CN201323337Y - Electric connector system - Google Patents
Electric connector system Download PDFInfo
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- CN201323337Y CN201323337Y CNU2008203020666U CN200820302066U CN201323337Y CN 201323337 Y CN201323337 Y CN 201323337Y CN U2008203020666 U CNU2008203020666 U CN U2008203020666U CN 200820302066 U CN200820302066 U CN 200820302066U CN 201323337 Y CN201323337 Y CN 201323337Y
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Abstract
一种电连接器系统,用以形成网络通路,其包括外部电路板、安装于外部电路板的电连接器及装置于外部电路板与电连接器的共模抑制模组与变压器模组,该网络通路具有互为输入端与输出端的第一侧与第二侧,所述变压器模组包括第一线圈与第二线圈,共模抑制模组包括第三线圈与第四线圈,第一线圈的两端与上述第一侧相连接,第二线圈的两端分别电性连接于第三与第四线圈的一端,第三与第四线圈的另一端连接至网络通路的第二侧,变压器装置于一壳体内,该壳体设置有若干导接脚,第二线圈的两端通过导接脚最终与第三、第四线圈的电性连接。此种设置有利于线圈的自动化生产,提高了效率,减小了成本。
An electrical connector system for forming a network path, which includes an external circuit board, an electrical connector installed on the external circuit board, and a common mode suppression module and a transformer module installed on the external circuit board and the electrical connector. The network path has a first side and a second side which are input ends and output ends of each other, the transformer module includes a first coil and a second coil, the common mode suppression module includes a third coil and a fourth coil, and the first coil The two ends are connected to the above-mentioned first side, the two ends of the second coil are respectively electrically connected to one end of the third and fourth coils, and the other ends of the third and fourth coils are connected to the second side of the network path, the transformer device Inside a casing, the casing is provided with several lead pins, and the two ends of the second coil are finally electrically connected with the third coil and the fourth coil through the lead pins. This setting is beneficial to the automatic production of the coil, improves the efficiency and reduces the cost.
Description
【技术领域】 【Technical field】
本实用新型涉及一种设有变压器模组与共模抑制模组的电连接器系统,尤其涉及其变压器模组及共模抑制模组的连接结构。The utility model relates to an electrical connector system provided with a transformer module and a common-mode suppression module, in particular to the connection structure of the transformer module and the common-mode suppression module.
【背景技术】 【Background technique】
传统具有变压器模组与共模抑制模组的电连接器产品中,通常做法是将变压器模组与共模抑制线圈连体设置,然后装设在电连接器的内置电路板上,最后再转接至外部电路板上。所述之传统设计中,变压器模组与共模抑制线圈组成模组的线圈需手工绕制,而手工绕制的方式效率低,线圈品质较差,且不利于生产流程中的自动化,从而导致了连接器的成本较大。In traditional electrical connector products with a transformer module and a common mode suppression module, the usual practice is to set the transformer module and the common mode suppression coil together, then install them on the built-in circuit board of the electrical connector, and finally transfer to external circuit board. In the traditional design mentioned above, the coils of the transformer module and the common mode suppression coil must be wound manually, and the manual winding method is inefficient, the quality of the coil is poor, and it is not conducive to the automation of the production process, resulting in The cost of the connector is relatively large.
因此,有必要对现有的技术进行改进以克服上述缺陷。Therefore, it is necessary to improve the existing technology to overcome the above-mentioned defects.
【实用新型内容】 【Content of utility model】
本实用新型所要解决的技术问题是:提供一种具有变压器模组与共模抑制模组的电连接器系统,其变压器模组与共模抑制模组之连接便于自动化生产,提高了效率,减小了成本。The technical problem to be solved by the utility model is to provide an electrical connector system with a transformer module and a common mode suppression module, the connection of the transformer module and the common mode suppression module is convenient for automatic production, which improves the efficiency and reduces the cost.
