Modular distributor for electrical conductors
10118574 ยท 2018-11-06
Assignee
Inventors
Cpc classification
H01R9/2675
ELECTRICITY
H02B1/205
ELECTRICITY
B60R16/0238
PERFORMING OPERATIONS; TRANSPORTING
International classification
H01R13/74
ELECTRICITY
H02B1/20
ELECTRICITY
H01R9/26
ELECTRICITY
H01R13/58
ELECTRICITY
H01R31/00
ELECTRICITY
Abstract
The invention relates to a modular distributor for incoming and outgoing electrical conductors. The modular distributor including at least a base module having a first electrical conductor, and a connecting module having a second electrical conductor, wherein at least a first core of the first electrical conductor contacts a second core of the second electrical conductor. For the achievement of a high degree of flexibility in installation, the base module is provided with at least two contact rods extending therefrom, wherein the connecting module is threaded onto the contact rods and the contact rods project through the connecting module. A contact rod forms the electrical connection between a first core of the first conductor and a second core of the second conductor.
Claims
1. A modular distributor for incoming and outgoing electrical lines, the modular distributor comprising: a base module having a first electrical line; a connecting module having a second electrical line; the modular distributor being a composite of said base module and said connecting module; said first electrical line having a first core; said second electrical line having a second core; said first core of said first electrical line being contacted to said second core of said second electrical line in the modular distributor so as to form an electrical connection; said base module having at least two contact rods; said connecting module being configured to be fitted on said contact rods in such a manner so as to cause said contact rods to project through said connecting module; said connecting module having a housing with a guide sleeve; said guide sleeve being configured to be held in an axially displaceable manner on one of said contact rods; said housing having at least one guide sleeve configured as a contact clamp; one of said at least two contact rods being configured to form said electrical connection between said first core of said first electrical line and said second core of said second electrical line; said at least two contact rods being arranged around a central axis such that for a rotational position of said connecting module a rotational symmetry is given through a respective angle of 90 in such a manner that said connecting module can be accurately positioned onto said contact rods in positions offset by 90.
2. The modular distributor of claim 1, wherein said connecting module is mechanically guided on at least one of said at least two contact rods.
3. The modular distributor of claim 1, wherein the modular distributor comprises a multiplicity of connecting modules; and, at least one of said at least two contact rods projects through a plurality of said multiplicity of connecting modules.
4. The modular distributor of claim 1, wherein: said housing of said connecting module is formed as a pot-type housing having a base; and, said second core of said second electrical line is configured to form an electrical contact with said one of said at least two contact rods within said pot-type housing.
5. The modular distributor of claim 1, wherein said connecting module is a first connecting module, the modular distributor further comprising: a second connecting module arranged sequentially with and adjacent to said first connecting module; and, a seal arranged between said first connecting module and said second connecting module.
6. The modular distributor of claim 1, wherein said housing of said connecting module has a plurality of housing sides and a receiving window in at least one of said housing sides.
7. The modular distributor of claim 1, wherein: said second core of said second electrical line is electrically connected to one of said at least two contact rods via a resilient contact clamp; and, said resilient contact clamp is configured to be held on the corresponding one of said at least two contact rods in an axially displaceble manner.
8. The modular distributor of claim 7, wherein said resilient contact clamp is a spring-cage connector configured to have one of said at least two contact rods project therethrough.
9. The modular distributor of claim 1 further comprising: a contact plate; said base module having a base; said at least two contact rods each having first ends and being held on said base of said base module; and, said first electrical line having a plurality of first cores configured to be connected to said first ends of said at least two contact rods below said base via said contact plate.
10. The modular distributor of claim 1, wherein: the modular distributor comprises a plurality of inner contact rods and a plurality of outer contact rods; said base module has a base and defines a central axis; said outer contact rods define an outer radial distance R.sub.a to said central axis; said inner contact rods define an inner radial distance R.sub.i to said central axis; and, said inner radial distance R.sub.i is smaller than said outer radial distance R.sub.a.
11. A modular distributor for incoming and outgoing electrical lines, the modular distributor comprising: a base module having a first electrical line; a connecting module having a second electrical line; said first electrical line having a first core; said second electrical line having a second core; said first core of said first electrical line being contacted to said second core of said second electrical line so as to form an electrical connection; at least two contact rods; said connecting module being configured to be fitted on said contact rods; said contact rods being configured to project through said connecting module; said connecting module having a housing with a guide sleeve; said guide sleeve being configured to be held in an axially displaceable manner on one of said contact rods; said housing having at least one guide sleeve configured as a contact clamp; one of said at least two contact rods being configured to form said electrical connection between said first core of said first electrical line and said second core of said second electrical line; said housing of said connecting module being formed as a pot-type housing having a base; and, said second core of said second electrical line being configured to form an electrical contact with said one of said at least two contact rods within said pot-type housing.
12. The modular distributor of claim 11, wherein said connecting module is a first connecting module and said base is a first base, the modular distributor further comprising: a second connecting module having a second base and being arranged adjacent to said first connecting module; and, said pot-type housing of said first connecting module being closed by said base of said second connecting module.
