OVERLOAD PROTECTION SWITCH WITH REVERSE RESTART SWITCHING STRUCTURE
20220285119 ยท 2022-09-08
Inventors
Cpc classification
H01H21/20
ELECTRICITY
H01H73/14
ELECTRICITY
International classification
H01H73/14
ELECTRICITY
H01H21/20
ELECTRICITY
H01H47/00
ELECTRICITY
Abstract
An overload protection switch with reverse restart switching structure, particularly to one that has a molded-case circuit breaker which adding a lampshade parallel stagnation position for overload indication, and when resetting, needs to press back to the RESET for reconfirmation; due to the stagnation position and reverse restart structure, it can avoid repeating the reset action, preventing the reduction of the life of the overload protection switch and repeated exposure or the misjudgment and then resetting of electrical products that have been overloaded and tripped and then overload again then results in causing dangerous; also, the lampshade can be completely tripped even when the lampshade is suppressed, and prevent the danger of repeated tripping during overload.
Claims
1. An overload protection switch with reverse restart switching structure, comprising: a housing having a lampshade arranged atop thereof, and a first terminal and a second terminal arranged at the bottom section; the first terminal is connected to a binary alloy conductive plate, the binary alloy conductive plate extends a spring leaf having a first connecting point, and the second terminal having a second connecting point on the surface of an upper section thereof corresponding to the first connecting point; a moving rod linking up a pivot hole at the bottom of the lampshade with one end and the binary alloy conductive plate with the other end for the first connecting point to contact the second connecting point, when the pivot hole is pushed inward, consequently achieve conducting state (ON), and for the first connecting point to detach from the second connecting point when current overload occurs and the binary alloy conductive plate is deformed due to high temperature, consequently achieve non conducting state (OFF), so as to form an overcurrent protection switch; wherein: the moving rod includes: a horizontal rod arranged at the upper section of the main body to set through the pivot hole of the lampshade; a first brake plate arranged at the middle section of the moving rod and extended inward; a second brake plate which extended inward and bended is arranged at the middle section of the moving rod and lower than the first brake plate, making the second brake plate form a forward guiding surface above the second brake plate and a backward guiding surface below the second brake plate, so as to form a dislocation area between the first brake plate and the forward guiding surface of the second brake plate; a third brake plate which extends inward and bended is arranged at the lower section of the moving rod, so as to form a normal operating area between the backward guiding surface of the second brake plate and the third brake plate; the inward extended distance from the moving rod of the first brake plate is defined as W1, the inward extended distance from the moving rod of the second brake plate is defined as W2, the inward extended distance from the moving rod of the third brake plate is defined as W3, and both W3 and W1 is longer than W2; the housing corresponding to the inner side of the moving rod has three inner surfaces with different height, from top to bottom are a first inner surface, a second inner surface, a third inner surface, wherein the first inner surface is a V shape concave surface, the second inner surface is a flat surface, and the third surface is a shrank inclined surface; on the other end of the lampshade which corresponding to the pivot hole having a stopping member extend downward; an elastic leaf arranged above the second terminal and outside the stopping member, for providing the lampshade an elastic stopping force, let the lampshade can be fixed at the tail end of the SET while switching to the SET, and make sure the moving rod stayed at the bottom of the inner side of the housing; and when the lampshade is pressed as ON/OFF switch, the moving rod is droved to rise and fall in inclined way, and makes the curve of the lower section of the moving rod to move along the second inner surface and the third inner surface; the three step switching operation involves the following steps: a). when the lampshade is pressed to ON position, the curve of the lower section of the moving rod move along the second inner surface to the third inner surface, making the backward guiding surface of the second brake plate push from up to down the movable end of the binary alloy conductive plate which placed at the normal operating area to deform it reversely, and further make the spring leaf flip upward and make the first connecting point contact the second connecting point to achieve conducting state; b). when the lampshade is pressed to OFF position, the curve of the lower section of the moving rod move along the third inner surface to the second inner surface, the third brake plate pull from down to up the movable end of the binary alloy conductive plate to deform it reversely, and further make the spring leaf flip downward and make the first connecting point detach from the second connecting point to achieve non conducting state; c). when the first connecting point of the binary alloy conductive plate contacting the second connecting point to achieve conducting state, the curve of the lower section of the moving rod is located at the third inner surface, and the second brake plate is moved to outermost by the elastic force of the elastic leaf making the moving rod have the largest rotated angle for the second brake plate being vertical, so as to evade stopping place of the movable end of the binary alloy conductive plate; therefore, when the overvoltage occurred, the binary alloy conductive plate will be deformed due to high temperature and further flip upward, and skipping the second brake plate directly push the first brake plate for making the moving rod move upward and then driving the lampshade set as BREAK status, meanwhile, the movable end of the binary alloy conductive plate is located at the dislocation area which between the first brake plate and the second brake plate; d). finally, press the OFF end of the lampshade to do the RESET action making the moving rod move upward for the curve of the lower section of the moving rod move to the first inner surface, by the forward guiding surface of the second brake plate can move upward smoothly and slip through the movable end of the binary alloy conductive plate and back to the normal operating area below the second brake plate, so as to making the lampshade enable switch normally between ON and OFF.