为解决上述技术问题,本实用新型提供一种电连接器系统,其包括外部电路板、安装于外部电路板上的电连接器及装置于外部电路板与电连接器的共模抑制模组与变压器模组,以形成一网络通路,该网络通路具有互为输入端与输出端的第一侧与第二侧,变压器模组包括第一线圈与第二线圈,共模抑制模组包括第三线圈与第四线圈,第一线圈的两端与上述第一侧相连接,第二线圈的两端分别电性连接于第三与第四线圈的一端,第三与第四线圈的另一端连接至网络通路的第二侧,变压器装置于一壳体内,该壳体设置有若干导接脚,第二线圈的两端通过导接脚最终与第三、第四线圈的电性连接。In order to solve the above-mentioned technical problems, the utility model provides an electrical connector system, which includes an external circuit board, an electrical connector installed on the external circuit board, and a common mode suppression module installed on the external circuit board and the electrical connector. A transformer module to form a network path, the network path has a first side and a second side which are input ends and output ends of each other, the transformer module includes a first coil and a second coil, and the common mode suppression module includes a third coil and the fourth coil, the two ends of the first coil are connected to the above-mentioned first side, the two ends of the second coil are respectively electrically connected to one end of the third and fourth coils, and the other ends of the third and fourth coils are connected to On the second side of the network path, the transformer is installed in a casing, and the casing is provided with a plurality of lead pins, and the two ends of the second coil are finally electrically connected to the third and fourth coils through the lead pins.
相较于现有技术,本实用新型之电连接器系统将变压器模组与共模抑制线圈分开独立设置,变压器线圈采用自动化的方式绕制,不仅提高了变压器的生产效率,而且提高了线圈的品质,且易于实现电连接器系统中变压器模组及共模抑制模组的自动化焊接生产。Compared with the prior art, the electrical connector system of the utility model separates the transformer module and the common mode suppression coil and sets them independently, and the transformer coil is wound in an automated manner, which not only improves the production efficiency of the transformer, but also improves the quality of the coil , and it is easy to realize the automatic welding production of the transformer module and the common mode suppression module in the electrical connector system.
【附图说明】 【Description of drawings】
图1是本申请人先前设计之第一种电连接器系统的组装立体视图。FIG. 1 is an assembled perspective view of the first electrical connector system previously designed by the applicant.
图2是图1所示电连接器系统的部分分解视图。FIG. 2 is a partially exploded view of the electrical connector system shown in FIG. 1 .
图3是图2所示内置电路板与变压器模组及共模抑制模组的配合示意图。FIG. 3 is a schematic diagram of cooperation of the built-in circuit board shown in FIG. 2 with the transformer module and the common mode suppression module.
图4是本申请人先前设计之第二种电连接器系统的组装立体视图。FIG. 4 is an assembled perspective view of a second electrical connector system previously designed by the applicant.
图5是图4所示电连接器系统的部分分解视图。FIG. 5 is a partially exploded view of the electrical connector system shown in FIG. 4 .
图6是图5所示外部电路板与变压器模组及共模抑制模组的配合示意图。FIG. 6 is a schematic diagram of cooperation between the external circuit board shown in FIG. 5 and the transformer module and the common mode suppression module.
图7是本申请人先前设计之第三种电连接器系统的组装立体视图。FIG. 7 is an assembled perspective view of a third electrical connector system previously designed by the applicant.
图8是图7所示电连接器系统的部分分解视图。FIG. 8 is a partially exploded view of the electrical connector system shown in FIG. 7 .
图9是图8所示内置电路板与变压器模组的配合示意图。FIG. 9 is a schematic diagram of cooperation between the built-in circuit board and the transformer module shown in FIG. 8 .
图10是本公司先前设计之第四种电连接器系统的组装立体视图。Fig. 10 is an assembled perspective view of the fourth electrical connector system previously designed by our company.
图11是图10所示电连接器系统的部分分解视图。FIG. 11 is a partially exploded view of the electrical connector system shown in FIG. 10 .
图12a是符合本申请人先前设计与本实用新型的一种10/100网络电连接器系统的电路图。Fig. 12a is a circuit diagram of a 10/100 network electrical connector system according to the applicant's previous design and the present invention.
图12b是图12a中一个网络通路的电路示意图。Fig. 12b is a schematic circuit diagram of a network path in Fig. 12a.
图12c是图12a共模抑制模组省略接地用的第五线圈的电路示意图。12c is a schematic circuit diagram of the common mode suppression module in FIG. 12a omitting the fifth coil for grounding.
