COUPLING ARRANGEMENT FOR COUPLING A TERMINAL CONNECTOR TO A CIRCUIT BOARD ARRANGEMENT
20240243501 ยท 2024-07-18
Assignee
Inventors
Cpc classification
H01R9/2491
ELECTRICITY
H01R4/483
ELECTRICITY
H01R24/28
ELECTRICITY
H01R11/05
ELECTRICITY
International classification
Abstract
A coupling arrangement 10 for reversibly mechanically and electrically coupling a terminal connector 200 to a circuit board arrangement 100 comprising, the circuit board arrangement 100, which contains a circuit board 110 and a connecting element 120 being mechanically connected to the circuit board 110. Hereby the connecting element 120 comprises at least one connecting unit 121, wherein each connecting unit 121 comprises a first electrical connection point 124 being electrically connected to the circuit board 110. Moreover, the coupling arrangement further contains the terminal connector 200 comprising at least one terminal connector unit 210 and a housing 205 for carrying the at least one terminal connector unit 210. In a mechanical connection state of the terminal connector 200 and the circuit board arrangement 100, the respective terminal connector units 210 and connecting units 121 are coupled, providing an electrical connection of the terminal connector 200 and the circuit board 110.
Claims
1. A coupling arrangement (10) for reversibly mechanically and electrically coupling a terminal connector (200) to a circuit board arrangement (100) comprising: the circuit board arrangement (100) comprising a circuit board (110); and a connecting element (120) being mechanically connected to the circuit board (110), wherein the connecting element (120) comprises at least one connecting unit (121), wherein each connecting unit (121) comprises a first electrical connection point (124) being electrically connected to the circuit board (110); and the terminal connector (200) comprising at least one terminal connector unit (210) and a housing (205) for carrying the at least one terminal connector unit (210), wherein each terminal connector unit (210) comprises: a first terminal (211) having a first conductor connection point (295) for electrically connecting a first conductor; a second terminal (230) having a second conductor connection point (292) for electrically connecting a second conductor; and a third terminal (220) being electrically connected to the first and second terminal (211, 230), wherein the third terminal (220) comprises a second electrical connection point (291) designed for being electrically connectable to at least one first electrical connection point (124) in a connection direction (E3); wherein the circuit board arrangement (100) comprises first connection structures and the terminal connector (200) comprises complementary second connection structures for a reversible mechanical connection of the circuit board arrangement (100) and the terminal connector (200), wherein, in the mechanical connection state, the first and second terminals (211, 230) are electrically connected to the circuit board (110) through the first and second electrical connection point (124, 291).
2. The coupling arrangement according to claim 1, wherein the connecting element (120) comprises a connection housing (126) for carrying the at least one first electrical connection point (124), and wherein the first and second electrical connection point (124, 291) form a standardized pin connection.
3. The coupling arrangement according to claim 1, wherein the circuit board (110), the first electrical connection point (124), and the connection housing (126) comprise(s) the first connection structures (111, 125), and that the housing (205) and the second electrical connection point (291) comprise(s) the second connection structures (225, 250).
4. The coupling arrangement according to claim 1, wherein the first and second connection structures comprise complementary latching elements (125, 225) for latching the terminal connector (200) and the circuit board arrangement (100) to form the mechanical connection.
5. The coupling arrangement according to claim 1, wherein the circuit board (110) has a lateral recess (112) delimited by at least two opposite side edges (111a, 111b) facing the recess (112), wherein the terminal connector (200) is at least partially received in the recess (112) between the side edges (111a, 111b) when connected to the circuit board arrangement (100), wherein the recess (112) has a lateral opening for receiving the terminal connector (200).
6. The coupling arrangement according to claim 1, wherein the first and second connection structures comprise complementary guide rail elements (111, 250), such as guide surfaces (111) formed by the side edges (111a, 111b) and lateral guide rails (250) formed by the housing (205), wherein the lateral guide rail elements (111, 250) are designed to interact with each other in such a way that the terminal connector (200) can be push-fit onto the circuit board arrangement (100) at least partially along the connection direction (E3), preferably into the recess (112) via the lateral opening, and thus mechanically connecting the terminal connector (200) with the circuit board arrangement (100).
7. The coupling arrangement according to claim 1, wherein the first terminal (211) has a first insertion direction (E1) and the second terminal (230) has a second insertion direction (E2) for inserting the respective conductor, wherein the first and the second insertion directions (E1, E2) are angled to each other, and furthermore preferred substantially perpendicular to each other, wherein the first terminal (211) has a first conductor insertion channel (212) and the second terminal (230) has a second conductor insertion channel (231), and the housing (205) forms at least part of the conductor insertion channels (212, 231).
