G1482-1600WNA – 1600W CRPS Power Supply Optimized for POE, Networking, Telecom, and AI Systems

The G1482-1600WNA is a robust CRPS power supply designed for POE switches, networking equipment, telecom devices, and AI systems. Its compact 1U CRPS-standard form factor (185 x 73.5 x 40 mm) enables efficient space utilization in high-density installations. This power supply delivers a main output of 54.5V at 29.35A, along with a 12V standby output at 3A. It supports a wide input voltage range of 90–264Vac / 180–300Vdc, making it suitable for global applications. Equipped with full digital control and a PMBus 1.2 interface, it allows for intelligent power monitoring and convenient remote management. The unit boasts platinum-level efficiency and active power factor correction (PFC), ensuring stable and energy-efficient operation. Smart fan control optimizes cooling while keeping acoustic noise low. The reverse airflow option adds versatility for integration into various system configurations. Certified to meet UL, CE, FCC, CB, and other global safety and EMC standards, the G1482-1600WNA guarantees reliable performance and compliance for demanding enterprise environments.

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): 1600
Length (mm): 185
Width (mm): 73.5
Height (mm): 40
Mounting Type: Hot pluggable
Minimum Output Current (A): 0
Maximum Output Current (A): 29.35
Output Voltage (V): 54.5
Minimum Output Power (W): 0
Maximum Output Power (W): 1600
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 G1482-1600WNA delivers high-capacity power for multi-tenant POP workloads, compute-plus-storage convergence, data-plane encryption at scale, video ingestion hubs, inference-assist edge nodes, and SD-WAN/SASE clusters running continuous traffic. Its watt margin supports multiple NVMe groups, deep packet inspection (DPI), heavy PoE distribution, virtualization/container stacks, and AI scheduling under network concurrency. This tier is recommended for environments where 920W or 1300W approaches utilization boundaries, or where long-term planning assumes incremental device growth, uplink expansion, or continuous security workloads.

 

Scenario

Load Pattern Why 1600W Tier Fits
Multi-tenant SD-WAN/SASE Intense encryption + DPI

Prevents ripple sag at peak load

POP/Metro routing core

24/7 packet concurrency Designed for telecom duty cycles
NVMe cache + RAID Sustained writes & rebuild

Power integrity under flush storms

Video ingestion hub

Surveillance scaling Stable under PoE + disk load
AI-edge compute Frequent inference tasks

Supports queue concurrency

Inter-city network hub

High throughput

Margin extends service life

Power Architecture & Reliability Design

The G1482-1600WNA employs a reinforced 54.5V-to-12V power conversion stack designed for high sustained current delivery with tight ripple control at depth. It is engineered to tolerate overlapping I/O, network processing, and inference bursts, supporting edge and telecom platforms where multiple service layers remain active simultaneously for long durations.

 

Power delivery remains stable during demanding scenarios such as multi-disk rebuilds, virtual machine migration, encryption surges, and fluctuating PoE load profiles. Rail integrity is preserved under stacked workloads, reducing the risk of voltage-induced instability that can affect NIC throughput, storage responsiveness, or accelerator behavior in high-density deployments.

 

Thermal flow characteristics are optimized for remote operating cabinets, outdoor POP shelters, metro aggregation rooms, and other environments with constrained or directional airflow. The design prioritizes robustness and predictable aging behavior over short-term peak efficiency, supporting continuous 24/7 operation with minimal intervention. With PMBus support where configured and controlled inrush handling for clustered rack startup, the G1482-1600WNA is well suited for POP-scale and edge-core infrastructure that demands long service life and operational consistency.

Power Operating Notes

Reference Condition

Suggested Guidance
Metro gateway POP

Maintain circulation airflow

Surveillance + storage

Validate sustained write thermals
Inference execution node

Leave margin for peak models

Multi-uplink SD-WAN cluster

Monitor VPN/DPI thermals
Remote field cabinets

Dust-free intake improves lifespan

Compute/storage convergence

<80% load ensures growth room
Rollout at scale

Standardize PSU type fleetwide

Lifecycle tracking

Use PMBus telemetry alerts

FAQ

Q1. Deployment target?
Large telecom POP, multi-tenant routing, inference+storage platforms.

 

Q2. Continuous run capability?
Yes — optimized for long-term 24/7 operator-grade duty.

 

Q3. Upgrade advantage vs 1300W?
More burst overhead and concurrency margin for future scaling.

 

Q4. RAID and NVMe suitability?
Stable under flush/rebuild loads without ripple instability.

 

Q5. Inference cluster deployment?
Works well for AI-lite and medium model serving.

 

Q6. PoE-heavy systems?
Handles multi-device draw without droop events.

 

Q7. Remote cabinet behavior?
Thermal design suits pop shelters and tight airflow enclosures.

 

Q8. When to move to 2000W?
For long-term growth, multi-accelerator workloads, or extreme storage arrays.

 

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