EP0314925B1 - Microswitch - Google Patents
Microswitch Download PDFInfo
- Publication number
- EP0314925B1 EP0314925B1 EP88116375A EP88116375A EP0314925B1 EP 0314925 B1 EP0314925 B1 EP 0314925B1 EP 88116375 A EP88116375 A EP 88116375A EP 88116375 A EP88116375 A EP 88116375A EP 0314925 B1 EP0314925 B1 EP 0314925B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- microswitch
- swingable lever
- push button
- end portion
- lever
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
- 230000006835 compression Effects 0.000 claims abstract description 17
- 238000007906 compression Methods 0.000 claims abstract description 17
- 230000033001 locomotion Effects 0.000 claims abstract description 4
- 238000000034 method Methods 0.000 claims description 9
- 238000010586 diagram Methods 0.000 description 3
- 229920003002 synthetic resin Polymers 0.000 description 3
- 239000000057 synthetic resin Substances 0.000 description 3
- 230000000881 depressing effect Effects 0.000 description 2
- 239000004020 conductor Substances 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 230000000994 depressogenic effect Effects 0.000 description 1
- 230000002708 enhancing effect Effects 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000000644 propagated effect Effects 0.000 description 1
Images
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H13/00—Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch
- H01H13/02—Details
- H01H13/26—Snap-action arrangements depending upon deformation of elastic members
- H01H13/36—Snap-action arrangements depending upon deformation of elastic members using flexing of blade springs
Definitions
- the present invention relates to a microswitch assembling method and a microswitch obtainable thereby.
- a typical microswitch is shown in Fig. 1 as one of conventional general microswitches.
- a switch casing 102 is constructed by a cover 101 and a switch casing main body 103.
- a pair of a terminal member 104 for normally closed contact and a terminal member 105 for normally open contact and a common terminal member 106 are fixed to the main body 103.
- Fixed contacts 107 and 108 are fixed to inner end portions 104a and 105a of the fixed terminal members 104 and 105, respectively.
- a movable contact member 110 is pivotally supported to the inner end portion 106a of the common terminal member 106 at the base end thereof.
- the movable contact member 110 has a movable contact 109 at the front end thereof, the movable contact 109 being come into contact with or removed from the fixed contacts 107 and 108, respectively.
- a compression leaf spring 111 is attached between the front end side of the movable contact member 110 and the inner end portion 106a of the common terminal member 106.
- a push button 112 is inserted into a hole 102a formed in the top plate of the switch casing 102. By depressing the push button 112, the movable contact member 110 is moved, thereby switching the contacting state of the movable contact 109 from the normally closed type fixed contact 107 to the normally open type fixed contact 108 by the snap action.
- Fig. 2 means for assuring a large operating stroke is shown in Fig. 2. That is, the push button 112 is operated by an operating lever 113 which is pivotally attached to the switch casing 102.
- Fig. 3 shows another means for realizing a large operating stroke, in which a sub-button 115 which is pressed downwardly through a spring member 114 is inserted in the push button 112 and the movable contact member 110 is operated by the sub-button 115.
- the former means has a drawback such that a large space is needed for the operating lever 113.
- the latter means has a drawback such that the number of parts increases.
- FR-A- 2 530 862 discloses a microswitch, comprising an isolating frame on which stationary contacts are fixed.
- a pivotally supported movable contact for selectively contacting the stationary contacts is in connection with a vertically movable push button and a commuting mechanism.
- the latter comprises an entrainment lever, an intermediate lever, a leaf spring and a contact lever.
- the one end region of the entrainment lever is fixed to the isolating frame.
- the other end region of the entrainment lever is connected to the intermediate lever.
- the free end of the contact lever carries the movable contact.
- the end of the intermediate lever and the end of the leaf spring are connected to each other.
- the contact lever is connected to projections of the isolating frame and to the end of the leaf spring.
- the present invention is made to solve the inconveniences in the foregoing conventional microswitches and it is an object of the present invention to provide a method by which a microswitch can be easily automatically assembled and a microswitch which needs a small number of component parts.
