120.093.776.1
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Interactive 3D model of Design a complete, accurate, manufactura

Organic and sculpted

Design a complete, accurate, manufactura

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Bounding box
93.7 × 120.0 × 76.1 mm
Engine
Organic B-rep
Parameters
0
Published
September 7, 2026

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The prompt

Design a complete, accurate, manufacturable dual-axis solar panel tracking mount from start to finish. The final design must be suitable for laser cutting from 3 mm MDF/plywood/acrylic and must include a complete 3D assembly plus separate DXF/SVG files for every laser-cut part. Requirements - 2-axis movement: - Azimuth: approximately 180° - Elevation: approximately 0–90° - Use 2 servo motors. - The servos must NOT carry the panel's structural load. Use metal shafts and bearings to support both axes. - Use suitable gears, pulleys, or mechanical arms between the servos and axes to reduce servo load. - Design mechanical rotation stops. Adjustable Panel Mount Create a universal mounting frame with sliding rails and adjustable clamps so panels of different sizes can be installed without redesigning the main structure. Keep the panel's center of gravity close to the elevation axis to minimize servo torque. LDR System Include a removable 4-LDR sensor holder with a small cross-shaped divider between the sensors for accurate sunlight-direction detection. Electronics Provide mounting locations and cable routing for: - ESP8266 - 2 servos - 4 LDR sensors - Optional voltage regulator Manufacturing Use 3 mm sheet material and press-fit/tab-and-slot construction wherever possible. Include: - M3/M4 screw holes - Bearing holders - Servo mounts - Shaft supports - Cable holes - Strong, stable base Avoid unsupported structures and ensure all parts can actually be assembled with normal tools. Engineering Validation Before producing final files, verify: - All dimensions and mating parts - Bearing and shaft clearances - Servo mounting dimensions - Axis alignment - Center of gravity - Mechanical interference - Rotation limits - Material thickness compensation - Laser-cut manufacturability - Complete assembly compatibility Final Output Generate: 1. Complete 3D assembly 2. Exploded assembly 3. Individual laser-cut parts 4. DXF/SVG files for every 2D part 5. Exact dimensions for every part 6. Bill of materials and hardware list 7. Assembly instructions Make the design parametric, especially material thickness, shaft/bearing dimensions, servo mounting pattern, and panel size. Do not create a visual-only concept. The final result must be a realistic, mechanically functional, buildable laser-cut assembly.

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