Control module for electrical switching devices
10629390 ยท 2020-04-21
Assignee
Inventors
Cpc classification
H01H19/64
ELECTRICITY
International classification
Abstract
A modular electrical switching device (1A) obtained by juxtaposing a control module (10) and a switching module (20), each comprising a mechanism that rotates about a rotation axis (A), coupled together by complementary coupling end pieces (11, 12; 21, 22). The control module (10) is designed to be controlled by a control rod (3) as well by a front control through a front entry opening (30) provided on the front side of the control module (10) as by left or right side control through two side entry openings (34, 35) provided on the sides of the control module (10), respecting a same direction of operation. The coupling end pieces (11, 12) of the control module (10) are provided on separated male (110) and female (120) coupling parts inserted between the modules (10, 20), when they are juxtaposed to form the switching device (1A).
Claims
1. A control module (10) for a modular electrical switching device (1A, 1B, 1C, 1D, 1E) obtained by juxtaposing the control module (10) and at least one switching module (20), the switching module (20) comprising a switching casing (23) containing at least one fixed contact (24) and one moving contact (25) coupled to a transmission mechanism (26) that rotates about a rotation axis (A) and is provided with two coupling end pieces (21, 22) accessible on sides of the switching casing (23), the control module (10) comprising a control casing (13) containing an actuating mechanism (14) that rotates about a rotation axis arranged to coincide with the rotation axis (A) of the transmission mechanism (26), when the switching module (10) and the at least one control module (20) are juxtaposed, the actuating mechanism (14) being provided with two coupling end pieces (11, 12) accessible on the sides of the control casing (13), arranged to be complementary to the coupling end pieces (21, 22) of the at least one switching module (20) and aligned therewith on the same rotation axis (A) to allow axial fitting, when the control module (10) and the at least one switching module (20) are juxtaposed, the control module (10) comprising a control rod (3) coupled, on the one hand, to the actuating mechanism (14) through a front side of the control casing (13) and, on another hand, to an operating element (2) located outside of the control casing (13), the actuating mechanism (14) being provided with a front entry opening (30) accessible through the front side of the control casing (13) and comprising a recess to receive an end of the control rod (3) and realize a front control of the control module (10), wherein the actuating mechanism (14) comprises two side entry openings (34, 35) accessible on the sides of the control casing (13), aligned with the rotation axis (A) of the actuating mechanism (14), and comprising the same recess as front entry opening (30) to receive an end of the control rod (3) and realize a right side control or a left side control of the control module (10), respecting a same direction of operation on a right and on a left of the control module (10).
2. The control module according to claim 1, wherein the coupling end pieces (11, 12) of the actuating mechanism (14) are integrated in the actuating mechanism (14).
3. The control module according to claim 1, wherein the control module comprises at least one spring (36) coupled to the control casing (13) and to the actuating mechanism (14), arranged to form an abrupt actuation device for the moving contacts of the at least one switching module (20), when the modules (10, 20) are juxtaposed.
4. The control module according to claim 1, wherein the coupling end pieces (11, 12) of the actuating mechanism (14) of the control module (10) are integrated in the actuating mechanism (14).
5. The control module according to claim 1, wherein the actuating mechanism (14) comprises a hollow shaft made of two coaxial shaft parts (15, 16) assembled axially together by connecting arms (15a, 16a) to provide a central recess (E).
6. The control module according to claim 5, wherein the connecting arms (15a, 16a) form end positions with fixed parts of the control module (10) to delimit the extreme angular positions that the actuating mechanism (14) reaches and which correspond to the switched-on and switched-off positions of the at least one switching module (20), when the modules (10, 20) are juxtaposed.
7. The control module according to claim 1, wherein the actuating mechanism (14) comprises an angle transmission (17) made of at least one input gear (18) and one output gear (19) integral with the actuating mechanism (14), and an additional entry part (31) comprising the front entry opening (30), housed in the input gear (18) by complementary driving means (32, 33) that allow their rotational coupling about an axis (B) perpendicular to the rotation axis (A) of the actuating mechanism (14).
8. The control module according to claim 7, wherein the complementary driving means (32, 33) of the additional entry part (31) are arranged to leave angular play (J) between the control rod (3) and the actuating mechanism (14) in case of a front control.
