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US2951138A - Electric switch actuating mechanism - Google Patents

Electric switch actuating mechanism
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Publication number
US2951138A
US2951138AUS767843AUS76784358AUS2951138AUS 2951138 AUS2951138 AUS 2951138AUS 767843 AUS767843 AUS 767843AUS 76784358 AUS76784358 AUS 76784358AUS 2951138 AUS2951138 AUS 2951138A
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switch
actuator
piston
push button
groove
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US767843A
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Columbus C Petrino
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Aug. 30, 1960 c. c. PETRINO 2,951,138
ELECTRIC SWITCH ACTUATING MECHANISM Filed Oct. 17', 1958 ELECTRIC SWITCH ACTUATING MEC M Columbus C. Petrirro, 409 Fenno St, Revere, Mass. Filed Oct. 17, 1958, Ser. No. 767,843
4 Claims. (Cl. 200-153) parting a linear motion to the same switch actuator such as by pressing rather than rotating the actuator.
It is an object of this invention to provide an improved electric switch actuating mechanism which is operable either by rotation of or pressure on the switch actuator.
It is a further object of this invention to provide an improved electric push button actuating mechanism which is operable by a movement of the actuator in one direction or the other. 1
It is a still further object of this invention to provide an improved electric switch actuating mechanism which is operable by rotation in either direction from a neutral position in which the switch mechanism will reset to the neutral position upon release of the switch actuator.
Further objects and advantages of the present invention will become apparent as the following description proceeds and the features of novelty which characterize the invention will be pointed out with particularity in the claims annexed to and forming a part of this specification.
In accordance with one form of the invention, the
actuator element is directly coupled to a rotatable piston having a pin thereon cooperating with a V-shaped groove in a stationary sleeve surrounding the piston and which, when actuated in a linear direction against the bias of a spring, closes the contacts of the push button. The
V-shaped groove is located with the apex towards the switch actuator such that rotation of the actuator in either direction will produce through the camming action of the pin and the V-shaped groove a linear motion of the piston in a direction against the spring bias and the push button so as to close the switch contacts. The spring will reset the actuator to the neutral position when the actuator is released. The apex of the V-shaped groove extends in an axial direction a distance sufficient to enable the push button to be actuated by linear pressure against the switch actuator in addition to rotation in either direction.
For a better understanding of this invention, reference may be had to the accompanying drawings in which:
Fig. 1 is a perspective view, partially in section, showing a switch actuating mechanism embodying the invention;
Figure 2 is an exploded view showing the various components in a switch actuating mechanism embodying the invention with the piston rotated (for clarity; and
Figure 3 is an elevation and top view of the piston cylinder of the illustrated embodiment of the invention. Referring to the drawings, the switch 1 havingterminals 2 and 3 for connection to an electrical circuit to be controlled (not shown) is positioned withinhousing 4 2,951,138 Patented Aug. 30, 1960 at one end thereof. The positioning of the switch 1 is facilitated by a longitudinal groove 5 extending axially along one edge ofcollar 6 cooperating with the ridge 7 extending axially along the inner surface ofhousing 4. Thecollar 6 of switch 1 is retained by shoulder 8 with theterminals 2. and 3 extending beyond thehousing 4 and the push button 9 located within the housing.
The switch 1 is secured within thehousing 4 by piston cylinder orsleeve 10 disposed therein and having an axial groove 11 cooperating with ridge 7 ofhousing 4 to prevent rotation therebetween. Axial displacement of switch 1 is prevented bycollar 6 of switch 1 being positioned betweenend 12 ofpiston cylinder 10 and shoulder 8 ofhousing 4. A V-shaped cam slot 13 extends around thepiston cylinder 10 with theapex 13 of the V toward the end remote from the switch 1. A coil spring 14 is positioned withinpiston cylinder 10 and is adapted to be compressed between the face ofswitch collar 6 surrounding push button 9 and aswitch actuator piston 15.
Theswitch actuator piston 15 comprises acylindrical portion 16, ashank portion 17, and anend portion 18. Thecylindrical portion 16 ofswitch actuator piston 15 has an aperture 19 therein extending transverse to the axis thereof and adapted to receive apin 20. The pin orprojection 20 extends beyond one side of thecylindrical portion 16 to engage the V-shaped cam slot 13 ofpiston cylinder 16 The switch 1,piston cylinder 10, coil spring 14, andswitch actuator piston 15 are retained within thehousing 4 by shoulder 8 at one end and pedestfl plate 21 at the other end. Pedestal plate 21 has an aperture 22 therein adapted to enableshank portion 17 ofpiston cylinder 10 to pass loosely through. Axial movement ofpiston cylinder 15 away firom the switch 1 is prevented by contact ofshoulder 23 ofpiston 10 with pedestal plate 21. Pedestal plate 21 is firmly secured tohousing 4 byscrews 24 and 25 passing loosely throughapertures 26 and 27 in plate 21 disposed on either side of aperture 22 and screwed into threadedopenings 28 and 29 of flange port-ion 30 ofhousing 4. Theend portion 18 ofswitch piston 15 has a threaded aperture 31 extending axially therein and aflatted portion 32 adapted to cooperate with the fiatted portion 32' ofaperture 33 ofswitch actuator 34. Theswitch actuator 34 is retained in position byscrew 35 passing throughaperture 33 and engaging threaded aperture 31.
Theswitch actuator 34 is adapted for manual operation and may conveniently be in the form of a miniature ships wheel as a decorative design when the switch assembly is utilized for such switch actuator. The entire mounted through use of one associated screws 37.
In operation, the switch 1 may be actuated by rotation ofswitch actuator 34 in either direction or by merely depressing the switch actuator. As a doorbell switch actuator, it is important that pressure on theactuator 34 operate the switch since many persons might not realize that theships wheel actuator 34 may be rotated in order to ring the bell and may attempt to merely depress the actuator. Also, upon rotation ofswitch actuator 34 in either direction,piston 15 is actuated towards push button 9.
