Adapter structure for double layer displayport socket connector

CN224733253UActive Publication Date: 2026-09-08LIANZHAN TECH ELECTRONICS KUNSHAN CO LTD
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Patent Information

Application Number
CN202521376007.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-02
Publication Date
2026-09-08
Estimated Expiration
2035-07-02

AI Technical Summary

Technical Problem

[0002]现有的DisplayPort插座通常以单一连接器形式设计,限制了其在有限空间中提供多个连接埠的能力

Benefits of technology

降低模具开发难度,开发同规格的两个DisplayPort插座连接器,同时焊接在电路板上,再在电路板上焊接两个对应DisplayPort插座连接器的转接模组,转接模组将DisplayPort插座连接器信号传输到客户电路板上实现双层DisplayPort结构。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a kind of switching structure of double-layer displayport socket connector, it mainly includes: circuit board, single L-shaped adapter, two DisplayPort socket connectors, glue shell and iron shell, wherein the side of circuit board defines two connector welding areas, the other side defines a switching module welding area, the switching module welding area is located between each connector welding area, and with each connector welding area signal communication, by mounting port for each DisplayPort socket connector is set, iron shell is set in glue shell outside and has completed overall assembly, to realize the difficulty of reducing mould development, the development of two DisplayPort socket connectors of same specification, welding on circuit board simultaneously realizes double-layer DisplayPort structure.
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Description

Technical Field

[0001] This utility model relates to a DisplayPort socket connector, and more particularly to an adapter structure for a double-layer DisplayPort socket connector. Background Technology

[0002] Existing DisplayPort sockets are typically designed with a single connector, limiting their ability to provide multiple ports within a limited space. In applications requiring a large number of DisplayPort devices, this design fails to effectively increase connection density and hinders organizational integration and cabling management. In particular, dual-layer DisplayPort sockets on the market consist of two different sizes of DisplayPort socket connectors assembled with plastic cores and metal shells. The complex molds and high development costs of DisplayPort socket connectors, along with the need for individual adjustments to high-frequency characteristics for both connectors, involve numerous parts and significant investment costs, making this a challenging issue that technical personnel must address. Utility Model Content

[0003] This utility model provides an adapter structure for a double-layer DisplayPort socket connector, which aims to solve the above-mentioned technical problems.

[0004] This utility model embodiment provides an adapter structure for a dual-layer DisplayPort socket connector, characterized by: a circuit board, one side of which defines two connector soldering areas, and the other side of which defines an adapter module soldering area, wherein the adapter module soldering area is located between the respective connector soldering areas and is signal-connected to each of the connector soldering areas; and an L-shaped adapter, comprising a first L-shaped adhesive component, a first L-shaped terminal assembly embedded in the first adhesive component, a second L-shaped adhesive component corresponding to the first L-shaped adhesive component, a second L-shaped terminal assembly embedded in the second L-shaped adhesive component, and a component disposed on the first L-shaped adhesive component and the second L-shaped adhesive component. The components include an L-shaped metal part between the components, with the first L-shaped terminal assembly and the second L-shaped terminal assembly soldered to the adapter module soldering area; two DisplayPort socket connectors, each of which is soldered to the connector soldering area, and its signal is connected to the adapter module soldering area through the connector soldering area; a housing that defines an installation space for accommodating the circuit board, the adapter module and each of the plurality of DisplayPort socket connectors, and a plurality of mounting ports communicating with the installation space and for each of the DisplayPort socket connectors to be installed; and an iron shell disposed outside the housing.

[0005] Preferably, each of the connector welding areas defines a double row of welding holes.

[0006] Preferably, the welding area of ​​the adapter module defines two rows of welding holes.

[0007] Preferably, each of the DisplayPort socket connectors includes: a socket housing, a socket core, and a plurality of terminals, wherein the socket housing is provided with a plurality of DIP pins, and each of the terminals defines a DIP pin.

[0008] Preferably, the circuit board is provided with a fixing hole for inserting each of the DIP pins and a soldering hole for inserting each of the DIP pins in the connector soldering area.

[0009] Due to the adoption of the above technical solution, this utility model has the following beneficial effects: To reduce the difficulty of mold development, two DisplayPort socket connectors of the same specification are developed and soldered onto a circuit board. Then, two corresponding DisplayPort socket connector adapter modules are soldered onto the circuit board. The adapter modules transmit the DisplayPort socket connector signals to the customer's circuit board to achieve a double-layer DisplayPort structure. Attached Figure Description

[0010] Figure 1 This is a three-dimensional structural schematic of the adapter structure of the double-layer displayport socket connector of this utility model.

[0011] Figure 2 This is an exploded view of the adapter structure of the double-layer displayport socket connector of this utility model.

[0012] Figure 3 This is an exploded view of the adapter structure of the double-layer displayport socket connector of this utility model from another angle.

[0013] Figure 4 This is a side view of the circuit board, adapter module, and DisplayPort socket connectors of this utility model.

[0014] Figure 5 This is a three-dimensional structural diagram of the circuit board, adapter module, and various DisplayPort socket connectors of this utility model.

[0015] Symbol Explanation Circuit board 1, connector soldering area 10, double row soldering holes 100, adapter module soldering area 12, fixing hole 120, soldering hole 16, double row soldering holes 120, L-shaped adapter 2, first L-shaped plastic part 20, first L-shaped terminal assembly 21, second L-shaped plastic part 22, second L-shaped terminal assembly 23, L-shaped metal part 24, DisplayPort socket connector 3, socket metal shell 30, DIP pin 300, socket core 32, terminal 34, DIP pin 340, plastic shell 4, mounting space 40, mounting port 42, metal shell 5. Detailed Implementation

[0016] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 The diagram shows a three-dimensional structural schematic of the adapter structure of the double-layer DisplayPort socket connector of this utility model, an exploded structural schematic of the adapter structure of the double-layer DisplayPort socket connector, an exploded structural schematic of the adapter structure of the double-layer DisplayPort socket connector from another angle, a side view of the circuit board, the adapter module and each DisplayPort socket connector, and a three-dimensional structural schematic of the circuit board, the adapter module and each DisplayPort socket connector.