- the swingable lever is operated by the push button and the movable member is operated through the compression spring interposed between the swingable lever and the movable member. Therefore, although the microswitch is small, the operating stroke can be enhanced by the swingable lever.
- the number of parts is smaller than that of the conventional microswitch in which the operating stroke is increased by a spring member assembled in a push button.
- the fulcrum of the compression spring is moved like an arc around a pivotal supporting portion of the swingable lever as a rotational center. Therefore, a sudden increase in load at a position near the operation limit position is suppressed, a good operating feeling is derived, particularly a large operating stroke is derived, and the assembling efficiency is high.
- the swingable lever applied with the spring force of the compression spring is deformed to the settable position of the push button by the swingable lever positioning projection, so that this microswitch can be easily assembled.
- Fig. 5 is an exploded perspective view showing an example of a microswitch according to the invention.
- Figs. 6a and 6b are front cross sectional views showing the microswitch in the OFF and ON states, respectively.
- a switch casing 10 consists of a terminal base 11 and a cover 12.
- the terminal base 11 is made of a plate-like synthetic resin having an electrical insulating property and constructs a lower plate of the switch casing 10.
- Vertically projecting portions 11a and 11b are formed on both of the left and right end portions of the terminal base 11.
- the cover 12 is assembled onto the terminal base 11.
- a pair of notched portions 12a and 12b adapted to be come into engagement with the vertically projecting portions 11a and 11b are formed at both of the left and right end portions of the cover 12 made of a synthetic resin, respectively.
- a common terminal member 13, a terminal member 14 for normally closed type contact, and a terminal memeber 15 for normally open type contact are fixed to the terminal base 11.
- Inner end portions 14a and 15a of the terminal members 14 and 15 are bent from lower and upper directions on the right end side in the terminal base 11 so as to face each other.
- Fixed contacts 16 and 17 are fixed to the opposite surfaces of the inner end portions 14a and 15a, respectively.
- a movable member 18 is arranged in the lateral (right/left) direction.
- the movable member 18 is made of a conductive material and has a almost rectangular shape having a large opening in the central position.
- a movable contact 19 which faces both of the fixed contacts 16 and 17 is fixed to a free end portion 18a.
- a base end portion 18b is fitted into a first pivotal groove 20 formed on the left end surface of an inner end portions 13a of the common terminal member 13.
- the base end portion 18b is rotatably pivotally supported by this groove 20.
- a rectangular hole 21 is formed in a top plate 12c of the cover 12.
- a push button 22 made of a synthetic resin is inserted into the hole 21 and can be vertically moved between the inner end portion 13a of the common terminal member 13 and the inner end portions 14a and 15a of the terminal members 14 and 15.
- a swingable lever 23 is formed into a substantially S shape.
- An edge portion 24 formed on the side of a base end portion 23a of the swingable lever 23 is fitted into and rotatably pivotally supported to a second pivotal groove 25 formed on the right side surface of the inner end portion 13a of the common terminal member 13.
- a free end portion 23b of the lever 23 is pushed by the lower surface of the push button 22.
- a compression spring 26 is made of a leaf spring and formed into an almost arc shape.
- a left end portion 26a of the spring 26 is fitted into a lateral groove 27 formed in the central portion of the swingable lever 23.
- Notched portions 28 formed in a right end portion 26b are come into engagement with engaging projections 29 formed on the free end side of the movable member 28, thereby applying a return spring force to the movable member 18.
- a pair of restricting plates 30 and 31, which face each other, are formed in the lower end portions of the push button 22, thereby restricting the position of the movable member 18 in the width direction.
- Projecting portions 32 and 33 to vertically guide the restricting plates 30 and 31 are formed on the front and rear inner walls of the cover 12 respectively.
- Engaging projections 34 are formed on both of the front and rear walls of the terminal base 11.
- Engaging holes 35 are formed in both of the front and rear walls of the cover 12 and are brought into engagement with the engaging projections 34 when the cover 12 is assembled onto the terminal base 11.
- a swingable lever positioning projection 36 is formed by an elongated portion of the inner end of the common terminal member 13 and is bent toward the side of the swingable lever 23.
