G1358-1600WNA – 1600W CRPS Power Supply for High-Performance Server and Networking Solutions

The G1358-1600WNA power supply offers a powerful 1600W output within a compact 1U CRPS form factor (185 x 73.5 x 40 mm), designed specifically for space-limited server, storage, and networking applications. Delivering 12V at 133.33A alongside a 12V standby current of 2.1A, this redundant AC/DC unit supports a broad input voltage range of 90–264Vac and 180–300Vdc, ensuring seamless operation across international power grids. Equipped with a digital control system and a PMBus 1.2 interface, it allows precise real-time monitoring and remote management, enhancing system reliability and uptime. Active Power Factor Correction (PFC) boosts energy efficiency while maintaining stable performance under various load conditions. The intelligent fan control dynamically adjusts airflow for optimal cooling and quieter operation. Its reverse airflow design further increases system integration flexibility in diverse environments. With certifications including UL, CE, FCC, CB, and CCC, the G1358-1600WNA power supply complies with rigorous global safety and EMC standards, making it a dependable solution for mission-critical data centers.

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): 1600
Length (mm): 185
Width (mm): 73.5
Height (mm): 40
Mounting Type: Hot pluggable
Minimum Output Current (A): 0
Maximum Output Current (A): 133.33
Output Voltage (V): 12
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 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

The G1358-1600WNA is positioned as a high-capacity performance tier within the G1358 series, designed for environments where virtualization density, storage throughput, and sustained compute activity place continuous demand on the power subsystem.

It is well suited for edge data centers, private cloud nodes, SDS-enabled servers, and multi-service compute platforms, where workloads fluctuate throughout the day but rarely return to idle states. This model is typically selected when operators require stable long-term output with sufficient margin for growth, without moving into ultra-high wattage classes.

 

Scenario

Deployment Behavior Why 1600W Tier Fits
High-density VM hosts Continuous multi-VM load

Strong sustained headroom

SDS-enabled servers

Frequent IO activity Stable voltage under stress
Edge data centers Mixed service roles

Predictable thermal behavior

Private cloud nodes

24/7 operation Designed for long duty cycles
Compute + storage fusion Concurrent workloads

Balanced transient handling

Regional aggregation nodes

Traffic variability

Maintains rail stability

 

Power Architecture & Reliability Design

The G1358-1600WNA is engineered to maintain consistent 12V rail delivery under sustained high load, supporting systems where compute threads, memory access, and storage operations overlap continuously.Its design emphasizes controlled transient response, reducing voltage deviation during VM startup waves, IO spikes, or service restarts. Thermal characteristics are optimized for extended runtime in dense chassis, enabling reliable performance over long operational cycles with minimal efficiency drift.

 

The design emphasizes a stable 12V output under sustained load, ensuring reliable operation during continuous 24/7 use while supporting concurrent compute and storage activity. A strong transient response absorbs VM burst behavior without disturbing voltage posture, and controlled ripple management protects storage-heavy systems from signal instability. Thermal balance is optimized for dense chassis layouts, keeping component stress predictable over long runtimes. Together with consistent behavior during scaling events, the platform offers a clear and straightforward upgrade path within the G1358 series.

Power Operating Notes

Reference Condition

Suggested Guidance
High VM density

Reserve sufficient power margin

Storage-intensive workloads

Monitor IO-related thermal rise
Continuous operation

Maintain airflow cleanliness

Mixed compute/storage nodes

Balance load distribution
Edge data center deployment

Verify grounding stability

Service restart cycles

Avoid synchronized power spikes
Long duty cycles

Schedule periodic inspections

Capacity growth planning

Evaluate 2000W tier if expanding

FAQ

Q1. What type of deployment is G1358-1600WNA best suited for?
It is ideal for high-density virtualization and storage-integrated compute platforms that require stable power delivery over long operating periods.

 

Q2. How does it differ from the 1300W variant?
The 1600W model provides additional headroom for concurrent workloads and IO bursts, reducing the risk of power saturation as system utilization increases.

 

Q3. Is it appropriate for continuous 24/7 workloads?
Yes. The thermal and electrical design supports non-stop operation, assuming proper airflow and environmental management.

 

Q4. Can it handle storage-heavy configurations?
Yes. Ripple control and regulation are tuned to support frequent read/write cycles, helping maintain consistent system responsiveness.

 

Q5. Is this model suitable for private cloud nodes?
It fits well in private or hybrid cloud environments, where VM density and service overlap require predictable power behavior.

 

Q6. How does it perform in dense chassis?
The unit maintains a balanced thermal footprint, making it suitable for space-constrained racks with sustained workloads.

 

Q7. Does it allow future scalability?
Yes. It offers room for moderate expansion, though very aggressive scaling may warrant moving to the 2000W tier.

 

Q8. When should an upgrade be considered?
If workloads evolve toward extreme concurrency or very high storage throughput, upgrading within the G1358 series ensures long-term stability.

 

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