[0017] This utility model relates to an adapter structure for a double-layer DisplayPort socket connector, mainly comprising: a circuit board 1, a single L-shaped adapter 2, two DisplayPort socket connectors 3, a plastic housing 4, and a metal housing 5. One side of the circuit board 1 defines a soldering area 10 for the two connectors, and the other side defines a soldering area 12 for an adapter module. Each connector soldering area 10 defines a double row of soldering holes 100, and the adapter module soldering area 12 defines a double row of soldering holes 120. The adapter module soldering area 12 is located between each connector soldering area 10 and is signal-connected to each connector soldering area 10. The L-shaped adapter... Component 2 includes: a first L-shaped adhesive component 20, a first L-shaped terminal assembly 21, a second L-shaped adhesive component 22, a second L-shaped terminal assembly 23, and an L-shaped metal component 24. The first L-shaped terminal assembly 21 is embedded in the first L-shaped adhesive component 20, and the second L-shaped terminal assembly 23 is embedded in the second L-shaped adhesive component 22. The first L-shaped adhesive component 20 corresponds to the second L-shaped adhesive component 22, and the L-shaped metal component 24 is assembled and disposed between the first L-shaped adhesive component 20 and the second L-shaped adhesive component 22. The L-shaped metal component 24 can effectively shield noise between the first L-shaped terminal assembly 21 and the second L-shaped terminal assembly 23. The first L-shaped terminal assembly 21 and the second L-shaped terminal assembly 23 are soldered to the soldering area 12 of the adapter module.

[0018] In addition, each DisplayPort socket connector 3 is soldered to the connector soldering area 10, and its signal is connected to the adapter module soldering area 12 through the connector soldering area 10. Each DisplayPort socket connector 3 includes: a socket shell 30, a socket core 32, and a plurality of terminals 34. The socket shell 30 is provided with a plurality of DIP pins 300, and each terminal 34 defines a DIP pin 340. The circuit board 1 is provided with a fixing hole 120 and a soldering hole 16. The fixing hole 120 is located in the connector soldering area 10 for each DIP pin 340 to be inserted, and the soldering hole 16 is for each DIP pin to be inserted 340, so that each DisplayPort socket connector 3 is fixed to the circuit board 1 in an upright manner, that is, perpendicular to the circuit board 1.

[0019] The mounting space 40 defined by the housing 4 can accommodate the circuit board 1, the L-shaped adapter 2 and each DisplayPort socket connector 3, and the defined mounting port 42 communicates with the mounting space 40 and is used for each DisplayPort socket connector 3. The metal shell 5 is located outside the housing 4.

[0020] As can be seen from the above, this utility model is an adapter structure for a double-layer DisplayPort socket connector, which can reduce the difficulty of mold development, develop two DisplayPort socket connectors 3 of the same specification, and solder them onto the circuit board 1. An L-shaped adapter 2 that can simultaneously correspond to two DisplayPort socket connectors 3 is soldered onto the circuit board 1. The L-shaped adapter 2 transmits the signals of each DisplayPort socket connector 3 to the customer's circuit board 1 to realize the double-layer DisplayPort structure.

Claims

1. An adapter structure for a double-layer DisplayPort socket connector, characterized in that... : A circuit board, one side of which defines two connector soldering areas, and the other side of which defines an adapter module soldering area, wherein the adapter module soldering area is located between each of the connector soldering areas and is signal-connected to each of the connector soldering areas; An L-shaped adapter includes a first L-shaped adhesive component, a first L-shaped terminal assembly embedded in the first L-shaped adhesive component, a second L-shaped adhesive component corresponding to the first L-shaped adhesive component, a second L-shaped terminal assembly embedded in the second L-shaped adhesive component, and an L-shaped metal component disposed between the first L-shaped adhesive component and the second L-shaped adhesive component. The first L-shaped terminal assembly and the second L-shaped terminal assembly are welded to the welding area of ​​the adapter module. Two DisplayPort socket connectors, each of which is soldered to the connector soldering area, and its signal is connected to the adapter module soldering area through the connector soldering area; A housing that defines an installation space for accommodating the circuit board, the adapter module and each of the DisplayPort receptacle connectors, and a plurality of mounting openings communicating with the installation space and provided for each of the DisplayPort receptacle connectors; and An iron shell is disposed outside the rubber shell.

2. The adapter structure of the double-layer DisplayPort socket connector according to claim 1, characterized in that... Each connector's welding area is defined by a double row of welding holes.

3. The adapter structure of the double-layer DisplayPort socket connector according to claim 1, characterized in that... The welding area of ​​the adapter module defines two rows of welding holes.

4. The adapter structure of the double-layer DisplayPort socket connector according to claim 1, characterized in that... Each DisplayPort socket connector includes: a socket housing, a socket core, and a plurality of terminals. The socket housing is provided with a plurality of DIP pins, and each of the terminals defines a DIP pin.

5. The adapter structure of the double-layer DisplayPort socket connector according to claim 4, characterized in that... The circuit board is provided with a fixing hole for inserting each DIP pin and a soldering hole for inserting each DIP pin in the connector soldering area.