US966243A - Wire-clamp. - Google Patents

Wire-clamp. Download PDF

Info

Publication number
US966243A
US966243A US47506809A US1909475068A US966243A US 966243 A US966243 A US 966243A US 47506809 A US47506809 A US 47506809A US 1909475068 A US1909475068 A US 1909475068A US 966243 A US966243 A US 966243A
Authority
US
United States
Prior art keywords
clamp
wire
plate
screw
holes
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
Application number
US47506809A
Inventor
Henry R Ritter
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US47506809A priority Critical patent/US966243A/en
Application granted granted Critical
Publication of US966243A publication Critical patent/US966243A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R4/00Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation
    • H01R4/28Clamped connections, spring connections
    • H01R4/38Clamped connections, spring connections utilising a clamping member acted on by screw or nut
    • H01R4/44Clamping areas on both sides of screw
    • YGENERAL 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
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T24/00Buckles, buttons, clasps, etc.
    • Y10T24/39Cord and rope holders
    • Y10T24/3958Screw clamp
    • Y10T24/3962Tangential bolt

Definitions

  • My invention relates to a device for con necting the ends of telephone or other wires which are discontinuous at an insulator, so that a continuous circuit may be formed through the line, the device also permitting the ready breaking of this connection for the purpose of testing the separate circuits so formed, without danger of the linemans dropping the clamp or being obliged to remove it from both wires while making the test.
  • My improved form of wire clamp also prevents the accidental loosening of the clamp, which frequently occurs with th1s type of connector, due to vibration of the wires.
  • Figures 1, 2, 3 and 4 are isometric projeotions of the component elements of my clamping device shown unassembled, but in correct axial and angular positions.
  • Fig. 5 is an end elevation of the component elements of the clamp in assembled form, gripping two wires shown in section.
  • Fig. 6 is a front elevation of an insulator showing the relative positions of the terminal wires and clamp with relation to the insulator.
  • Fig. 7 is a side elevation of the clamp and portions of the wires shown in F ig. 6.
  • my improved wire clamp is as follows: In telephone circuits the line wire is frequently discontinuous at an insulator, as shown by Fig. 6, in which the wires P and Q, are each brought about a groove in the insulator 0, each wire being secured by twisting the terminal ends R and S of the line section about the line sections P and Q respectively, as shown at T and U.
  • a detachable connector is frequently employed for through working of the line circuit. This detachable connector permits the Specification of Letters Patent.
  • wire clamps heretofore employed no means is provided for the prevention of the possibility of dropping the wire clamp to the ground, when it is loosened from the terminal wires.
  • the probability of this accident is increased by the fact that the lineman frequently have to wear gloves, ren dering the secure handling of so small an object as a wire clamp a matter of difiiculty, and increasing the chances for dropping it, with consequent loss of time.
  • wire clamps as now made are provided with no means for the prevention of the unscrewing of the clamp due to the vibration of the wires, with the consequent accidental opening of the circuit.
  • Figs. 1, 2, 3, and 4 consists of four elements as shown by Figs. 1, 2, 3, and 4, and while one of these elements, namely, Fig. 8, is not absolutely essential to the principle involved in the working of the clamp, it improves the clamping action to some extent as described below.
  • A is a plate of rectangular form having two grooves D and D formed in one of its fiat faces, these grooves being parallel to one of the edges of the face in which they are formed.
  • B and B are two holes in plate A, through either of which a wire end may be passed.
  • C is a tapped hole near the center of plate A.
  • Fig. 2 is the second member of the clamp, and consists of a rectangular plate E, approximately of the size and form of plate A. Plate E. has two lugs F and F formed as part thereof. These lugs are flush with one of the edges V, of plate E and are formed at right angles to the larger fiat faces of this plate, projecting in the same direction.
  • the lugs F and F have openings G and G, these openings being the same distance from edge V of plate E, as is groove D from the edge W of plate A.
  • the distance between the inner faces of lugs F and F is such that plate A will pass freely between them, when plates A and E are brought together in the same relative position as shown by Figs. 1 and 2, these lugs thus forming a guide for plate A relative to plate E.
  • Formed in plate E are three holes H, H and I which match with holes B, B and G in plate A, when plates A and E are brought together as above de scribed.
  • Screw K passes freely through hole I and screws into tapped hole 0.
  • Screw K has a head L, the latter being provided with two lugs M and M which latter form a finger grip, thus rendering a screw driver, wrench or other tool unnecessary in drawing clamp plates A and E together by means of screw K.
  • a stud rigidly attached to plate A and a nut in place of the head L may be used with the same result.
  • the number of holes N, N N etc. is preferably odd, so that when the elements of the clamp are assembled and screw K is revolved, these holes come in line alternately with holes H and 1-1. If hole N is in line with hole H, the latter having already been described as being in line with hole B, a wire end may be passed through these three holes, this wire preventing the accidental unscrewing of screw K.
  • my improved wire clamp is as follows: The elements are assembled by passing screw K through hole J in washer X, and through hole I in plate E, and screwing it into tappedhole C in plate A. Plates A and E are drawn together so that the space between their inner faces will permit the free admission of a line wire. One of the line terminals R is passed through openings G and G and between plates A and E, several inches of this wire being allowed to project beyond the clamp. If this projecting wire projects above a horizontal position there will be no possibility of the clamp dropping 0d the wire even though screw K be not screwed down, as the clamp is held by lugs G and G which guard the clamp from dropping.
  • the second terminal wlre, S Fig. 6 is passed between the clamp plates A and E, and adjusted so that it Wlll lie in groove D Fig. 5, in which position the clamp plates A and E are drawn together by screw K, the first terminal wire It Fig. 5 being guided to lie in groove D by the position of guide holes G and G in lugs F and F as described. Lugs F and F, thus serve the double purpose of guard and guide lugs for the termi nal wires. Grooves D and D are formed to such depth in plate A that when the wires lie in these grooves, the wires will project above the inner face of plate A, and can therefore be clamped against plate A by the inner face of plate E.
  • the terminal wire B Fig. 7 is passed through holes B and H or holes B and H and through one of the holes N, N N etc., in screw head L as shown by B Fig. 7.
  • the terminal wire is given a permanent set in this position and will therefore lock screw K against accidental unscrewing.
  • terminal wire It is with-drawn from holes B, H and N, or the corresponding series B, H, N, and screw L loosened sufficiently to allow terminal wire S to be passed from between clamp plates A and E to a position shown by S Fig. 6.
  • the clamp will be prevented from dropping by lugs G and G, as above described.

