
Safe Checkout
Secure Payments
Fast Delivery
Order Today
Free Shipping
Across the US
Easy Returns
Hassle-Free
HP FSP270-50SAV 270 Watts TFX Power Supply
- Wattage: 270 Watts
- Form Factor: TFX (Thin Form Factor)
- Efficiency Rating: Not Specified
- Connectors: Standard ATX connectors (e.g., 20+4 pin ATX, SATA, Molex)
- Cooling: Integrated Fan
- Designed for Small Form Factor (SFF) PCs
- Reliable power delivery
- Model Number: FSP270-50SAV
Click on Inquire to get latest price
Free U.S. Ground Shipping
Typically 1-2 handling + 3-7 transit days
Purchase orders accepted
For government, enterprise, data center, and small business customers.
Bulk Purchase Inquiry
Volume pricing and availability
Product Overview
This HP FSP270-50SAV is a 270 Watt TFX power supply unit. It is designed to provide reliable power for small form factor (SFF) computer systems.
Technical Information
| Wattage | 270W |
| Form Factor | TFX |
| Connectors | Standard ATX, SATA, Molex (typical) |
Additional Specifications
| Cooling | Fan |
| Input Voltage | 100-240V AC |
| Efficiency | Not Specified |
Product Description
The HP FSP270-50SAV is a 270-watt power supply unit specifically designed in the TFX (Thin Form Factor) standard. This compact form factor is commonly used in small, space-constrained computer systems, such as slim desktop PCs, small business workstations, and some All-in-One computers. This power supply provides the necessary electrical power to all components within the computer system, including the motherboard, CPU, hard drives, and expansion cards. With a 270W rating, it is suitable for systems with moderate power requirements, typically found in office environments or home PCs that do not house high-end graphics cards or multiple high-power components. The FSP270-50SAV ensures reliable power delivery with standard connectors required for modern PC components. Its TFX form factor allows it to fit into specialized chassis where standard ATX power supplies would be too large, making it a crucial component for maintaining the functionality and stability of SFF systems.


