WO2016070735A1 - 音视频信号传输连接器 - Google Patents

音视频信号传输连接器 Download PDF

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Publication number
WO2016070735A1
WO2016070735A1 PCT/CN2015/092902 CN2015092902W WO2016070735A1 WO 2016070735 A1 WO2016070735 A1 WO 2016070735A1 CN 2015092902 W CN2015092902 W CN 2015092902W WO 2016070735 A1 WO2016070735 A1 WO 2016070735A1
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WO
WIPO (PCT)
Prior art keywords
interface unit
audio
video signal
signal transmission
connection
Prior art date
Application number
PCT/CN2015/092902
Other languages
English (en)
French (fr)
Inventor
钟培峰
陈旭昀
黄少华
Original Assignee
晶晨半导体(上海)有限公司
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Filing date
Publication date
Application filed by 晶晨半导体(上海)有限公司 filed Critical 晶晨半导体(上海)有限公司
Priority to US15/321,917 priority Critical patent/US9948045B2/en
Publication of WO2016070735A1 publication Critical patent/WO2016070735A1/zh

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    • HELECTRICITY
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    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/648Protective earth or shield arrangements on coupling devices, e.g. anti-static shielding  
    • H01R13/658High frequency shielding arrangements, e.g. against EMI [Electro-Magnetic Interference] or EMP [Electro-Magnetic Pulse]
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    • H04N7/0125Conversion of standards, e.g. involving analogue television standards or digital television standards processed at pixel level one of the standards being a high definition standard
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Definitions

  • the present invention relates to the field of televisions, and in particular to an audio and video signal transmission connector.
  • the connector for audio and video signal transmission in the TV set on the market is relatively simple, which makes the function relatively simple and difficult to expand.
  • it is easy to loosen, thereby causing Poor contact; in the manufacturing, because the flatness of the device is difficult to control, and then there will be defects such as bow or offset, and the production of welding repair is difficult, not suitable for manual welding technology, can not produce welding quality control.
  • the connectors for audio and video signal transmission in current TV sets have limited ability to adapt to high-performance signal transmission (generally only support 18Gbps signal transmission), and have no partition design, anti-serial interference capability and conductive capability (generally maximum support).
  • the transmission of 1A current is not strong, which makes it impossible to expand more.
  • the present application provides an audio and video signal transmission connector applicable to transmission of audio and video signals, the audio and video signal transmission connector having a connection port for connecting with other components, and the connection port includes :
  • connection areas a plurality of connection areas, and signal isolation layers are disposed between adjacent connection areas to isolate electrical signals between the connection areas;
  • each of the connection areas includes at least one interface unit.
  • the connecting end faces of the plurality of connecting regions are all located on the same horizontal plane.
  • connection areas include:
  • a first connection area including a first HDMI interface unit, a second HDMI interface unit, and a USB interface unit;
  • a second connection area including a power interface unit, an RJ interface unit, and other interface units;
  • the first connection area and the second connection area are arranged in parallel and are symmetrically distributed, and the isolation layer connects the first HDMI interface unit, the second HDMI interface unit, the USB interface unit, and Any two of the second connection zones are isolated.
  • the first HDMI interface unit and the second HDMI interface unit each include:
  • At least one HDMI 2.0 interface and each HDMI 2.0 interface is compatible with HDMI 1.4 standard data transmission.
  • the bandwidths of the signals transmitted by the first HDMI interface unit and the second HDMI interface unit are both less than or equal to 27 Gbps.
  • the USB interface unit includes:
  • At least one USB 3.0 interface and each USB 3.0 interface is compatible with the transmission of multiple USB 2.0 standard data.
  • the power interface unit includes:
  • At least one power interface and each of the power interfaces is provided with a plurality of pins;
  • the current flowing through each of the pins of the power interface is less than or equal to 1.2A.
  • the RJ interface unit includes:
  • At least one Gigabit network interface and each Gigabit network interface is compatible with the transmission of 100M network standard data.
  • the other interface unit includes:
  • Analog signal interface for transmission of analog signals.
  • connection port is a female connection port or a male connection port.
  • Each interface unit includes a plurality of pins, and the functions between the adjacent interface units and adjacent pins can be replaced with each other.
  • connection port includes 86 pins.
  • the first HDMI interface unit and the second HDMI interface unit each comprise 18 consecutively arranged pins, the USB interface unit comprising 10 consecutively arranged pins, the power interface unit comprising 7 consecutively arranged pins,
  • the RJ interface unit includes 11 consecutively arranged pins, and the other interface units include 22 consecutively arranged pins;
  • the first HDMI interface unit and the second HDMI interface unit are symmetrically distributed on both sides of the USB interface unit, and the power interface unit and the RJ interface unit are distributed on both sides of the other interface unit. And the first connection region and the second connection region are arranged in parallel.
