G1179

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G1179-0150WNA

Gospower / 1+1 2U PDB / G1179

G1179-0150WNA matches Edge Systems,And Storage Platforms and Compact Server with 150W capacity, helping operators achieve a balanced fit for serviceable, high-availability installations.

Output Power (W):
150
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 G1179-0150WNA is suitable for compact systems that require internal power distribution across multiple rails rather than a standalone high-power PSU module. Its 150W output capacity, 2U structure, and redundant design make it a practical choice for compact servers, storage devices, edge infrastructure, and embedded computing systems where stable internal power routing and dependable operation are essential.

Before integrating the G1179-0150WNA, 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

150W 2U Power Distribution Board for Compact Servers, Edge Computing, and Storage Solutions

The G1179-0150WNA is designed for compact servers, edge computing platforms, storage devices, and embedded infrastructure that require stable internal power distribution in a 2U system architecture.

01

150W Power Distribution for Compact 2U Systems

The G1179-0150WNA is designed for compact servers, edge computing platforms, storage devices, and embedded infrastructure that require stable internal power distribution in a 2U system architecture.

02

2U Power Distribution Board Structure

With a 265 × 77 × 84 mm mechanical size, this model is built for 2U chassis layouts where internal power routing, compact installation, and multi-rail distribution are important.

03

1+1 Redundant Power Architecture

The board supports a 1+1 redundant configuration, helping improve system availability and providing greater power continuity in systems where uptime and failover support are critical.

04

Multiple Output Rails for System-Level Integration

The G1179-0150WNA provides +12V, +5V, +3.3V, -12V, and +5V standby outputs, supporting processor boards, storage control logic, auxiliary modules, cooling devices, and system management circuits.

05

Designed for Server, Storage, and Edge Platforms

This power distribution board is suitable for compact server nodes, edge computing appliances, storage platforms, embedded control systems, and lightweight infrastructure equipment.

06

Built for Reliable Internal Power Delivery

With redundant architecture, multiple output rails, compact 2U mechanical integration, and broad safety / EMC compliance support, the G1179-0150WNA helps simplify internal power distribution in dense system environments.

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
G1179-0150WNA 150w Standby and control-board power distribution AC/DC 1+1 2U PDB Compact control servers, monitoring units, and low-power storage logic
G1179-0250WNA 250w Entry-level redundant PDB for edge service hardware AC/DC 1+1 2U PDB Branch gateways, access appliances, and small edge compute boxes
G1179-0350WNA 350w Multi-rail distribution for storage and service nodes AC/DC 1+1 2U PDB NAS controllers, backup systems, lightweight VM nodes, and edge data devices
G1179-0460WNA 460w Balanced power board for network and I/O-heavy systems AC/DC 1+1 2U PDB Routing platforms, SD-WAN appliances, firewall systems, and service gateways
G1179-0550WNA 550w Higher-margin PDB for compact compute expansion AC/DC 1+1 2U PDB Micro server clusters, storage-cache platforms, and compact hosting appliances
G1179-0800WNA 800w Integrated compute-storage distribution platform AC/DC 1+1 2U PDB POP edge nodes, CDN cache systems, aggregation appliances, and edge data platforms
G1179-1300WNA 1300w High-capacity 2U PDB for dense service infrastructure AC/DC 1+1 2U PDB AI-assisted edge nodes, high-density compute appliances, and hybrid workload systems
G1179-1600WNA Peak Peak-load 2U PDB for scalable compact infrastructure AC/DC 1+1 2U PDB

DEPLOYMENT SCENARIOS

Where G1179-0150WNA fits best.

The G1179-0150WNA is suitable for compact systems that require internal power distribution across multiple rails rather than a standalone high-power PSU module. Its 150W output capacity, 2U structure, and redundant design make it a practical choice for compact servers, storage devices, edge infrastructure, and embedded computing systems where stable internal power routing and dependable operation are essential.

Scenario System Requirement Why G1179-0150WNA Fits
Compact Server Systems Internal power routing for processor boards, storage logic, fans, and management circuits Multi-rail design supports essential low-power server subsystems
Edge Computing Devices Stable power delivery for processing boards, I/O modules, and auxiliary circuits Compact 2U structure supports space-efficient edge deployments
Storage Platforms Power distribution for control boards, small storage groups, standby logic, and cooling +12V, +5V, and +3.3V rails support storage-related hardware
Embedded Infrastructure Reliable board-level power support for control electronics and interface modules Multiple regulated rails improve embedded system integration
Lightweight Networked Equipment Internal rail support for monitoring boards, interface logic, and auxiliary modules Redundant design improves continuity in connected systems
Redundant Compact Designs Improved uptime for systems requiring backup power path support 1+1 redundant configuration supports higher service reliability

POWER DESIGN

Reliability notes for continuous operation.

The G1179-0150WNA is built for compact server, storage, edge computing, and embedded platforms where internal power distribution, multiple voltage rails, and redundant architecture are more important than high standalone PSU wattage. Its 2U board structure helps designers manage several output rails in constrained system spaces while supporting dependable power continuity.

  • 150W power distribution capacity supports compact servers, edge systems, storage devices, embedded equipment, and lightweight infrastructure platforms.
  • 1+1 redundant design helps improve system availability by supporting backup power path architecture in compatible system designs.
  • +12V output at 12A supports primary system loads, cooling modules, logic boards, and general board-level power routing.
  • +5V output at 10A supports storage electronics, logic components, interface boards, and auxiliary system modules.
  • +3.3V output at 8A supports digital control logic, low-voltage electronics, and onboard management circuits.
  • -12V output at 0.5A supports legacy or auxiliary signal requirements in compatible designs.
  • +5V standby output at 3A supports standby logic, monitoring controllers, wake functions, and system management circuits.
  • 265 × 77 × 84 mm mechanical structure supports 2U chassis integration and compact internal installation.
  • Broad AC/DC input compatibility helps support diverse deployment environments and system-level power flexibility.
  • System-oriented power distribution architecture helps simplify internal rail allocation for compact infrastructure equipment.

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 power distribution board rather than a standalone PSU module
Redundancy Planning Verify that the system design supports the intended 1+1 redundant power architecture
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 processor boards, storage circuits, control modules, fans, and standby logic
Connector Compatibility Confirm connector layout, cable harness routing, pin definition, and mating interfaces before integration
Thermal Layout Ensure proper airflow around the board and surrounding components for continuous operation
System Validation Test startup behavior, standby function, redundancy response, and rail stability before formal deployment

FAQ

Frequently asked questions about G1179-0150WNA.

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

What type of product is the G1179-0150WNA?

The G1179-0150WNA is a 150W 2U power distribution board designed for compact servers, edge computing devices, storage systems, and embedded infrastructure platforms.

What is the size of this model?

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

What systems is this model suitable for?

It is suitable for compact servers, edge computing appliances, storage platforms, embedded systems, and lightweight infrastructure equipment.

Does the G1179-0150WNA 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 G1179-0150WNA provides +12V at 12A, +5V at 10A, +3.3V at 8A, -12V at 0.5A, and +5V standby at 3A.

Why is this model suitable for edge computing and compact infrastructure?

Its compact 2U form, multi-rail output design, and redundant architecture make it well suited for systems that require stable internal power routing in limited installation space.

What makes this model different from a standard PSU module?

A standard PSU module mainly converts input power into output power, while the G1179-0150WNA is positioned as a power distribution board that helps distribute multiple rails within the system and supports redundant architecture.

What should be checked before integrating this board?

Before integration, confirm the mechanical fit, connector layout, output rail requirements, total load budget, redundancy design, airflow path, and overall system compatibility.