Rotation ofactuator 34 in either direction rotatespiston 15 .andpin 20 secured thereto within the V-shaped cam slot orgroove 13 ofstationary piston cylinder 10. The cooperation ofpin 20 with V-shaped slot 13 provides a camming action in whichpiston 15 is rotated and also moves linearly towards switch 1 so as to depress push button 9 and close the contacts associated withleads 2 and 3 thereby ringing a doorbell or closing some other electrical circuit (not shown). Upon release of switch unit may conveniently be ormore openings 36 and applications as adoorbell actuator 34, the coil spring 14 aided by the normal spring action of switch 1 pushes thepiston 15 away from push button '9 and a reverse camming action between cam 21 andcam slot 13 returns the actuator to its neutral position wherein thepin 20 is located at the apex of the V-shaped slot 13. The diameter of thepin 20 is made smaller than the axial distance of theapex 13 of V-shaped slot 13 such that linear pressure onswitch actuator 34 will enable the direct linear movement ofpiston 15. The axial distance A (see Figure 3) is sufiiciently greater than the diameter of pin 14- to enablepin 20 to be moved axially in the apex 313 so thatpiston 15 actuates push button 9 to operate the switch 1.
It is therefore apparent that the switch ll may be actuated by either a rotary motion in either direction of theswitch actuator 34 or a linear motion of theactuator 34. Also, when the actuator is released, the resiliency of the coil spring 14 aided by that of the switch 1 will return the switch to its neutral position wherein the pin 2i) is located at the end of the V-shaped slot 13 closest to theswitch actuator 34.
As is best shown in Figure 3, it is desirable to have a second V-shaped slot 13" inpiston cylinder 16 such thatpin 20 may extend throughpiston 15 and be engaged by the diametricallyopposite slots 13 and 13'.
Therefore, while a particular embodiment of the subject invention has been shown and described herein, this is in the nature of description rather than limitation, and will occur to those skilled in the art that various changes, modifications, and combinations may be made within the province of the appended claims and without departing either in spirit or scope from this invention in its broader aspects.
What I claim as new and desire to secure by Letters Patent of the United States is:
1. A rotary motion-to-linear motion switch actuating mechanism comprising a rotatable member having a first end adapted to be rotated and the other end adapted to actuate a switch, said rotatable member being resiliently biased in a direction of said first end and having a projection extending transverse to the axis of rotation, a stationary member surrounding said rotatable member and having a groove therein adapted to be engaged by and cooperate with said projection, said groove being V-shaped with the apex located remote from said other end whereby rotation of said rotatable member in either direction through the camming action of said projection and groove will produce a linear motion of said rotatable member in a direction against the said bias.
2. A rotary-to-linear push button actuating mechanism comprising a rotatable member having a first end adapted to be rotated and the other end adapted to actuate a push button, said rotatable member being resiliently biased in the direction of said first end and having a projection extending transverse to the axis of rotation, a stationary sleeve member surrounding said rotatable member and having a groove therein adapted to be engaged by and cooperate with said projection, said groove being V- shaped with the apex located remote from said other end of said movable member whereby rotation of said rotatable member in either direction will produce through the camming action between said groove and said projection motion of said movable member in a direction against said bias, and said groove having an opening at said apex in the direction of said axis so as to enable the linear actuation of said movable member against the said bias to actuate said push button.
3. A rotary-to-linear push button actuating mechanism comprising a rotatable piston member having a first end adapted to be rotated and the other end adapted to actuate a push button, said rotatable member being resiliently biased in the direction of said first end by a coil spring between said piston and said push button and having a pin extending transverse to the axis of rotation, a stationary sleeve member surrounding said rotatable member and having a cam groove therein adapted to be engaged by and cooperate with said pin, said groove being V-shaped with the apex located remote from said other end of said movable member whereby rotation of said rotatable member in either direction will produce through the camming action between said groove and said pin motion of said movable member in an axial direction against said bias, and said groove having an opening at said apex in the direction of said axes so as to enable the linear actuation of said movable member against the said bias to actuate said push button.
4. A rotary-to-linear push button actuating mechanism comprising a housing having an opening therein and an axial ridge along the inner surface, a rotatable piston member having a first end adapted to be rotated and the other end adapted to actuate a push button, said rotatable member being resiliently biased in the direction of said first end by a coil spring between said piston and said push button and having a pin extending transverse to the axis of rotation, a stationary sleeve member surrounding said rotatable member and having a cam groove therein adapted to be engaged by and cooperate with said pin, said sleeve member being disposed within said housing and having an axial slot on the outside adapted to cooperate with the ridge of said housing and prevent rotation therebetween, said cam groove being V-shaped with the apex located remote from said other end of said movable member whereby rotation of said rotatable member in either direction will produce through the camming action between said groove and said pin motion of said movable member in an axial direction against said bias, and said cam groove having an opening at said apex in the direction of said axis so as to enable the linear actuation of said movable member against the said bias to actuate said push button.
References Cited in the file of this patent UNITED STATES PATENTS 2,800,806 Sangster July 30, 1957
US767843A1958-10-171958-10-17Electric switch actuating mechanismExpired - LifetimeUS2951138A (en)

