Product Description
This Hyster pin provides direct replacement hardware for electric pallet truck applications. Compatible with Hyster W40Z (B218) and 45Z (C215) series lift trucks, it delivers reliable performance in load-bearing and mechanical linkage assemblies. Precision-engineered for durability and proper fit across compatible equipment models.
Specifications
Application
| Compatible Equipment Models | Hyster W40Z (B218), Hyster 45Z (C215) electric pallet trucks |
Part Numbers
| Part Number | HY 2059695 |
| Manufacturer Part Number | HY2059695 |
Specifications
| Product Type | Pin - Hardware Component |
| Application | Electric pallet truck hardware, pivot and mechanical linkage assemblies |
| Material | Hardened steel with precision tolerances |
| Duty Rating | Industrial duty cycles, material handling environments |
Frequently Asked Questions
Q: What is the HY 2059695 pin used for?
A: The HY 2059695 is a Hyster OEM pin for electric pallet truck hardware applications. It functions as a pivot, attachment, or alignment pin in load-bearing and mechanical linkage assemblies.
Q: Which Hyster electric pallet truck models fit this pin?
A: The HY 2059695 is validated for Hyster W40Z (B218) and W45Z (C215) series electric pallet trucks.
Q: Is this an OEM specification pin with guaranteed fit?
A: Yes. The HY 2059695 is manufactured to Hyster OEM specification. OEM specification construction ensures proper fit and service life for all mast and carriage hardware applications on compatible models.
Q: How do I verify this is the correct pin for my application?
A: Cross-reference the manufacturer part number HY2059695 (also SKU HY 2059695) with your equipment serial number and parts diagram. Verify the application location and pin diameter match your assembly before installation.
Q: What material and durability should I expect?
A: Hyster OEM pins are manufactured from hardened steel with precision tolerances for industrial duty cycles. This pin is rated for daily use in material handling environments and should maintain its integrity across multiple charge cycles.
