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The Snap-Action Switch: A Spring That Jumps Past Its Own Centre
Penny

작성자

Penny

27. 9월 2026DK
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The Snap-Action Switch: A Spring That Jumps Past Its Own Centre

A contact that opens slowly draws an arc that eats it away; one that wavers at the edge chatters. A snap-action switch cannot do either: its contact is held by springs arranged over-centre, so a small, slow push on the plunger builds up to a point and then the contact jumps from one stop to the other in a few milliseconds. Philip Kenneth McGall of Orange, New Jersey, working for C. F. Burgess Laboratories, filed US 1,960,020, *Snap Switch*, on 29 March 1933; it was granted 22 May 1934. A thin beryllium-copper leaf spring is held in tension by two side strips in compression, pivoted near the middle of the leaf; silver contacts at the free end move between two stops. It became the "micro switch" found in machines, appliances and mice. This rung models the snap-through force, shows why the lower stop sits above dead centre, and makes a snap switch from spring steel.
중급
About 3 hours

안내

1

The drooping force and the speed of the snap

Jupyter 노트북 불러오는 중…
2

Read McGall's switch

Fig. 1 of US 1,960,020 shows the switch in section: a base 11 of wood, hard rubber or Bakelite; the thin leaf spring 12 bolted at one end over a thick metal shim 14; two parallel spring strips 20 and 21, joined to the leaf's free end by a U-shaped stirrup 22 and pivoted in notches in the shim; and a plunger 15 pressing the leaf near its anchored end. What the specification specifies: the leaf "preferably is a thin beryllium copper strip" (or phosphor bronze); the strips are in longitudinal compression, putting the leaf in tension; contacts "preferably made of silver … which minimizes the damage resulting from arcing"; "the bottom contact 25 is placed above the neutral or dead-center position" so the arm returns when released; and the leaf is widened ahead of its anchorage so it does not fatigue there.
3

Make a snap switch from spring steel

Cut a strip of thin spring steel 60 mm long and 12 mm wide. Cut a slot 3 mm wide down its middle for 40 mm, leaving the two outer legs and a solid end. Bend the centre tongue slightly so that, when you clamp the solid end and push the tongue's tip back into line with the legs, the legs bow — now they are in compression and the tongue is in tension, as in McGall's switch. Clamp the solid end to a plywood base with a machine screw. Set two machine-screw stops either side of the free end, the lower one just above the point where the strip flips over, and solder a wire to the strip and to each stop. Press slowly near the clamped end with a spring scale: the force rises, then the free end jumps to the lower stop with a click. Release it and it jumps back. Wire the lower stop through a buzzer: it sounds cleanly, with no chatter, however slowly you press. Note the operating force and compare with the notebook's curve.

이 단계의 재료:

스프링강 띠스프링강 띠1 개
합판합판1 개
기계 나사기계 나사4 개
압전 부저압전 부저1 개
주석-납 땜납주석-납 땜납1 개
마이크로 스위치(레버식)마이크로 스위치(레버식)1 개

필요한 도구:

인두인두
힘 측정기(스프링 저울)힘 측정기(스프링 저울)
바이스(만력)바이스(만력)
가죽 작업 장갑가죽 작업 장갑
직류 전원 장치직류 전원 장치
4

A switch that chatters or will not reset

Snap switch faults.

Flow

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5

History and honest limits

**Philip Kenneth McGall** filed **US 1,960,020** on 29 March 1933, assigned to C. F. Burgess Laboratories of Madison, Wisconsin; it was granted 22 May 1934. The company Micro Switch was formed later in the 1930s, and the name came to stand for the small snap-action switch itself. **Honest limits.** The notebook's two-spring model shows the snap-through and the role of the stops; McGall's real geometry, with a leaf in tension and strips pivoted near its middle, has a different force curve with the same character. Spring steel strip has sharp edges: wear gloves when cutting and bending it.

재료

6

필요 도구

5

CC0 퍼블릭 도메인

이 블루프린트는 CC0로 공개되었습니다. 어떤 목적으로든 자유롭게 복사, 수정, 배포 및 사용할 수 있습니다.

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