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It is screwed to the back of the Playfield, the three photo reflectors face the surface. I also made the testing board for photo reflector, so I changed its shape to be in the proper position. The other is for PopBumper with ATtin圓216. I already tested it before, so I just arranged it for 3 photo reflectors and 2 switches. It controls the flow of current to the solenoid by detecting the ON/OFF of the switch. This part contains electronic design and fabrication and embedded microcontroller, interfacing and programming. I designed two circuit boards by EAGLE, and milled it by SRM-20. I wrote detection and push-back program for my ATtin圓216 based board, using Arduino Language(show on next section). So I added raster engraving by laser cutter to create a gap on playfield.) (At first I made them all by 3D print, but it was hard to watch the ball move. Pop bumper consits of 3D printed parts, spacer, and laser cutted acrylic plate on the top. If the ball passes certain points, photo reflectors detect it and pop bumper will bounce back the ball by solenoid placed under the play field. The power is not strong… so I decided to use styrofoam ball instead of metal one. I bought commercial switch (looks like in game center), designed 3D sockets and printed them. I used solenoid to push the flipper, replace it by rubber band. The operation is, to press the button to flip, to release the button to undo it. I made PLA plunger that tretches and contracts like a spring.įippers have to play the ball and flip away. But it was a little big and not easy to get in Japan, so I made it by 3D printing in wildcard week. Plunger is a device for launching a ball. Also using 3D printer,it means additive fabriation. I designed many game objects in Rhinoceros, 3D Design tool. To create curved wall, I cutted MDF by laser cutter with repeated slit lines, so called kerf bending. Playfield, I mean the place ball will run around, are designed by mainly Adobe Illustrator, vector “2D Design”. This is one of my subtractive Fabrication. I made 2 parts but I used only underside for final project. Components and Fabrication ¶Ĭonsidering the size and production efficiency, I designed and made the enclosure during the week of Assignment8, Computer-Controlled Machining by using Shopbot. It contains not-analog, digital input sensors, buttons, flippers and pop bumpers. In my final project, I made wood-based small machine. Also some people tried to make in HTMAA/FabAcademy, but looks it couldn’t be completed. DIY makers made their own homebrew pinball machines, and there is some commercial homemade pinball kits. More detail and first initial plan are written in my tracking page and project development. Invention, intellectual property and income.
#Pinbox bumper buttons license
This project and files for making is shared under Creative Commons CC-BY 4.0 license as I think Assignment18. You can play with this machine, launch styrofoam ball from 3D printed plunger, move flippers by pushing buttons, and if the ball passes certain points, photo reflectors detect it and pop bumper will bounce back the ball. My FAB-ALL PIN-BALL partially contains electronical mechanism and processing by microcontroller, input and output devices.
#Pinbox bumper buttons portable
So I decided to make small and portable pinball machine by digital fabrication techniques. I love pinball machines, But they are too big to put in my house. Invention, intellectual property and incomeĪlso you can see original files, slide and video. Alliance's limited warranty does not cover damage to the recreational vehicle or the tow vehicle as a result of the selection of the tow vehicle.15.
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