图12d是符合本申请人先前设计与本实用新型的一种10/1000网络电连接器系统的电路示意图。Fig. 12d is a schematic circuit diagram of a 10/1000 network electrical connector system according to the applicant's previous design and the present invention.
图13是符合本实用新型的第一实施方式的部分分解图。Fig. 13 is a partially exploded view of the first embodiment according to the present invention.
图14是符合本实用新型的第二实施方式的部分分解图。Figure 14 is a partially exploded view of a second embodiment consistent with the present invention.
图15是符合本实用新型的第三实施方式的部分分解图。Fig. 15 is a partially exploded view of a third embodiment according to the present invention.
图16是符合本实用新型的第四实施方式的部分分解图。Fig. 16 is a partially exploded view of a fourth embodiment according to the present invention.
【具体实施方式】 【Detailed ways】
图1至图3及图12a至图12c所示为本申请人的第一种先前设计,其揭示一种电连接器系统100,其包括一外部电路板1、安装于外部电路板1上的电连接器3、装置于电连接器3内的变压器5及共模抑制模组7。该电连接器系统100形成有两个用以传递差分信号的网络通路,各网络通路具有互为输入端与输出端的第一侧P与第二侧O。Figures 1 to 3 and Figures 12a to 12c show the applicant's first prior design, which discloses an
所述电连接器3包括设有对接空间(未标号)的绝缘本体31、安装于绝缘本体31的内置电路板33、设置于内置电路板33一侧并延伸进入上述对接空间(未标号)的若干对接端子35、设置于内置电路板33另一侧并将内置电路板33连接至外部电路板1的若干转接端子37,所述对接端子35作为网络通路的第二侧O,转接端子37作为网络通路的第一侧P。所述内置电路板33设有若干导电路径331及连接于导电路径331的若干导电片333。The electrical connector 3 includes an
所述变压器5包括第一线圈51与第二线圈53(结合参阅图12a所示),第一、第二线圈51、53均设有中心抽头55、57,所述变压器5的第一、第二线圈51、53的两端及中心抽头55、57均焊接于内置电路板33上的部分导电片333。共模抑制模组7包括绝缘的主体71、收容于该主体71内并缠绕于同一磁芯(未图示)的第三、第四、第五线圈73、75、79(结合参阅图12a所示)及设置于主体71的若干导接脚77,所述第三、第四、第五线圈73、75、79的两端分别连接于所述各导接脚77,各导接脚77表面焊接于其余部分导电片333。第一线圈51的两端通过内置电路板33的部分导电路径331电性连接于转接端子37,第一线圈51的中心抽头55连接于内置电路板33的接地线路(未图示)。所述变压器5的第二线圈53的两端与中心抽头57通过部分导电路径331及导接脚77电性连接于共模抑制模组7的第三、第四、第五线圈73、75、79的一端。第三、第四线圈73、75的另一端通过导接脚77、内置电路板33的部分导电线路331电性连接于前述对接端子35,第五线圈79的另一端连接于内置电路板33的接地线路(未图示)。The
在此先前设计中,所述变压器5与共模抑制模组7的位置可以互换,即将变压器5的第一线圈51通过内置电路板33的导电路径331与对接端子35连接,而将共模抑制模组7的第三、第四线圈73、75的前述另一端通过内置电路板33的部分导电路径331与转接端子37连接。这样使对接端子35作为网络通路的第一侧P,转接端子37作为网络通路的第二侧O。In this previous design, the positions of the
图4至图6及图12a至图12c所示为本申请人的第二种先前设计,其揭示一种电连接器系统100,其包括一外部电路板1’、安装于外部电路板1’上的电连接器3’、装置于外部电路板1’上的变压器5’及共模抑制模组7’,该电连接器系统100形成有两个用以传递差分信号的网络通路,各网络通路具有互为输入端与输出端的第一侧P’与第二侧O’。Figures 4 to 6 and Figures 12a to 12c show a second prior design of the applicant, which discloses an
所述电连接器3’包括设有对接空间(未标号)的绝缘本体31’、安装于绝缘本体31’的内置电路板33’、设置于内置电路板33’一侧并延伸进入上述对接空间(未标号)的若干对接端子35’、设置于内置电路板33’另一侧并将内置电路板33’连接至外部电路板1’的若干转接端子37’,所述对接端子35’作为网络通路的第二侧O’。所述内置电路板33’设有若干导电路径331’。外部电路板1’设置有若干导电路径11’及连接于导电路径11’的导电片13’。The electrical connector 3' includes an insulating body 31' provided with a docking space (not numbered), a built-in circuit board 33' mounted on the insulating body 31', disposed on one side of the built-in circuit board 33' and extending into the above-mentioned docking space (unlabeled) a number of docking terminals 35', arranged on the other side of the built-in circuit board 33' and connecting the built-in circuit board 33' to a number of transfer terminals 37' of the external circuit board 1', the docking terminals 35' serve as The second side O' of the network path. The built-in circuit board 33' is provided with several conductive paths 331'. The external circuit board 1' is provided with a plurality of conductive paths 11' and conductive sheets 13' connected to the conductive paths 11'.
