Co-Lab Context

Market context

KABAM Autonomous Mobile Robot Platform is a service AMR platform for security, patrol and public-space operations.

  • Target environment: Smart buildings, transport hubs, industrial sites and public facilities.
  • Workflow context: Patrol, security monitoring, concierge support, remote operations and facility workflows.
  • Customer context: Facility owners, security operators, property managers and transport infrastructure teams.
  • Deployment model: Robot platform and managed robotics solution model.
  • Commercial maturity: Development-to-commercial platform with public product and solution material but limited model-level specifications.
  • Adoption constraints: Adoption depends on navigation reliability, integration with elevators and building systems, security workflow fit and support coverage.
  • Market position: Commercial service-robot platform connected to KABAM's smart-building and security robotics work.
  • Adjacent products: PUDU D7, Cobalt robot, K5

Audience

Facilities

Workflow

Patrol, security monitoring, concierge support, remote operations and facility workflows.

Deployment environment

Smart buildings, transport hubs, industrial sites and public facilities.

Specifications

  • Diameter Mm: 710 ± 10 mm
  • Dimensions: height mm: 1500 mm; 2000 mm with mast extended
  • Weight: 80 kg
  • Range: lidar range m: 25 m; depth camera count: 2 cameras
  • Sensor System: ultrasonic sensor count: 6 sensors; cliff sensor count: 3 sensors
  • Features: mapping area: Up to 500 × 500 m; charging time h: 3–5 h
  • Max Speed: speed range mps: 0.3–0.7 m/s
  • Runtime: Up to 7 h
  • Battery: 24 V, 32 Ah lithium-ion
  • Operating Characteristics: operating temperature: 0 to 40 °C

Tags

  • Peer Group: Wheeled autonomous inspection and patrol robot
  • Workflow: Security patrol workflow, Mobile security patrol
  • Capability: Autonomous navigation, Human-robot interaction
  • Deployment Environment: Public interaction space
  • Stack Layer: Finished robot platform

Comparable Systems

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