Product Description

Product Overview

The Parker Torqmotor™ TE Series is a compact LSHT (Low-Speed High-Torque) orbital hydraulic motor platform engineered for hydraulic systems requiring strong starting torque, stable low-speed operation and efficient mechanical power transmission.

Parker’s official HY13-1590-010/US,EU TE Series catalog covers 15 displacements from 36 to 392 cm³/rev and provides multiple mounting, port, shaft and rear-port configurations. Parker specifically highlights high-pressure shaft seals, robust roller bearings and high-flow shaft-seal cooling, with the bearing arrangement designed to support higher side loads and chain/sprocket shaft connections.

The requested configurations are:

  • TE0065CY690AAAB
  • TE0080CW260LABA
  • TE0100CW260LABA
  • TE0295CN261AAAB
  • TE0295CW690AAAB

Their corresponding TE displacement classes are:

  • TE0065: 65 cm³/rev
  • TE0080: 82 cm³/rev
  • TE0100: 98 cm³/rev
  • TE0295: 293 cm³/rev

Because Parker uses separate ordering fields for mounting, ports, shaft, rotation and options, these complete part numbers must be treated as distinct configurations unless the mechanical and hydraulic interfaces are verified.


Technical Specifications

TE0065CY690AAAB

  • Brand: Parker Hannifin
  • Product Family: Torqmotor™ TE Series
  • Product Type: LSHT Orbital / Gerotor Hydraulic Motor
  • Part Number: TE0065CY690AAAB
  • Displacement: 65 cm³/rev
  • Displacement: 4.0 in³/rev
  • Maximum Intermittent Speed: 877 rpm
  • Maximum Continuous Flow: 45 L/min
  • Maximum Intermittent Flow: 57 L/min
  • Maximum Continuous Differential Pressure: 140 bar / 2,030 psi
  • Maximum Intermittent Differential Pressure: 190 bar / 2,750 psi
  • Maximum Supply Pressure: 200 bar / 2,900 psi
  • Maximum Continuous Torque: 125 Nm
  • Maximum Intermittent Torque: 176 Nm
  • Maximum Output Power: 14.7 kW / 19.8 HP
  • Minimum Starting Torque: 100 Nm continuous / 137 Nm intermittent
  • Mounting Code: C
  • Rotation Code: 0, standard rotation
  • Options: AAAB, no paint
  • Shaft Code 69: not present in the current public TE ordering table reviewed; exact shaft geometry should be verified from the historical configuration drawing.

Parker’s official performance table confirms the TE0065 operating data listed above.


TE0080CW260LABA

  • Brand: Parker Hannifin
  • Series: Torqmotor™ TE
  • Product Type: LSHT Orbital / Gerotor Hydraulic Motor
  • Part Number: TE0080CW260LABA
  • Displacement: 82 cm³/rev
  • Displacement: 5.0 in³/rev
  • Maximum Intermittent Speed: 695 rpm
  • Maximum Continuous Flow: 45 L/min
  • Maximum Intermittent Flow: 57 L/min
  • Maximum Continuous Differential Pressure: 140 bar / 2,030 psi
  • Maximum Intermittent Differential Pressure: 190 bar / 2,750 psi
  • Maximum Supply Pressure: 200 bar / 2,900 psi
  • Maximum Continuous Torque: 160 Nm
  • Maximum Intermittent Torque: 220 Nm
  • Maximum Output Power: 17.3 kW / 23.2 HP
  • Minimum Starting Torque: 128 Nm continuous / 171 Nm intermittent
  • Mounting Code: C
  • Port Code: W, G1/2 BSPP
  • Shaft Code: 26, 25 mm keyed shaft with 8 mm key
  • Approximate Weight: 7.10 kg
  • Approximate Length: 114.7 mm

Parker defines code C as an SAE “A” 2-bolt long-pilot mounting, code W as G1/2 BSPP ports and code 26 as a 25 mm keyed shaft with an 8 mm key.

The exact TE0080CW260LABA reference is also identified in Parker product distribution data as an 82 cm³/rev TE Series motor.


