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Electric Slide Table, Compact Type LES Series (LES8RK-30-R36P3D)

Electric Slide Table, Compact Type LES Series LES8RK-30-R36P3D

A compact-type electric actuator.
[Features]
· Compact: Workpiece mounting height reduced by up to 12% compared to LESH.
· Vertical work load: increased by up to 50%.
· Lightweight: reduced by up to 29%.
· Maximum pushing force: 180 N.
· Positioning repeatability: ±0.05 mm.
· Reduced cycle time. (Maximum acceleration/deceleration: 5,000 mm/S2, Maximum speed: 400 mm/s)

(i)Caution

  • Refer to the manufacturer's catalog for specification and material details.
  • The product image is a representative image only. CAD data is not available for some model numbers.

PDF

Part Number

Configured Part Number is shown.

LES8RK-30-R36P3D

Electric Slide Table, Compact Type LES Series Specifications

Basic type (R type) external appearance

Basic type (R type) external appearance

Symmetric type (L type) external appearance

Symmetric type (L type) external appearance

In-line motor type (D type) external appearance

In-line motor type (D type) external appearance

Specifications / Step Motor (24‑V DC Servo)

ModelLES8□LES16□LES25□
Actuator SpecificationsStroke [mm]30, 50, 7530, 50, 75, 10030, 50, 75, 100, 125, 150
Work Load [kg] Note 1:Horizontal135
Vertical0.50.2531.552.5
Pushing Force 30 to 70% [N] Note 2: Note 3:6 to 154 to 1023.5 to 5515 to 3577 to 18043 to 100
Speed [mm/s] Note 1: Note 3:10 to 20020 to 40010 to 20020 to 40010 to 20020 to 400
Pushing Speed [mm/s]10 to 202010 to 202010 to 2020
Maximum Acceleration/Deceleration [mm/s2]5,000
Positioning Repeatability [mm]±0.05
Lost Motion [mm] Note 4:0.3 or less
Screw Lead [mm]48510816
Impact/Vibration Resistance [m/s2] Note 5:50/20
Actuation TypeSlide screw + belt (R/L type), Slide screw (D type)
Guide TypeLinear guide (circulating)
Operating Temperature Range [°C]5 to 40
Operating Humidity Range [%RH]90 or less (no condensation)
Electrical SpecificationsMotor Size□20□28□42
Motor typeStep motor (24‑V DC servo)
EncoderIncremental A/B phase (800 pulses/rotation)
Rated Voltage [V]24 DC ±10%
Power Consumption [W] Note 6:186945
Standby Power Consumption When Operating [W] Note 7:71513
Maximum Instantaneous Power Consumption [W] Note 8:356967
Lock SpecificationsTypeNote 9: Non-excitation operation (non-magnetizing lock)
Holding Force [N]242.53004850077
Power Consumption [W] Note 10:3.52.95
Rated Voltage [V]24 DC ±10%

Note 1: The speed changes according to the work load. Check the SMC catalog for the "Speed-Work Load" graph.
Note 2: Pushing force accuracy is ±20% (F.S.)
Note 3: The speed and force may change depending on the cable length, load, mounting conditions, etc. If the cable length exceeds 5 m, the speed and force will decrease by up to 10% for each 5 m. (At 15 m: reduced by up to 20%)
Note 4: A reference value for correcting an error in reciprocal operation.
Note 5: Vibration resistance: No malfunction occurred in a test ranging between 45 to 2,000 Hz (1 sweep), performed in both an axial direction and perpendicular direction to the lead screw. (Test was performed with the actuator in the initial state.)
Impact resistance: No malfunction occurred when the actuator was tested with a drop tester in both an axial direction and a perpendicular direction to the lead screw. (Test was performed with the actuator in the initial state.)
Note 6: The power consumption (including the controller) is for when the actuator is operating.
Note 7: The standby power consumption when operating (including the controller) is for when the actuator is stopped in the set position during operation. Except during pushing operations.
Note 8: The maximum instantaneous power consumption (including the controller) is for when the actuator is operating. This value can be used for selecting the power supply capacity.
Note 9: With lock only.
Note 10: For an actuator with a lock, add the power consumption for the lock.

Specifications / Servo Motor (24 V DC)

