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Product Overview |
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The PWS-333-1H20 Supermicro power supply offers a steady 330-watt output and a 20-pin connection tailored for specific Supermicro server motherboards. It fits well in compact server cases and provides reliable power management ideal for small to medium server setups. |
General Information |
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| Brand | Supermicro |
| Part Number | PWS-333-1H20 |
| Product Type | Server Power Supply |
| Condition | Refurbished |
Technical Information |
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| Input Voltage | AC 100-240V |
| Input Frequency | 50/60 Hz |
| Output | +12V,+5V,+3.3V,-12V,+5VSB |
| Max. Output Power | 330W |
| Cooling Type | Active Fan |
| Modularity | Non-Modular |
| rail_design | Single 12V Rail |
| Number of Fans | 1 |
Compatibility |
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| Form Factor | ATX |
Physical Characteristics |
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| Weight | 3.00 |
Product Description |
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The PWS-333-1H20 is a power supply designed to provide steady and efficient power to Supermicro servers. Often found in compact server builds, this unit offers a reliable 330-watt output suitable for a range of applications requiring stable energy delivery. It is built for IT professionals and system integrators who need dependable power components for their server hardware. Key Features
This power supply is commonly deployed in data centers and enterprise server rooms where space and reliable performance are priorities. It plays a key role in ensuring servers operate without interruptions and helps maintain overall system health over time. |
Use Cases |
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The PWS-333-1H20 Supermicro 330-watt power supply is primarily used in compact server environments where space constraints require efficient and reliable power delivery. It caters to IT professionals managing small to medium server infrastructures that demand stable energy sources for consistent system uptime. How It's Used:
This power supply enhances operational reliability within constrained environments by delivering steady power tailored to specific server boards. Its compact design allows scalability in dense rack configurations while maintaining consistent performance across various workloads. |