IP Library Granted Patent US 10,468,932
Granted Patent B2
US 10,468,932 · App. 15/962,040 · Granted Nov 5, 2019

Electric motor and switching unit therefor

Inventors: Stefan Beetz (Barnin, DE); Maurad Berkouk (Le Conquet, FR); Sylvain Cordrie (Estenfeld, DE); Dominik Jaeger (Bermbach, DE); Sebastien Labat (Schwanfeld, DE); Stanley Simpson (Oxford, MI)
Assignee: Brose Fahrzeugteile GmbH & Co. Kommanditgesellschaft, Wuerzburg
H02K3/522H01R4/2429H02K5/08H02K11/33H02K2203/03H02K2203/06H02K2203/09
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Quick Facts
Patent No.
US 10,468,932
App. No.
15/962,040
Granted
Nov 5, 2019
Kind
B2
Abstract

An electric motor has a switching unit with a number of contact wires and an annular frame part. The contact wires are arranged to form an interconnect ring for the coil ends of a stator winding and the ends of the wires being connected by insulation displacement contacts. Each of the contacts have two insulation displacement limbs for connecting at least two of the wire ends, the limbs being spaced apart, thus forming an insulation displacement slot therebetween. The frame part of the switching unit has a number of plug-in pockets for receiving the insulation displacement contacts, the number corresponding to the number of insulation displacement contacts.

Claims (24)

1. An insulation-displacement contact for connecting at least two wires or at least two wire ends, the insulation-displacement contact comprising:

two insulation-displacement limbs spaced apart from one another so as to form an insulation-displacement slot there-between and each having at least one limb-side blade edge, at least one of said insulation-displacement slot or said insulation-displacement limbs is configured such that the at least two wire ends, which are introduced into said insulation-displacement slot one behind the other in a slot longitudinal direction and are guided along said at least one limb-side blade edge, are in clamping contact;

said insulation-displacement slot of said insulation-displacement contact having, in the slot longitudinal direction, a first slot region adjoining a limb free end-side slot opening and a widened second slot region adjoining said first slot region and is widened compared to said first slot region, and said widened second slot region transitioning into a third clamping and cutting region being narrower than said widened second slot region; and

said widened second slot region receiving a first wire end previously cut first in said first slot region, when a second wire end enters into said first slot region adjoining said limb free end-side slot opening, the first and second wire ends, after being cut by said first slot region, residing in said third clamping and cutting region where the clamping contact is formed between the first and second wire ends and said third clamping and cutting region.

2. The insulation-displacement contact according to claim 1 , wherein said widened second slot region has a shape of a diamond or a rhombus.

3. The insulation-displacement contact according to claim 1 , wherein said insulation-displacement slot has a recess contour, which forms a predetermined bending point for said insulation-displacement limbs, in a slot end region which is averted from a limb free end-side slot opening in the slot longitudinal direction.

4. The insulation-displacement contact according to claim 3 , wherein said recess contour is a circular recess contour.

5. The insulation-displacement contact according to claim 3 , wherein said recess contour, which serves as the predetermined bending point, forms an abutment contour, which narrows said insulation-displacement slot, as a stop for the wire ends.

6. The insulation-displacement contact according to claim 1 , wherein said insulation-displacement limbs has on an outer side of said insulation-displacement limbs, at least one raised joining contour.

7. A switching unit for an electric motor, the switching unit comprising:

a plurality of contact wires for interconnecting coils of a stator winding of the electric motor; and

a plurality of phase connections formed by a corresponding number of insulation-displacement contacts or contain said insulation-displacement contacts, said insulation-displacement contacts each containing:

two insulation-displacement limbs being spaced apart from one another so as to form an insulation-displacement slot there-between and each having at least one limb-side blade edge, at least one of said insulation-displacement slot or said insulation-displacement limbs is configured such that at least two wire ends, which are introduced into said insulation-displacement slot one behind the other in a slot longitudinal direction and are guided along said at least one limb-side blade edge, are in clamping contact;

said insulation-displacement slot of said insulation-displacement contact having, in the slot longitudinal direction, a first slot region adjoining a limb free end-side slot opening and a widened second slot region adjoining said first slot region and is widened compared to said first slot region, and said widened second slot region transitioning into a third clamping and cutting region being narrower than said widened second slot region; and

said widened second slot region receiving a first wire end previously cut first in said first slot region, when a second wire end enters into said first slot region adjoining said limb free end-side slot opening, the first and second wire ends, after being cut by said first slot region, residing in said third clamping and cutting region where the clamping contact is formed between the first and second wire ends and said third clamping and cutting region.

8. The switching unit according to claim 7 , further comprising a frame part having a plurality of insertion pockets for receiving said insulation-displacement contacts and corresponding to a number of said insulation-displacement contacts, wherein said insertion pockets of said frame part have a slot formed therein which is in alignment with said insulation-displacement slot of a corresponding one of said insulation-displacement contacts which is inserted into said insertion pockets.

9. An electric motor, comprising:

a stator winding having coils;

a switching unit, containing:

a plurality of contact wires for interconnecting said coils of said stator winding; and

a plurality of phase connections formed by a corresponding number of insulation-displacement contacts or contain said insulation-displacement contacts, said insulation-displacement contacts each containing:

two insulation-displacement limbs being spaced apart from one another so as to form an insulation-displacement slot there-between and each having at least one limb-side blade edge, at least one of said insulation-displacement slot or said insulation-displacement limbs is configured such that at least two wire ends, which are introduced into said insulation-displacement slot one behind the other in a slot longitudinal direction and are guided along said at least one limb-side blade edge, are in clamping contact;

said insulation-displacement slot of said insulation-displacement contact having, in the slot longitudinal direction, a first slot region adjoining a limb free end-side slot opening and a widened second slot region adjoining said first slot region and is widened compared to said first slot region, and said widened second slot region transitioning into a third clamping and cutting region being narrower than said widened second slot region; and

said widened second slot region receiving a first wire end previously cut first in said first slot region, when a second wire end enters into said first slot region adjoining said limb free end-side slot opening, the first and second wire ends, after being cut by said first slot region, residing in said third clamping and cutting region where the clamping contact is formed between the first and second wire ends and said third clamping and cutting region.

Priority Claims (1)
DE 10 2015 001 214 · Feb 3, 2015 · national
Continuity (3)
Continuation 15667813 · Aug 3, 2017
Continuation PCTEP2016052267 · Feb 3, 2016
Related Publication 20180241273A1 · Aug 23, 2018