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Yaskawa JANCD-XCP01-1 Controller Module
Yaskawa JANCD-XCP01-1 Controller Module
Yaskawa JANCD-XCP01-1 Controller Module
Yaskawa JANCD-XCP01-1 Controller Module
Popular Product

Yaskawa JANCD-XCP01-1 Controller Module


Manufacturer: Yaskawa

Product Number: JANCD-XCP01-1

Category: CPU Control Board

System Compatibility: Motoman XRC series robot controllers (e.g., XRC 2001)

Function: Core component of robotic systems processing motion programs and I/O control

Processor: High-performance CPU

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Product Description

The Yaskawa JANCD-XCP01-1 is a high-performance CPU control board designed for industrial automation, specifically optimized for Motoman XRC series robot controllers (e.g., XRC 2001). As the core component of robotic systems, the JANCD-XCP01-1 manages motion control, real-time data processing, and communication, ensuring seamless operation in manufacturing, automotive, and industrial automation environments. It integrates a 66 MHz Motorola XPC 105 processor, 16 MB DRAM, and 1 MB SRAM, paired with a CompactFlash slot for program storage and expansion. The module includes the JANCD-XIF03-1 Ethernet interface card (for TCP/IP communication) and JANCD-XMM01-2 storage subcard, enabling flexible connectivity and data management. Its rugged industrial design supports operation in harsh conditions, making it a reliable choice for mission-critical applications.

Product Parameters

Parameter Specification
Type Robot Controller CPU Board (VME Module)
Processor 66 MHz Motorola XPC 105
Memory 16 MB DRAM + 1 MB SRAM
Storage CompactFlash Slot (Program Storage/Expansion)
Interfaces RS-232C, Ethernet (via JANCD-XIF03-1 Subcard)
Compatibility Motoman XRC Series Controllers (e.g., XRC 2001)
Dimensions 24 cm (L) × 19 cm (W) × 5 cm (H)
Weight 0.5 kg
Power Supply 24 VDC (Controller-Dependent)
Warranty 12 Months (Refurbished Units, Vendor-Specific)

Advantages and Features

  • High Performance: 66 MHz processor ensures rapid motion trajectory calculation and real-time IO processing, supporting up to 10 MBPS Ethernet communication (vs. 9600 bps serial), minimizing latency.
  • Flexible Expansion: Modular design with subcard slots (e.g., Ethernet, storage) allows easy integration of protocols (Modbus, TCP/IP) and capacity upgrades.
  • Industrial Reliability: Rugged construction withstands vibrations, dust, and temperature fluctuations (industrial-grade standards), ensuring 99.9% uptime in factory environments.
  • User-Friendly Maintenance: CompactFlash slot enables quick program updates; built-in diagnostics simplify troubleshooting.

Application Fields and Case Studies

  • Industry Applications: Automotive assembly, welding, material handling, and general industrial robotics.
  • Case Study: A leading automotive manufacturer deployed the JANCD-XCP01-1 in a welding robot cell. The module’s Ethernet connectivity and real-time control reduced cycle time by 15%, while its compact design saved 30% panel space compared to legacy systems.

Competitor Comparison

Compared to similar CPU boards, the JANCD-XCP01-1 offers:

  • Faster Processing: 66 MHz vs. typical 50 MHz processors in comparable modules.
  • Integrated Connectivity: Built-in Ethernet (via subcard) eliminates the need for add-on adapters, reducing cost and complexity.
  • Long-Term Support: Backed by Yaskawa’s global service network, ensuring compatibility with legacy XRC systems and future software updates.

Selection Recommendations

  • Compatibility: Verify controller model (XRC series) and subcard requirements (e.g., JANCD-XIF03-1 for Ethernet).
  • Expansion Needs: Assess program storage (CompactFlash) and IO requirements; pair with optional subcards for advanced features.
  • Budget: Balance new vs. refurbished units (refurbished units offer 12-month warranty at 30–50% cost savings).

Precautions

  • Battery Maintenance: Replace the internal lithium battery (for SRAM backup) every 5–7 years; ensure data backup before replacement.

  • Installation: Follow ESD (electrostatic discharge) protocols; use authorized technicians for installation.