Landscapes

  • Manufacturing Of Electrical Connectors (AREA)

Description

H. R. BITTER.
WIRE GLAMP.
APPLIUATION rum) JAN. 29, 1909.
966,243. Patented Aug. 2, 1910.
WITNESSES. f/VKE/VTO/i .11 'M. 6 M mm A TTOHNEK THE mum's PETERS can wasnmcrora, o c.
UNITED STATES PATENT OFFICE.
HENRY R. BITTER, OF MADISON, WISCONSIN.
WIRE-CLAMP.
To all whom it may concern:
Be it known that I, HENRY R. BITTER, a citizen of the United States, residing at Madison, in the county of Dane and State of Wisconsin, have invented a new and useful Improvement in WireClamps, of which the following is a specification.
My invention relates to a device for con necting the ends of telephone or other wires which are discontinuous at an insulator, so that a continuous circuit may be formed through the line, the device also permitting the ready breaking of this connection for the purpose of testing the separate circuits so formed, without danger of the linemans dropping the clamp or being obliged to remove it from both wires while making the test. My improved form of wire clamp also prevents the accidental loosening of the clamp, which frequently occurs with th1s type of connector, due to vibration of the wires. I attainthese objects by means of the mechanism illustrated in the accompanying drawings in which:
Figures 1, 2, 3 and 4 are isometric projeotions of the component elements of my clamping device shown unassembled, but in correct axial and angular positions. Fig. 5 is an end elevation of the component elements of the clamp in assembled form, gripping two wires shown in section. Fig. 6 is a front elevation of an insulator showing the relative positions of the terminal wires and clamp with relation to the insulator. Fig. 7 is a side elevation of the clamp and portions of the wires shown in F ig. 6.
The dotted lines in Figs. 6 and show position of the wires when they are removed from the clamp, for the purpose of opening the circuit.
Similar letters refer to similar parts throughout the several views.
The construction of my improved wire clamp is as follows: In telephone circuits the line wire is frequently discontinuous at an insulator, as shown by Fig. 6, in which the wires P and Q, are each brought about a groove in the insulator 0, each wire being secured by twisting the terminal ends R and S of the line section about the line sections P and Q respectively, as shown at T and U. A detachable connector is frequently employed for through working of the line circuit. This detachable connector permits the Specification of Letters Patent.
Application filed January 29, 1909.
Patented Aug. 2, 1910. Serial No. 475,068.
line to be readily opened at the insulator where it is attached for testing in both directions, in case of circuit troubles.
In the wire clamps heretofore employed, no means is provided for the prevention of the possibility of dropping the wire clamp to the ground, when it is loosened from the terminal wires. The probability of this accident is increased by the fact that the lineman frequently have to wear gloves, ren dering the secure handling of so small an object as a wire clamp a matter of difiiculty, and increasing the chances for dropping it, with consequent loss of time. Furthermore, wire clamps as now made are provided with no means for the prevention of the unscrewing of the clamp due to the vibration of the wires, with the consequent accidental opening of the circuit.
As my improved wire clamp is intended principally for out of door use, it should be formed of some metal which will resist excessive corrosion.
It consists of four elements as shown by Figs. 1, 2, 3, and 4, and while one of these elements, namely, Fig. 8, is not absolutely essential to the principle involved in the working of the clamp, it improves the clamping action to some extent as described below.
In Fig. 1, A is a plate of rectangular form having two grooves D and D formed in one of its fiat faces, these grooves being parallel to one of the edges of the face in which they are formed. B and B are two holes in plate A, through either of which a wire end may be passed. C is a tapped hole near the center of plate A. Fig. 2 is the second member of the clamp, and consists of a rectangular plate E, approximately of the size and form of plate A. Plate E. has two lugs F and F formed as part thereof. These lugs are flush with one of the edges V, of plate E and are formed at right angles to the larger fiat faces of this plate, projecting in the same direction. The lugs F and F have openings G and G, these openings being the same distance from edge V of plate E, as is groove D from the edge W of plate A. The distance between the inner faces of lugs F and F is such that plate A will pass freely between them, when plates A and E are brought together in the same relative position as shown by Figs. 1 and 2, these lugs thus forming a guide for plate A relative to plate E. Formed in plate E are three holes H, H and I which match with holes B, B and G in plate A, when plates A and E are brought together as above de scribed.
The screw K, Fig. 4i passes freely through hole I and screws into tapped hole 0. Screw K has a head L, the latter being provided with two lugs M and M which latter form a finger grip, thus rendering a screw driver, wrench or other tool unnecessary in drawing clamp plates A and E together by means of screw K. In place of the headed screw K, a stud rigidly attached to plate A and a nut in place of the head L may be used with the same result.
