
|
Manufacturer |
Schneider Electric |
|
Range of Product |
Lexium 28 |
|
Product or Component Type |
Servo motor |
|
Device short name |
BCH2 |
|
Maximum mechanical speed |
3000 rpm |
|
[Us] rated supply voltage |
220 V |

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08 | Complimentary Emergency Services
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Overview
The BCH2MM0813CA6C is part of the Lexium 28 range, an offer of motion servo drives and servo motors. This brushless servo motor features maximum mechanical speed of 3000RPM, a key shaft end, without holding brake. It is equipped with a 20 bits single turn absolute encoder. It is equipped with military connectors. It is a servo motor with a rated supply voltage of 220V, a continuous stall current of 5.62A and a continuous power of 850W. Shaft end and casing are an IP65 rated. The flange size is 130mm, it is fixed by 4x 9.2mm holes. The circle diameter of the mounting holes is 145mm. It weighs 9.6kg. BCH2 servo motors with Lexium servo drives meet the requirements of production and packaging machinery, material handling and assembly systems. This motor is certified by EN 61800-5-1 2007, EN 60034-1 201O/AC 2010 standards, and conforms to EU CE, UKCA, CSA, and UL. This servo motor is compatible with LXM26D and LXM28 servo drive at 0.85kW, 220V, and with encoder cables and power cables. This is a shielded power motor cable for BSH servo motors. Permitted mounting positions are horizontal mounting (IMB5), vertical mounting (IMV1, IMV3) in accordance with IEC 60034-7. Lexium 28 servo drives and Lexium BCH2 servo motors are Optimized servo bundles for compact machines. Designed for optimized & cost-effective.
Specifications
|
Continuous stall current |
5.62 A |
|
Continuous power |
850 W |
|
Maximum current Irms |
14.96 A LXM28... 0.85 kW, 220 V |
|
Maximum permanent current |
6.29 A |
|
Shaft end |
Keyed |
|
Shaft diameter |
0.7 in (19 mm) |
|
Shaft length |
1.9 in (48 mm) |
|
Key width |
0.2 in (6 mm) |
|
Feedback type |
20 bits single turn absolute encoder |
|
Holding brake |
Without |
|
Motor flange size |
5.1 in (130 mm) |
|
Electrical connection |
Connector MIL |
|
Torque constant |
0.96 N.m/A 68 °F (20 °C) |
|
Back emf constant |
58 V/krpm 68 °F (20 °C) |
|
Number of motor poles |
5.0 |
|
Rotor inertia |
13.5 kg.cm² |
|
Stator resistance |
0.34 Ohm 68 °F (20 °C) |
|
Stator inductance |
4.3 mH 68 °F (20 °C) |
|
Stator electrical time constant |
13.24 ms 68 °F (20 °C) |
|
Maximum radial force Fr |
670 N 1500 rpm |
|
Maximum axial force Fa |
200 N |
|
Brake pull-in power |
19.7 W |
|
Type of cooling |
Natural convection |
|
Length |
7.4 in (187 mm) |
Dimensions Drawings
|
|
||
|
L (without holding brake) |
187mm |
7.36in |
|
L (with holding brake) |
216mm |
8.5in |
|
Z |
134.5mm |
5.3in |
Schneider BCH2MM0813CA6C FAQ
|
Question 1: |
What key engineering characteristics make the Schneider BCH2MM0813CA6C an ideal servo motor for precision motion control applications? |
|
Answer: |
The Schneider BCH2MM0813CA6C is designed to deliver high-precision positioning, excellent torque stability, and rapid dynamic response. Its optimized electromagnetic design ensures smooth motion and reliable performance in demanding industrial automation systems. |
|
Question 2: |
How does the Schneider BCH2MM0813CA6C optimize motion accuracy and repeatability in automated manufacturing environments? |
|
Answer: |
The Schneider BCH2MM0813CA6C features precise rotor control and responsive feedback capabilities, enabling exceptional positioning accuracy, repeatability, and synchronized motion for high-speed production equipment. |
|
Question 3: |
Which automation systems and industrial applications are best suited for the Schneider BCH2MM0813CA6C? |
|
Answer: |
The Schneider BCH2MM0813CA6C is widely applied in CNC machinery, robotic systems, packaging equipment, semiconductor manufacturing, textile machines, and automated assembly lines where precise servo control is essential. |
|
Question 4: |
Why should engineers consider the Schneider BCH2MM0813CA6C when designing high-efficiency servo drive solutions? |
|
Answer: |
The Schneider BCH2MM0813CA6C combines efficient power conversion, stable torque output, and compact mechanical construction, allowing engineers to improve machine productivity while reducing energy consumption and maintenance requirements. |
|
Question 5: |
What installation and compatibility factors should be evaluated before integrating the Schneider BCH2MM0813CA6C into a motion control system? |
|
Answer: |
Before deploying the Schneider BCH2MM0813CA6C, engineers should verify servo drive compatibility, rated voltage, encoder interface, mounting dimensions, shaft specifications, and operating environment to ensure optimal system performance and long-term operational reliability. |
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