IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0458308
(2012-04-27)
|
등록번호 |
US-8668522
(2014-03-11)
|
우선권정보 |
EP-11164117 (2011-04-28) |
발명자
/ 주소 |
- Becker, Milena
- Slatosch, Gregor
- Acker, Dieter
- Hirzler, Michael
|
출원인 / 주소 |
- Harman Becker Automotive Systems GmbH
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
4 인용 특허 :
56 |
초록
▼
An electrical connector can be provided having a plurality of connector pins, and an electrically conductive connector housing with a bottom wall and a receiving opening for receiving a counter-connector. A plurality of pin receiving openings formed in the bottom wall accommodate a dielectric insert
An electrical connector can be provided having a plurality of connector pins, and an electrically conductive connector housing with a bottom wall and a receiving opening for receiving a counter-connector. A plurality of pin receiving openings formed in the bottom wall accommodate a dielectric insert. At least one of the connector pins extends through the dielectric insert and is fastened by the dielectric insert within the respective pin receiving opening. A slide-in module can be provided with such an electrical connector, and a method for producing such an electrical connector may also be provided.
대표청구항
▼
1. An electrical connector comprising: a plurality of connector pins; anda connector housing having electromagnetic shielding, the connector housing comprising: a bottom wall comprising a plurality of pin receiving openings, at least some of the pin receiving openings having a dielectric insert; and
1. An electrical connector comprising: a plurality of connector pins; anda connector housing having electromagnetic shielding, the connector housing comprising: a bottom wall comprising a plurality of pin receiving openings, at least some of the pin receiving openings having a dielectric insert; anda receiving opening configured to receive a counter connector;where at least one of the plurality of connector pins extends through and is fastened by the dielectric insert within a respective pin receiving opening;where in an orthogonal plane projection of the bottom wall, a total area of all of the pin receiving openings is less than or equal to 39% of a total area of the bottom wall. 2. The electrical connector as claimed in claim 1, where each of the plurality of connector pins comprises a first end and a second end, the second end located on a different side of the bottom wall than the first end. 3. The electrical connector as claimed in claim 1, where at least one of the dielectric inserts fastens only one of the plurality of connector pins. 4. The electrical connector as claimed in claim 1, where at least one of the dielectric inserts fastens two or more of the plurality of connector pins. 5. The electrical connector as claimed in claim 1, where the plurality of connector pins comprises at least three connector pins, and the receiving openings comprise at least two receiving openings. 6. The electrical connector as claimed in claim 1, further comprising a side wall that surrounds the bottom wall. 7. The electrical connector as claimed in claim 1, where at least some the dielectric inserts are separated from one another by a distance. 8. The electrical connector as claimed in claim 1, where the dielectric insert comprises an injection molded material. 9. The electrical connector as claimed in claim 1, where the connector housing comprises a dielectric body having an electrically conductive coating thereon. 10. A slide-in module comprising: an electronic assembly comprising a front side with one or more operator control elements, and, opposite to the front side, a rear side; andan electrical connector comprising: a plurality of connector pins; anda connector housing having electromagnetic shielding, the connector housing comprising: a bottom wall comprising a plurality of pin receiving openings, at least some of the pin receiving openings having a dielectric insert; anda receiving opening configured to receive a counter connector,where at least one of the plurality of connector pins extends through and is fastened by the dielectric insert within a respective pin receiving opening,where in an orthogonal plane projection of the bottom wall, a total area of all of the pin receiving openings is less than or equal to 39% of a total area of the bottom wall,where the electrical connector is fastened to the electronic assembly at the rear side. 11. The slide-in module of claim 10, where each of the plurality of connector pins comprise a first end and a second end located on a different side of the bottom wall than the first end, and where each first end of the plurality of connector pins run parallel to one another and face away from the electronic assembly. 12. A method for producing an electrical connector comprising: providing an electrically conductive connector housing with a bottom wall, the bottom wall comprising a plurality of pin receiving openings;providing a plurality of connector pins;fastening in each of the plurality of pin receiving openings at least one of the plurality of connector pins with a dielectric insert such that each one of the plurality of connector pins extends through one of the plurality of pin receiving openings, and such that each one of the plurality of pin receiving openings comprises a dielectric insertinserting each of the dielectric inserts in a respective pin receiving opening of the plurality of pin receiving openings; andinserting, subsequently, in each of the dielectric inserts at least one of the plurality of connector pins such that each of the plurality of connector pins extends through a pin receiving opening of the plurality of pin receiving openings. 13. The method as claimed in claim 12, further comprising: pre-assembling each one of the dielectric inserts with at least one of the plurality of connector pins; and inserting each one of the pre-assembled dielectric inserts in a pin receiving opening of the plurality of pin receiving openings. 14. The method as claimed in claim 12, where, after inserting each of the dielectric inserts in the plurality of pin receiving openings, each of the plurality of pin receiving openings is completely covered by a dielectric insert. 15. The method as claimed in claim 14, where each of the plurality of connector pins comprises a first end and a second end, each of the dielectric inserts is pierced with at least one of the plurality of connector pins such that each connector pin penetrates a dielectric insert of the dielectric inserts with the first end ahead, the first end and the second end are arranged on opposite sides of the bottom wall, and the first end and the second end are freely accessible. 16. The method as claimed in claim 15, where the electrically conductive connector housing comprises a side wall which, after inserting each of the dielectric inserts in the plurality of pin receiving openings, surrounds the first end of each of the plurality of connector pins. 17. The method as claimed in claim 12, where, in an orthogonal plane projection of the bottom wall, a ratio between a sum of aperture areas of all of the plurality of pin receiving openings formed in the bottom wall and a floor area of the bottom wall of the electrically conductive connector housing is less than or equal to 0.39.
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