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Plug-in connection with heat capacity elements arranged on contact elements

A technology of contact elements and connectors, applied in contact parts, vehicle connectors, vehicle components, etc., which can solve the problems of contact element size, structural space requirements, weight and cost constraints, and increased size

Active Publication Date: 2021-01-15
PHOENIX CONTACT E MOBILITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] However, the increase in the size of the contact element with increasing charging current is not only limited due to the resulting installation space requirements, weight and costs, but also there are some standard specifications for the dimensioning of the contact element which prohibit the increase in size

Method used

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  • Plug-in connection with heat capacity elements arranged on contact elements
  • Plug-in connection with heat capacity elements arranged on contact elements
  • Plug-in connection with heat capacity elements arranged on contact elements

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0040] figure 1 A charging station 1 for charging an electrically driven vehicle 4 , also called an electric vehicle, is shown. The charging station 1 is suitable for providing charging current in the form of alternating current or direct current, and has a cable 2 connected to the charging station 1 at one end 201 and to a mating plug connector 3 in the form of a charging plug at the other end 200 .

[0041] Such as figure 2As shown in the enlarged view of , the mating plug connector 3 has plug-in parts 300, 301 on the housing 30, which are used to make the mating plug connector 3 connect with the charging socket on the vehicle 4 in a plug-in manner. The associated plug-in connector 5 of the form snaps into place. In this way, the charging station 1 can be electrically connected to the vehicle 4 in order to conduct a charging current from the charging station 1 to the vehicle 4 .

[0042] In order to realize fast charging of the electric vehicle 4 in the so-called fast ch...

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PUM

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Abstract

A plug-type connector (5) for connecting with a mating plug-type connector (3) includes a housing (50), and the housing has a The socket part (500, 501), and at least one socket part (500, 501) arranged on the socket part (500, 501), which has a shaft part (510) and is used to be assigned to the mating connector (3) The contact elements (51A, 51B) are in electrical contact with the mating contact elements (31). In addition, there is also a device arranged on the shaft portion (510) of the at least one contact element (51A, 51B) and fixedly connected with the shaft portion (510) for absorbing the at least one contact element (51A, 51B). ) heat capacity elements (54A, 54B). In this way, a plug-in connection is provided which contains contact elements which can have a relatively high current-carrying capacity, for example for an electric vehicle charging system.

Description

technical field [0001] The invention relates to a plug connector for connection to a mating plug connector according to the preamble of claim 1 . Background technique [0002] This type of plug-in connector includes a housing with a plug-in portion for plug-in connection with a mating plug-in connector, and at least one socket arranged on the plug-in portion and having a shaft portion for mating with the mating portion. The contact element that is electrically contacted by the associated mating contact element of the plug-in connection. [0003] Such plug-in connections can be used, for example, as charging plugs or charging sockets for charging electrically driven vehicles, also known as electric vehicles. Such a charging socket is arranged, for example, on the vehicle and can be connected in a plug-in manner to an associated mating connector in the form of a charging plug on the cable leading to the charging station, thereby providing a connection between the charging sta...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01R13/04B60L53/16
CPCB60L53/16H01R13/04H01R2201/26Y02T10/70Y02T10/7072Y02T90/14
Inventor 托马斯·菲雷尔霍尔格·塞弗特
Owner PHOENIX CONTACT E MOBILITY
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