G1392

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G1392-2200WNA

Gospower / 1+1 2U PDB / G1392

G1392-2200WNA targets Data Centers, Cloud Computing, and Telecommunications Equipment and uses 2200W capacity to maintain dependable performance across distributed operating sites.

Output Power (W):
2200
Length (mm):
265
Width (mm):
77
Height (mm):
84

Need compatibility confirmation? Send us your model, label photo, power rating, and connector requirements.

PRODUCT OVERVIEW

Built for reliable, continuous power delivery.

The G1392-2200WNA is suitable for compact 2U systems that require stronger board-level power distribution than 1600W and 2000W models. Its 2200W output rating and high-current rail design make it a strong fit for large-scale virtualization, private cloud infrastructure, telecom equipment, dense compute platforms, and high-throughput network systems where stable rail distribution, uptime protection, and thermal reliability are important.

Before integrating the G1392-2200WNA, confirm the mating connector or backplane, input source, output-rail requirements, hot-swap sequence, airflow direction, monitoring interface, redundancy behavior, and service clearance against the target platform.

CORE ADVANTAGES

2200W 2U Power Distribution Board for Data Centers, Cloud Computing, and Telecommunications Equipment

2200W Power Distribution for Dense Compute and Virtualization Platforms The G1392-2200WNA is designed for data center systems, cloud computing platforms, telecommunications equipment, large-scale virtualization environments, and high-density enterprise compute infrastructure that require high-capacity internal power distribution in a compact 2U architecture.

01

2200W Power Distribution for Dense Compute and Virtualization Platforms The G1392-2200WNA is designed for data center systems, cloud computing platforms, telecommunications equipment, large-scale virtualization environments, and high-density enterprise compute infrastructure that require high-capacity internal power distribution in a compact 2U architecture.

02

2U Power Distribution Board Structure With a 265 × 77 × 84 mm mechanical size, this model supports compact 2U chassis layouts where high-current rail distribution, organized cable routing, and reliable system-level integration are important.

03

1+1 Redundant Power Architecture The board supports a 1+1 redundant configuration, helping improve power availability in systems where continuous operation, backup power paths, service maintenance, and fault tolerance are required.

04

Multiple High-Current Output Rails The G1392-2200WNA provides +12V, +5V, +3.3V, -12V, and +5V standby outputs, supporting compute boards, telecom modules, storage controllers, network interfaces, cooling systems, standby circuits, and auxiliary electronic components.

05

Designed for Data Center, Cloud, and Telecom Platforms This power distribution board is suitable for large-scale virtualization nodes, private cloud clusters, telecom infrastructure equipment, high-density enterprise compute systems, network aggregation platforms, and mission-critical IT environments.

06

Built for Reliable Internal Power Delivery With redundant architecture, high-current multi-rail output support, compact 2U mechanical integration, digital monitoring support, and safety/EMC compliance options, the G1392-2200WNA helps simplify internal power distribution for demanding compute and communication infrastructure.

MODEL SELECTION

Compare Gospower power options.

Review nearby Gospower models and select the power level, output architecture, efficiency grade, and form factor that best match the target system.

Model Power Use Role Input Form Factor Best-Fit Application
G1392-1600WNA 1600w Storage-oriented hybrid infrastructure AC/DC 2U PDB Enterprise storage arrays, cloud service nodes, and mixed compute-storage platforms
G1392-2000WNA 2000w High-I/O power distribution for scaling systems AC/DC 2U PDB SDS platforms, database nodes, analytics clusters, and high-throughput storage systems
G1392-2200WNA 2200w Dense compute and virtualization power platform AC/DC 2U PDB Large-scale virtualization, private cloud clusters, and high-density enterprise compute

DEPLOYMENT SCENARIOS

Where G1392-2200WNA fits best.

The G1392-2200WNA is suitable for compact 2U systems that require stronger board-level power distribution than 1600W and 2000W models. Its 2200W output rating and high-current rail design make it a strong fit for large-scale virtualization, private cloud infrastructure, telecom equipment, dense compute platforms, and high-throughput network systems where stable rail distribution, uptime protection, and thermal reliability are important.

Scenario System Requirement Why G1392-2200WNA Fits
Large-Scale Virtualization Nodes Internal power routing for processors, memory, storage access, network interfaces, and cooling systems 2200W capacity provides stronger headroom for dense virtualized workloads
Private Cloud Clusters Stable rail distribution for compute boards, storage logic, management circuits, and fan systems High-current output supports compact cloud infrastructure platforms
Telecommunications Equipment Power support for telecom boards, access modules, routing logic, monitoring circuits, and auxiliary systems Multi-rail design supports mixed telecom and network hardware
High-Density Enterprise Compute Board-level power for processors, I/O modules, storage controllers, standby logic, and thermal components Compact 2U PDB layout supports dense enterprise system integration
Network Aggregation Platforms Reliable internal power for switching logic, optical interfaces, routing boards, and control electronics Strong +12V and auxiliary rails support demanding network infrastructure
Redundant Mission-Critical Systems Backup power path support for platforms requiring continuous operation 1+1 redundant architecture helps strengthen uptime and fault tolerance

POWER DESIGN

Reliability notes for continuous operation.