  • Software Updates: Regularly update firmware via Yaskawa’s official tools to enhance security and performance.

Popular Product

Yaskawa JANCD-XCP01-1 Controller Module

Manufacturer: Yaskawa

Product Number: JANCD-XCP01-1

Category: CPU Control Board

System Compatibility: Motoman XRC series robot controllers (e.g., XRC 2001)

Function: Core component of robotic systems processing motion programs and I/O control

Processor: High-performance CPU

Contact Sales

Product Description

The Yaskawa JANCD-XCP01-1 is a high-performance CPU control board designed for industrial automation, specifically optimized for Motoman XRC series robot controllers (e.g., XRC 2001). As the core component of robotic systems, the JANCD-XCP01-1 manages motion control, real-time data processing, and communication, ensuring seamless operation in manufacturing, automotive, and industrial automation environments. It integrates a 66 MHz Motorola XPC 105 processor, 16 MB DRAM, and 1 MB SRAM, paired with a CompactFlash slot for program storage and expansion. The module includes the JANCD-XIF03-1 Ethernet interface card (for TCP/IP communication) and JANCD-XMM01-2 storage subcard, enabling flexible connectivity and data management. Its rugged industrial design supports operation in harsh conditions, making it a reliable choice for mission-critical applications.

Product Parameters

Parameter Specification
Type Robot Controller CPU Board (VME Module)
Processor 66 MHz Motorola XPC 105
Memory 16 MB DRAM + 1 MB SRAM
Storage CompactFlash Slot (Program Storage/Expansion)
Interfaces RS-232C, Ethernet (via JANCD-XIF03-1 Subcard)
Compatibility Motoman XRC Series Controllers (e.g., XRC 2001)
Dimensions 24 cm (L) × 19 cm (W) × 5 cm (H)
Weight 0.5 kg
Power Supply 24 VDC (Controller-Dependent)
Warranty 12 Months (Refurbished Units, Vendor-Specific)

Advantages and Features

  • High Performance: 66 MHz processor ensures rapid motion trajectory calculation and real-time IO processing, supporting up to 10 MBPS Ethernet communication (vs. 9600 bps serial), minimizing latency.
  • Flexible Expansion: Modular design with subcard slots (e.g., Ethernet, storage) allows easy integration of protocols (Modbus, TCP/IP) and capacity upgrades.
  • Industrial Reliability: Rugged construction withstands vibrations, dust, and temperature fluctuations (industrial-grade standards), ensuring 99.9% uptime in factory environments.
  • User-Friendly Maintenance: CompactFlash slot enables quick program updates; built-in diagnostics simplify troubleshooting.

Application Fields and Case Studies

  • Industry Applications: Automotive assembly, welding, material handling, and general industrial robotics.
  • Case Study: A leading automotive manufacturer deployed the JANCD-XCP01-1 in a welding robot cell. The module’s Ethernet connectivity and real-time control reduced cycle time by 15%, while its compact design saved 30% panel space compared to legacy systems.

Competitor Comparison

Compared to similar CPU boards, the JANCD-XCP01-1 offers:

  • Faster Processing: 66 MHz vs. typical 50 MHz processors in comparable modules.
  • Integrated Connectivity: Built-in Ethernet (via subcard) eliminates the need for add-on adapters, reducing cost and complexity.
  • Long-Term Support: Backed by Yaskawa’s global service network, ensuring compatibility with legacy XRC systems and future software updates.

Selection Recommendations

  • Compatibility: Verify controller model (XRC series) and subcard requirements (e.g., JANCD-XIF03-1 for Ethernet).
  • Expansion Needs: Assess program storage (CompactFlash) and IO requirements; pair with optional subcards for advanced features.
  • Budget: Balance new vs. refurbished units (refurbished units offer 12-month warranty at 30–50% cost savings).

Precautions

  • Battery Maintenance: Replace the internal lithium battery (for SRAM backup) every 5–7 years; ensure data backup before replacement.

  • Installation: Follow ESD (electrostatic discharge) protocols; use authorized technicians for installation.

  • Software Updates: Regularly update firmware via Yaskawa’s official tools to enhance security and performance.

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