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SR-C800 / DIFFERENTIAL-DRIVE PLATFORM

SR-C800150 kg differential-drive robot chassis.

More mounting space for mobile equipment and complete robot development.

150 kg maximum payloadROS 1 / ROS 2Full specifications ↓
SR-C800 mobile robot chassis

IN-HOUSE ROBOTICS R&D

Engineered by Shining Robotics.

Mechanical, electrical and embedded development, motion control and in-house SLAM, localization, navigation, path planning and obstacle avoidance.

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SHINING GROUP MANUFACTURING

Built on an industrial foundation.

Established in 1995, Shining Group brings machining, sourcing, assembly, testing and quality management resources to prototype builds and production.

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PRODUCT FACTS

Specifications you can work with.

SR-C800 published specifications
Dimensions (L × W × H)800 × 550 × 260 mm
Platform weight70 kg
Maximum payload150 kg
Maximum navigation speed0.8 m/s
Battery (voltage / capacity)24 V / 30 Ah
NavigationLiDAR-SLAM
Navigation sensorsToF LiDAR × 2 / RGBD × 1 / IMU × 1
Network interfaceRJ45 (communication / routing)
Mechanical interfaceStructural mounting holes
Controls and expansionSystem switch, emergency stop, USB expansion
ROS versionROS 1 / ROS 2

All SR-C and SR-X700 chassis support ROS 1 and ROS 2. Confirm your ROS distribution, operating system, driver package, message definitions, control and feedback interfaces, and software delivery scope for the selected configuration.

INTEGRATION & CONFIGURATION

Define the platform around your system.

Mechanical integration

Structural mounting holes support upper-module integration. Confirm mounting drawings, load distribution and center of gravity.

Software & control

ROS 1 and ROS 2 support provides a basis for integration. Agree drivers, control commands, status feedback and navigation configuration.

Delivery scope

Confirm the hardware, accessories, software, documentation and technical support included in the quotation.

YOUR NEXT STEP

Confirm the fit before you commit.

Share the task, operating environment, payload, upper-module dimensions, ROS environment and expected quantity.