G1482-0600WNA – 600W CRPS Power Supply for AI-Driven Networking and PoE Infrastructure

The G1482-0600WNA CRPS power supply is purpose-built for PoE switches, telecom systems, networking devices, and AI infrastructure. Its ultra-compact 1U CRPS-standard form factor (185 x 73.5 x 40 mm) supports high-density rack deployments and space-constrained environments. Delivering a main output of 54.5V at 11A and a 12V standby at 3A, this redundant AC/DC unit accommodates a wide input voltage range of 90–264Vac / 180–300Vdc, making it ideal for international deployments and versatile applications. With intelligent digital control and PMBus 1.2 support, the G1482-0600WNA offers advanced telemetry, remote diagnostics, and real-time power management. Its platinum-grade efficiency and active power factor correction (PFC) enhance energy savings while ensuring rock-solid performance. Smart fan technology provides dynamic thermal management, optimizing airflow and reducing acoustic output based on system demands. A reverse airflow configuration is also available to support varied system designs and cooling strategies. Certified to global safety and electromagnetic compatibility standards including UL, CE, FCC, CB, and others, this 600W CRPS model delivers reliable and efficient power for mission-critical telecom, AI, and PoE networking systems.

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

G1482-0920WNA

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

G1482-1600WNA

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.

 

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