8. The coupling arrangement according to claim 1, wherein the first conductor connection point (295) is a clamping point, wherein the first terminal (211) comprises a clamping contact member (293) being moveable between a clamping position for clamping the first conductor at the clamping point for electrical connection, and a release position for allowing the first conductor to be inserted into and removed from the clamping point, wherein the first terminal (211) comprises a release device (240) for moving the clamping contact member (293) between the clamping position and the release position, wherein the housing (205) comprises the release device (240), and wherein the clamping contact member (293) is biased towards the clamping point or clamping position.
9. The coupling arrangement according to claim 1, wherein the second conductor connection point (292) is a pin connection point for selectively receiving the second conductor for electrical connection.
10. The coupling arrangement according to claim 1, wherein the terminal connector (200) is a LINECT connector.
11. The coupling arrangement according to claim 1, wherein the at least one connecting unit (121) is soldered to a corresponding soldering point of the circuit board (110) and is thus mechanically and electrically coupled to the circuit board (110).
12. The coupling arrangement according to claim 1, wherein the circuit board (110) and the connecting element (120) comprise complementary attachment structures (123a, 123b) for mechanically connecting the connecting element (120) with the circuit board (110), wherein the attachment structures (123a, 123b) are arranged laterally of the connecting element (120) with respect to the connection direction (E3).
13. The coupling arrangement according to claim 1, wherein the connecting element (120) comprises a plurality of connecting units (121) which are arranged side-by-side in a row and are oriented parallel to the connection direction (E3), wherein each of the connecting units (121) comprises a connecting unit housing (126a), which are integrally formed to form the connection housing (126), wherein the connecting element (120) comprises dividing bars (127) which are each arranged between the connecting units (121), and thus between the connecting unit housings (126a), for separating at least the first electrical connection points (124) from each other.
14. The coupling arrangement according to claim 1, wherein the terminal connector (200) comprises a plurality of terminal connector units (210) which are arranged side-by-side in a row and are oriented parallel to the connection direction (E3).
15. The coupling arrangement according to claim 1, wherein the number of the connecting units (121) corresponds to the number of the terminal connector units (210), wherein each connecting unit (121) can be electrically connected via its first electrical connection point (124) with one of the second electrical connection points (291) and vice versa.
16. The coupling arrangement according to claim 1, wherein the circuit board (110) has a lateral recess (112) delimited by at least two opposite side edges (111a, 111b) facing the recess (112), wherein the recess (112) is further delimited by an end side edge (111c) arranged opposite to the lateral opening and connecting the side edges (111a, 111b), wherein the connecting element (120) is arranged at the end side edge (111c).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The invention is explained in detail below with reference to examples of embodiments and with reference to the drawing. The figures show:
[0026]
[0027]
[0028]
[0029]
[0030]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0031]
[0032] The circuit board 110 can be any type of circuit board, preferably a(n LED) driver circuit board or at least connected to such a(n LED) driver.
[0033] The connecting element 120 comprises at least one but preferably multiple connecting units 121 (in
[0034] The connection housing 126 may comprise at least one (here lateral) connection structure 125 for mechanically connecting with the terminal connector 200, as shown in
[0035] As displayed in
[0036] As shown in
[0037] In the displayed embodiment of
[0038] In the shown embodiment, the first connection structures 111, 125 are formed by the guide surfaces 111 of the circuit board 110 and at least one latching element 125, which are part of the connecting element 120. The second connection structures 225, 250 are here formed by at least one respective opposite latching element 225 and by the lateral guide rails 250. In particular in this embodiment the second connection structures 225, 250 are part of the housing 205 of the terminal connector 200.
[0039] The lateral guide rails 250 are preferably designed to interact with the guide surfaces 111 in such a way that the terminal connector 200 can be push-fit onto the circuit board arrangement 100 at least partially along the connection direction E3, preferably into the recess 112 via a lateral opening 113, and preferably thus mechanically connecting the terminal connector 200 with the circuit board arrangement 100. This guide rail connection 111, 250 and the connection of the complementary latching elements 125, 225 hold the terminal connector 200 in place ensuring a stable and durable mechanical connection of the components of the coupling arrangement 10.