  • the technical solution in the present application is to perform partition integration by corresponding to the audio and video signal transmission connector used in the television, so as to effectively avoid signal crosstalk between the respective partitions, and at the same time, the connection end faces of the interfaces in the respective partitions are located at the same time.
  • the machine is easy to be plugged in by other components, and the contact is reliable and not easy to loose, and at the same time facilitates the production of the welding process.
  • FIG. 1 is a schematic perspective structural view of a male connector port of an audio-video signal transmission connector according to an embodiment of the present application
  • FIG. 2 is a schematic structural view of a male connector port of the audio and video signal transmission connector shown in FIG. 1;
  • FIG. 3 is a schematic diagram of a pin of the male connector port of FIG. 1 and/or FIG. 2;
  • FIG. 4 is a schematic perspective structural view of a female connector port of an audio-video signal transmission connector according to an embodiment of the present application
  • FIG. 5 is a schematic structural view of a female connection port of the audio and video signal transmission connector shown in FIG. 4;
  • FIG. 6 is a schematic diagram of the pin of the female connector port of FIG. 4 and/or FIG. 5;
  • FIG. 7 is a schematic structural diagram of an isolation layer in a male connection port of an audio and video signal transmission connector according to an embodiment of the present application.
  • the audio and video signal transmission connector provided in the embodiment of the present invention can be set as a plurality of connection unit regions by using the connection component in the connector based on the audio and video connection line applied to the existing television set, and in the phase
  • An isolation layer for isolating the electrical signal is disposed between the adjacent connection unit regions, and the end structure of the connector is set to be axisymmetric, and the connection end faces of the connection pins are all disposed on the same horizontal surface, thereby being effective
  • Preventing the occurrence of defects such as signal interference and crosstalk in the machine it can also be applied to blind insertion, and can further enhance the contact performance between the connector and other components, and also facilitate the production and later of the product. Maintenance operations.
  • the audio and video signal transmission connector in the present application has a male connection port and a female connection port as mutually corresponding plug ends, and the structures of the connection ports are matched with each other.
  • the sounds of the present invention are respectively described below with reference to the accompanying drawings and specific embodiments.
  • the male connector port and the female connector port of the video signal transmission connector are described in detail.
  • connection cable can be integrated into a whole bus through a connection device such as a connecting cable, and the cable can be separately integrated according to actual needs, as long as it can complete data signals and electric energy.
  • the transmission cable can be configured; at the same time, the connection cable can be set to have a flexible or fixed configuration according to actual needs, and if the audio and video signal transmission connector is a plug-in card between components, the connection cable can be The cable is integrated into a housing having a certain hardness performance so that it has a certain supporting ability.
  • the connecting cable may include a plurality of connecting lines (not shown), and each connecting line has a protective layer of insulation and/or isolation function to avoid interference or short circuit between the connecting lines.
  • Etc., and the material and shape of the core of each connecting wire can be specifically set according to the function of the end pin to which it is connected.
  • the material of the wire for transmitting electrical energy can be copper, iron, etc.
  • the conductive material, and the core of the connecting line for transmitting the optical signal may be an optical fiber or the like.
  • the above connecting cable can be set outside according to specific needs.
  • the morphological structure is as long as it can realize the transmission between subsequent connected components (including transmission of photoelectric data information, electric energy, etc.).
  • the male connector port 10 may include a plurality of connection regions, and an isolation layer is disposed between adjacent connection regions, that is, the isolation layer isolates electrical signals between adjacent connection regions to prevent different The occurrence of signal interference or crosstalk between the connection areas ensures the accuracy and security of data transmission; wherein each connection area includes at least one interface unit, and each interface unit can be independently implemented.
  • each connection area includes at least one interface unit, and each interface unit can be independently implemented.
  • the male connector port 10 includes a first connection area (not shown) and a second connection area 14 , and the first connection area may include The first HDMI interface unit 11, the second HDMI interface unit 13, and the USB interface unit 12, etc., the second connection area 14 may include a power interface unit 141, other interface units 142, an RJ interface 143, and the like.
  • the first HDMI interface unit 11 and the second HDMI interface unit 13 are respectively symmetrically located on two sides of the USB interface unit 12, and the power interface unit 141 and the RJ interface 143 are respectively located at two sides of the other interface unit 142, and the
  • the pins in the male connection port 10 are axially symmetrically distributed with the axis of symmetry shown in FIG. 2 (ie, the central axis common to the first connection region and the second connection region, and also the central axis of the USB interface unit 12).
