US988534A - Mechanical movement for end-cell switches. - Google Patents
Mechanical movement for end-cell switches. Download PDFInfo
- Publication number
- US988534A US988534A US56806710A US1910568067A US988534A US 988534 A US988534 A US 988534A US 56806710 A US56806710 A US 56806710A US 1910568067 A US1910568067 A US 1910568067A US 988534 A US988534 A US 988534A
- Authority
- US
- United States
- Prior art keywords
- cams
- mechanical movement
- follower
- pair
- cell switches
- 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
Images
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H19/00—Switches operated by an operating part which is rotatable about a longitudinal axis thereof and which is acted upon directly by a solid body external to the switch, e.g. by a hand
- H01H19/54—Switches operated by an operating part which is rotatable about a longitudinal axis thereof and which is acted upon directly by a solid body external to the switch, e.g. by a hand the operating part having at least five or an unspecified number of operative positions
- H01H19/60—Angularly-movable actuating part carrying no contacts
- H01H19/62—Contacts actuated by radial cams
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T74/00—Machine element or mechanism
- Y10T74/21—Elements
- Y10T74/2101—Cams
- Y10T74/2107—Follower
Definitions
- MECHANICAL MOVEMENT FOB END-CELL SWITCHES.
- the principal objects of the present invention are to provide an eflicientmechanical movement which can be readily timed for operation so as to make electrical contact only when certain other parts of the switch are in position appropriate for this operation, and to provide for the convenient adjustment of the parts of the mechanism so as to change its time of operation.
- Figure 1 is a sectional View of so much of such parts of an end cell switch as are nec- 2 essary for illustrating, in application thereto, the mechanical movement of the invention, showing the parts in normal position.
- Fig. 2 is a bottom view of the mechanism shown in Fig. 1, with certain of the upper parts removed for the sake of clearness, and Figs. 3 and 4, are detail elevational views showing different positions of the parts.
- This shaft 1 may be the driving screw of an end cell switch, or it may be a shaft controlled by the movement thereof. So far as the present invention is concerned all that need be said is that when the shaft 1 begins to turn in one direction or the other, an electrical contact is to be made and when it has turned a certain amount, the contact is to be broken. Those skilled in the 'art will understand that the breaking of this electrical contact serves to arrest the brush of the switch on the center of, or at any rate, in proper position with respect to the contact with which it cooperates.
- cams 8 and 4 Mounted on the shaft 1 are a pair of cams 8 and 4, each having a high part 5 and a low part 6. These cams being interconnected are rotated in both directions just as is the shaft 1.
- the cams are shown as independently connected to the shaft 1 as by means of set screws 7 so that the cams can be in- Specification of Letters Patent.
- cams can be permanently connected and then applied to the shaft, if desired.
- the pawls are arranged one above and one below the point 9 of pivotal support of the follower and they are arranged in different planes so as to cooperate respectively with the cams.
- the lower portion of the follower is forked or bifurcated and the pawls, pivot 9 and parts 10 and 11 are arranged in such forked or bifurcated portion.
- each of the pawls occupies a low part of the cams and the shaft 1 and the cams are at rest.
- This condition of affairs is shown in Fig. 1.
- the pawl 18 rides out of the low part of the cam 3 onto the high part thereof and in so doing its tail continues to abut on the stop 20 and thus the follower 8 is swung toward the left into engagement with the contact 16, and the buffer 12 yields for this purpose.
- the pawl 19 rides inoperatively upon the high part of the cam i and the tail of this pawl. 19 is turned clear of its stop 20. This is shown in Fig. If the cams and shaft 1 be turned.
- a mechanical movement for end cell switches the combination of a pair of interconnected cams each having a high and a low part and adapted for rotation in both directions, and a normally positioned pivotal follower provided with a pair of pawls each operative in one direction and inoperative in the other direction, said pawls occnpying the low parts of the cams when the follower is in normal position and one pawl in operative position engaging a high part of one cam and the other pawl in inoperative position riding idly over the high part of the other cam, whereby the follower is swung to one side or the other according as the cams are turned in one direction or the other.
Landscapes
- Mechanisms For Operating Contacts (AREA)
Description
J. W. AGHARD.
' MECHANICAL MOVEMENT FOR END GBLL SWITCHES.
APPLICATION FILED JUNE 21, 1910.
Patented Apr. 4, 1911.
W/IWESSES:
Mai-w UNTTED STATES PATENT OFFICE.