9. The control module according to claim 8, wherein the complementary driving means of the additional entry part (31) comprise at least one driving tooth (32) provided on the additional entry part (31) or on the input pinion (18), and at least one receiving notch (33) provided on the input pinion (18) or on the additional entry part (31), and the receiving notch (33) extends over an angular sector that is larger than that of the driving tooth (32) to leave the angular play (J).
10. A modular switching device (1A, 1B, 1C, 1D, 1E) obtained by juxtaposing a control module (10) according to claim 1 and at least one switching module (20), the switching module (20) comprising a switching casing (23) containing at least one fixed contact (24) and one moving contact (25) coupled to a transmission mechanism (26) that rotates about a rotation axis (A) and is provided with two coupling end pieces (21, 22) accessible on the sides of the switching casing (23), the control module (10) comprising a control casing (13) containing an actuating mechanism (14) that rotates about the rotation axis (A) and is provided with two coupling end pieces (11, 12) accessible on the sides of the control casing (13), complementary to the coupling end pieces (21, 22) of the at least one switching module (20) and aligned on the same rotation axis (A), the control module (10) comprising a control rod (3) coupled, on the one hand, to the actuating mechanism (14) through a front side of the control casing (13) and, on another hand, to an operating element (2) located outside of the control casing (13), the actuating mechanism (14) being provided with a front entry opening (30) accessible through the front side of the control casing (13) and comprising a recess to receive an end of the control rod (3) and realize a front control of the control module (10), wherein the actuating mechanism (14) of the control module (10) comprises two side entry openings (34, 35) accessible on the sides of the control casing (13), aligned on the rotation axis (A) of the actuating mechanism (14), and comprising the same recess as front entry opening (30) to receive an end of the control rod (3) and realize a right side control or a left side control of the control module (10), respecting a same direction of operation on the right and on the left of the control module (10).
11. The switching device according to claim 10, wherein the switching device comprises at least one switching module (20) juxtaposed to one of the sides of the control module (10), and the control rod (3) is coupled to the front entry opening (30) of the control module (10) to realize a front control of the switching device, or to the side entry opening (34, 35) of a free side of the control module (10) to realize a side control of the switching device.
12. The switching device according to claim 10, wherein the switching device comprises at least one switching module (20) juxtaposed to each side of the control module (10) and the control rod (3) is coupled to the front entry opening (30) of the control module (10) to realize a front control of the switching device.
13. The switching device according to claim 10, wherein the switching device comprises a side control accessory (50) with an accessory casing (51) provided with an additional coupling part (52) comprising, at one of its ends, an additional side entry opening (53) to receive the end of a control rod (3) and, at another end, fitting means (57) complementary to those of the actuating mechanism (14) of the control module (10).
14. The switching device according to claim 10, wherein the coupling end pieces (11, 12) of the actuating mechanism (14) of the control module (10) are formed on distinct coupling parts (110, 120), separated from the actuating mechanism (14), arranged to be inserted between the actuating mechanism (14) of the control module (10) and the transmission mechanism (26) of the at least one switching module (20).
15. The switching device according to claim 14, wherein the coupling parts (110, 120) form a male coupling part (110) and a female coupling part (120), the male coupling part (110) comprises a male coupling end piece (11) and the female coupling part (120) comprises a female coupling end piece (12), the male (11) and female (12) coupling end pieces are complementary respectively to the female (22) and male (21) coupling end pieces of the at least one switching module (20).
16. The control module according to claim 1, wherein the coupling end pieces (11, 12) of the actuating mechanism (14) are formed on distinct coupling parts (110, 120), separated from the actuating mechanism (14), arranged to be inserted between the actuating mechanism (14) of the control module (10) and the transmission mechanism (26) of the at least one switching module (20), when the modules (10, 20) are juxtaposed.
17. The control module according to claim 16, wherein the coupling parts form a male coupling part (110) and a female coupling part (120), one of the coupling parts comprises a male coupling end piece (11) and the other coupling part comprises a female coupling end piece (12), the male (11) and female (12) coupling end pieces are arranged to be complementary respectively to the female (22) and male (21) coupling end pieces of the at least one switching module (20), when the modules (10, 20) are juxtaposed.
18. The control module according to claim 16, wherein the coupling parts (110, 120) and the control casing (13) comprise coded means making sure that every coupling part corresponds to one of the sides of the control casing (13).
19. The control module according to claim 16, wherein the actuating mechanism (14) and the coupling parts (110, 120) comprise complementary driving means (112, 113; 122, 123) that allow coupling them in rotation about the rotation axis (A).
