G1358-0800WNA – 800W CRPS Power Supply Tailored for Compact Server and Networking Solutions

Designed for high-density IT infrastructures, the G1358-0800WNA delivers reliable 800W power within a slim 1U CRPS standard enclosure (185 x 73.5 x 40 mm), perfectly suited for space-constrained server, storage, and networking systems. This redundant AC/DC power supply provides a stable 12V output at 66.6A alongside a 12V standby current of 2.1A. Supporting a broad input voltage range of 90–264Vac and 180–300Vdc, it guarantees compatibility with global power sources. Equipped with digital control and PMBus 1.2 communication protocol, it offers real-time system monitoring and remote management capabilities, facilitating proactive maintenance and uptime assurance. Active power factor correction (PFC) promotes energy efficiency and ensures steady, clean power delivery. The intelligent fan control system minimizes acoustic noise while dynamically adapting cooling performance to operational needs. Additionally, a reverse airflow option provides flexible integration across diverse chassis designs. Certified to meet UL, CE, FCC, CB, and CCC standards, the G1358-0800WNA complies with stringent international safety and electromagnetic compatibility regulations, making it an ideal choice for mission-critical data center applications.

Features

CRPS-185: 185×73.5x40mm(LxWxH)

CRPS-265: 265×73.5x40mm(LxWxH)

Input: 90 to 264Vac,180-300VdC

Hot-plug

Full Digital control

Active Power Factor Correction

Intelligent-thermal Fan Control

N+N N+1 Redundant

Reverse Airflow Option

Applications

Server

Storage

Networking

HPC

Edge Computing

Telecom

AI Training

Industrial Automation

Approvals

UL/cUL

CB

TuV-Mark

CCC/CQC

FCC

CE

NOM

BIS

Specifications

Output Power (W): 800
Length (mm): 185
Width (mm): 73.5
Height (mm): 40
Mounting Type: Hot pluggable
Minimum Output Current (A): 0
Maximum Output Current (A): 66.66
Output Voltage (V): 12
Minimum Output Power (W): 0
Maximum Output Power (W): 800
Minimum Input Voltage (V): 90
Maximum Input Voltage (V): 264

Model Selection Comparison Table

Model

Power Tier Behavior PMBus Form Factor Recommended Use
G1358-0800WNA Entry/mid power Edge compute, network security Yes CRPS

POP/Firewall/Edge services

G1358-1300WNA

Higher margin Storage + virtualization Yes CRPS Multi-service nodes
G1358-1600WNA Heavy load class HPC & parallel workloads Yes CRPS

CPU/GPU mixed

G1358-2000WNA

Maximum tier AI/Accelerated compute Yes CRPS

Dense compute stacks

Deployment Scenarios

Positioned as the entry power tier in the G1358 AC/DC high-efficiency platform, the G1358-0800WNA is built for balanced performance environments requiring stable power delivery under continuous service, yet without the thermal overhead of kilowatt-level operation. It provides sufficient power margin for compute-edge clusters, virtualization nodes, network and security appliances, distributed storage front ends, SD-WAN gateways, e-commerce hosting backends, and telecom controller devices.

 

Its operational footprint favors medium density racks, regional POP nodes, and data-plane devices handling sustained transaction traffic rather than burst-only profiles. Where predictable uptime, consistent thermal behavior, and long-life reliability matter more than peak wattage, G1358-0800WNA fits naturally into deployment cycles.

 

Scenario

Workload Behavior Why 800W Fits
Compute-edge servers Moderate concurrency

Stable load margin

Enterprise firewall/SD-WAN

Packet flow + encryption Low fluctuation droop
Regional POP node 24/7 operation

Cooling-friendly

Database frontend

Continuous query handling Good voltage discipline
Light virtualization pools Multi-instance CPU tasks

Safe power corridor

CDN/Cache node

High read ratio

Efficient duty pattern

Power Architecture & Reliability Design

G1358-0800WNA inherits the platform’s balanced switching architecture, prioritizing rail stability and low-loss conduction for continuous service cycles where power fluctuation is moderate but runtime and predictability are critical. The topology favors smooth transient handling during network throughput peaks and maintains ripple control under mixed CPU-centric workload distribution.

 

The thermal-aware airflow path minimizes hot-zone concentration, extending capacitor lifespan during multi-year 24/7 use. PMBus health visibility simplifies maintenance planning across distributed infrastructure. With evenly tuned voltage behavior and redundancy compatibility, the unit is a reliable anchor for geographically dispersed services at the network edge.

 

The core architecture uses a balanced supply design optimized for uptime rotation, maintaining consistent rail behavior under mid-load cluster duty. Ripple discipline preserves voltage stability during network throughput surges, while effective thermal dispersion helps extend capacitor life over continuous operation. PMBus telemetry provides visibility into temperature and runtime behavior, supporting informed maintenance decisions. A predictable cooling footprint reduces operational cost impact, making the platform well suited for scaling POP points and regional nodes that require reliable 24/7 hosting performance.

Power Operating Notes

Reference Condition

Suggested Guidance
Network/security appliances

Maintain airflow path unobstructed

Edge cluster deployment

Monitor runtime log quarterly
Regional POP node

Keep inlet below thermal ceiling

VM-based micro hosting

Observe ripple trend under peak
Continuous-load behavior

Avoid sustained >85% duty

Distributed deployment

Review PMBus alarm events
Database front-end

Watch fan ramp pattern

Rack expansion plan

Scale before load saturation

FAQ

Q1. Where does G1358-0800WNA fit best?
Edge compute, regional POP, security gateways, virtualization light nodes.

 

Q2. Why choose 800W instead of a higher tier?
If loads remain steady and below heavy acceleration range, efficiency and thermal cost trend remain favorable.

 

Q3. Is PMBus telemetry supported?
Yes — operational data can be monitored remotely.

 

Q4. Is it suitable for long-term 24/7 operation?
Designed for continuous uptime with controlled ripple behavior.

 

Q5. Can it handle short transient spikes?
Yes, within mid-load operating boundaries.

 

Q6. Deployment density recommendation?
Ideal for medium-density edge clusters and distributed compute nodes.

 

Q7. Redundancy compatibility?
Supports CRPS form factor for N+1 integration.

 

Q8. Upgrade path?
If workloads evolve to AI or high concurrency, consider stepping to G1358-1300WNA or above.

 

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