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EP400 Planetary Track Drives

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Planetary track-drive family for hydraulic final-drive applications, published at 1,000–220,000 N·m and ratios from 5.3 to 365.

SKU: EPT-EP400-FAMILY
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Description

EP400 Planetary Track Drives

EP400 track drives are built around a rotating housing flange that integrates the final reduction close to the tracked undercarriage. The architecture is intended for hydraulic travel systems where high wheel or sprocket torque must be packaged inside a compact final-drive envelope.

Planetary track drive internal gearing

Published Range

Parameter Published EP400 Family Range
Output torque 1,000–220,000 N·m
Gear ratio 5.3–365
Support arrangement Rotating housing flange for tracks
Motor interfaces Axial-piston hydraulic motor; hydraulic orbit motor
Hydraulic options Pressure-relief and overcenter valve on request
Parking brake Hydraulic-release parking brake on request

Travel-Duty Priorities

Track propulsion combines low output speed, high torque, frequent load changes, and contamination exposure. Selection therefore starts with machine mass, tractive effort, sprocket radius, travel speed, gradeability, hydraulic motor displacement and pressure, then checks braking and shock-load margins.

Integration Checklist

Check Why It Matters
Track sprocket geometry Defines bolt circle, pilot, and output support loads
Hydraulic motor flange Controls adaptor and input-spline compatibility
Brake requirement Determines parking and holding function
Case drain and valves Affects hydraulic protection and control
Duty and gradeability Drives service factor and peak torque
Sealing environment Dust, mud, water, and washdown influence protection

Failure Risks

Undersized travel drives can suffer gear tooth overload, bearing distress, overheating, or brake margin problems. Incorrect case-drain routing and valve selection can also damage hydraulic seals. Provide the complete travel circuit and existing final-drive data when replacing another unit.

FAQ

Can EP400 work with an orbit motor?

The published range lists hydraulic orbit motors and axial-piston hydraulic motors as applicable inputs.

Is a brake always included?

No. A hydraulic-release parking brake is an option and must be specified when required.

How is the ratio selected?

Use motor speed, target track speed, sprocket geometry, and required tractive torque; then verify the selected drive against duty and shock load.

Can I select from machine weight alone?

No. Weight is only one input. Travel speed, grade, sprocket radius, hydraulic pressure, duty, and dynamic loads are also required.

Data Note: Published EP400 family torque, ratio, motor, valve, and brake information is sourced from the official Ever-Power track-drive product page.

Size A Track Drive

Share ratio, input speed and power, required output torque, duty cycle, mounting space, shaft or flange interface, environment, quantity, and any drawing or existing gearbox reference. Our engineering team will review the configuration before quotation.

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