Brackets and mounts
Cultivation Chamber Assembly
- Bounding box
- 1040.0 × 830.0 × 2040.0 mm
- Engine
- Precision B-rep
- Parameters
- 13
- Published
- August 20, 2026
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The prompt
Create a fully parametric, manufacturing-grade 3D CAD model of an AI-Embedded Smart Controlled Environment Cultivation Chamber based on the attached reference image, maintaining the same external appearance, proportions, and internal arrangement. The chamber dimensions must be 2000 mm (H) × 1000 mm (W) × 700 mm (D) with a 40 × 40 mm aluminium T-slot frame, 30 mm insulated sandwich panels, an 8 mm tempered glass front door, and adjustable levelling feet. Divide the enclosure into two sections: a 700 mm wide cultivation chamber and a 300 mm wide utility compartment. The cultivation chamber should contain four removable stainless-steel mesh shelves (650 × 600 mm), height-adjustable shelf supports, four full-spectrum LED grow light bars with aluminium heat sinks mounted above each shelf, rear vertical air ducts, top air supply plenum, bottom return plenum, circulation fans, drainage tray, and mounting provisions for temperature, humidity, CO₂, airflow, light intensity, water level, and door sensors. The utility compartment should include a complete environmental control system consisting of a washable pre-filter, HEPA H13 filter, activated carbon filter, UV-C sterilization chamber, hermetic compressor, condenser coil, condenser fan, filter drier, capillary tube, evaporator coil, copper refrigerant piping, receiver tank, ultrasonic humidifier, water reservoir, water pump, mist outlet, drain line, and all associated mounting brackets. Include an electrical control section with a 7-inch touchscreen HMI, emergency stop button, power switch, indicator LEDs, ESP32 development board, relay modules, DIN rails, terminal blocks, 24 V DC power supply, MCB, fuse holder, cable ducts, wiring channels, and realistic electrical routing. Model all copper pipes, silicone water tubing, PVC drain lines, cable trays, fasteners, hinges, gaskets, brackets, and service clearances accurately. Ensure proper airflow routing from the filtration section through the evaporator and cultivation chamber with uniform air distribution across all shelves. Use realistic engineering materials such as aluminium, stainless steel, tempered glass, powder-coated steel, copper, engineering plastics, and rubber seals. Every component must be an independent editable part with proper assembly constraints, realistic wall thicknesses, manufacturing tolerances, and no interferences. The final model should be suitable for mechanical assembly, fabrication, CFD and thermal analysis, FEA, and 3D printing. Export the complete assembly in STEP, SolidWorks, Fusion 360, IGES, and STL formats while preserving full parametric editability and engineering accuracy.
Parameters
| Name | Value | Range |
|---|---|---|
| Chamber Height | 2000 mm | 1500 – 2500 |
| Chamber Width | 1000 mm | 800 – 1200 |
| Chamber Depth | 700 mm | 500 – 900 |
| Frame Profile Size | 40 mm | 20 – 60 |
| Panel Thickness | 30 mm | 20 – 50 |
| Door Glass Thickness | 8 mm | 5 – 12 |
| Number of Shelves | 4 | 2 – 6 |
| Shelf Vertical Spacing | 400 mm | 300 – 500 |
| Shelf Width | 650 mm | 500 – 700 |
| Shelf Depth | 600 mm | 400 – 700 |
| Light Bar Length | 650 mm | 500 – 700 |
| Utility Compartment Width | 300 mm | 200 – 400 |
| Air Duct Width | 100 mm | 50 – 200 |
Every value above is a live dimension. Open a model like this in the editor and each one becomes a slider you can drag before exporting.
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