3D preview of Dual-Plate Robotic Rover Chassis
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Interactive 3D model of Dual-Plate Robotic Rover Chassis

Organic and sculpted

Dual-Plate Robotic Rover Chassis

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Bounding box
99.7 × 52.1 × 120 mm
Engine
Organic B-rep
Parameters
0
Published
August 31, 2026

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The prompt

Generate a 3D CAD model of a dual-plate robotic rover chassis. The assembly consists of two identical flat rectangular plates, a top plate and a bottom plate. Each plate has a length of 250 millimeters, a width of 150 millimeters, and a thickness of 5 millimeters. The corners of both rectangular plates are filleted with a radius of 10 millimeters. The top plate is positioned exactly 35 millimeters directly above the bottom plate on the Z-axis. On the bottom plate, create four rectangular extrusions pointing downwards to act as motor mounts. Each motor mount is 30 millimeters long, 10 millimeters wide, and 20 millimeters tall. Position one mount near each of the four corners, inset 20 millimeters from the front/back edges and 10 millimeters from the side edges. On the top plate, create four circular through-holes, each with a diameter of 3 millimeters. Position these holes exactly in the four corners of the top plate, inset by 5 millimeters from the edges, to serve as standoff mounting holes. On the top plate, in the exact geometric center, create a raised rectangular platform that is 50 millimeters long, 50 millimeters wide, and 2 millimeters tall, representing the microcontroller mounting zone. At the front-center edge of the top plate, create a small vertical rectangular plate that is 25 millimeters wide, 25 millimeters tall, and 3 millimeters thick, pointing upwards, to act as a camera mount. Create a 10 millimeter circular through-hole in the center of this vertical camera mount.

Parameters

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