A beveled washer Fig. 3, shown in side elevation at K Fig. 5, which is interposed between head L of screw K and plate E, as shown in Fig. 5, permits a certain adjustment between plates A and E, aarticularly when clamping wires of di erent size. Formed through head L of screw K, and parallel to the axis of the latter, are a series of holes N, N, N, etc., these holes being at a radial distance from the center line of screw K, which is equal to the distance between centers of holes I and H, and I and H. The number of holes N, N N etc., is preferably odd, so that when the elements of the clamp are assembled and screw K is revolved, these holes come in line alternately with holes H and 1-1. If hole N is in line with hole H, the latter having already been described as being in line with hole B, a wire end may be passed through these three holes, this wire preventing the accidental unscrewing of screw K.
The operation of my improved wire clamp is as follows: The elements are assembled by passing screw K through hole J in washer X, and through hole I in plate E, and screwing it into tappedhole C in plate A. Plates A and E are drawn together so that the space between their inner faces will permit the free admission of a line wire. One of the line terminals R is passed through openings G and G and between plates A and E, several inches of this wire being allowed to project beyond the clamp. If this projecting wire projects above a horizontal position there will be no possibility of the clamp dropping 0d the wire even though screw K be not screwed down, as the clamp is held by lugs G and G which guard the clamp from dropping. If the projecting wire projects below a horizontal position, a bend in it as at R Fi 7 will revent the clamp from dropping o the en In order to com lete the line circuit, the second terminal wlre, S Fig. 6, is passed between the clamp plates A and E, and adjusted so that it Wlll lie in groove D Fig. 5, in which position the clamp plates A and E are drawn together by screw K, the first terminal wire It Fig. 5 being guided to lie in groove D by the position of guide holes G and G in lugs F and F as described. Lugs F and F, thus serve the double purpose of guard and guide lugs for the termi nal wires. Grooves D and D are formed to such depth in plate A that when the wires lie in these grooves, the wires will project above the inner face of plate A, and can therefore be clamped against plate A by the inner face of plate E.
In order to positively lock the screw K, the terminal wire B Fig. 7 is passed through holes B and H or holes B and H and through one of the holes N, N N etc., in screw head L as shown by B Fig. 7. The terminal wire is given a permanent set in this position and will therefore lock screw K against accidental unscrewing.
In order to open the line circuit, terminal wire It is with-drawn from holes B, H and N, or the corresponding series B, H, N, and screw L loosened sufficiently to allow terminal wire S to be passed from between clamp plates A and E to a position shown by S Fig. 6. The clamp will be prevented from dropping by lugs G and G, as above described.
I am aware that other forms of wire clamps have been used, and while I have described above the preferred form of my invention, it is evident that many Inodifications of it may be made without departing from the spirit thereof.
I do not therefore wish to limit myself to the precise construction shown, but
Having described this form of my invention, I claim as new, and desire tosecure by Letters Patent.
1. The combination of a clamp with two lugs formed as part thereof, a hole in each lug, a second clamp plate grooved on its inner face, and a clamp screw.
2. The combination of two clamp plates, with wire and plate guide lugs formed as part of one of the clamp plates, wire guide openings in said lugs, and a clamp screw.
3. The combination of a clamp screw, a beveled washer under head of saidscrew, and a pair of clamp plates, with wire and clamp plate guide lugs having wire guide openings therein, said lugs being formed as part of one of the said clamp plates.
4. The combination of a clamp plate, with two wire and plate guide lugs formed as part thereof, a second clamp plate grooved on inner face, a headed clamp screw having a circle of holes formed in its head, and holes in the clamp plate so arranged that the holes in the screw head will fall in alinement with the holes in the clamp plates during the rotation of the screw.
5. The combination of a clamp plate with plate and wire guide lugs formed as part thereof, a second clamp plate grooved on its inner face, a clamp screw having a series plate so as to incase one Wire of the two to of holes formed in its head, holes in clamp be clamped.
plates so dis osed that holes in screw head may be brought in successive alinement With HENRY BITTER 5 holes in the clamp plates. Witnesses:
6. The combination of a two Wire clamp J. C. HARPER, plate having lug projections formed on one M. D. SIEKERT.
US47506809A 1909-01-29 1909-01-29 Wire-clamp. Expired - Lifetime US966243A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US47506809A US966243A (en) 1909-01-29 1909-01-29 Wire-clamp.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US47506809A US966243A (en) 1909-01-29 1909-01-29 Wire-clamp.