JOHN W. ACI-IABD, F PHILADELPHIA, PENNSYLVANIA.
MECHANICAL MOVEMENT FOB. END-CELL SWITCHES.
To all whom it may concern:
Be it known that I, JOHN W. ACHARD, a citizen of the United States, and resident of Philadelphia, in the county of Philadelphia and State of Pennsylvania, have invented a certain new and useful Mechanical Movement for End-Cell Switches, of which the following is a specification.
The principal objects of the present invention are to provide an eflicientmechanical movement which can be readily timed for operation so as to make electrical contact only when certain other parts of the switch are in position appropriate for this operation, and to provide for the convenient adjustment of the parts of the mechanism so as to change its time of operation.
The invention will be claimed at the end hereof, but will first be described in con- 0 nection with the particular, but not the only, embodiment of it chosen for illustration in the accompanying drawings, in which Figure 1, is a sectional View of so much of such parts of an end cell switch as are nec- 2 essary for illustrating, in application thereto, the mechanical movement of the invention, showing the parts in normal position. Fig. 2, is a bottom view of the mechanism shown in Fig. 1, with certain of the upper parts removed for the sake of clearness, and Figs. 3 and 4, are detail elevational views showing different positions of the parts.
In the drawings 1 is a shaft which turns first in one direction and then in the other.
It is shown as mounted in bearings in the frame 2. This shaft 1 may be the driving screw of an end cell switch, or it may be a shaft controlled by the movement thereof. So far as the present invention is concerned all that need be said is that when the shaft 1 begins to turn in one direction or the other, an electrical contact is to be made and when it has turned a certain amount, the contact is to be broken. Those skilled in the 'art will understand that the breaking of this electrical contact serves to arrest the brush of the switch on the center of, or at any rate, in proper position with respect to the contact with which it cooperates.
i Mounted on the shaft 1 are a pair of cams 8 and 4, each having a high part 5 and a low part 6. These cams being interconnected are rotated in both directions just as is the shaft 1. The cams are shown as independently connected to the shaft 1 as by means of set screws 7 so that the cams can be in- Specification of Letters Patent.
Application filed June 21, 1910.
Patented Apr. 4, 1911. Serial No. 568,067.
dependently adjusted or set. This is a matter of considerable advantage, but of course the cams can be permanently connected and then applied to the shaft, if desired.
8, is a normally positioned follower. It is shown to be pivoted at: 9 to a portion of the frame 2 or to some other fixed support and it is provided with stops 10 and 11 which c0- operate with a buffer 12, mounted on an endwise movable rod 13 that is pressed by a spring 14 toward the right in the drawings. The purpose of this is to normally position the follower as shown in Fig. 1. The spring 14 abuts upon a collar formed on the rod 13 and upon a sleeve 15, through which the rod works and which is adjustably connected as by means of a screw, thread and nut, to a portion of the frame 2. In this way the tension of the spring can be adjustec. At its upper end the follower cooperates with the contacts 16 and 17 that is to say, its upper end touches one or the other of the contacts according as the cams are turned in one direction or the other and this it does at and for appropriate intervals of time.
18 and 19, are a pair of movable pawls, each operative in one direction, that is to say, there is a stop 20 upon which the tail of the pivoted pawl abuts when the pawl is turned in one direction and from which the tail of the pawl may freely move when the pawl is turned in the other direction.
21, are springs for normally holding the tails of the pawls up againstthe stops 20.
As shown the pawls are arranged one above and one below the point 9 of pivotal support of the follower and they are arranged in different planes so as to cooperate respectively with the cams. In the particular embodiment of the invention chosen for illustration the lower portion of the follower is forked or bifurcated and the pawls, pivot 9 and parts 10 and 11 are arranged in such forked or bifurcated portion.
In normal position each of the pawls occupies a low part of the cams and the shaft 1 and the cams are at rest. This condition of affairs is shown in Fig. 1. If the shaft 1 and cams are rotated in a clock-wise direction the pawl 18 rides out of the low part of the cam 3 onto the high part thereof and in so doing its tail continues to abut on the stop 20 and thus the follower 8 is swung toward the left into engagement with the contact 16, and the buffer 12 yields for this purpose. The pawl 19 rides inoperatively upon the high part of the cam i and the tail of this pawl. 19 is turned clear of its stop 20. This is shown in Fig. If the cams and shaft 1 be turned. in a count-erclockwise direction the pawl 19 is operative and the pawl 18 is inoperative, as shown in Fig. &, and the follower S is swung toward the right into engagement with the contact l7. The mode of operation of the various parts is as described in connection with Fig. 3, except that the parts are reversed.