ModelLES8□ALES16□ALES25RA Note 1:
LES25LA Note 1:
Actuator SpecificationsStroke [mm]30, 50, 7530, 50, 75, 10030, 50, 75, 100, 125, 150
Work Load [kg]Horizontal135
Vertical10.531.542
Pushing Force 50 to 100% [N] Note 2:7.5 to 115 to 7.517.5 to 3510 to 2031 to 6219 to 38
Speed [mm/s]1 to 2001 to 4001 to 2001 to 4001 to 2001 to 400
Pushing Speed [mm/s]1 to 20
Maximum Acceleration/Deceleration [mm/s2]5,000
Positioning Repeatability [mm]±0.05
Lost Motion [mm] Note 3:0.3 or less
Screw Lead [mm]48510816
Impact/Vibration Resistance [m/s2] Note 4:50/20
Actuation TypeSlide screw + belt (R/L type), Slide screw (D type)
Guide TypeLinear guide (circulating)
Operating Temperature Range [°C]5 to 40
Operating Humidity Range [%RH]90 or less (no condensation)
Electrical SpecificationsMotor Size□20□28□42
Motor Output [W]103036
Motor typeServo motor (24 V DC)
Encoder (Angular Displacement Sensor)Incremental A/B/Z phase (800 pulses/rotation)
Rated Voltage [V]24 DC ±10%
Power Consumption [W] Note 5:426897
Standby Power Consumption When Operating [W] Note 6:8 (horizontal) / 19 (vertical)9 (horizontal) / 23 (vertical)16 (horizontal) / 32 (vertical)
Maximum Instantaneous Power Consumption [W] Note 7:71102111
Lock SpecificationsTypeNote 8: Non-excitation operation (non-magnetizing lock)
Holding Force [N]242.53004850077
Power Consumption [W] Note 9:3.52.95
Rated Voltage [V]24 DC ±10%

Note 1: LES25DA is not available.
Note 2: The pushing force range for LES8□A is 50 to 75%. Pushing force accuracy is ±20% (F.S.)
Note 3: A reference value for correcting an error in reciprocal operation.
Note 4: Vibration resistance: No malfunction occurred in a test ranging between 45 to 2,000 Hz (1 sweep), performed in both an axial direction and perpendicular direction to the lead screw. (Test was performed with the actuator in the initial state.)
Impact resistance: No malfunction occurred when the actuator was tested with a drop tester in both an axial direction and a perpendicular direction to the lead screw. (Test was performed with the actuator in the initial state.)
Note 5: The power consumption (including the controller) is for when the actuator is operating.
Note 6: The standby power consumption when operating (including the controller) is for when the actuator is stopped in the set position while operating with maximum load. Except during pushing operations.
Note 7: The maximum instantaneous power consumption (including the controller) is for when the actuator is operating. This value can be used for selecting the power supply capacity.
Note 8: With lock only.
Note 9: For an actuator with a lock, add the power consumption for the lock.

Dimensions - Basic Type / R Type

 

(Units: mm)

 

LES8R dimensional drawing

LES8R dimensional drawing

Connector Dimensional Drawing (LES8R)

Connector Dimensional Drawing (LES8R)

 

(Units: mm)

 

ModelLDEFGHJ
LES8R□□-30□-□□□□□94.52688.762.522727
LES8R□□-50□-□□□□□137.546131.7105.532958
LES8R□□-75□□-□□□□□162.550156.7130.543060

Note 1: Range within which the table can move when it returns to origin, etc. Make sure any workpiece mounted on the table does not interfere with the workpieces and equipment, etc., around the table.
Note 2: Position after return to origin.
Note 3: Values within [ ] are for when the direction of return to origin has been changed.
Note 4: If workpiece-retaining screws are too long, they may touch the guide block and cause a malfunction. Use screws that are between the maximum and minimum screw-in depths in length.
Note 5: Secure the motor cable and lock cable so that they are not repeatedly bent.

LES16R dimensional drawing

LES16R dimensional drawing

Connector Dimensional Drawing (LES16R)

Connector Dimensional Drawing (LES16R)

 

(Units: mm)

 

ModelLCDEFGHJ
LES16R□□-30□-□□□□□108.5438102.37824040
LES16R□□-50□-□□□□□136.5634130.310627878
LES16R□□-75□□-□□□□□180.5836174.315043672
LES16R□□-100□□-□□□□□205.51036199.3175536108

Note 1: Range within which the table can move when it returns to origin, etc. Make sure any workpiece mounted on the table does not interfere with the workpieces and equipment, etc., around the table.
Note 2: Position after return to origin.
Note 3: Values within [ ] are for when the direction of return to origin has been changed.
Note 4: If workpiece-retaining screws are too long, they may touch the guide block and cause a malfunction. Use screws that are between the maximum and minimum screw-in depths in length.
Note 5: Secure the motor cable and lock cable so that they are not repeatedly bent.

Notes

Setting Precautions

  • *Do not apply load in excess of the specification limits.
  • *Select a suitable actuator by work load and allowable moment. If the product is used outside of the specification limits, the unbalanced load applied to the guide will be excessive and have adverse effects, such as creating play on the guide, degrading accuracy and shortening the lifespan of the product.
  • *Do not use the product in applications where excessive external force or impact force is applied to it. Doing so can cause the product to malfunction.

