Inverter arrangement for an electric machine, and method for providing an inverter arrangement
An inverter arrangement for an electric machine includes a housing having a housing opening, a circuit carrier, with electrical components, that is situated in the housing, and on a side facing the housing opening has two direct voltage terminals in the form of contact slots. A terminal element having a terminal element body, two plate-shaped terminal element contact bars, and two terminal element contact pins, one of each of the terminal element contact bars being electrically connected to one of the terminal element contact pins. The terminal element is fastened via the housing opening so that in each case one of the terminal element contact bars protrudes into one of the contact slots and is electrically connected to the contact slot via a solder connection, the terminal element contact pins being situated outside the housing.
1 . An inverter arrangement ( 100 ) for an electric machine, comprising:
a housing ( 12 ) having a housing opening ( 12 a ),
a circuit carrier ( 11 ), with electrical components ( 20 ), that is situated in the housing ( 12 ) the circuit carrier ( 11 ) having an edge facing the housing opening ( 12 a ) and on the edge facing the housing opening ( 12 a ) has two direct voltage terminals in the form of contact slots ( 11 a ) that extend to the edge of the circuit carrier ( 11 ),
a terminal element ( 10 ) having a terminal element body ( 10 c ), two plate-shaped terminal element contact bars ( 10 a ), and two terminal element contact pins ( 10 b ), one of each of the terminal element contact bars ( 10 a ) being electrically connected to one of the terminal element contact pins ( 10 b ),
wherein the terminal element ( 10 ) is fastened via the housing opening ( 12 a ) so that in each case one of the terminal element contact bars protrudes through the edge of the circuit carrier ( 11 ) and into one of the contact slots ( 11 a ) and is electrically connected to the contact slot via a solder connection ( 14 ), the terminal element contact pins being situated outside the housing ( 12 ).
2 . The inverter arrangement ( 100 ) according to claim 1 , wherein the terminal element body ( 10 c ) is made of an electrical insulator.
3 . The inverter arrangement ( 100 ) according to claim 1 , wherein the terminal element body ( 10 c ) is an injection-molded part.
4 . The inverter arrangement ( 100 ) according to claim 1 , wherein the terminal element ( 10 ) includes a terminal element alignment element ( 10 d ) that is configured to align the terminal element ( 10 ) at the housing opening ( 12 a ).
5 . The inverter arrangement ( 100 ) according to claim 1 , wherein the terminal element ( 10 ) is screwed to the housing ( 12 ).
6 . The inverter arrangement ( 100 ) according to claim 1 , wherein a sealing element ( 15 ) is provided between the terminal element ( 10 ) and the housing ( 12 ), in particular a liquid sealing element, in particular a sealing element that completely encloses the housing opening ( 12 a ).
7 . The inverter arrangement ( 100 ) according to claim 1 , wherein at least one of the terminal element contact bars ( 10 a ) has a trapezoidal shape in a longitudinal section.
8 . The inverter arrangement ( 100 ) according to claim 1 , wherein in a plane parallel to a main plane of extension of the terminal element contact bars ( 10 a ) and in a direction perpendicular to the main plane of extension of the circuit carrier ( 11 ), the electrical components ( 20 ), viewed from the circuit carrier ( 11 ), are situated behind the terminal element contact bars ( 10 a ).
9 . A system comprising an electric machine and an inverter arrangement ( 100 ) according to claim 1 .
10 . A method for providing an inverter arrangement ( 100 ), comprising the steps:
providing a housing ( 12 ) having a housing opening ( 12 a ),
inserting a circuit carrier ( 11 ) having an edge facing the housing opening ( 12 a ) that includes two direct voltage terminals in the form of contact slots ( 11 a ) that extend to the edge of the circuit carrier ( 11 ), together with electrical components ( 20 ), into the housing ( 12 ) so that the contact slots ( 11 a ) face the housing opening ( 12 a ),
arranging a terminal element ( 10 ) that includes a terminal element body ( 10 c ), two plate-shaped terminal element contact bars ( 10 a ), and two terminal element contact pins ( 10 b ), each of the terminal element contact bars ( 10 a ) being electrically connected via the housing opening ( 12 a ) to one of the terminal element contact pins ( 10 b ), so that in each case one of the terminal element contact bars protrudes through the edge of the circuit carrier ( 11 ) and into one of the contact slots ( 11 a ),
electrically connecting each of the terminal element contact bars ( 10 a ) to one of the contact slots via a solder connection ( 14 ).
11 . The method according to claim 10 , wherein the electrical connection via the solder connection ( 14 ) takes place by means of selective wave soldering.
12 . The method according to claim 10 , wherein the electrical connection via the solder connection ( 14 ) takes place in a combined soldering process, with the production of further solder connections on the circuit carrier ( 11 ).
13 . The method according to claim 10 , wherein the terminal element ( 10 ) is positioned at the housing ( 12 ) by means of at least one terminal element alignment element ( 10 d ).
14 . The method according to claim 10 , wherein the terminal element ( 10 ) is screwed to the housing ( 12 ).
15 . The method according to claim 10 , wherein a sealing element ( 15 ) is situated around the housing opening ( 12 a ).