Insulated jumper in particular for terminal blocks of switchboards

Information

  • Patent Grant
  • RE42022
  • Patent Number
    RE42,022
  • Date Filed
    Thursday, February 12, 2009
    16 years ago
  • Date Issued
    Tuesday, January 4, 2011
    14 years ago
  • Inventors
  • Original Assignees
  • Examiners
    • Hyeon; Hae Moon
    Agents
    • Mintz Levin Cohn Ferris Glovsky and Popeo, P.C.
    • Mirabito, Esq.; A. Jason
  • US Classifications
    Field of Search
    • US
    • 439 787000
    • 439 796000
    • 439 797000
    • 439 798000
    • 439 716000
    • 439 723000
    • 439 439000
    • 439 521000
    • 439 714000
    • 439 710000
  • International Classifications
    • H01R11/09
Abstract
Electrical connection jumper, in particular for terminal blocks of switchboards, comprising a conducting body extending in the longitudinal direction and a plurality of connector elements for electrical connection, which extend in the transverse direction from said conducting body, and an insulating body, integral with said conducting body, said insulating body comprising a longitudinally extending gripping part and pairs of lugs which extend therefrom in a substantially transverse direction and are able to contain partially said conducting body.
Description
BACKGROUND

1. Technical Field of the Invention


The present invention relates to an insulated jumper in particular for terminal blocks of switchboards and the like.


2. Description of the Prior Art


It is known in the technical sector relating to terminal blocks for switchboards that there exists the need to connect together two terminals arranged alongside each other on the board in order to form the required electric circuit.


Jumpers made of conductive material and designed for this purpose are also known; said jumpers are formed by a conductive metal strip extending in a substantially longitudinal direction having, extending from it in a direction perpendicular to the above direction, flat pins formed in the manner of two resilient jaws able to form the part for engagement in the seat of the terminal block.


These known jumpers, although fulfilling their purpose, since they can be easily cut in the transverse direction in order to determine correct measurement in the longitudinal direction, have the drawback, however, that they cannot be electrically insulated with respect to the exterior, in particular at the time of use by a user; this results in a high risk of contact with the user him/herself and/or with foreign bodies and therefore injury both for the former, who may suffer an electric shock, and damage for the system which is short-circuited.


In order to solve the problem of insulation, jumpers are also known where the conductive strip is embedded in an insulating body; in this case also, however, there is the risk of drawbacks arising from the fact that cutting to size of the jumper is difficult owing to the double and different superimposed material, which requires complicated cutting operations using different tools respectively adapted to the type and thickness of material to be cut, making cutting practically impossible.


SUMMARY

The technical problem which is posed, therefore, is to provide electrical connection jumpers, in particular for terminals of switchboards, which are able to be cut to size and ensure perfect insulation of the visible conducting parts so as to prevent them from coming into contact with the user and/or with foreign bodies, causing short-circuits of the system.


In connection with this problem it is also required that this jumper should have small dimensions, be easy and inexpensive to produce and assemble and be able to be adapted easily at any user location using cutting means which are easy and inexpensive to provide.


These results are obtained according to the present invention by an electrical connection jumper, in particular for terminal blocks of switchboards and the like, comprising a conducting body extending in the longitudinal direction, a plurality of connector elements extending in the transverse direction from said conducting body, and an insulating body, integral with said conducting body, said insulating body comprising a longitudinally extending gripping part and pairs of oppositely arranged lugs which extend therefrom and are able to contain partially said connector elements.





BRIEF DESCRIPTION OF THE FIGURES

Further details may be obtained from the following description of a non-limiting example of embodiment of the subject of the present invention provided with reference to the accompanying drawings in which:



FIG. 1 shows a perspective view of a jumper according to the present invention, in its entirety;



FIG. 2 shows a side view of the jumper according to FIG. 1;



FIG. 3 shows a schematic cross-section along the plane indicated by III-III in FIG. 2;



FIG. 4 shows a schematic cross-section along the plane indicated by IV-IV in FIG. 2; and



FIG. 5 shows a schematic cross-section along the plane indicated by V-V in FIG. 2.





DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS

As shown in FIGS. 1 and 2 and assuming solely for the sake of convenience of the description and without a restrictive meaning, a set of three reference axes with a longitudinal direction X-X, transverse direction Y-Y and vertical direction Z-Z, respectively, the jumper for terminal blocks of switchboards according to the present invention comprises essentially: a conducting body 10 extending in the longitudinal direction X-X in the form of a thin strip 11 which has suitable dimensions for the electric load envisaged, and a plurality of connector elements 12 which extend in the transverse direction Y-Y from said strip 11 and are formed by a neck 12a which is extended by one or more (two in the example of the figure) flat pins 13 for connection to the terminal (not shown).