  • the connection port of the audio and video signal transmission connector can be blindly inserted.
  • the isolation layer 3 connects the second connection area 14 and the first HDMI.
  • the two units of the port unit 11, the USB interface unit 12 and the second HDMI interface unit 13 are isolated, thereby effectively preventing the occurrence of crosstalk or interference between them; wherein the signal isolation layer 3
  • the material can be adaptively adjusted according to the transmitted signal, as long as it can isolate the signals between adjacent connected unit areas to avoid signal interference or crosstalk between the connected unit areas; for example;
  • the signal isolation layer 3 can have certain fireproof and puncture-proof performance, and can also have certain hardness and elasticity requirements, so as to have the function of supporting and protecting the set pins.
  • the first HDMI interface unit 11 and the second HDMI interface unit 13 each include at least one HDMI 2.0 interface, and each HDMI 2.0 interface can perform HDMI 2.0 standard data transmission. It is also compatible with the transmission of HDMI1.4 standard data, and the HDMI 2.0 interface can also support the transmission of data signals with a maximum bandwidth of 27 Gbps;
  • the above USB interface unit 12 can also include at least one USB 3.0 interface, and each USB 3.0 interface It is capable of USB 3.0 standard data transmission and is also compatible with the transmission of multiple USB 2.0 standard data.
  • the power interface unit 141 may further include at least one power interface, and each of the power interfaces is provided with a plurality of pins, and each of the pins located in the power interface is It can support the transmission of up to 1.2A current.
  • the 1.2A current can be transmitted by using a large pin or a high-conductivity material.
  • the RJ interface 141 can include at least one Gigabit. Network interface, and each Gigabit network interface is compatible with the transmission of 100M network standard data; and the other interface units mentioned above include auxiliary interfaces such as analog signal interfaces for transmission of analog signals, depending on the connected device The need for data transmission is appropriate Set or adjust.
  • a plurality of pins are disposed in the power interface unit 141 and the RJ interface 143, and the pin functions in the power interface unit 141 and the RJ interface 143 can be set according to specific requirements, as long as the power supply
  • the interface unit 141 is capable of realizing power transmission
  • the RJ interface 143 is capable of network connection function.
  • the male connector port 10 is provided with pins (such as pins) arranged according to a certain rule, and a plurality of pins are disposed in each interface unit region, and are located in the same interface unit and adjacent to each other. The functions between the pins can be replaced with each other.
  • pins such as pins
  • FIG. 3 is a schematic diagram of the pins of the male connector port of FIG. 1 and/or FIG. 2; as shown in FIGS. 1 to 3 and FIG. 7, in this embodiment, 86 pins are provided in the male connector port. The case is described in detail:
  • the first HDMI interface unit 11 and the second HDMI interface unit 13 respectively include 18 consecutively arranged pins (Pin01 ⁇ Pin18, Pin29 ⁇ Pin46), and the USB interface unit 12 includes 10 consecutively arranged pins (Pin19 to Pin28), the power interface unit 141 includes 7 consecutively arranged pins (Pin76 to Pin86), and the RJ interface unit 143 includes 11 consecutively arranged pins (Pin47 to Pin57).
  • the other interface unit 142 includes 22 consecutively arranged pins (Pin 58 to Pin 75); that is, the pins (Pin01 to Pin 46) located in the first connection area are arranged in a row, and adjacent leads in different interface units The distance between the feet is the same; the pins (Pin47 to Pin86) located in the second connection region 14 are located below the first connection region, and the pins in the second connection region 14 are the same.
  • the intervals and rules are arranged in two rows; as shown in FIG. 2 and FIG. 7, the male connector connects all the pins in the port 10. (Pin01 ⁇ Pin86) all show axisymmetric distribution with the axis of symmetry as the axis.
  • any two pins (such as pins) located in the same interface unit can be mutually replaced, thereby switching between different functions to improve the flexibility and expandability of the connection end;
  • the connection end faces of all the pins in the connection port are on the same horizontal plane, that is, the structure of each connection end has a uniform uniformity, thereby ensuring better contact performance and being easy to insert and remove.
  • the audio and video signal transmission connector in the embodiment can also be adapted to the interface design of the double-layer board and the multi-layer board, and is compatible with the 1.2 mm and 1.6 mm PCB boards, thereby enabling the connector to be free. It is updated and can effectively save development costs and greatly reduce the cost of subsequent production and transportation.
