Product Description
Yale OEM AC port flanged, part number YL 582062166, provides a secure 120VAC connection for electric pallet jacks. Designed for body flange mounting with high-impact polymer housing and copper alloy contacts.
Specifications
Electrical
| Port Function | Convenience AC port for external charging or accessory power |
| Port Voltage Rating | 120VAC nominal |
Material & Construction
| Body Material | Molded high-impact polymer |
Part Numbers
| OEM Part Number | YL 582062166 |
| Manufacturer Part Number | 582062166 |
Frequently Asked Questions
Q: What voltage rating does the YL 582062166 AC port support?
A: The YL 582062166 is rated for 120VAC nominal and functions as a convenience AC port for external charging or accessory power on electric pallet jacks. Do not exceed 120VAC input to avoid damage to high-impact polymer housing and copper alloy contacts.
Q: How is the YL 582062166 mounted to the pallet jack?
A: The YL 582062166 is a flanged port designed for body flange mounting on Yale electric pallet jacks. Verify mounting flange dimensions and bolt hole spacing match your equipment before purchase to ensure proper fitment.
Q: What materials are used in the YL 582062166 construction?
A: The YL 582062166 features a molded high-impact polymer housing for durability in material handling environments, combined with copper alloy contacts to resist corrosion and ensure reliable 120VAC connections over extended service life.
Q: What is the purpose of the YL 582062166 AC port?
A: The YL 582062166 provides a convenient 120VAC connection point on the pallet jack body for charging accessories, work lights, or external power tools during operation. This eliminates the need for external power extension cords in warehouse environments.
Q: Is the YL 582062166 compatible with wet or cold storage applications?
A: The high-impact polymer housing provides good environmental protection, but outdoor, wet, or cold storage exposure may degrade contacts over time. Verify operating environment specifications match your facility conditions to assess replacement frequency.
