The KUKA LBR iiwa is a highly precise, 7-axis collaborative robot in two payload versions (7 kg and 14 kg). Known for its advanced joint torque sensors, it reacts instantly to human proximity for safe shared workspaces. With ±0.1 mm repeatability, an IP54 design, and flexible mounting options, it’s engineered for responsive, delicate industrial automation.
The LBR iiwa is a state-of-the-art lightweight collaborative robot designed for safe, efficient human-robot interaction. Equipped with seven axes and advanced joint torque sensors, it delivers exceptional precision, sensitivity, and flexibility for a wide range of industrial applications. The smartPAD control panel offers intuitive operation, enabling seamless programming and deployment even in complex workflows.
Key Features:
Collaborative Safety: Sensitive joint torque sensors detect contact instantly, ensuring safe, unguarded operation.
Flexible Motion: Seven axes for enhanced reach, dexterity, and adaptability in tight workspaces.
High Precision: Ideal for delicate assembly, testing, and handling of fragile components.
Two Payload Options: Available in 7 kg and 14 kg models for different application needs.
Intuitive Control: smartPAD touchscreen for easy programming, monitoring, and operation.
Lightweight Design: Optimized for easy integration into various production environments.
Industrial Specific
Attribute
Value
Description
Why It Matters
Degrees of Freedom
N/A
Number of controllable axes
Task complexity capability
Reach
Maximum working radius (mm)
Workspace coverage
Speed
Maximum joint velocity (°/s)
Cycle time optimization
Acceleration
N/A
Maximum joint acceleration
Dynamic response
Force Control
N/A
Force sensing capability
Assembly applications
Tool Compatibility
N/A
Supported end effectors
Application versatility
Safety Rating
N/A
Safety integrity level
Human-robot collaboration
Cleanroom Compatible
N/A
Clean environment certification
Semiconductor & pharma use
Explosion Rating
N/A
Hazardous environment certification
Chemical, oil & gas use
Programming Methods
N/A
Online/offline programming
Deployment flexibility
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