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RSM Marketplace - End Of Arm Tooling

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  • These grippers are specially developed using the 3D printing process. They have internal vacuum generation capabilities and can be customized to suit specific needs, a cutting-edge solution , durable

    a cutting-edge solution 3D printed grippers

    ✓ Gripper specially developed using the 3D printing process  
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    These grippers are specially developed using the 3D printing process.
    They have internal vacuum generation capabilities and can be customized to suit specific needs.

    Customizable design: The grippers can be 3D printed to fit a wide range of objects
    and are customizable to meet the specific requirements of your application.

     

    Lightweight: The grippers are 3D printed using high-strength, lightweight materials,
    making them easy to manipulate and reducing the load on the robotic arm.

     

    Durable: The grippers are designed to withstand the rigors of industrial environments
    and provide long-lasting performance.

     

    Cost-effective: 3D printing technology allows for faster production and lower costs
    compared to traditional manufacturing methods.

     

    With their advanced design and 3D printing technology, the grippers offer a cost-effective
    and customizable solution for robotic grasping and manipulation.

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  • Multiple-removal gripper is a revolutionary solution for efficient and precise part removal in industrial automation applications. This gripper is designed to remove 32 razor blade covers at once. It uses tubular gripper profiles and has the advantage of several suction pads that can be connected to one vacuum source.

    Robot Components

    A revolutionary solution – Multiple-removal gripper

    ✓ Adaptation of existing gripping systems ✓ Safe component removal ✓ Precise removal process
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    Multiple-removal gripper is a revolutionary solution for efficient and precise part removal in industrial automation applications.
    This gripper is designed to be lightweight, durable and customizable,
    making it ideal for a wide range of applications.

    This gripper is designed to remove 32 razor blade covers at once.
    It uses tubular gripper profiles and has the advantage of several suction pads that can
    be connected to one vacuum source.

     

    Multiple-part removal: The gripper is designed to remove multiple parts at once,
    making it ideal for high-volume production lines.

     

    Customizable design: The AGS Multiple-removal gripper can be customized to fit a wide range of objects
    and is built to meet the specific requirements of your application.

     

    Lightweight: The gripper is 3D printed using high-strength, lightweight materials,
    making it easy to manipulate and reducing the load on the robotic arm.

     

    Durable: The gripper is designed to withstand the rigors of industrial environments
    and provide long-lasting performance.

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  • Grinding

    AIR10-1420

    13.339,00
    This robot is known for its: • High speed • High precision and high stability • Strength Can be used…
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    Key features:
    Weight: 160 Kg
    Repeatability: ±0.02mm
    Working range:
    Axis 1 rotation: -170°/+170°
    Axis 2 arm: -85°/+150°
    Axis 3 arm: -95°/+170°
    Axis 4 wrist: -195°/+195°
    Axis 5 bend: -135°/+135°
    Axis 6 turn: -360°/+360°

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  • RB0164x0006x001_AIR7-920

    Grinding

    AIR7-920

    12.479,00
    This robot is known for its: • High speed • High precision • Bigger payload & longer robot reach. •…
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    Key features:
    Weight: 53 Kg
    Repeatability: ±0.02mm
    Working range:
    Axis 1 rotation: -170°/+170°
    Axis 2 arm: -100°/+135°
    Axis 3 arm: -120°/+156°
    Axis 4 wrist: -200°/+200°
    Axis 5 bend: -135°/+135°
    Axis 6 turn: -360°/+360°

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  • AUBO I10

    Assembly

    AUBO I10

    23.000,00
    What makes him unique: • Lightweight • Easy to use • Excellent performance • Cost effective • Versatile
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    Weight: 37 kg
    Lifetime: 30000h
    Ambiant humidity: 25%-85%
    Ambiant temperature: 0-45°
    Repeatability: ± 0.01 mm
    Communication: CAN bus
    Motor type: DC 48V
    Axis movement:
    J1 Axis Base: ±175°
    J2 Axis Shoulder: ±175°
    J3 Axis Elbow: ±175°
    J4 Axis Wrist: ±175°
    J5 Axis Wrist: ±175°
    J6 Axis Wrist: ±175°
    Control Box:
    Communication: Ethernet, Modbus -RTU /TCP
    Interface: SDK(Support C/C++/ Lua/Python) Support ROS API
    Teach pendant:
    IP classification: IP54

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  • AUBO-I16

    Assembly

    AUBO I16

    26.000,00
    What makes him unique: • Lightweight • Easy to use • Excellent performance • Cost effective • Versatile
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    Weight: 38 kg
    Lifetime: 30000h
    Ambient humidity: 25%-85%
    Ambient Temperature: 0-45°C
    Repeatability: ±0.1
    Communication: CAN bus
    Motor type: DC 48V
    Axis movement:
    J1 Axis Base: ±175°
    J2 Axis Shoulder: ±175°
    J3 Axis Elbow: ±175°
    J4 Axis Wrist: ±175°
    J5 Axis Wrist: ±175°
    J6 Axis Wrist: ±175°
    Control Box:
    Communication: Ethernet, Modbus -RTU /TCP
    Interface: SDK(Support C/C++/ Lua/Python) Support ROS API
    Teach pendant:
    IP classification: IP54