所述变压器5’包括第一线圈51’与第二线圈53’(结合参阅图12b所示),第一、第二线圈51’、53’均设有中心抽头55’、57’,所述变压器5’的第一、第二线圈51’、53’的两端及中心抽头55’、57’均焊接于外部电路板1’上的部分导电片13’。共模抑制模组7’包括绝缘的主体71’、收容于该主体71’内并缠绕于同一磁芯(未图示)的第三、第四、第五线圈73’、75’、79’(结合参阅图12b所示)及设置于主体71’的若干导接脚77’,所述第三、第四、第五线圈73’、75’、79’的两端分别连接于所述各导接脚77’,各导接脚77’表面焊接于其余部分导电片13’。第三、第四线圈73’、75’的一端依次通过导接脚77’、外部电路板1’的部分导电路径11’、转接端子37’及内部电路板33’的导电路径331’电性连接于对接端子35’,另一端分别依次通过导接脚77’、外部电路板1’的部分导电路径11’电性连接于第二线圈53’的两端,第五线圈79’的一端连接于外部电路板1’的接地线路,另一端连接于变压器5’的第二线圈53’的中心抽头57’。第一线圈51’的中心抽头55’连接于外部电路板1’的接地线路(未图示),第一线圈51’的两端作为所述网络通路的第一侧P’。The transformer 5' includes a first coil 51' and a second coil 53' (shown in conjunction with FIG. Both ends of the first and second coils 51', 53' of the transformer 5' and the center taps 55', 57' are soldered to a part of the conductive sheet 13' on the external circuit board 1'. The common mode suppression module 7' includes an insulating main body 71', third, fourth, and fifth coils 73', 75', and 79' housed in the main body 71' and wound on the same magnetic core (not shown). (As shown in Figure 12b) and a number of lead pins 77' provided on the main body 71', the two ends of the third, fourth and fifth coils 73', 75', 79' are respectively connected to the respective Lead pins 77', each lead pin 77' is surface-welded to the rest of the conductive sheet 13'. One end of the third and fourth coils 73', 75' passes through the conductive pin 77', part of the conductive path 11' of the external circuit board 1', the transfer terminal 37' and the conductive path 331' of the internal circuit board 33'. The other end is electrically connected to the two ends of the second coil 53' and one end of the fifth coil 79' through the conductive pin 77' and the part of the conductive path 11' of the external circuit board 1' respectively. It is connected to the ground line of the external circuit board 1', and the other end is connected to the center tap 57' of the second coil 53' of the transformer 5'. The center tap 55' of the first coil 51' is connected to the ground line (not shown) of the external circuit board 1', and the two ends of the first coil 51' serve as the first side P' of the network path.
在此先前设计中,所述变压器5’与共模抑制模组7’的位置亦可以互换,即将变压器5’的第一线圈51’通过外部电路板1’的导电路径11’、转接端子37’及内置电路板33’的导电路径331’与对接端子35’连接,所述对接端子35’作为所述网络通路的第一侧P’,而共模抑制模组7’的第三、第四线圈73’、75’的前述一端作为网络通路的第二侧O’。In this previous design, the positions of the transformer 5' and the common mode suppression module 7' can also be interchanged, that is, the first coil 51' of the transformer 5' passes through the conductive path 11' of the external circuit board 1', the transfer terminal 37' and the conductive path 331' of the built-in circuit board 33' are connected to the docking terminal 35', the docking terminal 35' is used as the first side P' of the network path, and the third and third sides of the common mode suppression module 7' The aforementioned one end of the fourth coil 73', 75' serves as the second side O' of the network path.