TE0100CW260LABA

  • Brand: Parker Hannifin
  • Series: Torqmotor™ TE
  • Product Type: LSHT Orbital / Gerotor Hydraulic Motor
  • Part Number: TE0100CW260LABA
  • Displacement: 98 cm³/rev
  • Displacement: 6.0 in³/rev
  • Maximum Intermittent Speed: 582 rpm
  • Maximum Continuous Flow: 45 L/min
  • Maximum Intermittent Flow: 57 L/min
  • Maximum Continuous Differential Pressure: 140 bar / 2,030 psi
  • Maximum Intermittent Differential Pressure: 190 bar / 2,750 psi
  • Maximum Supply Pressure: 200 bar / 2,900 psi
  • Maximum Continuous Torque: 190 Nm
  • Maximum Intermittent Torque: 264 Nm
  • Maximum Output Power: 17.4 kW / 23.4 HP
  • Minimum Starting Torque: 152 Nm continuous / 205 Nm intermittent
  • Mounting Code: C
  • Port Code: W, G1/2 BSPP
  • Shaft Code: 26, 25 mm keyed shaft with 8 mm key
  • Approximate Weight: 7.20 kg
  • Approximate Length: 117.9 mm

Parker’s official TE performance table confirms the TE0100 values of 98 cm³/rev, 582 rpm, 45/57 L/min, 140/190 bar, 200 bar supply pressure and 190/264 Nm torque.

A Parker material record for TE0100CW260LABA is also available in industrial distribution data under Parker material number 30067306.


TE0295CN261AAAB

  • Brand: Parker Hannifin
  • Series: Torqmotor™ TE
  • Product Type: LSHT Orbital / Gerotor Hydraulic Motor
  • Part Number: TE0295CN261AAAB
  • Displacement: 293 cm³/rev
  • Displacement: 17.9 in³/rev
  • Maximum Intermittent Speed: 256 rpm
  • Maximum Continuous Flow: 57 L/min
  • Maximum Intermittent Flow: 75 L/min
  • Maximum Continuous Differential Pressure: 100 bar / 1,450 psi
  • Maximum Intermittent Differential Pressure: 145 bar / 2,100 psi
  • Maximum Supply Pressure: 200 bar / 2,900 psi
  • Maximum Continuous Torque: 428 Nm
  • Maximum Intermittent Torque: 582 Nm
  • Maximum Output Power: 15.7 kW / 21.0 HP
  • Minimum Starting Torque: 328 Nm continuous / 445 Nm intermittent
  • Mounting Code: C
  • Port Code: N, M8 manifold
  • Shaft Code: 26, 25 mm keyed shaft with 8 mm key
  • Rotation Code: 1, reverse rotation
  • Options: AAAB, no paint
  • Approximate Weight: 8.80 kg
  • Approximate Length: 156.0 mm

The TE0295 data is particularly important because its differential-pressure rating is lower than the smaller TE displacement sizes. Parker’s official table specifies 100 bar continuous and 145 bar intermittent differential pressure for TE0295.


TE0295CW690AAAB

  • Brand: Parker Hannifin
  • Series: Torqmotor™ TE
  • Product Type: LSHT Orbital / Gerotor Hydraulic Motor
  • Part Number: TE0295CW690AAAB
  • Displacement: 293 cm³/rev
  • Displacement: 17.9 in³/rev
  • Maximum Intermittent Speed: 256 rpm
  • Maximum Continuous Flow: 57 L/min
  • Maximum Intermittent Flow: 75 L/min
  • Maximum Continuous Differential Pressure: 100 bar / 1,450 psi
  • Maximum Intermittent Differential Pressure: 145 bar / 2,100 psi
  • Maximum Supply Pressure: 200 bar / 2,900 psi
  • Maximum Continuous Torque: 428 Nm
  • Maximum Intermittent Torque: 582 Nm
  • Maximum Output Power: 15.7 kW / 21.0 HP
  • Minimum Starting Torque: 328 Nm continuous / 445 Nm intermittent
  • Mounting Code: C
  • Port Code: W, G1/2 BSPP
  • Rotation Code: 0, standard rotation
  • Options: AAAB, no paint
  • Shaft Code 69: exact geometry not listed in the current public TE ordering table reviewed
  • Approximate Frame Weight: 8.80 kg; exact shaft-specific configuration should be confirmed against the original Parker drawing

The exact part number TE0295CW690AAAB is independently listed in Parker industrial distribution data and associated with Parker material number 45131707.


Control Method

The TE Series uses a fixed-displacement orbital architecture.

The fundamental hydraulic relationships are:

Hydraulic Flow → Motor Speed

Differential Pressure × Displacement → Available Torque

Accordingly:

  • Displacement: Fixed
  • Speed Control: Hydraulic flow
  • Torque Generation: Differential pressure
  • Direction: Reversing hydraulic flow
  • Variable Displacement Control: Not integrated

Parker’s ordering system also supports standard and reverse rotation configurations.


Key Technical Advantages

1. Medium-Duty Performance in a Compact Package

Parker positions TE as an improved light-duty LSHT motor with higher pressure capability than the TB platform for applications requiring increased torque.