20. The control module according to claim 19, wherein the complementary driving means (112, 113; 122, 123) are arranged to leave angular play (J) between the control rod (3) and the actuating mechanism (14).
21. The control module according to claim 20, wherein the complementary driving means comprise at least one driving tooth (112, 122) provided on the coupling part (110, 120) or at the corresponding end of the actuating mechanism (14), and at least one receiving slot (113, 123) provided at the corresponding end of the actuating mechanism (14) or on the coupling part (110, 120), the receiving slot (113, 123) extends over an angular sector that is larger than that of the driving tooth to leave the angular play (J).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention and its advantages will be better revealed in the following description of an embodiment given as a non limiting example, in reference to the drawings in appendix, in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
ILLUSTRATIONS OF THE INVENTION AND BEST WAY OF REALIZING IT
(16) In the illustrated embodiment examples, the identical elements or parts have the same numerical references.
(17) Referring to the figures, control module 10 according to the invention is intended to equip a modular electrical switching device 1A, 1B, 1C, 1D, 1E, which is obtained by juxtaposing a control module 10 and at least one switching module 20, according to the number of phases of the electrical installation to be switched off and to the functionality of switching device 1A, 1B, 1C, 1D, 1E: switches, fuse switches, changeover switches, inverter switches, etc. Switching modules 20 are generally identical individual modules for every phase, i.e. they are arranged to switch one single phase of the installation. Of course, the invention is not limited to this case and can be considered for switching modules arranged to switch more than one phase. They are commonly called breaking poles and they can be juxtaposed side by side and coupled with each other by means of coupling end pieces 21, 22 described below. Control module 10 is generally a module common to several switching modules 20, which can be juxtaposed to one or two switching modules 20 and coupled with one and/or the other by means of coupling end pieces 11, 12 complementary to coupling end pieces 21, 22 of switching modules 20. The assembly of modules 10, 20 with each other is an axial fitting assembly of said coupling end pieces 11, 12; 21, 22, held by fastening elements such as tie rods passing all through modules 10, 20 in through openings provided to this purpose and not represented in the figures. Switching device 1A, 1B, 1C, 1D, 1E obtained is then intended for being mounted on rails or the like in an electrical cabinet or in any other electrical box. Modules 10, 20 moreover comprise centering pins 29 provided on the sides of modules 10, 20 and facilitating the alignment of modules 10, 20 between them.
(18) Control module 10 according to the invention is in addition designed to meet all possible control modes depending on the installation of switching device 1A, 1B, 1C, 1D, 1E: front control (
(19) An example of a switching module 20 according to the invention is represented as an exploded view in
(20) Switching casing 23 of switching module 20 has a parallelepipedic shape, is made of an electrically insulating material, and comprises two half shells assembled along a median parting line P (see
(21) Control module 10 according to the invention is represented in an exploded view in
(22) Angle transmission 17 comprises a bevel gear made of an input pinion 18 on axis B perpendicular to rotation axis A meshing an output pinion 19 on axis A provided on one of shaft parts 15. Input pinion 18 and output pinion 19 are defined by two angular sectors that cover slightly more than a quarter turn, which is sufficient for the actuation of transmission mechanism 26 of switching module 20 by rotating handle 2 on a quarter turn, that is to say 90. These pinions could however be complete. Of course, any other equivalent embodiment of angle transmission 17 is possible. Input pinion 18 comprises a front entry opening 30 accessible through the front of control casing 13 to receive a control rod 3. Generally, control rod 3 has at least at one of its ends a square cross-section whose shape is reproduced as a recess in front entry opening 30 to ensure an axial fitting along axis B and the rotating actuation without play of angle transmission 17 by control rod 3, itself actuated by a handle 2 or the like. In this example, front entry opening 30 is arranged in an additional entry part 31 housed in input pinion 18, this additional entry part 31 is not necessarily mandatory. However, it allows introducing an angular play J (
(23) Actuating mechanism 14 of control module 10 comprises at its ends two other lateral entry openings 34, 35 accessible through the sides of control casing 13 and comprising the same recess as front entry opening 30 to receive an end of control rod 3. These lateral entry openings 34, 35 are arranged in shaft parts 15, 16 and centered on rotation axis A. Actuating mechanism 14 also comprises two coupling end pieces 11, 12 accessible through the sides of control casing 13, identical with coupling end pieces 21, 22 of switching module 20, aligned on rotation axis A to allow their respective axial fitting when control module 10 is juxtaposed to one or two switching modules 20.
