Product Details
Place of Origin: France
Brand Name: Schneider
Model Number: ILM0701P02A0000
Payment & Shipping Terms
Minimum Order Quantity: 1 piece
Packaging Details: Carton packaging
Delivery Time: 4-8 weeks
Payment Terms: D/A, D/P, T/T, Western Union
Product Type: |
Product Type Integrated Servo Drive Motor |
Product Range: |
Lexium 62 ILM |
Motor Technology: |
6-Pole Brushless Synchronous Servo Motor |
System Platform: |
PacDrive 3 Distributed Motion System |
Motor Frame Size: |
70 Mm |
Motor Stack Length: |
1 Stack |
Continuous Stall Torque: |
1.1 Nm |
Peak Stall Torque: |
3.5 Nm |
Nominal Torque: |
0.5 Nm |
Nominal Output Power: |
310 W |
Maximum Mechanical Speed: |
6000 Rpm |
Rated Supply Voltage: |
250–700 V DC Bus |
Continuous Stall Current: |
1.55 A |
Maximum Current: |
5.7 A RMS |
Shaft Type: |
Smooth Untapped Shaft |
Shaft Diameter: |
11 Mm |
Shaft Length: |
23 Mm |
Feedback Type: |
Absolute Multiturn SinCos Hiperface |
Feedback Resolution: |
128 SinCos Periods |
Holding Brake: |
Not Included |
Protection Rating: |
IP54 |
Cooling Method: |
Natural Convection |
Product Weight: |
Approximately 2.7 Kg |
Product Type: |
Product Type Integrated Servo Drive Motor |
Product Range: |
Lexium 62 ILM |
Motor Technology: |
6-Pole Brushless Synchronous Servo Motor |
System Platform: |
PacDrive 3 Distributed Motion System |
Motor Frame Size: |
70 Mm |
Motor Stack Length: |
1 Stack |
Continuous Stall Torque: |
1.1 Nm |
Peak Stall Torque: |
3.5 Nm |
Nominal Torque: |
0.5 Nm |
Nominal Output Power: |
310 W |
Maximum Mechanical Speed: |
6000 Rpm |
Rated Supply Voltage: |
250–700 V DC Bus |
Continuous Stall Current: |
1.55 A |
Maximum Current: |
5.7 A RMS |
Shaft Type: |
Smooth Untapped Shaft |
Shaft Diameter: |
11 Mm |
Shaft Length: |
23 Mm |
Feedback Type: |
Absolute Multiturn SinCos Hiperface |
Feedback Resolution: |
128 SinCos Periods |
Holding Brake: |
Not Included |
Protection Rating: |
IP54 |
Cooling Method: |
Natural Convection |
Product Weight: |
Approximately 2.7 Kg |
The ILM0701P02A0000 is a Lexium 62 ILM integrated servo drive designed for decentralized machine axes that require reliable absolute position information across repeated production cycles.
Unlike a standard servo motor connected to a separate cabinet-mounted drive, this unit combines the brushless synchronous motor, drive electronics and position-feedback system in one machine-mounted assembly. This distributed structure can simplify multi-axis machine layouts and reduce the number of individual drive modules installed inside the electrical cabinet.
The ILM0701P02A0000 delivers 1.1 Nm continuous stall torque and up to 3.5 Nm peak stall torque. Its maximum mechanical speed of 6000 rpm supports fast indexing, feeding and product-transfer movements in packaging and automated manufacturing equipment.
A defining feature of this configuration is its absolute multiturn SinCos Hiperface feedback system. The encoder retains information across multiple shaft revolutions, allowing the control system to identify the axis position more effectively after a power cycle when the machine configuration supports absolute-position operation.
This makes the ILM0701P02A0000 particularly useful for applications where repeated homing movements would delay machine startup or create unnecessary mechanical movement.
The motor uses a smooth, untapped output shaft rather than a keyed shaft. This design is suitable for precision clamping couplings, shrink-disc connections and other zero-backlash transmission components designed for a smooth shaft.
The unit does not contain a holding brake. It is therefore most appropriate for horizontal, balanced or mechanically restrained axes where the load remains safe after drive power is removed.
Because the drive electronics and feedback device are integrated into the motor, replacement should be based on the complete ILM model number. Similar-looking motors may use different encoders, shaft ends, brakes or internal drive configurations.
Key Features
Integrated servo motor and drive electronics
Absolute multiturn position feedback
SinCos Hiperface encoder interface
Retains position across multiple revolutions
1.1 Nm continuous stall torque
3.5 Nm peak stall torque
Maximum speed up to 6000 rpm
Compact 70 mm motor flange
One-stack motor construction
Smooth 11 mm output shaft
No holding brake
IP54 motor protection
Natural-convection cooling
Suitable for distributed multi-axis machinery
Designed for compatible PacDrive 3 systems
Typical Applications
Cartoning machinery
Flow-wrapping equipment
Bottle handling systems
Packaging format adjustment axes
Printing registration mechanisms
Label positioning systems
Filling and capping equipment
Product transfer modules
Electronic cam applications
Indexing tables
Feeding and cutting mechanisms
Automated assembly stations
Multi-axis conveyor systems
Machine changeover mechanisms
High-cycle production equipment
Multiturn Absolute Feedback
The ILM0701P02A0000 uses an absolute multiturn SinCos Hiperface feedback system.
Unlike a singleturn encoder that identifies position only within one shaft revolution, a multiturn feedback device can also track the number of completed shaft rotations within its supported operating range.