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  • AUBO I3

    Assembly

    AUBO I3

    15.215,00
    What makes him unique: • Lightweight • Easy to use • Excellent performance • Cost effective • Versatile
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    Weight: 15.5 kg
    Lifetime: 30000h
    Ambient humidity: 25%-85%
    Ambient temperature: 0-45°
    Repeatability: ± 0.02 mm
    Communication: CAN bus
    Motor type: DC 48V
    Axis movement:
    J1 Axis Base: ±175°
    J2 Axis Shoulder: ±175°
    J3 Axis Elbow: ±175°
    J4 Axis Wrist: ±175°
    J5 Axis Wrist: ±175°
    J6 Axis Wrist: ±175°
    Control Box:
    Communication: Ethernet, Modbus -RTU /TCP
    Interface: SDK(Support C/C++/Lua/Python)Support ROS API
    Teach pendant:
    IP classification: IP54

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  • AUBO I5

    Assembly

    AUBO I5

    16.915,00
    What makes him unique: • Lightweight • Easy to use • Excellent performance • Cost effective • Versatile
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    Weight: 24 kg
    Lifetime: 30000h
    Ambient humidity: 25%-85%
    Ambient temperature: 0-45°
    Repeatability: ± 0.02 mm
    Communication: CAN bus
    Motor type: DC 48V
    Axis movement:
    J1 Axis Base: ±175°
    J2 Axis Shoulder: ±175°
    J3 Axis Elbow: ±175°
    J4 Axis Wrist: ±175°
    J5 Axis Wrist: ±175°
    J6 Axis Wrist: ±175°
    Control Box:
    Communication: Ethernet, Modbus -RTU /TCP
    Interface: SDK(Support C/C++/ Lua/Python) Support ROS API
    Teach pendant:
    IP classification: IP54

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  • automation cell system_conveyor system

    Full System

    Automation cell service for screw driving application: Conveyor system

    The service includes the following: • Robot with Conveyor • Integrated Auto Feed • Drive Tool, • Frame • Safety Light Curtain
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    The conveyor system has the built-in flexibility to be installed on a new or existing conveyor.
    The standard system is provided with stop gate and lift out station to provide the utmost accuracy during the screw driving process.
    This system has as its foundation a steel base and Allen Bradley PLC and HM.
    Some key features:
    Packaged components are:
    • Choice of Driver
    • Choice of robot type
    • Integrated Auto Feed screw feeding system with 1L or 3L
    bowl size
    • Conveyor: System may be provided with or without conveyor
    • Frame: Steel base and aluminium enclosure, frame wraps around conveyor, safety latched doors, sliding drawer for auto feed system.
    • Controls1: PLC, HMI, safety related devices
    • Lift out station: To stop pallet and fix its orientation prior to screw driving application
    Geographic footprint for automation is North America only (USA, Canada, & Mexico)

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  • Automation cell service for screw driving applicationAutomation cell service for screw driving application

    Full System

    Automation cell service for screw driving application: Robot package

    The service includes the following: • Robot •  Integrated Auto Feed •  Drive Tool The package comes complete with: •…
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    Some key features:
    The packaged components are:
    •  Choice of Driver
    •  Integrated Auto Feed screw feeding system with 1L or 3L bowl size
    •  Choice of robot type
    •  Single or dual stroke pneumatic slide for screw placement
    •  Controls Options:
    •  On-board Robot PLC
    •  Standard controls package is
    Allen Bradley, other manufacturers
    available upon request
    Geographic footprint for automation is North America only (USA, Canada, & Mexico)

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  • Automation cell service for screw driving application: Turntable System

    Full System

    Automation cell service for screw driving application: Turntable System

    The service includes the following: • Robot with Turntable • Integrated Auto Feed • Drive Tool • Frame • Safety Light Curtain
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    The turntable system is designed for optimal efficiency. While the operator is loading the new components,
    the robot is simultaneously assembling the presented components via the turntable.
    This leads to almost zero downtime for the machine, providing peak throughput.
    Some key features:
    The Turntable System components are:
    • Choice of Driver
    • Choice of robot type
    • Integrated Auto Feed screw feeding system with 1L or 3L bowl size
    • Indexing turntable : Choice of 2, 4, or more stations
    • Frame: Steel base and aluminium enclosure, sliding drawer for Auto Feed system
    • Controls1: PLC, HMI, safety related devices
    Geographic footprint for automation is North America only (USA, Canada, & Mexico)

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  • Automation cell service for screw driving application: Fixed Table System

    Full System

    Automation cell service for screw driving: Fixed table system

    The service includes the following: • Robot with Fixed Table • Integrated Auto Feed • Drive Tool • Frame •…
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    Some key features:
    At the foundation of the table system is a heavy duty steel base, industrial robot, auto feed screw feeding system, and driver of choice.
    These robust components are managed by an Allen Bradley control architecture that features HMI, PLC, and
    network connectivity. The fixed table provides ample work space for large assemblies, or for the nesting of several small assemblies.
    Geographic footprint for automation is North America only (USA, Canada, & Mexico)

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