





Within industrial electronics and equipment cooling, SUNON PMD2412PTB3-A serves as a 120 × 120 × 25 mm DC axial fan operating at 24 VDC. Up to 203.9 m³/h is its most prominent listed performance figure. The recorded rated dataset should guide procurement comparison. Use the latest specification for frequency and tolerance limits.
| Rated Voltage(V) | 24 |
|---|---|
| Size(mm) | 120x120x25mm |
| Max.Air Flow(m³/h) | 203.9 |
| Max.Pressure(Pa) | 102.1 |
| Input Power(W) | 6.7 |
| Speed(rpm) | 3600 |
| Noise(db) | 48 |
Designed for industrial equipment, the SUNON PMD2412PTB3-A provides DC brushless axial fan cooling in a format suited to equipment integration. It helps limit local heat buildup during operation.
The SUNON product series carries RoHS compliance and recognized safety approvals; buyers should confirm the approval marks for this exact suffix and target market. Acoustic performance depends on the enclosure and operating point; low-turbulence integration helps avoid additional airflow noise.
OEM teams specifying PMD2412PTB3-A should check airflow direction and complete maintenance planning before ordering. A documented interface review helps purchasing teams control fit, cooling continuity and replacement planning. Define cleaning and inspection intervals around the actual duty cycle.
Review its 120 × 120 × 25 mm size, 203.9 m³/h airflow, 102.1 Pa pressure, system resistance, and available mounting space.
It is listed for industrial electronics and equipment cooling. Check dimensions, airflow, pressure, and the installation environment against the actual equipment.
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 6.7 W input with the required airflow and run time. Total savings depend on the complete system duty point.
The listed rating is 24 VDC. Verify polarity or mains frequency, wiring, and protection before commissioning.

Within industrial electronics and equipment cooling, PMD1212PTB1-A provides a 120 × 120 × 25 mm, 12 VDC DC axial fan configuration. Up to 254.9 m³/h is its most prominent listed performance figure. Base engineering comparison on the stated duty-point values. Confirm temperature and service-life limits from current data.
Read More
SUNON PMD1212PMB2-A combines a 120 × 120 × 38 mm DC axial fan platform with a 12 VDC rating for industrial electronics and equipment cooling. Up to 288.8 m³/h is its most prominent listed performance figure. During engineering comparison, compare the model's installation footprint. Confirm temperature and service-life limits from current data.
Read More
Applied in industrial electronics and equipment cooling, SUNON PMD1209PMB2-A is a 12 VDC DC axial fan in a 92 × 92 × 38 mm frame. Up to 180.6 m³/h is its most prominent listed performance figure. The recorded selection parameters should guide engineering comparison. Confirm temperature and service-life limits from current data.
Read More
The PMD2407PKB1-A is SUNON's 24 VDC, 70 × 70 × 20 mm DC blower option for industrial electronics and equipment cooling. 5 W input is the defining electrical load in the supplied data. Review its ventilation capacity during engineering comparison. Confirm temperature and service-life limits from current data.
Read More
SUNON PMD1209PMB3-A combines a 92 × 92 × 38 mm DC axial fan platform with a 12 VDC rating for industrial electronics and equipment cooling. Up to 155.8 m³/h is its most prominent listed performance figure. Base engineering comparison on the stated suffix definition. Confirm temperature and service-life limits from current data.
Read More
Within industrial electronics and equipment cooling, SUNON PMD2407PTB3 serves as a 70 × 70 × 25 mm DC blower operating at 24 VDC. Its 4200 rpm rating defines a lower-speed operating point. The recorded thermal-duty record should guide engineering comparison. Confirm temperature and service-life limits from current data.
Read More