Usage Precautions

  • *The actual speed of the actuator is affected by the load. Check the model selection and specifications sections in the SMC catalog when selecting a model.
  • *Do not apply load, impact or resistance in addition to the transferred load during return to origin. Doing this may cause displacement to the origin position. This is because the origin position is detected based on the detected motor torque.
  • *The table and guide block are made of a special stainless steel, but can rust when exposed to environments where water droplets can adhere to it.
  • *Do not dent, scratch or otherwise damage the body, table or end-plate mounting surfaces. This may cause unevenness in the mounting surfaces, play in the guide or an increase in the sliding resistance.
  • *Do not dent, scratch or otherwise damage the surface over which the rail and guide will move. This may cause play or an increase in sliding resistance.
  • *Do not apply strong impact or an excessive moment while mounting workpieces. If an external force over the allowable moment is applied, it may cause play in the guide or an increase in the sliding resistance.
  • *Refer to the SMC catalog for product information other than what is detailed above.
  • *The product image is a representative image only.
Part Number
LES8RK-30-R36P3D
Part NumberStandard Unit PriceMinimum order quantityVolume DiscountDays to ShipStroke
(mm)
Max. Transportable Mass Range (Horizontal)
(kg)
Max. Transportable Mass (Horizontal)
(kg)
Max. Transportable Mass Range (Vertical)
(kg)
Max. Transportable Mass (Vertical)
(kg)
Drive Method Lead
(mm)
I/O Module Table Width W1
(mm)
Max. Thrust Force Range
(N)
Max. Thrust Force
(N)
Table Length L1
(mm)
Operating Environment Maximum Velocity
(mm/sec)
Size Motor type Motor mounting position Motor options Mounting support Actuator/cable type Actuator cable length
(m)
Controller/driver type I/O cable length / communication plug
(m)
Controller/driver mounting method

-

1 Piece(s) Quote 300~2.010~2.00.5[Slide Screw] Slide Screw + Belt4PNP32.20~1001588.7Standard2008Step motor (24‑V DC servo)Basic type / R typeNo optionsWithout side holderRobotic cable (flex-resistant cable)3LECP6/LECA6 (step data input type)3DIN rail mounting type

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Basic Information

Main Body, Peripheral Components Main Body Type Slider Guide Provided
Input Power Supply DC24V Position Detection Incremental Brake Not Provided
Noise Filter Not Provided Positioning Repeatability(µm) ±50

Please check the type/dimensions/specifications of the part LES8RK-30-R36P3D in the Electric Slide Table, Compact Type LES Series series.

Similar Part Numbers

Part Number
LES16DAJ-100B
LES16DAJ-100B-R36PD
LES16DAJ-100B-R56P5D
LES8RK-30-R3AN1
LES8RK-30-R3AN1D
LES8RK-30-R3AN3
Part NumberStandard Unit PriceMinimum order quantityVolume DiscountDays to ShipStroke
(mm)
Max. Transportable Mass Range (Horizontal)
(kg)
Max. Transportable Mass (Horizontal)
(kg)
Max. Transportable Mass Range (Vertical)
(kg)
Max. Transportable Mass (Vertical)
(kg)
Drive Method Lead
(mm)
I/O Module Table Width W1
(mm)
Max. Thrust Force Range
(N)
Max. Thrust Force
(N)
Table Length L1
(mm)
Operating Environment Maximum Velocity
(mm/sec)
Size Motor type Motor mounting position Motor options Mounting support Actuator/cable type Actuator cable length
(m)
Controller/driver type I/O cable length / communication plug
(m)
Controller/driver mounting method

-

1 Piece(s) Quote 1002.1~5.030~2.01.5-10Not Provided40.20~10020199.5Standard40016Servo motor (24 V DC)In-line motor type / D typeWith lockWithout side holderWithout cableWithout cableWithout controller/driverWithout cable (without communication plug connector)Screw mounting type

-

1 Piece(s) Quote 1002.1~5.030~2.01.5-10PNP40.20~10020199.5Standard40016Servo motor (24 V DC)In-line motor type / D typeWith lockWithout side holderRobotic cable (flex-resistant cable)3LECP6/LECA6 (step data input type)Without cable (without communication plug connector)DIN rail mounting type

-

1 Piece(s) Quote 1002.1~5.030~2.01.5-10PNP40.20~10020199.5Standard40016Servo motor (24 V DC)In-line motor type / D typeWith lockWithout side holderRobotic cable (flex-resistant cable)5LECP6/LECA6 (step data input type)5DIN rail mounting type

-

1 Piece(s) Quote 300~2.010~2.00.5[Slide Screw] Slide Screw + Belt4NPN32.20~1001588.7Standard2008Step motor (24‑V DC servo)Basic type / R typeNo optionsWithout side holderRobotic cable (flex-resistant cable)3LECPA (pulse input type)1.5Screw mounting type

-

1 Piece(s) Quote 300~2.010~2.00.5[Slide Screw] Slide Screw + Belt4NPN32.20~1001588.7Standard2008Step motor (24‑V DC servo)Basic type / R typeNo optionsWithout side holderRobotic cable (flex-resistant cable)3LECPA (pulse input type)1.5DIN rail mounting type

-

1 Piece(s) Quote 300~2.010~2.00.5[Slide Screw] Slide Screw + Belt4NPN32.20~1001588.7Standard2008Step motor (24‑V DC servo)Basic type / R typeNo optionsWithout side holderRobotic cable (flex-resistant cable)3LECPA (pulse input type)3Screw mounting type

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