G1482-0600WNA – 600W CRPS Power Supply for AI-Driven Networking and PoE Infrastructure
Features
CRPS-185: 185×73.5x40mm(LxWxH)
CRPS-265: 265×73.5x40mm(LxWxH)
3A Max standby output current
Voltage Tolerance : 54.5Vdc ±3%(52.8-56.1Vdc)
Hot-plug
Full Digital control
Active Power Factor Correction
Intelligent-thermal Fan Control
N+1 Redundant
Reverse Airflow Option
Applications
POE Switch
Networking
Telecom
Artificial Intelligence
Router System
AI Data Centers
5G Base Stations
IoT Gateways
Approvals
UL/CUL
CB
TUV/Mark
CCC/CQC
FCC
CE
Specifications
| Output Power (W): | 600 |
| Length (mm): | 185 |
| Width (mm): | 73.5 |
| Height (mm): | 40 |
| Mounting Type: | Hot pluggable |
| Minimum Output Current (A): | 0 |
| Maximum Output Current (A): | 11 |
| Output Voltage (V): | 54.5 |
| Minimum Output Power (W): | 0 |
| Maximum Output Power (W): | 600 |
| Minimum Input Voltage (V): | 90 |
| Maximum Input Voltage (V): | 264 |
Model Selection Comparison Table
|
Model |
Power Tier | Behavior | Input | Form Factor | Recommended Use |
| G1482-0600WNA | Entry High-Capacity | Compute + Cache Blend | AC/DC 54.5V | CRPS-185 |
Edge storage + SD-WAN |
| Mid | More burst + drive pools | AC/DC 54.5V | CRPS-185 | Heavier cache, multi-radio | |
| G1482-1300WNA | High | Dense storage + inference | AC/DC 54.5V | CRPS-185 |
POP cloud clusters |
| Peak | High-end compute & routing | AC/DC 54.5V | CRPS-185 | AI + multi-tenant edge | |
| G1482-2000WNA | Extreme | Maximum power envelope | AC/DC 54.5V | CRPS-185 |
Heavy POP / DC rollout |
Deployment Scenarios
The G1482-0600WNA is the foundational power class of the G1482 platform, delivering 600W continuous output for edge clusters, metro telecom POPs, inference-enabled gateways, and storage-assisted network appliances where reliability and ripple stability matter. Its watt envelope supports multi-radio aggregation, SASE routing with DPI, NVMe-based caching, surveillance access, and mid-scale virtualization nodes, making it well suited for operator-grade environments and distributed cabinets. This tier is ideal when designing long-uptime infrastructure with multiple NIC uplinks, PoE integration, and variable workload surges, where weaker PSUs may reach stability limits under peak cycles.
|
Scenario |
Load Pattern | Why 600W is Appropriate |
| Metro SD-WAN / SASE | Encryption + inspection |
Stable power under sustained throughput |
|
Edge cache/NAS hybrid |
Random write bursts | Ripple remains controlled at peak |
| Surveillance hub | High channel count |
Handles PoE device aggregation |
|
Industrial IoT core node |
Packet ingestion | Reduces droop under burst concurrency |
| Telecom POP server | Continuous runtime |
Designed for operator-grade duty |
|
Virtualized edge device |
VMs + storage + routing |
Margin for growth + resilience |
Power Architecture & Reliability Design
The G1482-0600WNA integrates a 54.5V-to-12V power conversion stage optimized for telecom-fed systems, delivering stable rail behavior during multi-tenant routing, flush-heavy I/O workloads, and PoE-driven load surges. It is designed for access-layer and aggregation environments where power demand fluctuates rapidly but voltage consistency remains critical to service continuity.
Ripple characteristics are tightly controlled under worst-case operating conditions, preventing brownout behavior that can disrupt SSD controllers, high-speed NICs, or inference accelerators. This stable electrical profile allows the PSU to support hybrid edge workloads where networking, storage, and compute tasks frequently overlap under real-time traffic and encryption pressure.
Thermal routing and component layout are optimized for outdoor-rated enclosures and remote utility cabinets, where airflow direction, ambient temperature, and maintenance access can vary significantly. Heat distribution is managed to avoid localized stress during prolonged operation, supporting long uptime cycles with minimal intervention. With controlled inrush behavior and telemetry readiness where supported, the G1482-0600WNA is well suited for metro POP deployments and distributed telecom infrastructure that prioritize reliability and predictable lifecycle performance.
Power Operating Notes
|
Reference Condition |
Suggested Guidance |
| SD-WAN/SASE gateway |
Keep thermal path unobstructed |
|
Surveillance aggregation |
Track PoE surge behavior |
| Edge storage workloads |
Monitor sustained SSD heat |
|
Packet-intense routing |
Maintain intake cleanliness |
| 24/7 telecom POP |
Built for always-on duty |
|
Virtualization + caching |
Reserve operating margin |
| Multi-node rollout |
Use consistent PSU series |
|
Lifecycle planning |
Enable PMBus monitoring |
FAQ
Q1. Recommended workloads?
SD-WAN clusters, telecom POP nodes, hybrid storage+compute edge systems.
Q2. Can it run continuously?
Yes — engineered for long-term continuous network operation.
Q3. Behavior under bursts?
Maintains rail stability during encryption + disk flush spikes.
Q4. Is it suitable for distributed cabinets?
Ideal for outdoor telecom and remote POP environments.
Q5. Upgrade reason vs lower series?
600W adds expansion space for storage or higher port density.
Q6. Surveillance role suitability?
Supports high camera/AP aggregation with PoE load variation.
Q7. AI inference & light compute?
Yes — stable for edge inferencing with moderate models.
Q8. When to scale to 920W+?
When workloads expand to heavy VM concurrency, multiple drive groups, or multi-radio clustering.