What I claim is:
1. In a mechanical movement for end cell switches the combination of a pair of interconnected cams each having a high and a low part and adapted for rotation in both directions, and a normally positioned pivotal follower provided with a pair of pawls each operative in one direction and inoperative in the other direction, said pawls occnpying the low parts of the cams when the follower is in normal position and one pawl in operative position engaging a high part of one cam and the other pawl in inoperative position riding idly over the high part of the other cam, whereby the follower is swung to one side or the other according as the cams are turned in one direction or the other.
2. In a mechanical movement for end cell switches the combination of a pair of interconnected separately adjnstable cams each having a high and a low part and adapted for rotation in both directions, and 21 normally positioned pivotal follower provided with a pair of movable pawls cooperating respectively with said cams and each operative in one direction and inoperative in the other direction, substantially as described.
3. In a mechanical movement for end cell switches the combination of a pair of interconnected cams having high and low parts and provided for rotation in both directions. a pivotal follower provided with a pair of pawls adapted to cooperate with said cams and each operative in one direction and inoperative in the other direction, a spring pressed buffer, and a pair of stops on the follower with which said bnller cooperates, substantially as described.
4. in a mechanical movement for end cell switches the combination of a pair of interconnected cams having high and low parts and provided for rotation in both directions, a pivotal follower provided with a pair of pawls adapted to cooperate with said cams and each operative in one direction and inoperative in the other direction, a batter and a pair of stops on the follower with which said butter cooperates, a spring for pressing the buffer, and means for adjusting the tension of the spring.
In a mechanical movement for end cell switches the combination of a pair of interconnected iain's having high and low parts and adapted for rotation in both directions, a pair of contacts spaced apart, a normally positioned follower adapted to swing into contact with each of said contacts and provided with a pair of pawls cooperating respectively with said cams and each operative in one direction and inoperative in the other direction, substantially as described.
In testimony whereof I have hereunto signed my name.
JOHN d ACHARD.
Witnesses:
J. Lns'rnn lVoonLUnon, T. L. l-LmmmRsL-r.
Copies of this patent may be obtained for five cents each, by addressing the Commissioner of Patents,
Washington, I C.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US56806710A US988534A (en) | 1910-06-21 | 1910-06-21 | Mechanical movement for end-cell switches. |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US56806710A US988534A (en) | 1910-06-21 | 1910-06-21 | Mechanical movement for end-cell switches. |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US988534A true US988534A (en) | 1911-04-04 |
Family
ID=3056872
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US56806710A Expired - Lifetime US988534A (en) | 1910-06-21 | 1910-06-21 | Mechanical movement for end-cell switches. |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US988534A (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4481839A (en) * | 1981-04-23 | 1984-11-13 | Sasib S.P.A. | Modular rocking lever for cam mechanisms |
-
1910
- 1910-06-21 US US56806710A patent/US988534A/en not_active Expired - Lifetime
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4481839A (en) * | 1981-04-23 | 1984-11-13 | Sasib S.P.A. | Modular rocking lever for cam mechanisms |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| US988534A (en) | Mechanical movement for end-cell switches. | |
| US2399123A (en) | Quick-action mechanism | |
| US1364268A (en) | Searchlight apparatus | |
| US2070072A (en) | Ignition timer | |
| US1680732A (en) | Control apparatus | |
| US1618963A (en) | Snap-action mechanism | |
| US384440A (en) | Electric-circuit controller | |
| US1331076A (en) | Cam | |
| US1293309A (en) | Snap-switch. | |
| US1091505A (en) | Switching device. | |
| US811590A (en) | Needle-operating mechanism for looms. | |
| US1768943A (en) | Switch | |
| US852386A (en) | Hand-operated electric-circuit controller. | |
| US1848349A (en) | Circuit controller | |
| US1126043A (en) | Circuit-controller. | |
| US1053969A (en) | Mechanical movement. | |
| US1019883A (en) | Telegraph-transmitter. | |
| US656291A (en) | Switch. | |
| US1705692A (en) | Switch mechanism | |
| US2799172A (en) | Switch operating mechanism | |
| US474921A (en) | pfannkuche | |
| US1183144A (en) | Glass-cutting machine. | |
| US717227A (en) | Electrical switch. | |
| US480722A (en) | Frederick d a | |
| US436412A (en) | Frederick d a |