AH101340 Drive Sprocket for John Deere Row Crop Heads

This replacement chain drive is designed to replace the OEM part number AH101340. It is compatible with various John Deere headers, including models 453A, 454A, 653A, 654A, 655A, and 853A, specifically for the left-hand gathering chain drive.
This sprocket features 11 and 12 teeth configurations and includes a spline bore, ensuring optimal performance and durability for your equipment.

Specifications of AH101340 Drive Sprocket for John Deere Row Crop Heads

AH101340 Agricultural Sprocket
Weight 2.84 lbs
Deere Source 827Y
Branch Source H
Dlr Pkg Qty 1
Critical Code 15
Monthly Ret Ind R
Largest Dimension (in) 7.14
Middle Dimension (in) 5.18
Smallest Dimension (in) 3.55
Shipping Weight (kg) 1.4605
Largest Dimension (cm) 18.1
Middle Dimension (cm) 13.2
Smallest Dimension (cm) 9.0

Features of AH101340 Drive Sprocket for John Deere Row Crop Heads

  • Replacement for OEM Part Number AH101340.
  • Compatible with John Deere Headers: 453A, 454A, 653A, 654A, 655A, and 853A.
  • Available with 11 and 12 teeth, featuring a spline bore design.
  • Lightweight at 2.84 lbs, ensuring easy installation and handling.
  • Durable construction for reliable performance in agricultural applications.

AH101340 Drive Sprocket

Installation Steps for AH101340 Drive Sprocket

  1. Ensure the machine is powered off and disconnected from any power source.
  2. Remove the existing chain drive sprocket from the John Deere Row Crop Head by loosening the securing bolts.
  3. Align the new AH101340 Drive Sprocket with the spline bore, ensuring proper fit.
  4. Tighten the securing bolts evenly to ensure a secure installation.
  5. Reconnect the power source and perform a test run to check for proper operation.
  6. Regularly inspect the sprocket for wear and ensure it operates smoothly during use.

Manufacturing Process of AH101340 Drive Sprocket for John Deere Row Crop Heads

The manufacturing process of the AH101340 Drive Sprocket involves several crucial steps. First, high-quality raw materials are selected to ensure durability. The materials are then cut and shaped into the sprocket's design specifications using precision machining techniques. Following this, the sprocket is heat-treated to enhance its strength and wear resistance. After heat treatment, each sprocket is meticulously inspected for