Robotics - Accessories

Image Part Number Description / PDF Quantity Rfq
301555

301555

SCHUNK

INK 40/S PNP CLOSER

0

305515

305515

SCHUNK

AS-IN40-MPG+ 32

0

301035

301035

SCHUNK

MMSK 22-S-NPN

0

1359384

1359384

SCHUNK

AUB CO-ACT EGP 50/32

0

324785

324785

SCHUNK

TCU-JGZ 80

0

1407984

1407984

SCHUNK

AKO FGA ISO 31.5 VB 25 PNP KIT

0

324799

324799

SCHUNK

TCU-JGZ 100

0

305545

305545

SCHUNK

AS-IN40-MPG+ 64

0

301033

301033

SCHUNK

MMS 22-S-M8-NPN

0

301371

301371

SCHUNK

MMSK-P 22-S-PNP

0

301474

301474

SCHUNK

IN 40-S-M8-PNP NORMALLY OPEN

0

1359388

1359388

SCHUNK

AUB CO-ACT EGP 64/20

0

301032

301032

SCHUNK

MMS 22-S-M8-PNP

0

303083

303083

SCHUNK

AS-KGG 80-30

0

1359380

1359380

SCHUNK

AUB CO-ACT EGP 50/16

0

1312860

1312860

SCHUNK

AGE-U 050

0

303084

303084

SCHUNK

AS-KGG 80-60

0

301484

301484

SCHUNK

IN 40-O-M8-PNP NOMARLLY CLOSED

0

301034

301034

SCHUNK

MMSK 22-S-PNP (OPEN WIRES)

0

1406047

1406047

SCHUNK

ISO 31.5 P22 ADAPTER

0

Robotics - Accessories

1. Overview

Robotics accessories are critical components that enhance the functionality, efficiency, and adaptability of industrial robots. These accessories include mechanical, electrical, and software-based systems that enable robots to perform specialized tasks in manufacturing, logistics, healthcare, and other sectors. As industries transition toward smart factories and Industry 4.0, robotics accessories have become essential for optimizing precision, speed, and automation flexibility.

2. Main Types and Functional Classification

Type Functional Features Application Examples
End-Effectors Tooling devices for grasping, cutting, welding, or sensing (e.g., grippers, suction cups, welding torches) Automotive assembly lines, PCB component handling
Sensors Position, force, vision, and proximity sensors for real-time feedback Collision detection in robotic arms, 3D vision for quality inspection
Drive Systems Actuators, motors, and controllers for motion control High-precision CNC machine tool integration
Connectivity Modules Industrial communication protocols (Ethernet/IP, PROFINET, Modbus) Multi-robot coordination in warehouse automation
Safety Components Emergency stop circuits, light curtains, and safety PLCs Human-robot collaboration (HRC) cells

3. Structure and Components

A typical robotics accessory system consists of:

  • Mechanical Interface: Mounting flanges, couplings, and modular joints for tool exchange
  • Electronic Control Unit: Embedded microcontrollers or DSPs for signal processing
  • Power Transmission: Servo drives, pneumatic/hydraulic systems for actuation
  • Communication Layer: Fieldbus modules and wireless transceivers
  • Protective Housing: Aluminum/steel enclosures with IP65+ rating for industrial environments

4. Key Technical Specifications

Parameter Description Importance
Load Capacity Maximum weight an end-effector can handle (0.5 500 kg range) Determines application suitability for heavy-duty tasks
Positioning Accuracy 0.01 to 0.5 mm tolerance levels Directly impacts product quality in precision manufacturing
Response Time Signal processing delay (2 200 ms) Crucial for high-speed operations like pick-and-place
Environmental Resistance Operating temperature (-20 C to 85 C), vibration/shock tolerance Ensures reliability in harsh industrial conditions
Protocol Compatibility Support for ROS, OPC UA, or vendor-specific protocols Enables seamless integration with existing automation systems

5. Application Fields

Major industries utilizing robotics accessories include:

  • Automotive: Robotic welding guns, torque-controlled nutrunners
  • Electronics: Micro-grippers for SMD component placement
  • Logistics: Vision-guided AGV navigation systems
  • Healthcare: Surgical robot force-feedback sensors
  • Food & Beverage: Hygienic stainless steel grippers for packaging

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
ABB Robotics FlexPicker IRB 360 Delta robot with integrated vision system
FANUC America ROBOTMATE LR Mate 200iD Modular tool-changing system for machine tending
KUKA AG KR 1000-2 PA High-precision palletizing accessory package
Omron Adept Quattro s650H Parallel kinematics with EtherCAT interface
Universal Robots UR16e with URCap SDK Collaborative robot with third-party accessory integration

7. Selection Recommendations

Key considerations for selecting robotics accessories:

  • Application Requirements: Match load capacity and precision to task needs
  • Environmental Conditions: Choose appropriate ingress protection (IP) ratings
  • System Compatibility: Verify communication protocol and mounting standards
  • Maintenance Costs: Prioritize modular designs for easy replacement
  • Future-Proofing: Select accessories supporting IIoT and predictive maintenance

Case Study: A food packaging facility selected IP69K-rated vacuum grippers with stainless steel construction to meet USDA hygiene standards while maintaining 120 cycles/minute throughput.

8. Industry Trends

Emerging developments include:

  • Smart Accessories: Integration of AI algorithms for adaptive gripping
  • Collaborative Systems: Force-limited end-effectors for direct human interaction
  • Wireless Connectivity: Bluetooth 5.0 and 5G-enabled real-time control
  • Energy Efficiency: Regenerative braking systems in servo drives
  • Modular Platforms: Universal tooling systems for rapid reconfiguration

Market forecasts indicate a 9.8% CAGR for robotics accessories through 2030, driven by demand in SME automation and advanced robotics-as-a-service (RaaS) models.

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