  • FIGS. 1 to 3 of the present application are for indication only, and the specific structural design can be adaptively adjusted or modified according to actual needs, as long as it can be based on blind insertion.
  • the function of the connected unit area can be realized.
  • the present embodiment provides a structure of a female connection port of an audio/video signal transmission connector.
  • FIG. 4 is a schematic perspective structural view of a female connector port of an audio-video signal transmission connector according to an embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of a female connector port of the audio-video signal transmission connector shown in FIG. 4 and/or the pin diagram of the female connection port in FIG. 5; as shown in FIG. 4 to FIG. 6, the female connection port 20 of the audio-video signal transmission connector 2 in this embodiment corresponds to the above-mentioned first embodiment.
  • the female connector port 20 in the embodiment is matched with the male connector port 10 in the first embodiment, the technical features related to the male connector port 10 described in the above embodiments can be adapted and adapted. The technical features in this embodiment will not be described here.
  • the first HDMI interface unit 21 and the second HDMI interface unit 23 in the female connection port 20 in this embodiment also include 18 consecutively arranged pins (Pin01 ⁇ Pin18, Pin29 ⁇ ).
  • Pin46) USB interface unit 22 includes 10 consecutively arranged pins (Pin19 ⁇ Pin28), and the power interface unit (corresponding to "power supply” in Fig. 2) includes 7 consecutively arranged pins (Pin80 ⁇ Pin86), RJ
  • the interface unit (corresponding to "RJ” in Fig. 2) also includes 11 consecutively arranged pins (Pin47 to Pin57), while the other interface units (corresponding to "other ports” in Fig. 2) include 22 consecutively arranged Pins (Pin58 ⁇ Pin79); that is, the female connection port 20 also has 86 pins (Pin01 to Pin86) corresponding to the male connection port 10, and the corresponding interface units and pins have the same performance.
  • the connector for audio and video signal transmission in this embodiment has a high degree of integration, so that it can have many functions, and thus is easy to expand; at the same time, by correspondingly used for audio and video in electronic devices such as televisions.
