EC21 RS CMW100 5G NR Sub 6 GHz represents a focused 5G radio module designed for dense urban and enterprise deployments. This system targets mid-band spectrum in the Sub 6 GHz range, delivering balanced coverage and capacity for next generation mobile networks.
The following table summarizes key technical and commercial details relevant to evaluation and procurement teams.
| Parameter | Value | Unit | Notes |
|---|---|---|---|
| Frequency Range | 3300 3800 | MHz | Sub 6 GHz n78 band |
| Channel Bandwidth | 100 | MHz | Supports maximum throughput |
| Peak Throughput | 2.5 | Gbps | Downlink under ideal conditions |
| MIMO Configuration | 64T64R | Antennas | Massive MIMO for capacity |
| Form Factor | CMW100 | Module | Carrier grade, compact design |
| Target Use Case | Public RAN | Indoor/Outdoor | High user density areas |
5G NR Sub 6 GHz Technical Fundamentals
Spectrum and Air Interface
Operating in the Sub 6 GHz band, EC21 RS CMW100 exploits frequency ranges that balance propagation and capacity. The module aligns with global n78 allocations, enabling wide coverage while supporting 100 MHz channels for high data rates.
Radio Performance Characteristics
Advanced signal processing and robust beamforming allow the EC21 RS CMW100 to maintain link stability in challenging urban environments. The architecture is tuned for low latency and high spectral efficiency, meeting demanding service levels for mobile broadband.
Carrier Grade Reliability and Deployment
Hardware and Environmental Robustness
The CMW100 form factor emphasizes compactness without compromising thermal and mechanical resilience. Designed for outdoor sites and indoor active antenna systems, it supports remote electrical tilt and calibration features critical for network optimization.
Integration with Core and Transport
Seamless fronthaul and midhaul compatibility ensures the EC21 RS CMW100 fits into diverse transport topologies. Support for standardized interfaces simplifies integration with centralized RAN and cloud native infrastructures.
Performance Benchmarks and Capacity Planning
Throughput and User Experience Metrics
With 64T64R MIMO and 100 MHz channels, the module delivers aggregate throughput suitable for high density hotspots. Real world user throughput varies based on scheduling, mobility, and interference conditions.
Scaling to Dense Deployments
In dense scenarios, sectorization and carrier aggregation maximize spatial reuse. The EC21 RS CMW100 is engineered to handle concurrent sessions across multiple beams, improving per user performance and network efficiency.
Procurement and Total Cost of Ownership
Cost Efficiency and Operational Considerations
Selecting the EC21 RS CMW100 involves balancing upfront module cost with long term operational savings. Lower power consumption and remote maintenance capabilities reduce site expenses over the lifecycle.
Recommendations and Best Practices
- Verify site backhaul capacity to match the module throughput potential.
- Conduct radio planning to optimize beamforming and sector coverage.
- Monitor interference levels and adjust frequency planning accordingly.
- Leverage remote electrical tilt for rapid network optimization.
FAQ
Reader questions
Which frequency bands does the EC21 RS CMW100 support?
The module is calibrated for Sub 6 GHz, commonly n78 (3300 3800 MHz), enabling wide adoption in regional and national 5G plans.
What peak data rates can be expected from this module?
Under optimal conditions, the EC21 RS CMW100 can reach up to 2.5 Gbps downlink, supporting high definition streaming and demanding enterprise applications.
How does the 64T64R configuration improve network performance?
Massive MIMO increases sector capacity and user throughput by serving multiple streams simultaneously, reducing congestion in busy areas.
Is this module suitable for both urban and rural deployments?
While optimized for urban high density, the EC21 RS CMW100 can also be used in suburban and rural scenarios where targeted coverage and capacity are required.