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Home > Products > By type > Axial Fans > S4D500-CM03-09 | ebm-papst 460V 1060W AC Axial Fan for Refrigeration Cooling

S4D500-CM03-09 ebm-papst Axial Fan

Brand :
ebmpapst
Model:
S4D500-CM03-09 | ebm-papst 460V 1060W AC Axial Fan for Refrigeration Cooling
Type:
Axial Fans
Industry:
Refrigeration Equipment
Description:

Configured for Refrigeration Cooling, ebm-papst S4D500-CM03-09 is a 460 V AC axial fan, documented with a listed airflow of 10,920 m³/h. This supports duty-point selection. Its documented data supports integration planning.

Datasheet:
S4D500-CM03-09 | ebm-papst 460V 1060W AC Axial Fan for Refrigeration Cooling Datasheet (Pdf)

Product Features

Rated Voltage(V)460
Size(mm)500
Max.Air Flow(m³/h)10920
Max.Pressure(Pa)138
Input Power(W)1060
Speed(rpm)1460
Noise(db)68

Product Features

High Airflow Cooling

The ebm-papst S4D500-CM03-09 is an AC axial fan for refrigeration cooling, providing directed airflow in enclosures and cooling assemblies.

Data includes 460 V operation, airflow up to 10920 m³/h and pressure up to 138 Pa for matching airflow to system resistance. The datasheet lists ball-bearing support for durable motor support. Listed noise is 68 dB at the stated test point. Correct electrical selection and clear inlet spacing support efficient cooling, reliable operation and long fan life.

Suitable for OEM engineers, manufacturers and maintenance buyers, the S4D500-CM03-09 should be checked for wiring, mounting, duty point and ambient limits before selection. Its documented operating data supports model comparison, replacement planning and purchasing review.

Application Industry

Frequently Asked Questions

Is inventory stable for the S4D500-CM03-09?

The workbook marks it In Stock, but quantity and lead time should be reconfirmed at quotation because availability can change.

Is the S4D500-CM03-09 easy to maintain?

Provide service access, keep the airflow path clean, inspect wiring and mounting, and investigate abnormal noise or vibration before continued use.

Can the S4D500-CM03-09 help control total ownership cost?

Correct sizing and operation within documented limits can reduce avoidable thermal stress and maintenance events; project savings require duty-cycle analysis.

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