Comparing International Harvester 3688 vs John Deere 6155M (2015-2020)

This page provides a detailed comparison of the specifications for the International Harvester 3688 and the John Deere 6155M (2015-2020). The specifications are categorized into four main sections: Engine, Transmission, Dimensions, and Miscellaneous. By comparing these two tractors side by side, you can easily identify the similarities and differences between them and determine which one best suits your needs.

International Harvester 3688
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John Deere 6155M (2015-2020)
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Engine
Engine - Manufacturer International Harvester John Deere
Engine - Model D436 PowerTech PVS
Engine - Cooling Type Liquid-cooled Liquid Cooled
Engine - Cylinder Orientation - -
Engine - Valve Configuration - -
Engine - Fuel Type Diesel Diesel
Engine - Induction Type - -
Engine - Cylinders 6 6
Engine - Displacement (ci) 436 414
Engine - Bore (in) 4.3 4.13
Engine - Stroke (in) - -
Engine - Rated RPM 2400 2100
Engine - Power Output (hp) 113 155
Transmission
Transmission - Type Partial power shift Power Shift
Transmission - Forward Gears 16 16 or 20
Transmission - Reverse Gears - -
Transmission - Total Gears - 16 or 20
Dimensions
Length (in) 184 185.8
Width (in) 102 100.4
Height (in) 112 114.6
Operating Weight (lb) 13200 13073
Miscellaneous
Chassis 4x2 2WD 4x2 2WD or 4x4 MFWD 4WD
Drive Type 2WD and 4WD -
Steering Type Power Power
Coolant Capacity (qts) 26 29.8
Front Tire Diameter (in) - -
Front Tire Width (in) - -
Rear Tire Diameter (in) - -
Rear Tire Width (in) - -
Front/Rear Rim Diameter (in) - -
Tire Type Ag Agricultural
Manufacture - End Year 1985 2020
Hitch Type Three-Point Hitch -
Hitch Category - -
Hitch Position Rear -
Hitch Capacity (lb) - -
Operator Station Type Cab Cab with air-conditioning or two-post folding ROPS
Starter Type Electric Electric
PTO Type Independent Independent with electro-hydraulic clutch
PTO Speed 1 (rpm) 540 540 or 1000
PTO Speed 2 (rpm) 1000 540
PTO Speed 3 (rpm) - -
Brake Type Hydraulic wet disc Hydraulic wet disc
Hydraulic System Type Open center Closed-center pressure-and-flow compensated