图7至图9及图12a至图12c所示为本申请人的第三种先前设计,其揭示一种电连接器系统100,其包括外部电路板2、安装于外部电路板2上的电连接器4、及装置于外部电路板2与电连接器4的共模抑制模组8与变压器6,以形成若干网络通路,该等网络通路具有互为输入端与输出端的第一侧P与第二侧O。变压器6包括第一线圈61与第二线圈63,共模抑制模组8包括第三线圈83与第四线圈85,所述第三、第四线圈83、85共同缠绕于同一磁芯上,且所述共模抑制模组8还设有一主体81与设置于主体81的若干导接脚87,所述第三、第四线圈83、85收容于所述主体81并连接于导接脚87。第一线圈61的两端与上述第一侧P相连接,第二线圈63的两端分别电性连接于第三与第四线圈83、85的一端,第三与第四线圈83、85的另一端连接至网络通路的第二侧O。所述电连接器4设有处于电连接器4内部的内置电路板43及连接内置电路板43与外部电路板2的若干转接端子47,所述变压器6设置于内置电路板43上,共模抑制模组8安装于外部电路板2,所述外部电路板2及内置电路板43分别设有若干导电路径21、431,所述第二线圈63的两端依次通过内置电路板43上的导电路径431、转接端子47、外部电路板2上的导电路径21以及导接脚87实现与第三、第四线圈83、85的电性连接。所述内置电路板43及外部电路板2还分别设有若干连接各导电路径431、21的导电片433、23,所述第一、第二线圈61、63分别焊接于内置电路板43的导电片433,所述导接脚87表面焊接于外部电路板2的导电片23。Figures 7 to 9 and Figures 12a to 12c show a third prior design of the applicant, which discloses an
所述第一与第二线圈61、63均设有中心抽头65、67,第一线圈61的中心抽头65接地,共模抑制模组8还包括缠绕于所述同一磁芯上的第五线圈89,第二线圈63的中心抽头67电性连接于第五线圈89,并通过第五线圈89接地。The first and second coils 61, 63 are provided with center taps 65, 67, the center tap 65 of the first coil 61 is grounded, and the common
图10、图11、图12a至图12c所示为本申请人的第四种先前设计,其揭示一种电连接器系统100,其包括外部电路板2’、安装于外部电路板2’上的电连接器4’、及装置于外部电路板2’与电连接器4’的变压器6’与共模抑制模组8’,以形成多个网络通路,该等网络通路具有互为输入端与输出端的第一侧P’与第二侧O’,变压器6’包括第一线圈61’与第二线圈63’,共模抑制模组8’包括第三线圈83’与第四线圈85’,所述第三、第四线圈83’、85’共同缠绕于同一磁芯上,且所述共模抑制模组8’还设有一主体81’与设置于主体81’的若干导接脚87’,所述第三、第四线圈83’、85’收容于所述主体81’并连接于所述导接脚87’。第一线圈61’的两端与上述第一侧P’相连接,第二线圈63’的两端分别电性连接于第三与第四线圈83’、85’的一端,第三与第四线圈83’、85’的另一端连接至网络通路的第二侧O’。所述电连接器4’设有处于电连接器4’内部的内置电路板43’及连接内置电路板43’与外部电路板2’的若干转接端子47’,所述共模抑制模组8’设置于内置电路板43’上,变压器6’安装于外部电路板2’,所述外部电路板2’及内置电路板43’分别设有若干导电路径21’、431’,第三、第四线圈83’、85’的两端依次通过导接脚87’、内置电路板43’上的导电路径431’、转接端子47’与外部电路板2’上的导电路径21’实现与第二线圈63’的两端电性连接。所述内置电路板43’及外部电路板2’还分别设有若干连接各导电路径431’、21’的导电片433’、23’,所述第一、第二线圈61’、63’焊接于外部电路板2’的导电片23’,所述导接脚87’表面焊接于内置电路板43’的导电片433’。所述电连接器4’还包括装设于内置电路板43’的若干对接端子45’,且对接端子45’作为所述网络通路的第二侧O’。Figures 10, 11, 12a to 12c show a fourth prior design of the applicant, which discloses an
所述第一与第二线圈61’、63’均设有中心抽头65’、67’,第一线圈61’的中心抽头65’接地,共模抑制模组8’还包括缠绕于所述同一磁芯上的第五线圈89’,第二线圈63’的中心抽头67’电性连接于第五线圈89’,并通过第五线圈89’接地。The first and second coils 61', 63' are provided with center taps 65', 67', the center tap 65' of the first coil 61' is grounded, and the common mode suppression module 8' also includes On the fifth coil 89' on the magnetic core, the center tap 67' of the second coil 63' is electrically connected to the fifth coil 89' and grounded through the fifth coil 89'.
