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Spring loaded servo saver
par gbit
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Spring loaded servo saver, connects a servo horn to a rod with springs so that if the movement is blocked, the impact goes to the springs, not the servo
Inspired by this setup here: https://www.youtube.com/watch?v=Ux5tgI1E0lQ
BOM:
metal rod, I used 1.6mm brass rods
2 stripped rows from an electical screw terminal block (picture attached)
2 springs from ballpoint pens (or similar)
A little bit of superglue
Assembly:
Attaching the end of the rod to the shoe:
At the end of the rod, bend a 90° angle on it (done so it can't slip out from being pulled back by the servo) and place the bent end in the servo-link-shoe and the straight part in the channel for it, make sure it fits, once that is done, take it out, put a little bit of glue in the channel and put the rod back in.
Attaching the servo to the servo-horn-extender
I tried 3d printing some custom servo horns, they didn't turn out well, so I just made an extender for it, place the original horn in the extender, line up the holes for
Inspired by this setup here: https://www.youtube.com/watch?v=Ux5tgI1E0lQ
BOM:
metal rod, I used 1.6mm brass rods
2 stripped rows from an electical screw terminal block (picture attached)
2 springs from ballpoint pens (or similar)
A little bit of superglue
Assembly:
Attaching the end of the rod to the shoe:
At the end of the rod, bend a 90° angle on it (done so it can't slip out from being pulled back by the servo) and place the bent end in the servo-link-shoe and the straight part in the channel for it, make sure it fits, once that is done, take it out, put a little bit of glue in the channel and put the rod back in.
Attaching the servo to the servo-horn-extender
I tried 3d printing some custom servo horns, they didn't turn out well, so I just made an extender for it, place the original horn in the extender, line up the holes for
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