- the free end portion 23b of the swingable lever 23 to which the left end portion 26a of the compression spring 26 is pivotally attached is brought to the settable position of the push button 22 by the positioning projection 36 as will be described later.
- a concave portion 37 to bend the projection is formed in the inner end portion 13a of the common terminal member 13.
- the base end portion 18b of the movable member 18 is fitted into the first pivotal groove 20 in the common terminal member 13 as shown in Fig. 7a.
- the swingable lever 23 is set to an almost vertical position and the edge portion 24 is pivotally fitted into the second pivotal groove 25 as shown in Fig. 7b.
- the notched portions 28 on the right end side of the compression spring 26 are movably attached to the engaging projections 29 on the free end portion of the movable member 18.
- the left end portion 26a of the compression spring 26 is downwardly moved along the right side surface of the swingable lever 23 and is movably fitted into the lateral groove 27 of the swingable lever 23 as shown in Fig. 7d.
- the positioning projection 36 formed in the inner end portion 13a of the common terminal member 13 is bent to the right as shown in Fig. 7e.
- the swingable lever 23 is inclined to the right by the projection 36, thereby positioning so that the free end portion 23b of the lever 23 is brought to the settable position of the push button 22.
- Fig. 7f by assembling the cover 12 having the push button 22 onto the terminal base 11, the push button 22 is set to the settable position of the swingable lever 23.
- the free end portion 18a of the movable member 18 rotates counterclockwise around the pivotal supporting portion 18b (20) as a rotational center by the snap action. Consequently, as shown in Fig. 6b, the movable contact 19 is away from the normally closed type fixed contact 16 and is come into contact with the normally open type fixed contact 17, thereby electrically connecting the terminal member 15 and the common terminal member 13.
- the operating stroke can be enhanced by the swingable lever 23 and a long stroke of about 3 mm can be obtained.
- the necessary space can be reduced as compared with the conventional structure (in the example shown in Fig. 2) in which the operating stroke is enhanced by the operating lever provided in the outside of the switch casing.
- the number of parts can be reduced as compared with the conventional structure (in the example shown in Fig. 3) in which the operating stroke is enhanced by the spring member arranged in the push button.
- the inner end elongated portion of the common terminal member 13 is bent to thereby form the projection 36. Therefore, the swingable lever 23 is brought to the push button settable position, so that the push button 22 faces the free end portion 23b of the swingable lever 23 by assembling the cover 12 onto the terminal base 11. In other words, the automatic assembling works can be easily performed and the productivity can be improved.
- the swingable lever positioning projection 36 has been constructed by the bent portion 37 of the inner end portion of the common terminal member 13.
- the projection 36 can be also formed by a boss portion 61 formed on the inner wall of the terminal base 11 as shown in Fig. 9.
- the positions of the movable member 18 and the like are restricted in the width direction by the restricting plates 30 and 31 formed under the push button 22. Also, the restricting plates 30 and 31 are guided by the projecting portions plates 32 and 33 formed on the side of the switch casing 10. Therefore, the movable member 18 and the like are properly held without shaking.
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- Push-Button Switches (AREA)
- Rotary Switch, Piano Key Switch, And Lever Switch (AREA)
- Saccharide Compounds (AREA)
- Laser Surgery Devices (AREA)
Abstract
Description
- The present invention relates to a microswitch assembling method and a microswitch obtainable thereby.
