Product Description
36VDC, 3-stage, tangential bypass vacuum motor with 5.7 inch diameter, designed for battery floor scrubbers and sweepers. The unit features a double ball bearing construction, aluminum and thermoset plastic end brackets, and a tangential air discharge configuration. Equivalent to Ametek 119432-24 and AK119432-24.
Specifications
Electrical
| Motor Voltage | 36VDC |
Material
| Fan End Bracket Material | Aluminum and thermoset plastic |
Part Numbers
| Manufacturer Part Number | AMT119432-24 |
| Equivalent Part Number | Ametek 119432-24 |
| Additional Equivalent Number | AK119432-24 |
Frequently Asked Questions
Q: What is the voltage and airflow capacity of the AMT119432-24 vacuum motor?
A: The AMT119432-24 is a 36VDC, 3-stage tangential bypass vacuum motor. It has a 5.7 inch diameter frame and delivers high-volume airflow suitable for battery-powered floor scrubbers and sweepers. Contact us with your specific equipment model for detailed performance specifications.
Q: What equipment types is the AMT119432-24 compatible with?
A: The AMT119432-24 is designed for battery-powered floor scrubbers and sweepers that operate at 36VDC. Confirm the motor mounting flange, voltage requirements, and frame compatibility with your equipment before ordering. This motor is not compatible with 24VDC equipment.
Q: What bearing construction and materials does this motor use?
A: The AMT119432-24 features double ball bearing construction for durability in continuous-duty applications. The end brackets are constructed from aluminum and thermoset plastic, providing corrosion resistance and lightweight performance in wet cleaning environments.
Q: What are the cross-reference part numbers for the AMT119432-24?
A: The AMT119432-24 is equivalent to Ametek 119432-24 and AK119432-24. These are direct replacements and interchangeable part numbers for ordering and compatibility reference.
Q: How does the tangential bypass discharge configuration affect motor performance?
A: The tangential air discharge design routes air tangentially away from the motor body, reducing motor temperature rise and extending bearing and brush life in heavy-use floor cleaning applications. This configuration is ideal for scrubber and sweeper duty cycles.
