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DCC Bridge
samarths729
03-14 18:16
Model Name
robotic rover 3d model
Tags
realistic
robotic rover
robotic rover with arm
simulation
simulation realistic
vehicle
vehicle realistic
vehicle simulation
vehicle simulation realistic
Prompt
Robot Type: Autonomous mobile robotic platform with a manipulator arm designed for inspection, research, and educational robotics applications. Base Chassis The robot uses a rectangular mobile rover chassis with a rugged industrial design. Drive Type: 4-wheel differential drive Wheel Style: Large off-road rubber wheels with deep treads Wheel Rims: Blue metallic rims with circular bolt pattern Wheel Placement: Two wheels on each side mounted to the chassis frame Chassis Structure Shape: Rectangular flat platform Material: Powder-coated aluminum or composite metal frame Color scheme: Main body: matte black Accent frame edges: electric blue Height: Low center of gravity design Top surface: Flat mounting platform with rails for sensors Front Sensor Panel The front of the robot contains a sensor array module. Components: Three circular sensors arranged horizontally Likely ultrasonic or depth sensors Central rectangular depth camera or lidar module Lower slot grille for ventilation or LED status strip Branding panel in the center displaying “Protonetix” The front bumper area is angular and slightly protruding, giving an industrial robotic appearance. Robotic Manipulator Arm Mounted on the top platform is a compact articulated robotic arm. Arm Configuration Degrees of Freedom: Approximately 4–5 DOF Structure: Linked modular segments Color scheme: Arm body: white Joint housings: black Joint Type: Rotational servo joints Arm Segments Base rotating joint mounted to the robot platform Shoulder joint for vertical lift Elbow joint Wrist joint End effector mount End Effector The robot arm ends with a two-finger parallel gripper. Features: Black rubberized gripping pads Mechanical claw style Compact precision gripper Designed for small object manipulation Vision System Mounted above the arm is a vision camera module. Shape: Small cube camera Mount: Fixed bracket above the arm Orientation: Facing forward Purpose: Object detection / teleoperation vision Rear Electronics Panel The rear side contains the control and power interface panel. Components visible: Main power switch Status LED indicators USB ports Ethernet port DC power input Auxiliary I/O connectors Cooling fan The panel is integrated into a metal rear control plate with labeled ports. Cooling System A square cooling fan module is mounted near the robotic arm base. Black housing Visible fan grill Used for onboard computer cooling Top Platform The top deck includes: Sensor mounting rails Arm mounting plate Cable routing along arm joints Clean robotics lab aesthetic Overall Design Style The robot has a modern robotics lab appearance with: Clean industrial design High-contrast color palette Educational / research robot look Similar style to ROS development robots Color palette: Black chassis White robotic arm Blue accents Black sensors and electronics Environment Context (optional for AI rendering) Place the robot in: Robotics laboratory Clean white background Engineering workspace Slight depth-of-field blur "Highly detailed robotics CAD model, realistic mechanical joints, clean topology, engineering accurate proportions, suitable for STEP/STL conversion."
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