A typical microswitch is shown in Fig. 1 as one of conventional general microswitches. Aswitch casing 102 is constructed by acover 101 and a switch casingmain body 103. A pair of aterminal member 104 for normally closed contact and aterminal member 105 for normally open contact and acommon terminal member 106 are fixed to themain body 103. Fixedcontacts inner end portions fixed terminal members movable contact member 110 is pivotally supported to theinner end portion 106a of thecommon terminal member 106 at the base end thereof. Themovable contact member 110 has amovable contact 109 at the front end thereof, themovable contact 109 being come into contact with or removed from thefixed contacts compression leaf spring 111 is attached between the front end side of themovable contact member 110 and theinner end portion 106a of thecommon terminal member 106. Apush button 112 is inserted into ahole 102a formed in the top plate of theswitch casing 102. By depressing thepush button 112, themovable contact member 110 is moved, thereby switching the contacting state of themovable contact 109 from the normally closed type fixedcontact 107 to the normally open type fixedcontact 108 by the snap action. - However, in such a microswitch, since the
movable contact member 110 is directly operated by thepush button 112, a degree of whole motion (a travelling amount of thepush button 112 from its free position to the operating limit position) is small and its operating stroke amount is also limited to up to about 1 mm. - To solve this problem, means for assuring a large operating stroke is shown in Fig. 2. That is, the
push button 112 is operated by anoperating lever 113 which is pivotally attached to theswitch casing 102. Fig. 3 shows another means for realizing a large operating stroke, in which asub-button 115 which is pressed downwardly through aspring member 114 is inserted in thepush button 112 and themovable contact member 110 is operated by thesub-button 115. However, the former means has a drawback such that a large space is needed for theoperating lever 113. The latter means has a drawback such that the number of parts increases. - On the other hand, in any of the foregoing conventional microswitches, their operating characteristics are as shown in Fig. 4 and a load near the operating limit position suddenly increases, so that the good operating feeling cannot be obtained.
- Furthermore, FR-A- 2 530 862 discloses a microswitch, comprising an isolating frame on which stationary contacts are fixed. A pivotally supported movable contact for selectively contacting the stationary contacts is in connection with a vertically movable push button and a commuting mechanism. The latter comprises an entrainment lever, an intermediate lever, a leaf spring and a contact lever. The one end region of the entrainment lever is fixed to the isolating frame. The other end region of the entrainment lever is connected to the intermediate lever. The free end of the contact lever carries the movable contact. The end of the intermediate lever and the end of the leaf spring are connected to each other. The contact lever is connected to projections of the isolating frame and to the end of the leaf spring. However, such a construction is complicated and assembling work cannot be easily performed.
- The present invention is made to solve the inconveniences in the foregoing conventional microswitches and it is an object of the present invention to provide a method by which a microswitch can be easily automatically assembled and a microswitch which needs a small number of component parts.
- This object is solved by the microswitch assembling method of
claim 1. - According to the present invention, the swingable lever is operated by the push button and the movable member is operated through the compression spring interposed between the swingable lever and the movable member. Therefore, although the microswitch is small, the operating stroke can be enhanced by the swingable lever. The number of parts is smaller than that of the conventional microswitch in which the operating stroke is increased by a spring member assembled in a push button. Further, the fulcrum of the compression spring is moved like an arc around a pivotal supporting portion of the swingable lever as a rotational center. Therefore, a sudden increase in load at a position near the operation limit position is suppressed, a good operating feeling is derived, particularly a large operating stroke is derived, and the assembling efficiency is high. Further, the swingable lever applied with the spring force of the compression spring is deformed to the settable position of the push button by the swingable lever positioning projection, so that this microswitch can be easily assembled.
- Particular embodiments of a microswitch obtainable by the method of
claim 1 are set out in claims 2 to 5. - The invention is described in detail below with reference to the drawings, in which:
- Fig. 1 is a front view with a part cut away showing a conventional microswitch;
- Figs. 2 and 3 are front views with parts cut away showing conventional microswitches having different operating stroke enhancing means;
- Fig. 4 is a characteristic graph showing the relation between the operating distance and the operating force in a conventional microswitch;
- Fig. 5 is an exploded perspective view showing an example of a microswitch according to the present invention;
- Figs. 6a and 6b are front cross sectional views showing the microswitch in the OFF and ON states, respectively;
- Figs. 7a to 7f are diagrams for explaining an assembling procedure of the microswitch;
- Fig. 8 is a characteristic diagram showing the relation between the operating distance and the operating force in the microswitch; and
- Fig. 9 is a front cross sectional view showing a modification of the microswitch in a state before a cover is attached.
- An embodiment of the present invention will be described hereinbelow with reference to the drawings.