13. A modular distributor for incoming and outgoing electrical lines, the modular distributor comprising: a base module having a first electrical line; a connecting module having a second electrical line; said first electrical line having a first core; said second electrical line having a second core; said first core of said first electrical line being contacted to said second core of said second electrical line so as to form an electrical connection; at least two contact rods; said connecting module being configured to be fitted on said contact rods; said contact rods being configured to project through said connecting module; said connecting module having a housing with a guide sleeve; said guide sleeve being configured to be held in an axially displaceable manner on one of said contact rods; said housing having at least one guide sleeve configured as a contact clamp; one of said at least two contact rods being configured to form said electrical connection between said first core of said first electrical line and said second core of said second electrical line; a contact plate; said base module having a base; said at least two contact rods each having first ends and being held on said base of said base module; and, said first electrical line having a plurality of first cores configured to be connected to said first ends of said at least two contact rods below said base via said contact plate.
14. A modular distributor for incoming and outgoing electrical lines, the modular distributor comprising: a base module having a first electrical line; a connecting module having a second electrical line; said first electrical line having a first core; said second electrical line having a second core; said first core of said first electrical line being contacted to said second core of said second electrical line so as to form an electrical connection; at least two contact rods; said connecting module being configured to be fitted on said contact rods; said contact rods being configured to project through said connecting module; said connecting module having a housing with a guide sleeve; said guide sleeve being configured to be held in an axially displaceable manner on one of said contact rods; said housing having at least one guide sleeve configured as a contact clamp; one of said at least two contact rods being configured to form said electrical connection between said first core of said first electrical line and said second core of said second electrical line; wherein the modular distributor comprises a plurality of inner contact rods and a plurality of outer contact rods; said base module having a base and defining a central axis; said outer contact rods defining an outer radial distance R.sub.a to said central axis; said inner contact rods defining an inner radial distance R.sub.i to said central axis; and, said inner radial distance R.sub.a being smaller than said outer radial distance R.sub.i.
15. The modular distributor of claim 14, wherein: each of said inner contact rods defines a first longitudinal axis; each of said outer contact rods defines a second longitudinal axis; and, one of said first longitudinal axes and said second longitudinal axes is disposed on a common diameter circle.
16. The modular distributor of claim 14, wherein: said inner contact rods are configured to form electrical signal lines; and, said outer contact rods are configured to form electrical supply lines.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described with reference to the drawings wherein:
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DESCRIPTION OF THE PREFERRED EMBODIMENTS OF THE INVENTION
(18) The distributor 70 shown in
(19) As described hereinafter, seals 66 are arranged between the modules, via which a dust- and fluid-tight bond is provided. The distributor according to the invention can achieve protection ratings up to IP65, IP68, or even IP69K.
(20) The distributor 70 has an incoming conductor as a first electrical conductor 1, and at least one outgoing conductor as a second electrical conductor 2. As shown in
(21) A housing 11 of a connecting module 10, on each of its housing sides 12, can be provided with an incoming conductor or an outgoing conductor. In the embodiment represented, on one connecting module 10, up to four incoming/outgoing electrical conductors are connectable on the distributor 70. In the distributor 70 according to
(22) The base module 20 is represented in
(23) The end sections 16 of the contact rods 6 are fitted to the retaining domes 24 which are configured in the base housing 21 of the base module 20. In the same way as the end sections 17 of the contact rods 7, the end sections 16 penetrate the base 22 of the base module 20, and end with their terminations 15 (
(24) In
(25)
(26) As shown in
(27) As shown in
(28) In the embodiment shown, the base module 20 has a multi-core incoming conductor as the first conductor 1. In
(29) As can clearly be seen in
(30) The contact rods 6 and 7 are formed from an electrically-conductive material; it can be sufficient if the contact rods 6 and 7 are provided with an electrically-conductive surface, which can be employed for the purposes of bonding. The inner contact rods 6 of smaller diameter d appropriately form electric signal lines. The outer contact rods 7 of larger diameter D specifically form electric power supply conductors.
(31) As shown in
(32) In the embodiment represented, the housing 1 of a connecting module 10.1, 10.2, 10.3, 10.4, 10.5, in at least one housing side 12, incorporates a receiving window 18 for the accommodation of a connecting element 19, wherein the connecting element 19 is already fitted to the connecting module 10.1, 10.2, 10.3, 10.4, 10.5 during the production process. Essentially, a connecting module 10.1, 10.2, 10.3, 10.4, 10.5 which is configured for installation in a tower is provided with a connecting line, a screw connection 46 for a connecting line and/or a plug-in connector 47 for a connecting line. In another configuration, the connecting modules 10.1, 10.2, 10.3, 10.4, 10.5 can be configured such that a receiving window 18 for a connecting element 19 is provided as a push-out surface, thereby permitting a user to determine the position of the receiving window 18 on the connecting module 10.1, 10.2, 10.3, 10.4, 10.5, and the number of receiving windows 18 to be opened, in situ.
