The 7G Fuse M110, 7G Fuse M11, and 7G Fuse M22 integrate dual-band WiFi 6 based on the IEEE 802.11ax
standard, engineered to deliver high spectral efficiency, increased client density handling, and improved
latency performance in enterprise environments.
These models maintain backward compatibility with IEEE 802.11a/b/g/n/ac while leveraging 802.11ax
enhancements for optimized wireless throughput and stability.
- Frequency Range: 5.15–5.35 GHz, 5.725–5.850 GHz
- 3T3R (3 Transmit × 3 Receive)
- Channel Bandwidth: 40 / 80 / 160 MHz
- Theoretical Maximum PHY Rate: 2402 Mbps
The 3×3 MIMO architecture enables three spatial streams, increasing parallel data transmission capability and improving aggregate throughput in multi-user scenarios.
- Frequency Range: 2.4–2.483 GHz
- 2T2R (2 Transmit × 2 Receive)
- Channel Bandwidth: 20 / 40 MHz
- Theoretical Maximum PHY Rate: 573 Mbps
The 2×2 MIMO configuration provides extended coverage and improved wall penetration, suitable for IoT devices and legacy clients.
- Reduced contention overhead
- Increased airtime efficiency
- Lower latency in high-density deployments
802.11ax introduces subcarrier-level resource allocation, allowing multiple clients to transmit or receive simultaneously within the same channel.
- Supports up to 256 associated clients
- Optimized airtime scheduling
- Improved congestion handling
- Transmit Power:
- Up to 21 dBm (802.11b)
- 18 dBm (802.11ac MCS7 / HT40)
- 18 dBm (802.11ac MCS9 / HT80)
- Receive Sensitivity:
- < -72 dBm @ 54 Mbps
- Maximum Line-of-Sight Coverage:
- Up to 100 meters (environment dependent)
Supports multi-user MIMO for simultaneous communication with multiple clients, improving aggregate system throughput and reducing scheduling delays.
Higher modulation density increases bits per symbol, enabling higher data rates compared to previous WiFi generations under optimal signal conditions.
Designed for enterprise branches, retail environments, banking networks, and distributed offices with high concurrent user demand.
These parameters ensure stable RF performance and reliable signal integrity across enterprise deployments.
