1. Field of the Invention
This invention relates to a multi-directional operating switch assembly, more particularly to a multi-directional operating switch assembly including an operating lever that is operable to move in a first direction to actuate a first switch and in a second direction different from the first direction to actuate a second switch.
2. Description of the Related Art
In operation, when the operating member 310 is pressed to move downwardly in the third direction, the confining member 306 is pushed by the disc 3101 to press against the urging member 305 and the button switch 304 to thereby actuate the button switch 304. When the operating member 310 is moved in the second direction, the first actuating plate 314 is driven by the operating member 310 to move in the second direction to actuate the first switch 308, and when the operating member 310 is moved in the first direction, the second actuating plate 315 is driven by the operating member 310 to move in the first direction to actuate the second switch 309.
Since the confining member 306 and the urging member 305 surround the button switch 304, the confining member 306 and the urging member 305 are necessarily made large in size, which undesirably enlarges overall dimensions of the aforesaid conventional switch assembly. Moreover, the entire structure of the aforesaid conventional switch assembly is complicated.
Therefore, the object of this invention is to provide a multi-directional operating switch assembly that is capable of overcoming at least one of the aforesaid drawbacks of the prior art.
According to the present invention, a multi-directional operating switch assembly includes: a recessed base; a first switch disposed in the recessed base; a second switch disposed in the recessed base; a slider disposed slidably in the recessed base and having a main part and a protrusion protruding from the main part, the slider being slidably relative to the recessed base in a first direction so as to actuate the first switch; an operating lever having a slot defined by a slot-defining wall, the protrusion of the slider extending into the slot, the operating lever being movably supported on the main part of the slider, being movable relative to the recessed base in the first direction to drive the slider to move in the first direction, and being further movable relative to the slider in a second direction to actuate the second switch, the first and second directions crossing each other; and an urging member disposed in the slot and abutting against the protrusion of the slider and the slot-defining wall such that the urging member accumulates a restoring force when the operating lever is moved in the second direction to actuate the second switch.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments of the invention, with reference to the accompanying drawings. In the drawings:
Before the present invention is described in greater detail with reference to the accompanying preferred embodiments, it should be noted herein that like elements are denoted by the same reference numerals throughout the disclosure.
The multi-directional operating switch assembly includes: a recessed base 1 having a top opening 10 and a side notch 15; a first switch 4 disposed in the recessed base 1; a second switch 6 disposed in the recessed base 1; a slider 5 disposed slidably in the recessed base 1 and having a flat main part 54 and a protrusion 512 protruding upwardly from the main part 54, the slider 5 being slidable relative to the recessed base 1 in a first direction (X) so as to actuate the first switch 4; an operating lever 7 having a slot 71 defined by a slot-defining wall 70, the protrusion 512 of the slider 5 extending into the slot 71, the operating lever 7 being movably supported on the main part 54 of the slider 5, extending outwardly through the side notch 15 in a second direction (Y), being movable relative to the recessed base 1 in the first direction (X) to drive the slider 5 to move in the first direction (X), and being further movable relative to the slider 5 in the second direction (Y) to actuate the second switch 6, the first and second directions (X, Y) crossing each other; a first urging member 31 disposed in the slot 71 and abutting against the protrusion 512 of the slider 5 and the slot-defining wall 70 such that the first urging member 31 accumulates a restoring force when the operating lever 7 is moved in the second direction (Y) to actuate the second switch 6; and a cover 2 covering the top opening 10 of the recessed base 1.
In this embodiment, the second switch 6 includes: two opposite conductive fixed contacts 62 secured to the recessed base 1; a conductive middle contact 63 secured to the recessed base 1 and disposed between the fixed contacts 62; a conductive flexible contact 61 convex in shape, having two opposing portions in constant contact with the fixed contacts 62, respectively, and flexible to bend toward and away from the middle contact 63; a blocking plate 9 secured to the recessed base 1 and having a slanted driving surface 92 slanted downwardly relative to the second direction (Y); and an actuating part 8 mounted movably in the recessed base 1 and having a flexible arm 83.
The middle contact 63 and the fixed contacts 62 are respectively connected to terminals (not shown) embedded in the recessed base 1 for external connection to a circuit (not shown). The operating lever 7 is movable in the second direction (Y) relative to the slider 5 to drive the actuating part 8 to move in the second direction (Y) from a normal position (see
In this embodiment, the flexible arm 83 has a free end that has a curved guiding surface 84 in contact with the driving surface 92 of the blocking plate 9 for tracing along the driving surface 92 toward and away from the flexible contact 61 upon movement of the actuating part 8 in the second direction (Y). The free end of the flexible arm 83 further has a nose 85 protruding therefrom toward the flexible contact 61 for pressing the flexible contact 61 to bend toward the middle contact 63. An insulator sheet 102 is disposed between a bottom side of the actuating part 8 and the flexible contact 61 so as to electrically isolate the flexible arm 83 from the flexible contact 61.
