



Within servers, UPS systems, and telecom equipment, 9A0812H401 provides a 80 × 80 × 25 mm, 12 VDC DC axial fan configuration. High airflow is highlighted together with a high-static-pressure design. A listed input of 1.56 W is the notable efficiency-related parameter. Check spares strategy planning mounting size. Focus: spares strategy planning.
| Rated Voltage(V) | 12 |
|---|---|
| Size(mm) | 80*80*25 |
| Max.Air Flow(m³/h) | 61.2 |
| Max.Pressure(Pa) | 35.4 |
| Input Power(W) | 1.56 |
| Speed(rpm) | 2900 |
| Noise(db) | 29 |
SANYO DENKI positions 9A0812H401 as a DC axial fan for servers, storage systems and ICT equipment. It helps equipment designers manage local hot spots where natural convection is insufficient.
The rated peak airflow of 61.2 m3/h combines with 35.4 Pa pressure capability to support useful flow after installation losses are considered. Procurement teams should match the entire part number to the approved specification. Thermal testing in a representative chassis confirms cooling margin before volume release.
Confirm inlet clearance around nearby cables. The result supports repeatable OEM assembly. Confirm the final fan curve in the assembled equipment. Preserve clear inlet and outlet space during installation.
For server chassis and computing nodes, 9A0812H401 provides a dedicated forced-air cooling path. These systems need continuous heat removal because compact layouts and rising power density restrict natural convection. The application supports stable equipment service.
SANYO DENKI 9A0812H401 serves storage arrays and data appliances that operate with sustained internal heat. These systems need continuous heat removal because compact layouts and rising power density restrict natural convection. The application supports stable equipment service.
9A0812H401 is suitable for network and other ICT hardware. Directed airflow carries component heat toward the equipment exhaust and helps maintain a controlled internal temperature. The application supports stable equipment service. Selection should follow the approved full model code.
PWM or sensor functions depend on the exact suffix. Confirm the control lead and interface in the applicable Sanyo Denki datasheet.
Compare its listed power with the required airflow, pressure, and operating hours. System-level savings depend on correct duty-point selection.
The worksheet lists 29 dB. Enclosure acoustics, system resistance, and distance can change the installed result.
Verify supply, connector, obstructions, impeller movement, and alarm or protection status using the model-specific troubleshooting data.
The exact bearing is not stated in the supplied row. Confirm it from the complete model suffix and current Sanyo Denki datasheet.

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