  • the signal transmission connector performs partition integration to effectively avoid signal crosstalk between the various partitions, and at the same time, the connection end faces of the interfaces in the respective partitions are all on the same horizontal plane, so that the connected machine is easy to be plugged in by other components.
  • the flatness control in the production process of the device can effectively avoid the defects such as low head or offset, and can be well adapted to the manual welding technology, thereby effectively reducing the difficulty of production welding repair and facilitating the quality of the production welding.
  • the connector for audio and video signal transmission in this example can also adapt to high-performance signal transmission (and has strong electrical conductivity, so that it can be expanded more.

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Abstract

一种音视频信号传输连接器(1),该连接器具有与其它部件连接的连接端口(10),该连接端口包括若干个连接区,每个连接区均包括至少一个接口单元(11-13,141-143),连接区之间设置隔离层(3)以避免各个连接区之间的信号串扰;各个连接区中的接口连接端面均处在同一水平面,使得该连接器易于与其他部件进行插接,接触可靠,不易松动,有利于生产焊接。

Description

音视频信号传输连接器 技术领域
本发明涉及电视机领域,尤其涉及一种音视频信号传输连接器。
背景技术
在近代社会的发展过程中,电视机作为人们获取音像资讯的重要媒介,其一直随着科技的进步得到不断的发展,尤其是随着互联网技术的日新月异,作为智能家居的核心设备,智能电视越来越受到人们的关注。
目前,市场上的电视机中用于音视频信号传输的连接器由于集成度较低,进而造成其功能比较单一,不易扩展;同时,其整体结构与其他部件衔接的时候,易松动,进而造成接触不良;而在生产制造时,由于器件的平整度很难控制,进而会出现低头或偏位等缺陷,且生产焊接修复的难度较大,不适应人工焊装技术,无法进行生产焊接质量的把控。
另外,当前电视机中用于音视频信号传输的连接器,适应高性能信号传输的能力有限(一般只支持18Gbps信号的传输),且无分区设计,防串干扰能力及导电能力(一般最大支持1A电流的传输)均不强,进而使得其无法进行更多的扩展。
发明内容
鉴于上述技术问题,本申请提供一种音视频信号传输连接器,可应用于音视频信号的传输中,所述音视频信号传输连接器具有用于与其它部件连接的连接端口,且该连接端口包括:
若干个连接区,相邻的连接区之间均设置有信号隔离层,以隔离连接区之间的电信号;
其中,每个所述连接区中均包括有至少一个接口单元。
作为一个优选的实施例,上述的音视频信号传输连接器中:
所述若干个连接区的连接端面均位于同一水平面上。
作为一个优选的实施例,上述的音视频信号传输连接器中,所述若干个连接区包括:
第一连接区,包括第一HDMI接口单元、第二HDMI接口单元和USB接口单元;
第二连接区,包括电源接口单元、RJ接口单元和其他接口单元;
其中,所述第一连接区与所述第二连接区平行排列且呈轴对称分配,所述隔离层将所述第一HDMI接口单元、所述第二HDMI接口单元、所述USB接口单元和所述第二连接区中的任意两者之间均予以隔离。
作为一个优选的实施例,上述的音视频信号传输连接器中,所述第一HDMI接口单元和所述第二HDMI接口单元均包括:
至少一路HDMI 2.0接口,且每路HDMI 2.0接口均兼容HDMI1.4标准数据的传输。
作为一个优选的实施例,上述的音视频信号传输连接器中:
所述第一HDMI接口单元和所述第二HDMI接口单元所传输信号的带宽均小于或等于27Gbps。
作为一个优选的实施例,上述的音视频信号传输连接器中,所述USB接口单元包括:
