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Schneider Electric BCH0602O12A1C Lexium BCH Series Servo Motor

Schneider Electric BCH0602O12A1C Lexium BCH Series Servo Motor

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Brand:Schneider PLC
Item No.:Schneider Electric BCH0602O12A1C
Product Origin:France
Product Dimensions:130.7 mm
Product Weight:1.6 kg
Payment:T/T, Western Union, Credit Card
Goods_stock:15
Shipping Port:Xiamen, China
Lead Time:1-3 Days
Condition:Brand New And Original
Warranty:1 Year
Certificate:COO

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140ACI03000 4140ACI03000 2140ACI03000 3140ACI03000

The Schneider Electric BCH0602O12A1C is a 0.4 kW (400 W) AC servo motor from the Lexium BCH series, designed for compact and precise motion control applications in industrial automation systems.

It is widely used in packaging machinery, labeling systems, small robotics, pick-and-place units, textile equipment, and light CNC applications, where stable torque, fast response, and accurate positioning are more important than high power output.

This model is part of the Lexium 23 Plus servo ecosystem, enabling seamless pairing with Schneider servo drives for synchronized multi-axis control. Its 60 mm flange design and 20-bit encoder feedback system ensure high-resolution positioning and smooth dynamic performance in compact machine layouts.


Technical Specifications

ParameterSpecification
ModelBCH0602O12A1C
SeriesLexium BCH
Device TypeAC Servo Motor
Rated Power0.4 kW (400 W)
Rated Voltage220 V AC, single-phase
Rated Current2.6 A (continuous stall current)
Rated Speed3000 rpm
Maximum Speedup to 5000 rpm
Rated Torqueapprox. 1.27 N·m (typical class value)
Peak Torqueup to ~3.8 N·m
Encoder Type20-bit incremental encoder
BrakeWithout holding brake
Shaft TypeKeyed shaft (14 mm)
Cooling MethodNatural convection
Mounting60 mm flange industrial standard
Protection ClassIP40 (typical configuration)

Physical Dimensions & Weight

AttributeValue
Motor Length130.7 mm
Flange Size60 mm
Shaft Diameter14 mm
Key Size5 mm
Weightapprox. 1.6 kg

The structure is optimized for medium-inertia motion systems requiring a balance of speed, torque, and installation flexibility.


Recommended Related Models

  • Schneider BCH0602O12F1C – brake-equipped version for vertical axis control
  • Schneider BCH0601O12A1C – lower power compact variant
  • Schneider BCH0801O12A1C – higher torque 60–80 mm class motor
  • Lexium 23 Plus Servo Drives – matched control platform
  • Lexium 32 Servo System – higher-performance motion upgrade

Popular Schneider Electric Motion Products

  • Lexium BCH Servo Motor Series
  • Lexium 23 Plus Servo Drives
  • Lexium 32 Advanced Motion Systems
  • Lexium ILA Integrated Servo Drives
  • PacDrive automation platforms 


Applications

The BCH0602O12A1C is commonly used in:

  • Packaging and labeling machines
  • Small robotic automation systems
  • Electronic assembly equipment
  • Textile and printing machinery
  • Light CNC and engraving systems
  • Precision pick-and-place equipment

It is particularly effective in applications requiring high positioning accuracy, compact integration, and stable low-speed control.


Advantages

  • High-resolution 20-bit encoder feedback system
  • Compact 60 mm flange for space-saving installation
  • Stable torque output across low and medium speeds
  • Fast acceleration and deceleration response
  • Compatible with Lexium motion control ecosystem
  • Lightweight design for multi-axis systems
  • Reliable performance in continuous industrial operation
  • Optimized for precision automation tasks


Technical FAQs

1. What is the power rating of BCH0602O12A1C?
It is a 0.4 kW (400 W) servo motor.

2. What is the maximum speed?
Up to 5000 rpm.

3. Does it include a brake?
No, this model does not include a holding brake.

4. What encoder does it use?
A 20-bit high-resolution incremental encoder.

5. What is the flange size?
60 mm standard industrial flange.

6. What is the shaft diameter?
14 mm keyed shaft.

7. What drive is compatible?
Schneider Lexium 23 Plus servo drives.

8. What industries use it?
Packaging, robotics, electronics manufacturing, and light automation.

9. Is it suitable for heavy loads?
No, it is designed for light-to-medium precision motion systems.

10. Why is it widely used in automation?
Because it combines compact structure with high-resolution feedback and stable motion control.


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