The conducting body 10 is integrally joined to an insulating body 20 comprising a substantially continuous, longitudinally extending gripping part 21 which, in the example shown in the figure, has a circular cross-section with, extending from it, pairs of lugs 22 symmetrically arranged opposite each in the transverse direction Y-Y and aligned with each other in the longitudinal direction at a constant interval.


The lugs 22 of each pair are suitably spaced from each other in the transverse direction Y-Y so as to form a respective seat 22a in the vertical direction, such as not to penetrate into the gripping part 21 of the longitudinally extending insulating body 20.


As shown in FIG. 3, said lugs 22 have pins 22b extending in the transverse direction Y-Y and suitable for engagement with a corresponding seat 14 open in the transverse direction in the neck 12a of the conducting part 10.


In this way the connection between conducting body 10 and insulating body 20 ensures that the gripping part 21 of the said insulating body is free of electrical conduction.


Advantageously this connection is obtained by overmoulding the insulator onto the conducting body.


It can also be seen how, at the opposite ends, the insulating body always projects in the longitudinal direction X-X beyond the conducting body, thus ensuring insulation of the jumper with respect to the user.


This configuration provides numerous advantages compared to the prior art since, when the jumper is cut to size, it will be possible to cut separately the insulating material and the conducting strip, thus ensuring the ease of cutting using conventional tools.


In addition to this, cutting may be performed both in a position T1 predisposed for cutting (FIG. 4) by means of an annular undercut 25 of the gripping part and in a position T2 which is not predisposed for cutting (FIG. 5), while keeping, however, the gripping part totally insulated.


Said predisposed cutting zone T1 or non-predisposed cutting zone T2 is situated between two pairs of lugs 22 which are adjacent in the longitudinal direction, and the vertical cutting plane of the conducting part is inset in the longitudinal direction with respect to the cutting plane of the insulating body; correspondingly cutting of the conducting body 10 produces zones 15 where the conductor is inset in the longitudinal direction with respect to the cutting zone T1/T2 of the gripping part 21; in this way, since it is possible to obtain a free conducting edge which is set back from the insulating body, the risks of contact with the conducting part are reduced considerably.


Although illustrated and described in relation to a strip extending longitudinally as appropriate and to be cut, subsequently, to size, it is envisaged also that the jumper may be designed in modular form with a single connection body, with two or more bodies, or with a non-uniform succession of cutting zones determined by the alternating arrangement of jumpers with one, two or three, etc. connections.


Although not shown, it is envisaged moreover that the electrical connection part 13 may be formed with a screw element and/or clamp element as required and/or appropriate.


It can therefore be seen how with the electrical connection jumper for switchboard terminal blocks according to the present invention it is possible to achieve easily the production and/or cutting to size of the jumper and at the same time insulation of the gripping part which no longer contains the conducting part.