The actuating part 8 further has a supporting frame 86 defining a frame space 87, and an abutting wall 82 extending upwardly from one side of the supporting frame 86. The flexible arm 83 extends from the side of the supporting frame 86 into the frame space 87 in the second direction (Y). The abutting wall 82 is transverse to the flexible arm 83. The operating lever 7 further has an abutting end 72 that is in contact with the abutting wall 82 of the actuating part 8 so as to drive movement of the actuating part 8 in the second direction (Y) when moving in the second direction (Y).
The recessed base 1 is formed with a middle recess and two retaining recesses 136 disposed respectively at two opposite sides of the middle recess 13. The actuating part 8 is received movably in the middle recess 13. The blocking plate 9 includes a base portion 91 formed with an aperture 910 defined by an aperture-defining wall 910′, a bent portion 92′ extending from the aperture-defining wall 910′ into the middle recess 13 and defining the slanted driving surface 92, and two side portions 93 extending from two opposite sides of the base portion 91 into the retaining recesses 136 and formed with retaining holes 930, respectively. Each of the retaining recesses 136 is defined by a recess-defining wall 1361 that is formed with a retaining tongue 135 protruding therefrom into the retaining hole 930 in a respective one of the side portions 93 so as to secure the blocking plate 9 to the recessed base 1.
The recessed base 1 is further formed with a first guiding groove 120 extending in the first direction (X), a retaining groove 111 parallel to the guiding groove 120, and two opposite second guiding grooves 112 extending oppositely from two ends of the retaining groove 111 in the first direction (X) and having a width less than that of the retaining groove 111. The retaining groove 111 is defined by a groove-defining wall. Each of the second guiding grooves 112 is defined by a groove-defining wall. The groove-defining wall of the retaining groove 111 and the groove-defining wall of each of the second guiding grooves 112 cooperatively define a shoulder 113 therebetween. The main plate 54 of the slider 5 covers a top side of the retaining groove 111, and is formed with a bottom groove 541 that cooperates with the retaining groove 111 to define a cylindrical spring-confining space.
In this embodiment, the first switch 4 includes conductive first and second contacts 451, 452 opposite to each other in the first direction (X) and secured to the recessed base 1, a conductive common contact 453 secured to the recessed base 1 and disposed between and spaced apart from the first and second contacts 451, 452, a conductive member 40 connected to the slider 5 and movably received in the first guiding groove 120, and a second urging member 32 received in the spring-confining space defined by the bottom groove 541 and the retaining groove 111 and having two opposite ends abutting against the shoulders 113, respectively. The first and second contacts 451, 452 and the common contact 453 are attached to a wall confining a bottom side of the first guiding groove 120, and are respectively connected to terminals (not shown) embedded in the recessed base 1 for external connection to a circuit (not shown).
The slider 5 is movable in the first direction (X) between a first position (see
The conductive member 40 bridges the first contact 451 and the common contact 453 when the slider 5 is disposed at the first position (see
In this embodiment, the main plate 54 of the slider 5 is further formed with a pair of inserts 56. The conductive member 40 includes a conductive elongate plate 41 that is slightly resilient and that is formed with a pair of insert holes 42 and a pair of pivot joints 43, and two conductive rollers 44 pivoted to two opposite ends of the conductive elongate plate 41 through the pivot joints 43, respectively. The inserts 56 of the main plate 54 extend fittingly through the insert holes 42 so as to secure the conductive member 40 to the slider 5. The rollers 44 are in contact with the first contact 451 and the common contact 453, respectively, when the slider 5 is disposed at the first position, and are in contact with the second contact 452 and the common contact 453, respectively, when the slider 5 is disposed at the second position.
The base 1 further has two opposite side walls that are formed with engaging projections 16, respectively. The cover 2 includes a cover plate portion 21 covering the top opening 10 of the base 1, and two opposite side tab portions 22 extending from the cover plate portion 21 and formed with engaging holes for extension of the engaging projections 16 therethrough, respectively, so as to secure the cover 2 to the base 1.
By forming the slot 71 in the operating lever 7 for extension of the protrusion 512 of the slider 5 therethrough and by disposing the first urging member 31 in the slot 71 to abut against the protrusion 512 and the operating lever 7 for restoring the operating lever 7 of the multi-directional operating switch assembly to its original position, at least the aforesaid size problem associated with the prior art can be eliminated.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretations and equivalent arrangements.
Number | Date | Country | Kind |
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098208620 | May 2009 | TW | national |