it`s a zoetrope Because I am interested in stop-motion, so I decided to make a kind of stop-motion animation using the zoetrope . I love the models that Akinori Goto makes . He is a Japanese artist .
-Because I like this machine and it has existed for a long time, I wanted to make one for me, in a new and advanced way, and control it with the Arduino, so that it would be easier to control the speed of rotation and see the shapes moving .
it will work When the sensor senses that the lighting of the place is low, it is sent to the Arduino, the motor starts, the bulb lights up, the acrylic sheet rotate, and the shapes engraved on them appear at the sheet above the bulb place.
user can change the motor speed , led brightness , and led colour in the app
Construction Parts
laser cut plywood all parts of the kit
3d printed part (flange)
Input
(Sensing, Tactile Input, and/or Graphical Input)
LDR sensor module
a potentiometer to control the speed of the motor
on/off switch
Action
(Physical and/or Graphic)
Circular motion
Illumination of LED.
sound
Brain
Arduino borad
Power Management
power adapter
Minimum Features: are the least amount of features that would demonstrate the coverage of all the technical modules and their complete integration
Complete Features: are the set of features that will complete your original project objective and vision
Nice-to-have Features: are the extra set of features that will make the project cooler, yet they need extra time, effort, and/or resources to finish
Minimum User Features
Action:
-Circular motion (a Dc motor to make the zoetrope spin)
-Illumination of LED.
Sensing:
--LDR sensor module
UserInput
-The user presses the button to start (On/Off switch)
Complete User Features
....
Action
- control the speed of the motor
Sensing:
User Input
: -a potentiometer to control the speed of the motor
Nice-to-have User Features
....
Action
- sound (
Sensing:
User Input:user
-can change the led brightness , and led color using mobile app
Task
Sub-Tasks
From:
To:
Prepare all components
Wiring
connecting the components to the Arduino
write the code
9
12
Design Enclosure
use fusion360 to design
13
Fabrication
Laser Cutting & 3D Printing
15
cirucit
Make sure the components are working before putting them inside the enclosure
16
Assembly
Adding components inside the enclosure.
18
Component/Material
Amount
Link
3MM Plywood Sheets 30x50
3
3D Printing PLA
80 g
PIR