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DCC Bridge
cristianosgomes07
02-23 10:50
Model Name
foosball table bottom 3d model
Tags
3d printing
3d printing realistic
foosball
machine
machine 3d printing
machine 3d printing realistic
machine realistic
realistic
Prompt
Create a detailed and precise 3D mCreate a detailed 3D model of the internal bottom structure of a smart foosball table. This model must include ONLY the internal lower section (no top field, no players, no rods). External structure dimensions: Length: 41 cm Width: 29 cm Height: 7 cm Functional internal design: Two goal openings (one on each short side), each 10 cm wide. From each goal, create a straight rectangular ball channel with smooth internal walls. Both channels must have a slight slope (5–10 degrees) and converge toward a central ball collection compartment. Sensor mounting areas: One infrared sensor slot inside each goal channel Sensor positioned to detect ball passage Small cable routing hole for each sensor Central ball storage compartment: Located in the middle bottom area Open top Designed to store multiple balls Clean rectangular shape Electronics mounting area (separate from ball channels): Flat platform for breadboard Breadboard dimensions: 16.5 cm length, 10 cm width, 1 cm height 4 mounting standoffs Extra flat area for ESP32 board Side opening for USB cable access Keep electronics isolated from ball movement area Design style: Simple mechanical structure Straight rectangular channels only No curved artistic shapes Suitable for MDF construction Functional engineering layoutodel of the bottom structure of a smart foosball table. Main outer box dimensions: Length: 41 cm Width: 29 cm Height: 7 cm The structure should be hollow inside to allow installation of electronics and a ball return system. Add a goal opening with 10 cm width that connects to an internal ball return channel. The ball return channel must: Have smooth internal walls Have a slight slope (5–10 degrees) Be centered from the goal opening Include a mounting slot in the middle for an infrared sensor Include a small hole for wire routing Add a dedicated electronics compartment inside the structure containing: A mounting area for a breadboard with these exact dimensions: Length: 16.5 cm Width: 10 cm Height: 1 cm The breadboard must sit on 4 small mounting supports (standoffs). Also include: Extra flat space beside the breadboard for an ESP32 board 4 mounting standoffs for the ESP32 A small rectangular opening on the side for USB cable access Small circular ventilation holes on the side walls The LCD display is NOT inside this bottom structure (it will be mounted on top of the table). The design must look clean, functional, technical and realistic, suitable for MDF construction or 3D printing. Industrial engineering style, realistic proportions, precise geometry. Create a detailed and precise 3D model of the bottom structure of a smart foosball table. Main outer box dimensions: Length: 41 cm Width: 29 cm Height: 7 cm The structure should be hollow inside to allow installation of electronics and a ball return system. Add a goal opening with 10 cm width that connects to an internal ball return channel. The ball return channel must: Have smooth internal walls Have a slight slope (5–10 degrees) Be centered from the goal opening Include a mounting slot in the middle for an infrared sensor Include a small hole for wire routing Add a dedicated electronics compartment inside the structure containing: A mounting area for a breadboard with these exact dimensions: Length: 16.5 cm Width: 10 cm Height: 1 cm The breadboard must sit on 4 small mounting supports (standoffs). Also include: Extra flat space beside the breadboard for an ESP32 board 4 mounting standoffs for the ESP32 A small rectangular opening on the side for USB cable access Small circular ventilation holes on the side walls The LCD display is NOT inside this bottom structure (it will be mounted on top of the table). The design must look clean, functional, technical and realistic, suitable for MDF construction or 3D printing. Industrial engineering style, realistic proportions, precise geometry.
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