至少一路USB 3.0接口,且每路USB 3.0接口均兼容多路USB 2.0标准数据的传输。
作为一个优选的实施例,上述的音视频信号传输连接器中,所述电源接口单元包括:
至少一路电源接口,且每路所述电源接口中均设置有若干个引脚;
其中,流经该电源接口中的每个引脚的电流小于或等于1.2A。
作为一个优选的实施例,上述的音视频信号传输连接器中,所述RJ接口单元包括:
至少一路千兆网络接口,且该每路千兆网络接口均兼容百兆网络标准数据的传输。
作为一个优选的实施例,上述的音视频信号传输连接器中,所述其他接口单元包括:
模拟信号接口,以用于模拟信号的传输。
作为一个优选的实施例,上述的音视频信号传输连接器中,所述连接端口为母头连接端口或公头连接端口。
作为一个优选的实施例,上述的任意一项音视频信号传输连接器中:
每个接口单元均包括有若干引脚,位于同一接口单元且相邻的引脚之间的功能均可相互置换。
作为一个优选的实施例,上述的音视频信号传输连接器中:
所述连接端口包括86个引脚。
作为一个优选的实施例,上述的音视频信号传输连接器中:
第一HDMI接口单元和第二HDMI接口单元均包括18个连续排列的引脚,所述USB接口单元包括10个连续排列的引脚,所述电源接口单元包括7个连续排列的引脚、所述RJ接口单元包括11个连续排列的引脚,所述其他接口单元包括22个连续排列的引脚;
其中,所述第一HDMI接口单元和所述第二HDMI接口单元对称分布于所述USB接口单元的两侧,所述电源接口单元和所述RJ接口单元分布位于所述其他接口单元的两侧,且所述第一连接区和所述第二连接区平行排列。
上述技术方案具有如下优点或有益效果:
本申请中的技术方案是通过对应用于电视中的音视频信号传输连接器进行分区集成化设置,以有效避免各个分区之间的信号串扰,同时将各个分区中的接口的连接端面均处在同一水平面上,以使得该连机器易于其他部件进行插接操作,且接触可靠不易松动,同时又利于生产焊接工艺。
附图说明
参考所附附图,以更加充分的描述本发明的实施例。然而,所附 附图仅用于说明和阐述,并不构成对本发明范围的限制。
图1为本申请实施例中音视频信号传输连接器的公头连接端口立体结构示意图;
图2为图1中所示音视频信号传输连接器的公头连接端口的结构示意图;
图3为图1和/或图2中公头连接端口的引脚示意图;
图4为本申请实施例中音视频信号传输连接器的母头连接端口立体结构示意图;
图5为图4中所示音视频信号传输连接器的母头连接端口的结构示意图;
图6为图4和/或图5中母头连接端口的引脚示意图;
图7为本申请实施例中音视频信号传输连接器的公头连接端口中隔离层的结构示意图。
具体实施方式
本发明实施例中提供的音视频信号传输连接器,可基于应用于现有电视机中音视频连接线的基础上,通过将连接器中的连接部件设置为若干个连接单元区,且在相邻的连接单元区之间还设置用于隔离电信号的隔离层,并将连接器的端部结构设置为呈轴对称图形,且连接引脚的连接端面均设置在同一水平面上,进而在有效的防止连机器中信号干扰、串扰等缺陷产生的同时,还能适用盲插,并可进一步增强连接器与其他部件之间的接触性能,同时还利于产品的生产及后期 的维护操作。
本申请中的音视频信号传输连接器具有公头连接端口和母头连接端口,作为相互对应的插接端,其连接端口的结构相互匹配,下面结合附图和具体实施例分别对本发明的音视频信号传输连接器的公头连接端口及母头连接端口进行详细说明。
实施例一
图1为本申请实施例中音视频信号传输连接器的公头连接端口立体结构示意图;如图1所示,本实施例中的音视频信号传输连接器1具有公头连接端口10,并可通过诸如连接线缆等连接装置与其他器件结构连接,上述的连接线缆可为集成为一体的总线,也可基于实际需求将每根线缆进行单独设置,只要其能完成数据信号及电能的传输即可;同时,也可根据实际需求将该连接线缆设置为具有柔性或是固定形态的结构,如若该音视频信号传输连接器为部件之间的插接卡时,可将该连接线缆集成于具有一定硬度性能的外壳中,以使得其具有一定的支撑能力。
优选的,上述的连接线缆中可包括若干个连接线(图中未示出),且每根连接线均具有绝缘和/或隔离功能的保护层,以避免连接线之间干扰或短接等,且每根连接线的线芯的材质及形态可根据其所连接的端部引脚的功能而具体设定,如用于传输电能的连接线的线芯的材质可为铜、铁等导电材质,而同于传输光信号的连接线的线芯则可为光纤等。
需要注意的是,上述的连接线缆其可根据具体的需求设置其外部 的形态结构,只要其能实现后续所连接的部件之间传输(包括光电数据信息、电能等的传输)即可。
上述的公头连接端口10可包括若干个连接区,且在相邻的连接区之间均设置有隔离层,即该隔离层将相邻的连接区之间的电信号进行隔离,以防止不同的连接区之间发生信号的干扰或串扰等现象的产生,进而确保数据传输的准确及安全性;其中,每个连接区中均至少包括有一个接口单元,且每个接口单元能够独立的实现一项或几项相应的功能。
图2为图1中所示音视频信号传输连接器的公头连接端口的结构示意图,图7为本申请实施例中音视频信号传输连接器的公头连接端口中隔离层的结构示意图;如图2和图7所示,本实施例中,则是以上述公头连接端口10包括有第一连接区(图中未标示)和第二连接区14,且该第一连接区可包括有第一HDMI接口单元11、第二HDMI接口单元13和USB接口单元12等,第二连接区14则可包括电源接口单元141、其他接口单元142和RJ接口143等。
