cables, making them ideal for high-density environments where airflow and manageability are critical. Additionally, AOCs eliminate electromagnetic interference (EMI) issues, ensuring reliable data transmission.