Free UPS Ground on All Orders!
+1 (919) 205-4392
Siemens SINAMICS 6SL3162-0AM00-0AA0

Product image is representative; revision or series may vary. Contact us to request a specific version.

6SL3162-0AM00-0AA0

|

The Siemens 6SL3162-0AM00-0AA0 is a replacement fan specifically designed for the SINAMICS series, engineered for installation on a 300 mm line or motor module. It is a vital component for active cooling.

In Stock
Ships from Raleigh, NC
2 Year DO Supply Warranty
Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All of our products come with DO Supply's 2-year warranty.
Learn more

Technical specifications for 6SL3162-0AM00-0AA0

ManufacturerSiemens
Product TypeReplacement Fan
Product LineSINAMICS
Part Number6SL3162-0AM00-0AA0
UPC662643344844
Weight7.00 lbs (3.18 kg)
Fan Diameter220 mm
Mounting TypeDirect Mounting to Motor/Line Module
Cooling TypeActive Cooling Fan
Operating Temperature Range-10°C to 40°C
Rated Voltage24 VDC
ApplicationFor 300 mm Line/Motor Module
Current Rating0.5 A
Protection ClassIP20

The 6SL3162-0AM00-0AA0 from Siemens is an active cooling fan designed primarily for SINAMICS applications. With a robust diameter of 220 mm, this fan plays a crucial role in enhancing cooling efficiency for motor and line modules, particularly those sized at 300 mm. Weighing 3.18 kg, it is designed for direct attachment to the corresponding motor or line module, ensuring straightforward installation.

This cooling fan operates effectively across an ambient temperature spectrum of -10°C to 40°C, making it suitable for various industrial conditions. It is powered by a 24 VDC rated voltage and has a current draw of 0.5 A, featuring a reliable design that facilitates continuous operation.

With an IP20 protection class, the 6SL3162-0AM00-0AA0 fan is protected against solid objects larger than 12.5 mm, making it appropriate for controlled environments. This component is essential for maintaining optimal thermal conditions within the system, ensuring that the drive mechanisms function efficiently and without overheating.