其中,上述的第一HDMI接口单元11和第二HDMI接口单元13对称分别位于USB接口单元12的两侧,而电源接口单元141和RJ接口143则分别位于其他接口单元142的两侧,同时该公头连接端口10中的引脚以图2中所示的对称轴(即第一连接区和第二连接区共同的中轴线,同时也是USB接口单元12的中轴线)呈现轴对称分配,进而可使得该音视频信号传输连接器的连接端口能够实现盲插。
优选的,如图7所示,隔离层3将第二连接区14、第一HDMI接 口单元11、USB接口单元12和第二HDMI接口单元13中的任意两个区域之间均予以隔离,进而能够有效的预防其相互之间的串扰或干扰的产生;其中,该信号隔离层3的材质可根据传输的信号进行适应性的调整,只要其能将相邻的连接单元区之间的信号进行隔离即可,以避免连接单元区之间的信号干扰或串扰等缺陷的产生;例如,该信号隔离层3可具有一定的防火、防击穿性能,且还可具有一定的硬度及弹性要求,以使得对设置的引脚具有支持及保护的功能。
进一步的,上述的第一连接区中,第一HDMI接口单元11和第二HDMI接口单元13均包括有至少一路HDMI 2.0接口,且每路HDMI 2.0接口均能够进行HDMI 2.0标准数据传输的同时,还同时兼容HDMI1.4标准数据的传输,且该HDMI 2.0接口还可最大支持最大带宽为27Gbps数据信号的传输;上述的USB接口单元12还可包括至少一路USB 3.0接口,且每路USB 3.0接口能够进行USB3.0标准数据传输,且还均能兼容多路USB 2.0标准数据的传输。
进一步的,上述的第二连接区14中,电源接口单元141还可包括至少一路电源接口,且每个该电源接口中均设置有若干引脚,而每个位于该电源接口中的引脚均可支持最大1.2A电流的传输,例如可基于传统电源接口的基础上,通过用加大针脚或者采用高导电材料等技术手段实现该1.2A电流的传输;RJ接口141则可包括至少一路千兆网络接口,且每路千兆网络接口均能够兼容百兆网络标准数据的传输;而上述的其他接口单元则包括诸如用于模拟信号的传输的模拟信号接口等辅助接口,具体可根据连接器件之间数据传输的需求进行适 应性的设置或调整。
优选的,位于上述电源接口单元141和RJ接口143中均设置有若干引脚,且位于该电源接口单元141和RJ接口143中的引脚功能均可根据具体的需求而自行设定,只要电源接口单元141能够实现电能传输,而RJ接口143能够网络连接功能即可。
进一步的,上述的公头连接端口10中设置有按照一定规则排列的引脚(如插针),在每个接口单元区中均设置有若干个引脚,且位于同一接口单元且相邻的引脚之间的功能均可相互置换。
图3为图1和/或图2中公头连接端口的引脚示意图;如图1~3及图7所示,在本实施例中则是以公头连接端口中设置有86个引脚为例进行详细说明:
参见图2、3及7可知,上述的第一HDMI接口单元11和第二HDMI接口单元13均中包括18个连续排列的引脚(Pin01~Pin18、Pin29~Pin46),USB接口单元12则包括10个连续排列的引脚(Pin19~Pin28),电源接口单元141包括7个连续排列的引脚(Pin76~Pin86),RJ接口单元143则包括11个连续排列的引脚(Pin47~Pin57),而其他接口单元142中则包括22个连续排列的引脚(Pin58~Pin75);即位于第一连接区中的引脚(Pin01~Pin46)排为一列,且在不同接口单元内的相邻引脚之间的距离均相同;而位于第二连接区14中的引脚(Pin47~Pin86)则位于上述第一连接区的下方,且在该第二连接区14中的引脚之间按照相同的间隔及规则排列为两排;参见图2及图7可知,该公头连接端口10中的所有引脚 (Pin01~Pin86)均以对称轴为轴呈现轴对称分布。
优选的,位于同一接口单元中的任意两个引脚(如插针)之间均可相互置换,进而实现不同功能之间的切换,以提高连接端部的灵活性及扩展性;同时,由于连接端口中所有引脚的连接端面均处在同一水平面上,即每个连接端的结构均具有均一的整齐度,进而可保障较好的接触性能,且易于插拔。
优选的,本实施例中的音视频信号传输连接器还可适应双层板与多层板接口布线设计的方式,且同时兼容1.2mm与1.6mmPCB板卡,进而使得该连接器能够实现自由的更新换代,且还能有效的节省开发成本,大大降低后续生产及运输的成本等。
需要注意的是,本申请的图1~3中所示结构的图形仅用于标示,其具体的结构设计可依据实际需求而进行适应性的调整或改造,只要其能够在能够盲插的基础上,实现其连接单元区所具有的功能即可。
实施例二
基于实施例一及图1~3所示结构的基础上,本实例提供了音视频信号传输连接器的母头连接端口的结构。
图4为本申请实施例中音视频信号传输连接器的母头连接端口立体结构示意图,图5为图4中所示音视频信号传输连接器的母头连接端口的结构示意图,图6为图4和/或图5中母头连接端口的引脚示意图;参见图4~6所示,该实施例中的音视频信号传输连接器2的母头连接端口20,对应上述实施例一中的公头连接端口10设置,即 该母头连接端口20中包括的引脚(插槽)与上述公头连接端口10中的引脚(插针)进行插接,进而实现音视频数据信息的传输。
由于本实施例中的母头连接端口20与上述实施例一中的公头连接端口10相匹配,故上述实施例中记载的公头连接端口10相关的技术特征均可进行适应性改动能够适用于本实施例中的技术特征,在此便不予累述。