- Fig. 5 is an exploded perspective view showing an example of a microswitch according to the invention. Figs. 6a and 6b are front cross sectional views showing the microswitch in the OFF and ON states, respectively.
- In the diagrams, a
switch casing 10 consists of a terminal base 11 and acover 12. The terminal base 11 is made of a plate-like synthetic resin having an electrical insulating property and constructs a lower plate of theswitch casing 10. Vertically projecting portions 11a and 11b are formed on both of the left and right end portions of the terminal base 11. Thecover 12 is assembled onto the terminal base 11. A pair of notchedportions cover 12 made of a synthetic resin, respectively. - A
common terminal member 13, aterminal member 14 for normally closed type contact, and aterminal memeber 15 for normally open type contact are fixed to the terminal base 11.Inner end portions terminal members contacts inner end portions movable member 18 is arranged in the lateral (right/left) direction. Themovable member 18 is made of a conductive material and has a almost rectangular shape having a large opening in the central position. Amovable contact 19 which faces both of thefixed contacts free end portion 18a. Abase end portion 18b is fitted into a firstpivotal groove 20 formed on the left end surface of aninner end portions 13a of thecommon terminal member 13. Thebase end portion 18b is rotatably pivotally supported by thisgroove 20. - A
rectangular hole 21 is formed in atop plate 12c of thecover 12. Apush button 22 made of a synthetic resin is inserted into thehole 21 and can be vertically moved between theinner end portion 13a of thecommon terminal member 13 and theinner end portions terminal members - A
swingable lever 23 is formed into a substantially S shape. Anedge portion 24 formed on the side of a base end portion 23a of theswingable lever 23 is fitted into and rotatably pivotally supported to a secondpivotal groove 25 formed on the right side surface of theinner end portion 13a of thecommon terminal member 13. Afree end portion 23b of thelever 23 is pushed by the lower surface of thepush button 22. - A
compression spring 26 is made of a leaf spring and formed into an almost arc shape. Aleft end portion 26a of thespring 26 is fitted into alateral groove 27 formed in the central portion of theswingable lever 23. Notchedportions 28 formed in aright end portion 26b are come into engagement with engagingprojections 29 formed on the free end side of themovable member 28, thereby applying a return spring force to themovable member 18. - A pair of restricting
plates push button 22, thereby restricting the position of themovable member 18 in the width direction. Projectingportions plates cover 12 respectively. - Engaging
projections 34 are formed on both of the front and rear walls of the terminal base 11. Engagingholes 35 are formed in both of the front and rear walls of thecover 12 and are brought into engagement with the engagingprojections 34 when thecover 12 is assembled onto the terminal base 11. - A swingable
lever positioning projection 36 is formed by an elongated portion of the inner end of thecommon terminal member 13 and is bent toward the side of theswingable lever 23. Thefree end portion 23b of theswingable lever 23 to which theleft end portion 26a of thecompression spring 26 is pivotally attached is brought to the settable position of thepush button 22 by thepositioning projection 36 as will be described later. Aconcave portion 37 to bend the projection is formed in theinner end portion 13a of thecommon terminal member 13. - An assembling procedure of the microswitch will now be described with reference to Figs. 7a to 7f.
- First, the
base end portion 18b of themovable member 18 is fitted into the firstpivotal groove 20 in thecommon terminal member 13 as shown in Fig. 7a. Then, theswingable lever 23 is set to an almost vertical position and theedge portion 24 is pivotally fitted into the secondpivotal groove 25 as shown in Fig. 7b. Further, as shown in Fig. 7c, the notchedportions 28 on the right end side of thecompression spring 26 are movably attached to the engagingprojections 29 on the free end portion of themovable member 18. Theleft end portion 26a of thecompression spring 26 is downwardly moved along the right side surface of theswingable lever 23 and is movably fitted into thelateral groove 27 of theswingable lever 23 as shown in Fig. 7d. After that, in theconcave portion 37, thepositioning projection 36 formed in theinner end portion 13a of thecommon terminal member 13 is bent to the right as shown in Fig. 7e. Theswingable lever 23 is inclined to the right by theprojection 36, thereby positioning so that thefree end portion 23b of thelever 23 is brought to the settable position of thepush button 22. Finally, as shown in Fig. 7f, by assembling thecover 12 having thepush button 22 onto the terminal base 11, thepush button 22 is set to the settable position of theswingable lever 23.
