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2094-BC02-M02-S

Integrated Axis Module
In Stock

Product Information:

Kinetix 6000 series and is classified as an

Integrated Axis Module (IAM Module). This

device operates effectively within a voltage

class of 400V and includes a safe torque

off feature for added safety

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Technical specifications for 2094-BC02-M02-S

  • Manufacturer:
    Allen-Bradley
  • Product Category:
    PLC System
  • Spare Part Number:
    Kinetix6000
  • Estimated shipping dimensions:
    12.7 cm x 29.2 cm x 25.4 cm
  • Weight:
    5.6 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Product Line:
    Kinetix 6000
  • Voltage Class:
    400V-Class
  • Nominal Voltage Range:
    360-480V
  • Input Voltage Range:
    324-528V RMS
  • Input Frequency:
    47-63 Hz
  • Line Loss Ride-Through Time:
    20 ms
  • Bus Overvoltage:
    825V DC
  • Bus Undervoltage:
    275V DC
  • Stock:
    30

Revisions

Revision Part #

Also known as

2094-BC02-M02-S/A
2094-BC02-M02-S Ser A, Series A, Rev A
2094-BC02-M02-S/B
2094-BC02-M02-S Ser B, Series B, Rev B
2094-BC02-M02-S/C
2094-BC02-M02-S Ser C, Series C, Rev C

Information

Overview Manuals Main Features Primary Applications

Features:

  • The Kinetix 6000 series is an Integrated Axis Module (IAM module)
  • Engineered for high-performance applications
  • This device can operate effectively at a voltage level of 400V and includes a safety torque cut-off function for enhanced safety
The Allen Bradley 2094-BC02-M02-S is an integrated shaft module (IAM) belonging to the acclaimed Kinetix 6000 series. Designed for high-performance applications, this IAM module operates efficiently at 400 volts. A key feature is its safe torque shut-off function, which prevents unintended motor operation, enhancing operational safety.

The module has a nominal voltage range of 360 to 480 volts and accepts input voltages from 324 to 528 volts RMS. Its input frequency range is 47 to 63 Hz, making it compatible with a wide range of electrical systems.

The 2094-BC02-M02-S Allen Bradley Integrated Axis Module may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
Allen Bradley 2094-BC02-M02-S Integrated Axis Module manual(Datasheets), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
When using a common bus follower, the module supports DC input voltages from 458 to 747 volts with a rated current of 22.6 amps. To ensure power stability, the module is equipped with monitoring capabilities to detect 825 volt DC bus overvoltage and 275 volt DC undervoltage. In the event of unexpected line losses, this module provides a 20-millisecond transition time to ensure continuous power supply. To aid energy management, the module incorporates a 115-ohm shunt resistor, which helps improve circuit efficiency.
  • High-speed packaging and labeling: Suitable for machines requiring rapid, synchronized motion and constant tension control.
  • Robotics and automated assembly: Used in multi-axis robotic arms and complex assembly units where precise positioning and reliability are critical.
  • Material handling: Optimizes the efficiency of automated warehouses, high-speed sorting machines, and complex conveyor systems.
  • CNC machining: Achieves unparalleled precision in lathes, milling machines, and other metalworking equipment requiring tight tolerances.

Ask our team:

  • In a servo-driven automation architecture, what roles do the 2094-BC02-M02-S system-level motion control integration and power distribution functions play?
    The 2094-BC02-M02-S is typically considered a component of the motion control subsystem, designed to participate in coordinating servo power distribution, axis-level control integration, and modular drive system architecture within an industrial automation platform.
  • How does the 2094-BC02-M02-S achieve a modular power architecture and scalable drive configuration in a multi-axis servo system?
    The 2094-BC02-M02-S is typically designed as part of a modular drive ecosystem, enabling scalable axis expansion and structured power sharing between interconnected servo modules.
  • In noisy industrial environments, how does the 2094-BC02-M02-S structurally implement electromagnetic compatibility (EMC) engineering?
    The 2094-BC02-M02-S is typically designed with an EMC mitigation framework, including controlled grounding strategies and noise suppression designs, to maintain signal integrity under harsh electrical conditions.
  • What fault detection, diagnostic intelligence, and protective shutdown logic is embedded in the 2094-BC02-M02-S operating framework?
    The 2094-BC02-M02-S is typically associated with an integrated safety and diagnostic architecture capable of detecting overcurrent, overheating, and system-level fault conditions, and triggering protection responses when necessary.
  • How does the 2094-BC02-M02-S ensure thermal stability and heat dissipation efficiency under continuous high-load servo operation?
    The 2094-BC02-M02-S typically employs a thermally sensitive design to promote efficient heat dissipation and prevent heat buildup during sustained high-load operation.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.