(33) The housing 11 of the connecting module 10 is configured as a cup-type or pot-type housing 43 having a base 40. According to the arrangement of the contact rods 6 and 7 on the base module 20, the housing 11 is provided with guide sleeves 8 and 9. The guide sleeves 8 and 9 are arranged perpendicularly on the base 40, wherein the guide sleeves 8 are arranged with a radial clearance Ri around a central axis 41 of the connecting module 10. Correspondingly, the guide sleeves 9 in the corners of the housing 11 are arranged with a radial clearance Ra to the central axis 41 of the connecting module 10. Appropriately, the cup-type housing has a central support dome 99. The support dome 99 can be configured such that, upon the screw fixing of the tie-rod, a supporting element is provided.
(34) Ifas shown in
(35) As shown in
(36) The arrangement of the connecting module 10 on the contact rods (
(37) In an overhead view, the connecting modules 10 and the base module 20, and specifically also the cover module 30 and the pedestal module 60, have the same geometrical shape. As a result, a quadratic shape is appropriate.
(38) In conjunction with the quadratic shape, and the arrangement of the inner contact rods 6 and the outer contact rods 7 in a rotationally-symmetrical position through an angle of 90, it is possible for each connecting module to be threaded onto the base module 20 offset by rotation through an angle of 90. The connecting elements 19 provided on a connecting module 10 can, in a simple manner, be arranged in situ in an appropriate position for cabling.
(39) The contact rods 7.1, 7.2, 7.3, 7.4 are arranged in a circumferential direction around the central axis 29 of the base module 20, with a mutual angular spacing of 90. The contact rods 6.1, 6.2, 6.3, 6.4, 6.5, 6.6, 6.7, 6.8 are arranged in a circumferential direction around the central axis 29, with a mutual angular spacing of 45.
(40) As shown in
(41) In the embodiment, the contact rods 6 and 7 of the base module project through each connecting module 10. A connecting module 10 is threaded onto the contact rods 6, 7 in the correct position via the guide sleeves 8 and 9. The contact rods 6 and 7 thus project through the connecting module 10, whereinas shown in
(42) Via the contact rods 7.1 and 7.2, a supply voltage can be switched to the second conductor 2; via the contact rod 6.1, a signal connection is formed, such that for example, a sensor or similar can be operated on the conductor 2.
(43) The housing 11 of a connecting module 10 is configured as an open cup-type housing 43, wherein the electrical contact point 5 of one core 2.1, 2.2, 2.3, 2.4, 2.5 of the second conductor 2 of the connecting module 10 with one of the contact rods 6, 7 lies within the cup-type housing. As specifically shown in
(44) In the embodiment represented, a seal 66 is arranged between the housing edge 31 of the cup-type housing 43 and the opposing edge 32 of the base 40. In a simple manner, this seal can be configured as an O-ring, which ensures the provision of a radial seal between the adjoining connecting modules. In another configuration, as specifically represented in
(45) In a simple configuration of the seal 66, the latter can be configured as an axial expanded foam seal. A seal of this type can be permanently bonded to the connecting module. Advantageously, the axial expanded foam seal can be formed in conjunction with the manufacture of the connecting module.
(46) The cover module 30 is a simple closure module having a central opening 39 for the tie-rod 61. Appropriately, push-out surfaces 49 can be provided in the side walls of the cover module for the connection of further cables, specifically for the purposes of an electrical loop-through to an adjoining distributor.
(47) In a corresponding manner, a central opening 64 is provided in the pedestal module 60 (
(48) Advantageously, a pedestal module 60 or a cover module 60 is provided with no connecting line. The pedestal module 60 or a cover module 60 can advantageously be configured as a self-closing module. Alternatively, the pedestal module 60 or a cover module 60 can be configured with a prefabricated connecting line and/or with a plug-in connector and/or with a clamping terminal and/or with a plug-in terminal.
(49) The connecting elements 19 to be fitted to the receiving window 18 of a connecting module 10 can be of differing configurations, and specifically adapted to the respective application, as represented in
(50) The connecting element according to
(51) The connecting element 19 according to
(52) The connecting element 19 according to
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(54) The cores 2.1 to 2.5, 3.1 to 3.5 or 4.1 to 4.5 of the conductors 2, 3, 4 on the connecting modules 10.2, 10.3, 10.4 are appropriately electrically bonded via spring contact clamps 50 with selected contact rods 6.1, 6.2, 6.3, 6.4, 6.5, 6.6, 6.7, 6.8, 7.1, 7.2, 7.3, 7.4. The spring contact clamp 50 is advantageously configured as a spring-cage connector 51 having a plurality of sprung contact lugs 52. In
(55) In the embodiment shown in
(56) In
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(58) Via the fixing flanges 77, the distributor 70 or distributor tower can be fitted, whether lying or standing, in any required horizontal or vertical position.
(59) It is understood that the foregoing description is that of the preferred embodiments of the invention and that various changes and modifications may be made thereto without departing from the spirit and scope of the invention as defined in the appended claims.