(24) Actuating mechanism 14 moreover comprises two springs 36, which are, in the represented example, torsion springs whose free ends are respectively housed in a receiving opening 37, 38 provided in control casing 13 and in shaft parts 15, 16. Any other spring type may be suitable such as, for example, compression springs. These springs 36 allow storing potential energy during the rotation of control rod 3, and subsequently to cause a quick switching of moving contacts 25 due to the restitution of the stored energy. These springs 36 form an abrupt actuation device that ensures the quick switch-on and switch-off of switching modules 20, independently of the actuation speed of control rod 3. Of course, this embodiment example of the abrupt actuation device is not limiting and extends to any other equivalent device form. Likewise, two springs 36 are represented but, depending on the load module to develop, one single spring 36 may be sufficient, the two springs 36 allowing to multiply by two the potential energy and to balance the actuation efforts.
(25) Switching casing 13 of control module 10 has a parallelepipedic shape substantially identical to that of switching casing 23, is made of an electrically insulating material, and comprises two half shells assembled along a median parting line P (
(26) In the represented example, coupling end pieces 11, 12 of control module 10 are formed on distinct coupling parts 110, 120, separated from the shaft of actuating mechanism 14. They form two differentiated parts, that is to say one male coupling part 110 (
(27) Male coupling part 110 illustrated in detail in
(28) Female coupling part 120 illustrated in detail in
(29) Possibilities for Industrial Application:
(30) The control module 10 according to the invention is versatile, as it allows realizing all switching device configurations, as it can be juxtaposed to one or several switching modules 20 on one and/or on the other of its sides. If it is juxtaposed to a switching module 20 on one of its sides, control rod 3 can be introduced as well in front entry opening 30 to realize a front control as in side entry opening 34, 35 on the free side of control module 10 to realize a side control.
(31) If control module 10 is juxtaposed to a switching module 20 on both of its sides, control rod 3 can only be introduced in front entry opening 30 to realize a font control.
(32) Switching device 1B of
(33) Accessory casing 51 is narrower than control casing 13 and switching casing 23, as it contains only few parts. It has a parallelepipedic shape, is made of an electrically insulating material, formed as an open shell closed by a closing plate by means of fastening screws 51g. It is intended to be attached on a side face 13c, 13d of control casing 13 by means of fastening screws 51h. It defines a front wall 51a, a rear wall 51b, two side walls 51c, 51d that form the sides of the casing and two transversal walls 51e, 51f. Side walls 51c, 51d of accessory casing 51 comprise a guiding opening 54 for the passage and the rotational guiding of additional coupling part 52 about rotation axis A. Additional coupling part 52 comprises a cylindrical body 55 provided with a shoulder 56 that rests on the internal side of right side wall 51d of accessory housing 51, and that delimits on the right side additional side entry opening 53 and on the left side driving means 57 arranged to fit in complementary driving means 123 provided in the corresponding end of the shaft of actuating mechanism 14. In the represented example and as for coupling parts 110, 120, the driving means are made of three driving teeth 57 corresponding to the three receiving slots 123 provided in shaft part 16. Driving teeth 57 extend over an angular sector smaller than that of receiving slots 123 to preserve angular play J between control rod 3 and actuating mechanism 14. Driving teeth 57 and receiving slots 123 form together coded means making sure that side control accessory 50 can only fit on the right side of control module 10. Of course, another side control accessory 50 can be realized specifically to fit on the left side of control module 10.
(34) Switching device 1C of
(35) This description shows clearly that the invention allows reaching the goals defined, that is to say offer a control module 10 for a modular switching device, that is versatile, with a simple and reliable design, that allows meeting all required functionalities, in particular: An imposed direction of operation of switching modules 20, that is to say an upwards rotation to close switching modules 20 when the operator is facing switching device 1A, 1B, 1C, 1D 1E, A rotary front control, A rotary right side control, A rotary left side control, A control module 10 centered when switching modules 20 are coupled on each side, A direct control or a remote control on a cabinet door, A coupling of two switches side by side (
(36) The present invention is not restricted to the examples of embodiment described, but extends to any modification and variant which is obvious to a person skilled in the art.