The operation of the above structure will now be described. - When the
push button 22 is depressed from the position of Fig 6a, theswingable lever 23 rotates clockwise around the pivotal supporting portion 24 (25) on tile base end side as a rotational center. Therefore, the pivotal supportingportion 26a (27) on the left end side of thecompression spring 26 is compressed while being deformed downwardly by the arc-like motion around the pivotal supporting portion 24 (25) as a rotational center. Further, by depressing thepush button 22, when theleft end portion 26a (27) of thecompression spring 26 exceeds a change point corresponding to the height level position of the pivotal supportingportion 18b (20) on the base end side of themovable member 18 and is deformed downwardly, the spring force of thecompression spring 26 is released. Thus, thefree end portion 18a of themovable member 18 rotates counterclockwise around the pivotal supportingportion 18b (20) as a rotational center by the snap action. Consequently, as shown in Fig. 6b, themovable contact 19 is away from the normally closed type fixedcontact 16 and is come into contact with the normally open type fixedcontact 17, thereby electrically connecting theterminal member 15 and thecommon terminal member 13. - When the pushing operation of the
push button 22 is released from the state of Fig. 6b, theswingable lever 23 rotates counterclockwise and themovable contact 19 is returned to the original state of Fig. 6a by the operations opposite to the above, thereby electrically connecting theterminal member 14 for normally closedtype contact 16 and thecommon terminal member 13. - Since the operating force of the
push button 22 is propagated to themovable member 18 through theswingable lever 23 andcompression spring 26, the operating stroke can be enhanced by theswingable lever 23 and a long stroke of about 3 mm can be obtained. Moreover, the necessary space can be reduced as compared with the conventional structure (in the example shown in Fig. 2) in which the operating stroke is enhanced by the operating lever provided in the outside of the switch casing. On the other hand, the number of parts can be reduced as compared with the conventional structure (in the example shown in Fig. 3) in which the operating stroke is enhanced by the spring member arranged in the push button. - Further, since the pivotal supporting
portion 26a (27) with theswingable lever 23 of thecompression spring 26 is moved like an arc around the pivotal supporting portion 24 (25) of thelever 23 as a rotational center, an operating characteristic as shown in Fig. 8 is derived. That is, the ratio of the change in operating force to the operating distance at a position near the operation limit position decreases and the good operating feeling can be obtained. - According to the embodiment, the inner end elongated portion of the
common terminal member 13 is bent to thereby form theprojection 36. Therefore, theswingable lever 23 is brought to the push button settable position, so that thepush button 22 faces thefree end portion 23b of theswingable lever 23 by assembling thecover 12 onto the terminal base 11. In other words, the automatic assembling works can be easily performed and the productivity can be improved. - In the embodiment, the swingable
lever positioning projection 36 has been constructed by thebent portion 37 of the inner end portion of thecommon terminal member 13. However, theprojection 36 can be also formed by aboss portion 61 formed on the inner wall of the terminal base 11 as shown in Fig. 9. - On the other hand, the positions of the
movable member 18 and the like are restricted in the width direction by the restrictingplates push button 22. Also, the restrictingplates portions plates switch casing 10. Therefore, themovable member 18 and the like are properly held without shaking. - Although the foregoing example has been described with respect to the structure having a pair of
terminal members
Claims (5)
- A method of assembling a microswitch comprising the steps:- fitting a base end portion (18b) of a movable member (18) into a first groove (20) formed in a common terminal member (13);- setting a swingable lever (23) into an almost vertical position with an edge portion (24) thereof pivotally fitted into a second pivotal groove (25);- movably attaching notched portions (28) formed on one side of a leaf-type compression spring (26) to engaging projections (29) at a free end of said movable member (18);- moving an opposite end portion (26a) of said compression spring (26) downwardly along a front surface of said swingable lever (23) up to a central portion of said swingable lever (23);- providing a positioning projection (36;61) for said swingable lever (23) such that a free end portion (23b) thereof is maintained projecting into an actuating path of a push button (22); and- placing a housing onto the above structure having said push button (22) guided therein for acting on said free end portion (23b) of said swingable lever (23).