This capability can provide important benefits for suitable machine axes:
Reduced need for repeated homing
Faster machine restart
Retention of multi-revolution position information
Improved format-change repeatability
Reduced unnecessary mechanical movement
More reliable recovery after controlled shutdown
The actual absolute-position behavior depends on the compatible controller, machine software, encoder configuration and system commissioning.
Suitable Positioning Applications
This model is especially useful where the mechanical position extends beyond one motor revolution.
Examples include:
Lead-screw positioning axes
Format adjustment mechanisms
Multi-turn rotary selectors
Height and width adjustment axes
Long-travel belt systems
Machine guide adjustment
Printing-cylinder synchronization
Product-spacing mechanisms
For these applications, multiturn feedback can help the controller distinguish between identical angular positions reached after different numbers of shaft rotations.
Smooth Shaft Configuration
The ILM0701P02A0000 has a smooth, untapped shaft.
This differs from ILM versions equipped with a keyed shaft.
A smooth shaft is commonly used with:
Precision clamping couplings
Bellows couplings
Elastomer couplings
Shrink-disc hubs
Low-backlash transmission elements
The connection should be designed to transmit the required torque through the specified clamping force.
Do not machine a keyway into the shaft or install an unsuitable keyed coupling.
No-Brake Design
This configuration does not include a holding brake.
It is suitable where:
The axis is horizontally arranged
The mechanism is naturally stable
The load is mechanically supported
Position holding after power removal is unnecessary
A separate mechanical locking device is provided
Additional review is required for:
Vertical lifting axes
Suspended loads
Gravity-loaded mechanisms
Unbalanced arms
Safety-related holding functions
The integrated motor must not be relied upon to hold an unsafe gravity load after power is removed.
Integrated Drive Architecture
The Lexium 62 ILM concept places the servo drive close to the machine axis.
The integrated unit combines:
Brushless synchronous motor
Power-stage electronics
Motor-control electronics
Absolute encoder feedback
Drive monitoring functions
System connection interface
Compared with conventional centralized arrangements, this structure can help reduce:
Separate cabinet drive modules
Individual motor power cables
Cabinet wiring density
Panel space per servo axis
Installation work for multi-axis machines
The machine still requires compatible Lexium 62 power supply equipment, connection modules, hybrid cables, controller hardware and system software.
System Compatibility
The ILM0701P02A0000 is intended for use within a compatible PacDrive 3 and Lexium 62 ILM architecture.
A complete installation may require:
Lexium 62 power supply
ILM distribution or connection modules
Approved hybrid cables
Compatible motion controller
Machine-control software
Correct safety architecture
Suitable mechanical coupling
It should not be connected as a conventional standalone AC servo motor or powered directly from an ordinary three-phase supply.
Replacement Identification
Correct Model Number
ILM0701P02A0000
Important Configuration
70 mm frame
One motor stack
Smooth shaft
Multiturn absolute feedback
SinCos Hiperface encoder
No holding brake
Do not select a replacement using only:
1.1 Nm torque
6000 rpm speed
70 mm flange
Similar external housing
Related ILM models may differ in:
Singleturn or multiturn feedback
Smooth or keyed shaft
Holding-brake configuration
Motor stack length
Torque rating
Encoder interface
Connector configuration
The complete model suffix must match the original machine requirements.
Installation Guidelines
Disconnect the complete machine power supply.
Wait for the DC bus to discharge.
Verify the full motor model on the nameplate.
Support the motor before removing its mounting screws.
Protect the smooth shaft from impact and scratching.
Do not apply hammer force to the coupling.
Use a coupling designed for an 11 mm smooth shaft.
Check motor and load-shaft alignment.
Use only compatible ILM system cables.
Inspect connectors before reconnection.
Confirm multiturn encoder configuration in the controller.
Verify that the no-brake axis remains mechanically safe.
Test the axis at reduced speed after replacement.
Check position retention after a controlled power cycle.
Installation should be completed by trained motion-control personnel.
FAQ
Q1: What is the ILM0701P02A0000?
A1: It is an integrated Lexium 62 ILM servo drive combining a brushless synchronous motor, drive electronics and absolute multiturn position feedback.
Q2: What is the continuous torque rating?
A2: The continuous stall torque is 1.1 Nm.
Q3: What is the peak torque?
A3: The specified peak stall torque is 3.5 Nm.
Q4: What is the maximum speed?
A4: The maximum mechanical speed is 6000 rpm.
Q5: What type of encoder does it use?
A5: It uses an absolute multiturn SinCos Hiperface feedback system with 128 SinCos periods.
Q6: What is the advantage of multiturn feedback?
A6: It can retain position information across multiple motor revolutions, which may reduce the need for repeated machine homing after power cycles.
Q7: Does this model have a keyed shaft?
A7: No. ILM0701P02A0000 uses a smooth, untapped shaft.
Q8: Does it include a holding brake?
A8: No. This is a no-brake configuration.
Q9: Can it be installed on a vertical axis?
A9: Additional mechanical and safety evaluation is necessary because the unit does not include a holding brake.
Q10: Is it a conventional standalone servo motor?
A10: No. It is an integrated drive designed for a compatible Lexium 62 ILM and PacDrive 3 system.
Q11: Can ILM0701P11A0000 replace this model?
A11: Not automatically. ILM0701P11A0000 uses a different shaft and feedback configuration. The complete model code must match the machine requirements.
Q12: Does it require homing after every startup?
A12: Multiturn absolute feedback can reduce homing requirements, but actual startup behavior depends on the controller, machine software and commissioning settings.
Q13: What should be supplied for compatibility checking?
A13: Please provide the original nameplate, complete model number, machine type, controller model and photographs of the shaft and connectors.
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