US994588A - Pull-socket. - Google Patents

Pull-socket. Download PDF

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Publication number
US994588A
US994588A US57295710A US1910572957A US994588A US 994588 A US994588 A US 994588A US 57295710 A US57295710 A US 57295710A US 1910572957 A US1910572957 A US 1910572957A US 994588 A US994588 A US 994588A
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United States
Prior art keywords
spring
plate
pull
socket
insulating
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Expired - Lifetime
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US57295710A
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Harvey Hubbell
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Harvey Hubbell Inc
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Individual
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R33/00Coupling devices specially adapted for supporting apparatus and having one part acting as a holder providing support and electrical connection via a counterpart which is structurally associated with the apparatus, e.g. lamp holders; Separate parts thereof
    • H01R33/945Holders with built-in electrical component
    • H01R33/955Holders with built-in electrical component with switch operated manually and independent of engagement or disengagement of coupling
    • H01R33/9555Holders with built-in electrical component with switch operated manually and independent of engagement or disengagement of coupling for screw type coupling devices

Definitions

  • WITNESSES 5
  • This invention has for its object to sunlify, cheapen and to generally improve the construction and mode of operation ofelectri'c pull sockets, and especially to provide a compact and ornamental pull socket which .block is provided with four shall operate in such a manner as to break the circuit at two points simultaneously.
  • Figure 1 is an elevation of my novel socket partly broken away to show the operating mechanism
  • Fig. 2 is a detail sectional View, on an enlarged scale, on the line 2-2 in Fig. 3
  • Fig. 3 a plan view, the'standard being in section on the line 3 3 in Fig. 2 looking in the direction of the arrows
  • Fig. 4 is a detail sectional view illustrating the mode of regulating the tension of the operating spring
  • Fig. 5 an inverted plan
  • Figs. 6, 7 and 8 are respectively plan, edge and inverted plan views of the operating wheel.
  • 10 denotes the socket shell, 11 and 12 the upper and lower insulating blocks which are held rigidly in place by standards 13 and 14, and 15 the screw shell held in place by ascrew 16 whi h passes through the lower insulating block and engages standard 14.
  • 19 denotes a plate lying upon the surface of one of these inclines and having an extension which is turned under the base of standard 13 and is held in close engagement therewith by the screw 20 which secures said standard in place.
  • i 21 denotes a plate lying upon the surface of the inc-line diametrically opposite to the incline having plate 19, and having an extension which passes under .
  • a metallic cup 22 lying in a central socket 23 in the lower insulatingblock'.
  • Cup 22 is secured in placeby a screw bolt 24 which secures the center contact 25 in place, passes through the lower insulating block and the extension of plate 21 and the head of which lies in 4
  • the center contact shown is a spring contact of ordinary con These I term insulating inclines close engagement with I struction but any other form of center contact may be substituted if preferred.
  • 26 denotes the c'enter post which is provided with a slotted angular head 27 and the, lower end of which is seated in an insulating block 28 which is adapted to slide in cup 22 andis held, and with it the center post, in, a: raised position by a spring 29 which bears against the bottom of the cup and against the insulating block, fully explained.
  • the contact plate which comprises a body' 32 in which a central hub 33 as will presently be is rigidly secured and which is provided with 1 engaging walls 34: and with two downwardly extending springs arins 43 which are adapted to engage the inclines and shoulders on the lower insulating block.
  • the contact plate engages and is adapted to rotate on the ,cen-
  • the insulating operating wheel Winch c mprises an insulating plate 36 havmg an opening 37 and a metal plate 42 coverlng said opening on one side and having an opening with a bearing flange which recelves the center post on which the operating wheel oscillates.
  • a trough shaped chain holder 38 At the periphery of the operating wheel is a trough shaped chain holder 38 in which the operating chain 39 lies and which is provided at its inner end with a. suitable catch 40 with which'the end of the chain is detachably engaged.
  • the chain is preferably of theordinary ball construction and passes along-the chain holder and out through a guide 41 which is rigidly secured in the socket shell.
  • the operating wheel lies over the contact plate as clearly shown in rig. 4.
  • Plate 42 on the operating wheel is provided with'lugs 44 which are adapted to enga e walls 34 on, the contact plate to carry the-fatter forward when the operating wheel is oscillated by a pull upon the chain.
  • the operating wheel gs returned to its normal position after each actuation by an operating spring 45 one end. of which engages a lug 46 on plate 42, the other end engaging a hole 47 in the i, llzl head of the center post.
  • the upper insulating block is provided with an angular recess 51 which is adapted to receive the angular head of the center post loosely and retain it against rotation.
  • Spring 29 acts to normally retain the head of the center post in engagement with the.
  • the operator presses the center post downward against the power of spring 29 until the angular head is out of engagement with the angular recess when the center post may be rotated in either direction as may be required to adjust the tension of the operating spring.
  • the angular head of the center post is placed in alincnient with the .hngular recess and spring 29 will seat thehead in the recess when the pressure upon the head is relieved.
  • Standard 13 is provided with a binding screw 55 andistandard 14 with a binding screw 56 to which conducting wires, not shown, are attached.
  • the current passes from standard 13 to plate 19, to the contact plate, to plate 21 and through screw 24: to the center contact. Returning through the lamp, not shown, the current passes to screwshell 15 and through screw 16 to standard 14 and binding screw 56. It Will be obvious,