- A microswitch obtainable by the method of claim 1, wherein
said positioning projection (36) is formed by a bent member on the inner end side of said common terminal member (13). - A microswitch obtainable by the method of claim 1, wherein
said positioning projection is formed by a boss portion (61) formed on an inner wall of said terminal base (11),and adapted for engagement with that end of said swingable lever (23) pivotally supported by said inner end portion of said first common terminal member (13). - A microswitch according to claim 2 or 3, wherein
said opposite end of said compression spring (26) is engaged in a lateral groove (27) in said central portion of said swingable lever (23). - A microswitch according to claim 2,3 or 4, further comprising:
a pair of front and rear restricting members (30, 31), formed vertically downwardly at lower ends of said push button (22), for restricting the position of said movable member (18) in a width direction; and
guide portions (32, 33), formed on an inner wall of said switch casing (10), for guiding the vertical motions of said restricting members (30, 31).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1987154541U JPH066432Y2 (en) | 1987-10-08 | 1987-10-08 | Micro switch |
JP154541/87U | 1987-10-08 |
Publications (3)
Publication Number | Publication Date |
---|---|
EP0314925A2 EP0314925A2 (en) | 1989-05-10 |
EP0314925A3 EP0314925A3 (en) | 1989-06-07 |
EP0314925B1 true EP0314925B1 (en) | 1994-07-27 |
Family
ID=15586513
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP88116375A Expired - Lifetime EP0314925B1 (en) | 1987-10-08 | 1988-10-04 | Microswitch |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP0314925B1 (en) |
JP (1) | JPH066432Y2 (en) |
AT (1) | ATE109303T1 (en) |
DE (1) | DE3850848T2 (en) |
Families Citing this family (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2716746B1 (en) * | 1993-04-07 | 1997-01-10 | Roger Vialy | Snap-action microswitch with friction contacts. |
JP5848219B2 (en) * | 2012-09-13 | 2016-01-27 | アルプス電気株式会社 | Press switch device |
JP2014060107A (en) * | 2012-09-19 | 2014-04-03 | Alps Electric Co Ltd | Switch device |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR1529781A (en) * | 1967-05-08 | 1968-06-21 | Cem Comp Electro Mec | Improvements to sensitive snap-action switches |
US4559422A (en) * | 1982-06-21 | 1985-12-17 | Mironenko Vyacheslav G | Microswitch |
JPS59138131U (en) * | 1983-03-05 | 1984-09-14 | オムロン株式会社 | push button switch |
HU189816B (en) * | 1984-02-08 | 1986-08-28 | Kontakta,Hu | Precision click switch |
FR2588999A1 (en) * | 1985-10-22 | 1987-04-24 | Rogero Jean | IMPROVEMENTS TO SUSPENDED RUPTURE CONTACTORS |
-
1987
- 1987-10-08 JP JP1987154541U patent/JPH066432Y2/en not_active Expired - Lifetime
-
1988
- 1988-10-04 EP EP88116375A patent/EP0314925B1/en not_active Expired - Lifetime
- 1988-10-04 DE DE3850848T patent/DE3850848T2/en not_active Expired - Lifetime
- 1988-10-04 AT AT88116375T patent/ATE109303T1/en not_active IP Right Cessation
Also Published As
Publication number | Publication date |
---|---|
ATE109303T1 (en) | 1994-08-15 |
EP0314925A2 (en) | 1989-05-10 |
DE3850848T2 (en) | 1995-03-30 |
JPH066432Y2 (en) | 1994-02-16 |
EP0314925A3 (en) | 1989-06-07 |
DE3850848D1 (en) | 1994-09-01 |
JPH0160423U (en) | 1989-04-17 |
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