[0040] Of course, other connection structures of the circuit board arrangement 100 and the terminal connector 200 are also possible, whereby exemplary the connection housing 126 and/or the first electrical connection point 124 could comprise the first connection structures 125, and whereby likewise the second electrical connection point 291 could comprise the second connection structures. Furthermore, the connecting element 120 could also comprise just one attachment structure 123a which is connected centrally to the connection housing 126.
[0041] In the mechanical connection state of the circuit board arrangement 100 and the terminal connector 200, the first and second terminals 211, 230 are electrically connected to the circuit board 110 through the first and second electrical connection point 124, 291. Therefore, the first, second conductor connection point 295, 292 and the second electrical connection point 291 of each terminal connector unit 210 are preferably integrally connected via or formed by an electrical conductor 290, which is held fixed inside the respective terminal connector unit 210 and thus inside the housing 205. Via the first and second electrical connection point 124, 291 the terminal connector 200 is electrically connected, e.g., to conductor paths and other electrical components of the circuit board 110, such as LED drivers or the like.
[0042] As shown in
[0043] As shown in
[0044] Preferably, the first terminal 211 may further comprise a support member 294, wherein the clamping contact member 293in the state in which no first conductor is present in the first terminal 211is in contact with the support member 294. Preferably, the support member 294 has an inclined contact surface for simplified insertion and contacting of the respective first conductor. Here, together with the clamping contact member 293, these two sections may form (part of) the first conductor insertion channel 212. The support member 294 may be made of electrical conduction material and be preferably connected to the electrical conductor 290 or the second electrical connection point 291. Further preferred, the clamping contact member 293 can be biased towards the clamping point or clamping position (here against support member 294), as shown in
[0045] Upon actuation of the lever 242, i.e. by pushing the lever 242 down towards the top side 202 of the housing 205, the press-element 241 pushes the clamping contact member 293 down, forming a gap between the clamping contact member 293 and the housing 205, and in particular a gap between the clamping contact member 293 and the support member 294. This state allows the first conductor even in form of a flexible conductor to be inserted into and in any case also removed from the clamping point 295, and thus builds the release position. In the clamping position, the lever 242 is not actuated whereby the clamping contact member 293 pushes the respective first conductor against the top side 202 and/or in particular against the support member 294, as shown in
[0046] The second conductor connection point 292 can be a pin connection point for selectively receiving the second conductor for electrical connection, whereby the second terminal 230 can be a plug terminal 230, as shown in
[0047] With the first and second terminal 211, 230, the terminal connector 200 provides the function to connect two conductors to each terminal connector unit 210 from different directions E1, E2 at the same time. In case of different types of first and second terminale.g. clamping terminal and plug terminalthe terminal connector 200 can be provided to conform to LINECT standard. Through the third terminal 220, which is connected to the connecting unit 121 of the circuit board arrangement 100, the respective conductors and the respective circuit board 110 can be electrically linked.
[0048] Further displayed in
[0049] As can be seen in
[0050]
[0051] In
[0052] The shown embodiment of the connecting element 120 comprises a plurality of connecting units 121 which are arranged side-by-side in a row and are oriented parallel to the connection direction E3. Therefore, each of the connecting units 121 comprises a connecting unit housing 126a. The displayed connecting element 120 thus comprises multiple connecting unit housings 126a with dividing bars 127 between two connecting unit housings 126a forming the connection housing 126. Moreover, laterally connected, and preferably integrally formed, with the connection housing 126 can be latching elements 125 for mechanically coupling with the terminal connector 200, and attachment structures 123a for mechanically coupling with the circuit board 110. Moreover, each connecting unit 121 may comprise the first electrical connection point 124 formed by electrically conductive components 122 to electrically connect to the circuit board 110 and the second electrical connection point 291 of a terminal connector unit 210.
[0053] As shown in
[0054] The coupling arrangement 10 provides a flexible and simple coupling of external conductors with a circuit board 110. Therefore, a terminal connector 200 can be directly and reversibly connected mechanically and electrically to the circuit board arrangement 100 via the connecting element 120. Thereby, the terminal connector 200 is easily made reversibly integral with the circuit board arrangement 100, thus facilitating the assembly of an electrical device where the presented coupling arrangement 10 is used. Moreover, no additional wirings or additional connection boxes are necessary to connect the circuit board 110 with the respective conductors, and therefore needs less space particularly when implementing a terminal connector to conform a desired standard, like LINECT. Thus, the coupling arrangement 10 reduces costs, material consumption, space consumption and further improves flexibility and maintenance.
[0055] The present invention is not limited by the embodiment as described herein as long as being covered by the appended claims.