Claims
  • 1. An electrical connection jumper for terminal blocks of switchboards, comprising a conducting body extending in a longitudinal direction and a plurality of connector elements for electrical connection, which extend in a transverse direction from said conducting body, and an insulating body, integral with said conducting body, wherein said insulating body comprises a longitudinally extending gripping part and pairs of lugs which extend there from in a substantially transverse direction and partially contain said conducting body, wherein the pairs of lugs are spaced from each other in the transverse direction so as to form a respective seat for the conducting body.
  • 2. The jumper according to claim 1, wherein said gripping part of the insulating body is continuous.
  • 3. The jumper according to claim 1, wherein said lugs are arranged symmetrically opposite each other in the transverse direction.
  • 4. The jumper according to claim 1, wherein a depth in the vertical direction of said seat formed by the lugs is such as not to penetrate into the gripping part of the insulating body extending longitudinally.
  • 5. The jumper according to claim 1, wherein the conducting body includes at least one neck and at least one connection element extending from each neck.
  • 6. The jumper according to claim 5, wherein said lugs have at least one pin extending in a transverse direction and engaging a seat which is open in the transverse direction in the neck of the conducting body.
  • 7. The jumper according to claim 6, wherein said connection element comprises one or more flat pins which extend in the transverse direction from said neck for connection to a switchboard terminal.
  • 8. The jumper according to claim 6, wherein said connection element comprises screw means which extend in the transverse direction from said neck for connection to a switchboard terminal.
  • 9. The jumper according to claim 6, wherein the lugs are partially overmoulded onto the neck of the conducting body.
  • 10. The jumper according to claim 6, wherein the neck is formed as a strip of suitable length in the longitudinal direction.
  • 11. The jumper according to claim 1, wherein the insulating body is overmoulded onto the conducting body.
  • 12. The jumper according to claim 1, wherein said gripping part of the insulating body has at least one annular undercut that defines a cutting zone of the gripping part that is predisposed for transverse cutting.
  • 13. The jumper according to claim 12, wherein said cutting zone is situated between two pairs of lugs adjacent in the longitudinal direction.
  • 14. The jumper according to claim 12, wherein a vertical cutting plane of the conducting body is aligned in the longitudinal direction with respect to the cutting zone of the gripping part.
  • 15. The jumper according to claim 1, wherein said pairs of lugs symmetrically arranged opposite each other in the transverse direction are spaced from each other in the longitudinal direction at a constant interval.
  • 16. The jumper according to claim 1, wherein the opposite ends of the insulating body project in the longitudinal direction with respect to the conducting body.
Priority Claims (1)
Number Date Country Kind
MI2006A1322 Jul 2006 IT national
US Referenced Citations (59)
Number Name Date Kind
945017 Cole Jan 1910 A
2045847 Fotsch Jun 1936 A
2082947 Fotsch Jun 1937 A
2900618 Geier Aug 1959 A
3159730 Staffel Dec 1964 A
3609642 Norden Sep 1971 A
3665376 Paris et al. May 1972 A
3751579 Nojiri Aug 1973 A
3775733 Ege Nov 1973 A
3840781 Brown Oct 1974 A
4070086 Trafford Jan 1978 A
4130331 Neff et al. Dec 1978 A
4171861 Hohorst Oct 1979 A
4203200 Wiebe May 1980 A
4224592 Urani et al. Sep 1980 A
4241975 Cooper, Jr. Dec 1980 A
4330164 Pittman et al. May 1982 A
4340270 Wilmes et al. Jul 1982 A
4350407 Tong Sep 1982 A
4365396 Baba et al. Dec 1982 A
4391485 Urani Jul 1983 A
4444455 Wiancko et al. Apr 1984 A
4559504 Krec Dec 1985 A
4693533 Szczesny et al. Sep 1987 A
4795997 Fisher et al. Jan 1989 A
4889504 Barbier et al. Dec 1989 A
4921450 Herbert May 1990 A
4940431 Hennemann Jul 1990 A
5002505 Jones et al. Mar 1991 A
5030131 Boehm Jul 1991 A
5243139 Law Sep 1993 A
5276280 Ball Jan 1994 A
5328392 Lin et al. Jul 1994 A
5454730 Tozuka Oct 1995 A
5553787 Guginsky Sep 1996 A
5564941 Norden Oct 1996 A
5766044 Norden Jun 1998 A
5853304 Landreau et al. Dec 1998 A
5860837 Bock et al. Jan 1999 A
5905230 Marik May 1999 A
5915998 Stidham et al. Jun 1999 A
6004167 Hirakawa Dec 1999 A
6157287 Douglass et al. Dec 2000 A
6475038 Franck Nov 2002 B1
6786779 Feldmeier et al. Sep 2004 B2
7101231 Prokup et al. Sep 2006 B2
7385518 Torrez et al. Jun 2008 B2
7413486 Pizzi Aug 2008 B2
7438606 Pizzi Oct 2008 B2
7500889 Pizzi Mar 2009 B2
20020067279 Torrez et al. Jun 2002 A1
20050042912 Drewes et al. Feb 2005 A1
20050221665 Otto et al. Oct 2005 A1
20060128232 Kim Jun 2006 A1
20060148302 Patel et al. Jul 2006 A1
20060189222 Bogiel et al. Aug 2006 A1
20060228950 Jamaleddin et al. Oct 2006 A1
20070159292 Chang et al. Jul 2007 A1
20080242150 Chikamatsu et al. Oct 2008 A1
Foreign Referenced Citations (34)
Number Date Country
1842868 Dec 1961 DE
3339365 May 1985 DE
3621071 Jan 1987 DE
3629796 Dec 1987 DE
3805158 Aug 1989 DE
4223540 Jan 1994 DE
4231244 Mar 1994 DE
4409612 Sep 1994 DE
19530947 Jan 1997 DE
19542628 Feb 1997 DE
19729327 Oct 1998 DE
29821558 Mar 1999 DE
29921080 Apr 2001 DE
10010719 Aug 2001 DE
10324144 Feb 2005 DE
102004018553 Nov 2005 DE
202005005369 Mar 2006 DE
0382999 Aug 1990 EP
0678934 Oct 1995 EP
0893859 Jan 1999 EP
1137034 Sep 2001 EP
1137035 Sep 2001 EP
1381068 Jan 2004 EP
1531522 May 2005 EP
1536519 Jun 2005 EP
1630903 Mar 2006 EP
1798821 Jun 2007 EP
1860738 Nov 2007 EP
1887658 Feb 2008 EP
2259462 Aug 1975 FR
2529024 Dec 1983 FR
2637740 Apr 1990 FR
2766628 Jan 1999 FR
2342508 Apr 2000 GB
Reissues (1)
Number Date Country
Parent 11774220 Jul 2007 US
Child 12370105 US