Publications (1)

Publication Number Publication Date
US966243A true US966243A (en) 1910-08-02

Family

ID=3034637

Family Applications (1)

Application Number Title Priority Date Filing Date
US47506809A Expired - Lifetime US966243A (en) 1909-01-29 1909-01-29 Wire-clamp.

Country Status (1)

Country Link
US (1) US966243A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3083348A (en) * 1959-07-09 1963-03-26 Edmond C Crowther Electrical connector
US3422498A (en) * 1967-07-27 1969-01-21 Ronald G Carlson Billfold safety guard
US20040129506A1 (en) * 1998-12-22 2004-07-08 Ericson Richard J. Traction enhanced controlled pressure flexible flat tension member termination device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3083348A (en) * 1959-07-09 1963-03-26 Edmond C Crowther Electrical connector
US3422498A (en) * 1967-07-27 1969-01-21 Ronald G Carlson Billfold safety guard
US20040129506A1 (en) * 1998-12-22 2004-07-08 Ericson Richard J. Traction enhanced controlled pressure flexible flat tension member termination device
US6820726B1 (en) * 1998-12-22 2004-11-23 Otis Elevator Company Traction enhanced controlled pressure flexible flat tension member termination device
US7886878B2 (en) 1998-12-22 2011-02-15 Otis Elevator Company Traction enhanced controlled pressure flexible flat tension member termination device

Similar Documents

Publication Publication Date Title
US902040A (en) Wire-connector.
DE69516034T2 (en) Electrical connector with screw terminal
DE102012016155B4 (en) Door mirror
US783061A (en) Electric-terminal clip.
WO2012168441A2 (en) Vibration-insensitive brush block for slip rings
DE102014219996B3 (en) Lightning protection clamp assembly
DE202011051214U1 (en) Electrical connector with contact protection
US1594055A (en) Electrical connecter
US1103544A (en) Electrical binding-screw or terminal.
US895714A (en) Binding-post.
US1134565A (en) Box-connector for electric installation.
US1376614A (en) Clamp for concrete-forms
US1578364A (en) Combined tool and clamp
DE380928C (en) Plug with interchangeable parts
US1328290A (en) Connector for armored conductors
US2807000A (en) Cammed terminal clamp for a battery cable
DE102019213175A1 (en) Connection arrangement
DE1151845B (en) Device for strain relief for permanently connected, freely movable electrical supply lines
DE735175C (en) Jacket clamp for electrical lines with a pressure piece rotatably connected to the union nut
US882514A (en) Connection for electric conductors.
US832418A (en) Ferrule holder or clamp.
DE1972560U (en) BUSBAR.
AT126796B (en) Cam clamp.
DE102025120454A1 (en) Electrical device, in particular inverter, with a housing part and a connection element
DE202004010287U1 (en) Multiple electric plug connector with plug portion and steplessly twistable slide contacting for connection of plug portion with stack of identical, mutually parallel, metal contact sheets