参见图2~6可知,本实施例中的母头连接端口20中第一HDMI接口单元21和第二HDMI接口单元23也均对应包括有18个连续排列的引脚(Pin01~Pin18、Pin29~Pin46),USB接口单元22则包括10个连续排列的引脚(Pin19~Pin28),电源接口单元(对应图2中的“电源”)包括7个连续排列的引脚(Pin80~Pin86),RJ接口单元(对应图2中的“RJ”)也包括11个连续排列的引脚(Pin47~Pin57),而其他接口单元(对应图2中的“其他端口”)中则包括22个连续排列的引脚(Pin58~Pin79);即该母头连接端口20中也对应公头连接端口10设置86个引脚(Pin01~Pin86),且对应的接口单元及引脚均具有相同的性能。
综上,本实施例中的用于音视频信号传输的连接器,由于集成度较高,进而使得其能够具有诸多功能,进而易于扩展;同时,通过对应用于诸如电视等电子器件中音视频信号传输连接器进行分区集成化设置,以有效避免各个分区之间的信号串扰,同时将各个分区中的接口的连接端面均处在同一水平面上,以使得该连机器易于其他部件进行插接操作,且接触可靠不易松动,同时又利于生产焊接工艺,便 于器件生产过程中的平整度控制,进而有效避免诸如低头或偏位等缺陷的产生,且能够很好的适应人工焊装技术,进而有效减低生产焊接修复的难度,便于对生产焊接质量的把控;另外,本实例中用于音视频信号传输的连接器,还能适应高性能信号传输(,且导电能力较强,以使得其能够进行更多的扩展。
对于本领域的技术人员而言,阅读上述说明后,各种变化和修正无疑将显而易见。因此,所附的权利要求书应看作是涵盖本发明的真实意图和范围的全部变化和修正。在权利要求书范围内任何和所有等价的范围与内容,都应认为仍属本发明的意图和范围内。

Claims (13)

  1. 一种音视频信号传输连接器,应用于音视频信号的传输中,其特征在于,所述音视频信号传输连接器具有用于与其它部件连接的连接端口,且该连接端口包括:
    若干个连接区,相邻的连接区之间均设置有信号隔离层,以隔离连接区之间的电信号;
    其中,每个所述连接区中均包括有至少一个接口单元。
  2. 如权利要求1所述的音视频信号传输连接器,其特征在于,所述若干个连接区的连接端面均位于同一水平面上。
  3. 如权利要求1所述的音视频信号传输连接器,其特征在于,所述若干个连接区包括:
    第一连接区,包括第一HDMI接口单元、第二HDMI接口单元和USB接口单元;
    第二连接区,包括电源接口单元、RJ接口单元和其他接口单元;
    其中,所述第一连接区与所述第二连接区平行排列且呈轴对称分配,所述隔离层将所述第一HDMI接口单元、所述第二HDMI接口单元、所述USB接口单元和所述第二连接区中的任意两者之间均予以隔离。
  4. 如权利要求3所述的音视频信号传输连接器,其特征在于,所述第一HDMI接口单元和所述第二HDMI接口单元均包括:
    至少一路HDMI 2.0接口,且每路HDMI 2.0接口均兼容HDMI1.4标准数据的传输。
  5. 如权利要求3所述的音视频信号传输连接器,其特征在于,所述第一HDMI接口单元和所述第二HDMI接口单元所传输信号的带宽 均小于或等于27Gbps。
  6. 如权利要求3所述的音视频信号传输连接器,其特征在于,所述USB接口单元包括:
    至少一路USB 3.0接口,且每路USB 3.0接口均兼容多路USB 2.0标准数据的传输。
  7. 如权利要求3所述的音视频信号传输连接器,其特征在于,所述电源接口单元包括:
    至少一路电源接口,且每路所述电源接口中均设置有若干个引脚;
    其中,流经该电源接口中的每个引脚的电流小于或等于1.2A。
  8. 如权利要求3所述的音视频信号传输连接器,其特征在于,所述RJ接口单元包括:
    至少一路千兆网络接口,且该每路千兆网络接口均兼容百兆网络标准数据的传输。
  9. 如权利要求3所述的音视频信号传输连接器,其特征在于,所述其他接口单元包括:
    模拟信号接口,以用于模拟信号的传输。
  10. 如权利要求1所述的音视频信号传输连接器,其特征在于,所述连接端口为母头连接端口或公头连接端口。
  11. 如权利要求1~10中任意一项所述的音视频信号传输连接器,其特征在于,每个接口单元均包括有若干引脚,位于同一接口单元且相邻的引脚之间的功能均可相互置换。
  12. 如权利要求11所述的音视频信号传输连接器,其特征在于,所述连接端口包括86个引脚。
  13. 如权利要求12所述的音视频信号传输连接器,其特征在于,第一HDMI接口单元和第二HDMI接口单元均包括18个连续排列的引脚,所述USB接口单元包括10个连续排列的引脚,所述电源接口单元包括7个连续排列的引脚、所述RJ接口单元包括11个连续排列的引脚,所述其他接口单元包括22个连续排列的引脚;
    其中,所述第一HDMI接口单元和所述第二HDMI接口单元对称分布于所述USB接口单元的两侧,所述电源接口单元和所述RJ接口单元分布位于所述其他接口单元的两侧,且所述第一连接区和所述第二连接区平行排列。
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