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Description

H. HUBBELL.
PULL SOGKET.
APPLIOATION 1111.31) JULY 21, 1910.
994,588. 1 Patented June 6, 1911.
WITNESSES: 5| 6 2/ I INVENTOR I 4 A TTORNE Y HARVEY HUBBELL, 0F BRIDGEPOBT, CONNECTICUT.
PULL-SOCKET.
Application filed July 21, 1910.
Specification of Letters Patent.
Patented June 6, 1911 Serial No. 572,857.
"0 all whom it may concern:
Be it known that I, I-Ianvnr HtnnncL-L, a citizen oi. the United States, residing at Bridgeport, county of Fairfield, State of Connecticut, have invented an Improvement in Pull-Sockets, of which the following 1s a specification.
This invention has for its object to sunlify, cheapen and to generally improve the construction and mode of operation ofelectri'c pull sockets, and especially to provide a compact and ornamental pull socket which .block is provided with four shall operate in such a manner as to break the circuit at two points simultaneously.
With this and other objects in view I have devised the novel structure hereinafter de-' scribed and then particularly pointed out in the clailnshereunto appended.
In the accompanying drawing forming a part of this specification: Figure 1 is an elevation of my novel socket partly broken away to show the operating mechanism; Fig. 2 is a detail sectional View, on an enlarged scale, on the line 2-2 in Fig. 3; Fig. 3 a plan view, the'standard being in section on the line 3 3 in Fig. 2 looking in the direction of the arrows; Fig. 4 is a detail sectional view illustrating the mode of regulating the tension of the operating spring; Fig. 5 an inverted plan; view of the contact'plate detached; Figs. 6, 7 and 8 are respectively plan, edge and inverted plan views of the operating wheel.
, 10 denotes the socket shell, 11 and 12 the upper and lower insulating blocks which are held rigidly in place by standards 13 and 14, and 15 the screw shell held in place by ascrew 16 whi h passes through the lower insulating block and engages standard 14. The upper surface of the lower insulating inclines 17, each terminating in an abrupt shoulder 18. 19 denotes a plate lying upon the surface of one of these inclines and having an extension which is turned under the base of standard 13 and is held in close engagement therewith by the screw 20 which secures said standard in place.
i 21 denotes a plate lying upon the surface of the inc-line diametrically opposite to the incline having plate 19, and having an extension which passes under .a metallic cup 22 lying in a central socket 23 in the lower insulatingblock'.
It will he noted that two of the inclines l7, diametrically opposite each other, are left the "bottom of cup 22.
ter 0st. a?
uncovered. as will presently beidescribed.
Cup 22 is secured in placeby a screw bolt 24 which secures the center contact 25 in place, passes through the lower insulating block and the extension of plate 21 and the head of which lies in 4 The center contact shown is a spring contact of ordinary con These I term insulating inclines close engagement with I struction but any other form of center contact may be substituted if preferred.
26 denotes the c'enter post which is provided with a slotted angular head 27 and the, lower end of which is seated in an insulating block 28 which is adapted to slide in cup 22 andis held, and with it the center post, in, a: raised position by a spring 29 which bears against the bottom of the cup and against the insulating block, fully explained.
31 denotes the contact plate which comprises a body' 32 in which a central hub 33 as will presently be is rigidly secured and which is provided with 1 engaging walls 34: and with two downwardly extending springs arins 43 which are adapted to engage the inclines and shoulders on the lower insulating block. The contact plate engages and is adapted to rotate on the ,cen-