2. Robust Roller Bearings

Parker specifically states that the TE design uses robust roller bearings to withstand higher side loads and support chain and sprocket shaft connections.

3. High-Pressure Shaft Sealing

High-pressure shaft seals combined with high-flow shaft-seal cooling support reliable operation under demanding hydraulic and thermal conditions.

4. Gerotor-Based LSHT Operation

Parker’s current Torqmotor material highlights orbital-style gerotor technology for low-speed, high-torque output, smooth low-speed control and rugged construction.

5. Flexible Configuration

The TE ordering system supports multiple mounting, port, shaft, rotation and option configurations, making the platform well suited to OEM integration and replacement applications.

6. Strong Torque Growth with Displacement

Parker’s official maximum torque data increases from:

  • TE0065: 125/176 Nm
  • TE0080: 160/220 Nm
  • TE0100: 190/264 Nm
  • TE0295: 428/582 Nm

for continuous/intermittent operation respectively.


Application Areas

TE0065CY690AAAB

  • Agricultural machinery
  • Compact conveyors
  • Sweeping equipment
  • Material handling equipment
  • Utility machinery
  • Auxiliary hydraulic drives

TE0080CW260LABA

  • Agricultural machinery
  • Conveyors
  • Augers
  • Sweepers
  • Compact mobile equipment
  • Material handling systems

TE0100CW260LABA

  • Agricultural machinery
  • Conveyor drives
  • Road machinery
  • Industrial rotary equipment
  • Material handling equipment
  • Mobile hydraulic machinery

TE0295CN261AAAB

  • Heavy-duty conveyors
  • Agricultural machinery
  • Industrial rotary equipment
  • Material handling machinery
  • Mobile equipment
  • Auxiliary winch drives

TE0295CW690AAAB

  • Agricultural machinery
  • Conveyor systems
  • Sprocket drives
  • Material handling equipment
  • Road construction machinery
  • Mobile hydraulic equipment

Parker currently positions its Torqmotor TE family for compact utility and mobile-drive applications where smooth low-speed operation and durable gerotor construction are required.


Expert Maintenance Tips

1. Match the Complete Part Number

Do not select a replacement solely by TE displacement.

For example:

TE0080CW260LABA

and

TE0100CW260LABA

share the same C/W/26 configuration architecture but have different 82 and 98 cm³/rev displacement classes.

Likewise:

TE0295CN261AAAB

and

TE0295CW690AAAB

have different port and shaft configuration fields.

2. Verify Shaft and Port Interfaces

Before installation, confirm:

  • Port thread
  • Port location
  • Shaft diameter
  • Key or spline
  • Pilot diameter
  • Bolt circle
  • Rotation
  • Rear-port arrangement

This is especially important for configurations containing shaft code 69, which is not shown in the current public TE shaft table reviewed here.

3. Never Apply Series-Maximum Pressure to Every Size

The TE family overview includes up to 140/190 bar differential pressure, but TE0295 is specifically rated at 100/145 bar continuous/intermittent differential pressure.

4. Evaluate Side Loads

For sprocket, pulley, gear or wheel applications, perform a proper bearing-load calculation.

Parker explicitly identifies the TE roller-bearing architecture as suitable for higher side loads and chain/sprocket connections.

5. Monitor Return Pressure and Shaft-Seal Temperature

Because the TE design uses high-pressure shaft seals and high-flow shaft-seal cooling, high return pressure, excessive temperature, incorrect viscosity or severe contamination should be investigated promptly.

6. Respect Intermittent-Duty Limits

Parker specifies that the intermittent rating applies to 10% of every minute.

Intermittent ratings should therefore not be interpreted as continuous operating capabilities.

7. Use Consistent Test Conditions

Parker’s performance data is based on testing with:

  • SAE 10W40 oil
  • 200 SUS / approximately 43.1 cSt
  • 54°C / 130°F

Parker notes that actual production-motor performance may vary slightly.

8. Perform 100% Simulated Operating-Condition Testing

For replacement TE Series motors, our recommended factory QA program includes:

  • Displacement verification
  • Continuous pressure testing
  • Intermittent pressure testing
  • Flow testing
  • Speed verification
  • Starting-torque testing
  • Continuous-torque testing
  • Internal-leakage testing
  • Rotation-direction testing
  • Shaft runout inspection
  • Bearing/load inspection
  • Shaft-seal inspection
  • Temperature-rise testing
  • Noise and vibration testing
  • Complete configuration verification

The engineering target is:

Drop-In Interchangeability + Hydraulic Performance Equivalence + Functional Reliability

 

 

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