The G1392-2200WNA is built for compact data center, cloud, telecom, networking, and high-density compute systems where internal power distribution, multiple voltage rails, and redundant architecture are essential to system reliability. Its 2U structure helps system designers manage high-current output rails inside constrained chassis while supporting 1+1 redundancy for improved uptime and service continuity.

  • 2200W power distribution capacity supports large-scale virtualization nodes, private cloud clusters, telecommunications equipment, high-density enterprise compute, network aggregation platforms, and redundant mission-critical systems.
  • 1+1 redundant design helps improve power availability by supporting backup power path architecture in compatible system designs.
  • +12V output at 183.3A supports main system loads, compute boards, telecom modules, network interfaces, storage-related components, cooling devices, and board-level power routing.
  • +5V output at 38A supports storage electronics, logic circuits, interface boards, auxiliary modules, and control-related components.
  • +3.3V output at 24A supports low-voltage digital circuits, embedded logic, communication modules, and onboard electronic devices.
  • -12V output at 0.5A supports legacy or auxiliary signal requirements in compatible system designs.
  • +5V standby output at 3A supports standby logic, management controllers, monitoring circuits, and system wake functions.
  • 265 × 77 × 84 mm mechanical structure supports compact 2U chassis integration and organized internal installation.
  • Broad AC/DC input compatibility supports flexible deployment across different power environments.
  • Digital control and PMBus 1.2 support help compatible systems monitor power behavior, operating status, and diagnostic information.

INSTALLATION

Installation and operating guidance.

Confirm electrical compatibility, thermal clearance, mechanical fit, redundancy requirements, and system load before integration.

Installation / Operation Item Guidance
System Role Check Confirm that the target system requires a 2U power distribution board rather than a standalone CRPS power supply module
Redundancy Planning Verify that the chassis and upstream power modules support the intended 1+1 redundant configuration
Chassis Fitment Confirm the 265 × 77 × 84 mm mechanical size before installation
Output Rail Matching Check +12V, +5V, +3.3V, -12V, and +5V standby requirements against the target system load
Load Budget Review Calculate total power demand from compute boards, telecom modules, storage controllers, network interfaces, fan systems, standby circuits, and control components
Connector Compatibility Confirm connector layout, cable harness routing, pin definition, and mating interfaces before integration
Thermal Layout Ensure proper airflow around the board, cable harnesses, power paths, and nearby heat-generating components
System Validation Test startup behavior, standby function, redundancy response, rail stability, thermal behavior, and load response before deployment

FAQ

Frequently asked questions about G1392-2200WNA.

Key answers for specification matching, installation planning, and system integration.

What type of product is the G1392-2200WNA?

The G1392-2200WNA is a 2200W 2U power distribution board designed for data center systems, cloud computing platforms, telecommunications equipment, large-scale virtualization, and high-density enterprise compute infrastructure.

What is the size of this model?

This model uses a compact 2U structure with a size of 265 × 77 × 84 mm, making it suitable for space-constrained internal system layouts.

What systems is this model suitable for?

It is suitable for large-scale virtualization nodes, private cloud clusters, telecom infrastructure equipment, high-density enterprise compute systems, network aggregation platforms, and mission-critical IT environments.

Does the G1392-2200WNA support redundant power architecture?

Yes. The board supports a 1+1 redundant configuration, helping improve power availability in compatible system designs.

What output rails does this board provide?

The G1392-2200WNA provides multiple output rails, including +12V at 183.3A, +5V at 38A, +3.3V at 24A, -12V at 0.5A, and +5V standby at 3A.

Why is this model suitable for cloud and virtualization platforms?

Its 2200W output capacity, high-current +12V rail, and auxiliary rail support can power compute boards, storage controllers, network interfaces, management circuits, standby functions, and cooling systems in dense cloud or virtualized infrastructure.

What makes this model different from the G1392-2000WNA?

Compared with the G1392-2000WNA, the G1392-2200WNA provides higher total power capacity and a stronger +12V output, making it better suited for large-scale virtualization, private cloud clusters, telecom infrastructure, and high-density enterprise compute systems with heavier internal load demand.

What should be checked before integrating this board?

Confirm the mechanical fit, connector interface, output rail requirements, total load budget, redundancy design, cable harness layout, airflow path, thermal margin, and system-level compatibility before integration.