sBot Speed URe Safety Software Compatible with Universal SICK
SICK sBot Speed URe Safety Software Compatible features Universal Robots UR3e, UR5e, UR10e, UR16e. Performance level PL d (ISO 13849-1).
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- Variant: sBot Speed – URe
- Product type: Software
- Robot controller compatibility: Universal Robots UR3e, UR5e, UR10e, UR16e
- Communication interface: Discrete I/Os
- Safety outputs default to logic 0 in fault condition
- Safety task: Hazardous area protection
- Performance level: PL d (ISO 13849-1)
- Includes Flexi Soft Designer project file, Safety Designer pre-configuration, I/O Safety communication settings, and UR-specific settings
- Dimensions (H x L x W): 50mm x 200mm x 150mm
- Weight: 0.5 kg
- Compatible with Universal Robots UR3e, UR5e, UR10e, UR16e
- Safety controller type: Programmable
- Performance level PL d (ISO 13849-1)
- Emergency stop with shutdown and prevention of unexpected restart
- Automated reset and restart with safe sequence monitoring, optional manual reset
- Safety-rated monitored speed triggering
- Operating mode selection and manual enabling device implemented in robot control
- Includes software project files, operating instructions, connection diagram, SISTEMA file, and quick reference guide
- Installation and configuration should be performed by qualified safety engineers or certified personnel familiar with Universal Robots and SICK safety software.
- Industrial automation with Universal Robots UR3e, UR5e, UR10e, UR16e
- Hazardous area protection in robotic work cells
- Safety control integration with nanoScan3 Pro I/O safety laser scanner
- AS/NZS 4801 – Occupational Health & Safety Management Systems
- Enhances safety to reduce risk of accidents and associated environmental hazards
- Supports efficient robot operation reducing downtime and energy waste
Standard manufacturer warranty applies. Please refer to SICK's warranty policy for software products.
SICK sBot Speed – URe Safety Software is available for immediate purchase, ideal for industrial robotic safety applications with Universal Robots.
