



SUNON PMD1209PMB1A combines a 92 × 92 × 38 mm DC blower platform with a 12 VDC rating for industrial electronics and equipment cooling. Up to 204.2 m³/h is its most prominent listed performance figure. Use the documented speed benchmark when planning engineering comparison. Confirm temperature and service-life limits from current data.
| Rated Voltage(V) | 12 |
|---|---|
| Size(mm) | 92x92x38mm |
| Max.Air Flow(m³/h) | 204.2 |
| Max.Pressure(Pa) | 176.9 |
| Input Power(W) | 12.5 |
| Speed(rpm) | 4900 |
| Noise(db) | 57.6 |
Equipment builders can integrate SUNON PMD1209PMB1A, a DC brushless axial fan, into industrial equipment. The design supplies the air movement required to carry component heat out of confined spaces.
The brushless DC motor architecture supports efficient electronic commutation and stable rotational performance for compact equipment cooling. Rigid mounting and clear breathing space help control vibration, flow loss and the acoustic result of the complete assembly.
OEM teams specifying PMD1209PMB1A should check airflow direction and complete replacement-fit checks before volume production. A documented interface review helps purchasing teams control fit, cooling continuity and replacement planning. Verify mounting, connector and airflow direction against the replacement space.
The exact bearing option is not confirmed by the row-level data. Check the complete suffix in the current SUNON specification.
Review its 92 × 92 × 38 mm size, 204.2 m³/h airflow, 176.9 Pa pressure, system resistance, and available mounting space.
The workbook marks the product as RoHS compliant. Confirm UL, TUV, VDE, or other project-specific approvals for the exact suffix.
Confirm any missing bearing, connector, control, IP rating, life, certification, and performance-curve details for the complete part number.
Speed-control capability is not stated for this complete part number. Confirm the signal and controller requirements before use.
Compare its listed 12.5 W input with the required airflow and run time. Total savings depend on the complete system duty point.

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