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FlashBot Arm

FlashBot Arm

FlashBot Arm by Pudu Robotics is a semi-humanoid AI service robot with 2 dexterous hands, featuring autonomous navigation and natural interaction for commercial deliveries | APAROBOT
Software Type
Closed Source
Software Package
FlashBot Arm runs advanced embodied AI software integrating large language models for conversational interaction, real-time perception, dynamic motion planning, whole-body control, and autonomous task execution.
Actuators
Equipped with two 7-degree-of-freedom robotic arms and PUDU DH11 hands with 11 degrees of freedom, enabling precise finger manipulations such as button pressing, grasping, and carrying items.
Compiute
Onboard computing supports real-time AI processing, large language model-driven interaction, dynamic motion planning, and whole-body coordination for autonomous decision-making and task execution.
Sensors
Includes RGBD cameras, LiDAR, panoramic cameras, and pressure-sensitive skin, providing comprehensive environmental perception, obstacle detection, and tactile feedback for safe human-robot interaction.
Max Op. time
480
mins

Robot Brief

FlashBot Arm by Pudu Robotics is a semi-humanoid embodied AI service robot designed for commercial environments such as hotels, office buildings, restaurants, retail spaces, and healthcare facilities. Developed by Pudu X-Lab, it advances the company’s flagship FlashBot by integrating two 7-degree-of-freedom robotic arms equipped with PUDU DH11 dexterous hands (11 degrees of freedom), enabling precise and versatile manipulation tasks like pressing buttons, grasping, and transporting items. FlashBot Arm features a wheeled chassis with advanced VSLAM and laser SLAM technologies for accurate 3D mapping, autonomous navigation, and real-time obstacle avoidance. Its closed delivery compartment ensures safe item transport. Powered by cutting-edge embodied AI, including large language models, it supports natural multimodal interaction via voice, gestures, and facial expressions, and enables human-like decision-making and task planning. Whole-body control coordinates chassis, arms, and hands for superior precision and adaptability. High-precision sensors-RGBD cameras, LiDAR, panoramic cameras, and pressure-sensitive skin-ensure safety and environmental awareness. FlashBot Arm represents a major milestone in commercial humanoid service robotics, enhancing workflow efficiency and user engagement.

Use Cases

FlashBot Arm autonomously performs complex delivery and service tasks, including item pickup, elevator operation, and precision delivery in dynamic commercial settings. It navigates autonomously using 3D mapping, avoids obstacles, and interacts naturally with users through AI-driven voice commands, gestures, and facial expressions. Its robotic arms and dexterous hands allow it to manipulate objects and operate infrastructure controls without requiring changes to existing environments.

Industries

  • Hospitality & Hotels: Autonomous delivery and elevator operation for guest services.
  • Office Buildings: Item transportation and logistics support.
  • Restaurants & Retail: Efficient delivery and customer interaction.
  • Healthcare: Safe transport and assistance within medical facilities.
  • Commercial Service: Versatile manipulation and delivery tasks in complex environments.

Specifications

Length
539
mm
Width
515
mm
Height (ResT)
mm
Height (Stand)
1440
mm
Height (Min)
mm
Height (Max)
1440
mm
Weight (With Batt.)
kg
Weight (NO Batt.)
15
kg
Max Step Height
mm
Max Slope
+/-
°
Op. Temp (min)
°C
Op. Temp (Max)
°C
Ingress Rating
No items found.

Intro

FlashBot Arm is a semi-humanoid service robot featuring two robotic arms with 7 degrees of freedom each and PUDU DH11 dexterous hands with 11 degrees of freedom. The arms can be lifted to achieve an operational reach of up to 2 meters. The robot’s wheeled chassis supports exceptional mobility and uses VSLAM and laser SLAM for precise 3D mapping, autonomous navigation, and obstacle avoidance. It includes a closed delivery compartment for secure item transport. FlashBot Arm integrates advanced embodied AI, including large language models, enabling natural multimodal interaction and human-like task planning. Whole-body control synchronizes chassis movement with arm and hand operations, enhancing precision and adaptability in complex environments. Equipped with high-precision sensors such as RGBD cameras, LiDAR, panoramic cameras, and pressure-sensitive skin, it ensures safety and dynamic environmental awareness.

Connectivity

  • RGBD cameras, LiDAR, panoramic cameras for sensing
  • Pressure-sensitive skin for tactile feedback
  • Wireless connectivity supporting real-time navigation and communication (likely WiFi and Bluetooth)
  • Integration with AI systems for embodied intelligence and large language model interaction

Capabilities

  • Dual 7-DoF robotic arms with 11-DoF dexterous hands (PUDU DH11)
  • Operational reach up to 2 meters with liftable arms
  • Autonomous navigation with VSLAM and laser SLAM for 3D mapping and obstacle avoidance
  • Closed delivery compartment for safe transport
  • AI-powered natural interaction via voice, gestures, and facial expressions
  • Large language model-driven task planning and decision-making
  • Whole-body control coordinating chassis, arms, and hands
  • High-precision sensors for dynamic perception and safety
  • Real-time force control with immediate obstacle response