DINERBOT T9 Pro

DINERBOT T9 Pro, is the high load capacity DINERBOT comes with markerless deployment and enhanced safety. With enhanced sensors, a rugged die-cast chassis, and marker-free VSLAM navigation, it’s built for dynamic, high-traffic environments where precision and adaptability matter.

Deployment, No Marker Needed

Now features VSLAM for 100% marker-free deployment.

Safety, Elevated

DINERBOT T9 Pro uses stereo vision sensors for precise, safe service in any environment.

Smart Self-Pickup Guidance

Made possible by tray sensors, and voice and visual guidance.

Stronger. More Durable.

Enhanced by a new die-cast chassis for superior strength and durability.

 

Specifications

 

  • Dimensions (W x D x H):

    50.0 x 52.7 x 126.6 cm (19.69” x 20.75” x 49.84”)

  • Weight:

    45.2 kg (99.6 lbs)

  • Max. Moving Speed:

    0.8 m/s (2.63 ft/s)

  • Battery Life:

    Up to 15 hours

  • Charging Time:

    4 hours

  • Slope Capability:

    Up to 5°

  • Total Load Capacity:

    40 kg (88 lbs)

  • Minimum Passage Width:

    70 cm (27.56”)

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Effortless Pickup, Streamlined Experience

Open-access tray supports self-pickup with visual detection, tray lighting, on-screen guidance, and voice prompts for effortless use.

Tri-Patent Chassis Design

Featuring vehicle-grade independent suspension and CAE-optimized shock absorption, the chassis delivers superior stability and ride quality.

Marker-Free. Worry-Free. Precision at Every Turn.

Marker-Free Deployment with VSLAM

Now equipped with advanced VSLAM technology, the T9 Pro supports 100% marker-free setup, reducing installation time and simplifying deployment in any space.

Precise Navigation

Crafts accurate spatial maps using seamless data collection, ensuring smooth, dependable operation in dynamic service areas.

Enhanced Safety with Stereo Vision Sensors

High-precision stereo vision enables the robot to detect obstacles and navigate safely through complex, unpredictable environments.

Patented algorithms and multi-robot dispatching

Patented AI algorithms empower robots to optimize route planning for efficient task execution. Seamless coordination between multiple units ensures smooth operations even in high-demand environments.