denotes. the insulating operating wheel Winch c mprises an insulating plate 36 havmg an opening 37 and a metal plate 42 coverlng said opening on one side and having an opening with a bearing flange which recelves the center post on which the operating wheel oscillates. At the periphery of the operating wheel is a trough shaped chain holder 38 in which the operating chain 39 lies and which is provided at its inner end with a. suitable catch 40 with which'the end of the chain is detachably engaged. The chain is preferably of theordinary ball construction and passes along-the chain holder and out through a guide 41 which is rigidly secured in the socket shell. i
The operating wheel lies over the contact plate as clearly shown in rig. 4. Plate 42 on the operating wheel is provided with'lugs 44 which are adapted to enga e walls 34 on, the contact plate to carry the-fatter forward when the operating wheel is oscillated by a pull upon the chain. The operating wheel gs returned to its normal position after each actuation by an operating spring 45 one end. of which engages a lug 46 on plate 42, the other end engaging a hole 47 in the i, llzl head of the center post. The upper insulating block is provided with an angular recess 51 which is adapted to receive the angular head of the center post loosely and retain it against rotation.
Spring 29 acts to normally retain the head of the center post in engagement with the.
required to adjust the tension of the operating spring. To adjust this spring the operator presses the center post downward against the power of spring 29 until the angular head is out of engagement with the angular recess when the center post may be rotated in either direction as may be required to adjust the tension of the operating spring. After adjustment of the operating spring the angular head of the center post is placed in alincnient with the .hngular recess and spring 29 will seat thehead in the recess when the pressure upon the head is relieved.
Standard 13 is provided with a binding screw 55 andistandard 14 with a binding screw 56 to which conducting wires, not shown, are attached. The current passes from standard 13 to plate 19, to the contact plate, to plate 21 and through screw 24: to the center contact. Returning through the lamp, not shown, the current passes to screwshell 15 and through screw 16 to standard 14 and binding screw 56. It Will be obvious,
therefore that when the spring arms of the contact plate are in enga ement with plates 19 and 21 the current willbc on. An. actua tion of the operating wheel, as already described, will. carry the spring arms oil from plates 19 and 21. said arms dropping over the abrupt shoulders and into engagement with the insulating inclines thus breaking the currentsimultaneousl y' in two places. I
carries the spring arms of the contact plate oil from the insulating inclines and into 811- gagement with plates 19 and 21 thus closing the circuit again. V
Having thus described my invention I claim:
,1. In a pull socket, the combination with an insulating block, of a metallic cup socketed in said block, a spring in said cup, an insulating block resting on the spring and a center post seated in the insulating lolock.
2" In a pull socket the combination with an insulating block having inclines and plates on certain of said inclines and in the circuit, leaving insulating inclines between the plates, of a metallic cup socketed in the insulating blockai spring in said cup an insulating block resting on the spring a center post seated in the insulating block a rotating contact plate mounted on the center post and electricalconnections. In testimony whereof I aflix my signature in presence of two witnesses.
HARVEY HUBBELL. Vl itnesses A. M. VVoos'rnn, ULAH L. OOATES.
lhe next actuation of the operating Wheel
US57295710A 1910-07-21 1910-07-21 Pull-socket. Expired - Lifetime US994588A (en)

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US57295710A US994588A (en) 1910-07-21 1910-07-21 Pull-socket.

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