2. The overload protection switch with reverse restart switching structure as claimed in claim 1, wherein the elastic leaf include a main body and an elastic contact end over the main body, and the elastic contact end is arranged outside the stopping member.
3. The overload protection switch with reverse restart switching structure as claimed in claim 1, wherein the housing further includes a third terminal.
4. The overload protection switch with reverse restart switching structure as claimed in claim 1, wherein the bottom of the third brake plate of the moving rod includes an extended pin.
5. The overload protection switch with reverse restart switching structure as claimed in claim 1, wherein the housing further includes a side cover.
6. The overload protection switch with reverse restart switching structure as claimed in claim 1, wherein the spring leaf is formed by the movable end of the binary alloy conductive plate extending from the inner side.
7. The overload protection switch with reverse restart switching structure as claimed in claim 1, wherein below the lampshade further includes a neon lamp.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0031] Referring to
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[0033] A moving rod 33 linking up a pivot hole 321 at the bottom of the lampshade 32 with one end and the binary alloy conductive plate 41 with the other end for the first connecting point 421 to contact the second connecting point 511, when the pivot hole 321 is pushed inward, consequently achieve conducting state(ON, SET end), and for the first connecting point 421 to detach from the second connecting point 511 when current overload occurs and the binary alloy conductive plate 41 is deformed due to high temperature, consequently achieve non conducting state(OFF), so as to form an overcurrent protection switch.
[0034] Referring to
[0035] Referring to
[0036] On the other end of the lampshade 32 which corresponding to the pivot hole 321 having a stopping member 322 extend downward; an elastic leaf 70 arranged above the second terminal 50 and outside the stopping member 322, for providing the lampshade 32 an elastic stopping force, let the lampshade 32 can be fixed at the tail end of the SET while switching to the SET, and make sure the moving rod 33 stayed at the bottom of the inner side of the housing 31, which is at the third inner surface 31C; As
[0037] In this embodiment, at the OFF end of the housing 31 having a concave arc surface 35 for allowing the user to press down the lampshade 32 to the RESET position.
[0038] Whereby when the lampshade 32 is pressed as ON/OFF switch, the moving rod 33 is droved to rise and fall in inclined way, and makes the curve 335 of the lower section of the moving rod 33 to move along the second inner surface 31b and the third inner surface 31c; the three step switching operation involves the following steps:
[0039] a). when the lampshade 32 is pressed to ON position, the curve 335 of the lower section of the moving rod 33 move along the second inner surface 31b to the third inner surface 31c, from the position in
[0040] b). when the lampshade 32 is pressed to OFF position, the curve 335 of the lower section of the moving rod 33 move along the third inner surface 31c to the second inner surface 31b, from the position in
[0041] c). when the first connecting point 421 of the binary alloy conductive plate 41 contacting the second connecting point 511 to achieve conducting state, the curve 335 of the lower section of the moving rod 33 is located at the third inner surface 31c, and the second brake plate 333 is moved to outermost by the elastic force of the elastic leaf 70 making the moving rod 33 have the largest rotated angle for the second brake plate 333 being vertical, so as to evade stopping place of the movable end 411 of the binary alloy conductive plate 41; therefore, when the overvoltage occurred, the binary alloy conductive plate 41 will be deformed due to high temperature and further flip upward, and skipping the second brake plate 333 directly push the first brake plate 332 for making the moving rod 33 move upward, from the position in
[0042] d). finally, press the OFF end of the lampshade 32 to do the RESET action making the moving rod 33 move upward for the curve 335 of the lower section of the moving rod 33 move to the first inner surface 31a, by the forward guiding surface 333a of the second brake plate 333 can move upward smoothly and slip through the movable end 411 of the binary alloy conductive plate 41 and back to the normal operating area B below the second brake plate 333, from the position in
[0043] With the feature disclosed above, the present invention has a first brake plate 332 of the moving rod 33 arranged on the second brake plate 333, and a third brake plate 334 formed at the curve 335 of the lower section of the moving rod 33; the outwardly deviated moving rod 33 is formed to press outward and match the position of the housing 31 and has three inner side surface with different height 31a, 31b and 31c to achieve three step fool proof feature; and further achieve adding a lampshade 32 parallel stagnation position for overload indication, and when resetting, needs to press back to the RESET (OFF end) for reconfirmation, and make the binary alloy conductive plate 41 reorder in the correct order and then press the SET (ON end) to restart; during overload, due to the stagnation position and reverse restart structure (fool proof), it can avoid repeating the reset action (set) of the short-circuited electrical appliance without removing the short circuit, preventing the reduction of the life of the overload protection switch and repeated exposure (the test specification is 3 short-circuit tests) or the misjudgment and then resetting of electrical products that have been overloaded and tripped and then overload again then results in causing dangerous; also, the lampshade 32 can be completely tripped even when the lampshade is suppressed, and prevent the danger of repeated tripping during overload.
[0044] Although particular embodiments of the invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not limited except as by the appended claims.