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Cited By (9)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3235682A (en)*1964-02-241966-02-15Crouse Hinds CoExplosion proof electrical connector operable upon engagement of plug and receptaclehalves
US4087661A (en)*1975-10-211978-05-02Gustav BergsonSwitch enclosure for hazardous environment having cover removal interlocking defeater assembly
FR2775746A1 (en)*1998-03-091999-09-10Claude DobignyProportional control for an electric motor
US20100323542A1 (en)*2009-06-182010-12-23Thomas & Betts International, Inc.Electrical connector
US8154391B1 (en)*2007-05-022012-04-10Morris Eric DDoor bell button mechanism
WO2015153626A1 (en)*2014-03-312015-10-08Douglas Jon NagelSwivel actuating pressure switch
EP3018672A1 (en)*2014-11-072016-05-11Gorlan Team, S.L.U.Actuating method and device for a helicoidal switch
US10283290B2 (en)2017-04-282019-05-07Carling Technologies, Inc.Rotary switch employing keypad or similar mechanism for position indication
US10832534B1 (en)*2019-07-092020-11-10Rahsaan CurrieDoorbell customization assembly

Citations (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2800806A (en)*1952-09-271957-07-30Arter Grinding Machine CompanyControl mechanism for push button and the like

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2800806A (en)*1952-09-271957-07-30Arter Grinding Machine CompanyControl mechanism for push button and the like

Cited By (14)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3235682A (en)*1964-02-241966-02-15Crouse Hinds CoExplosion proof electrical connector operable upon engagement of plug and receptaclehalves
US4087661A (en)*1975-10-211978-05-02Gustav BergsonSwitch enclosure for hazardous environment having cover removal interlocking defeater assembly
FR2775746A1 (en)*1998-03-091999-09-10Claude DobignyProportional control for an electric motor
US8154391B1 (en)*2007-05-022012-04-10Morris Eric DDoor bell button mechanism
US20100323542A1 (en)*2009-06-182010-12-23Thomas & Betts International, Inc.Electrical connector
US8328573B2 (en)2009-06-182012-12-11Thomas & Betts International, Inc.Electrical connector
WO2015153626A1 (en)*2014-03-312015-10-08Douglas Jon NagelSwivel actuating pressure switch
US9818563B2 (en)2014-03-312017-11-14Donaldson Company, Inc.Swivel actuating pressure switch
EP3127132A4 (en)*2014-03-312017-12-13Donaldson Company, Inc.Swivel actuating pressure switch
EP3018672A1 (en)*2014-11-072016-05-11Gorlan Team, S.L.U.Actuating method and device for a helicoidal switch
WO2016071554A1 (en)*2014-11-072016-05-12Gorlan Team, S.L.U.Method and actuating device for helical switches
US10115545B2 (en)2014-11-072018-10-30Gorlan Team, S.L.U.Actuating method and device for a helicoidal switch
US10283290B2 (en)2017-04-282019-05-07Carling Technologies, Inc.Rotary switch employing keypad or similar mechanism for position indication
US10832534B1 (en)*2019-07-092020-11-10Rahsaan CurrieDoorbell customization assembly

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