传统连接器产品中,所述变压器与共模抑制线圈连体设置,该种设置方式,变压器线圈与共模抑制线圈的组成模组需手工绕制,效率低且品质较差,连接器成本较大。而在各种先前设计中,我们将变压器与共模抑制模组的线圈分开独立设置并采用自动化的方式绕制,不仅提高了变压器及共模抑制模组的生产效率,而且提高了线圈的品质,且易于实现电连接器中变压器及共模抑制模组的自动化焊接生产。In traditional connector products, the transformer and the common-mode suppression coil are conjoined. In this arrangement, the module composed of the transformer coil and the common-mode suppression coil needs to be wound manually, which is inefficient and poor in quality, and the cost of the connector is high. In various previous designs, we set up the coils of the transformer and the common mode suppression module independently and wound them in an automated manner, which not only improved the production efficiency of the transformer and the common mode suppression module, but also improved the quality of the coils. And it is easy to realize the automatic welding production of the transformer and the common mode suppression module in the electrical connector.
另外,为节省成本,并方便装配,所述共模抑制模组还可以是标准的贴片线圈,该种贴片线圈可方便地表面焊接于内置电路板上。所述共模抑制模组的磁芯可以是单环形,也可以是双连环形,所述多个网络通路的共模抑制模组的线圈均缠绕于该磁芯。在各先前设计中,变压器线圈均为单环形磁芯,第一、第二线圈共同缠绕于该磁芯;共模抑制模组均可以不设置第五线圈,而第二线圈的中心抽头直接接地(参阅图12c),从而节省成本。In addition, in order to save cost and facilitate assembly, the common mode suppression module can also be a standard chip coil, which can be easily surface-welded on the built-in circuit board. The magnetic core of the common-mode suppression module can be a single ring or a double-connected ring, and the coils of the common-mode suppression modules of the multiple network paths are all wound on the magnetic core. In each previous design, the transformer coil is a single toroidal magnetic core, and the first and second coils are wound on the magnetic core; the common mode suppression module does not need to set the fifth coil, and the center tap of the second coil is directly grounded (See Figure 12c), thereby saving costs.
前述四个先前设计的电连接器系统均符合10/100的网络传输标准,其提供两个网络通道,显然,该电连接器系统可以设置不同数目的网络通道,以满足不同的传输速度的需求,如图12d所示即提供了符合10/1000的网络传输速度标准的电路图。The aforementioned four previously designed electrical connector systems all comply with the 10/100 network transmission standard and provide two network channels. Obviously, the electrical connector system can be set with different numbers of network channels to meet the needs of different transmission speeds , as shown in FIG. 12d, a circuit diagram meeting the 10/1000 network transmission speed standard is provided.
请参阅图13至图16,其所揭示为符合本实用新型的四种实施方式的部分立体分解图,其电路图参阅图12a至12c。作为进一步改进,本实用新型将先前设计之变压器置于一绝缘壳体603内,该壳体603设置有若干导接脚601,从而形成结构稳定的变压器模组600,该变压器模组表面贴装于内置电路板30、300或外部电路板40、400,第一、第二线圈的两端与中心抽头通过该等导接脚601与内置电路板30、300或外部电路板40、400的导电路径连接。所述共模抑制模组800为积层滤波器,第三、第四、第五线圈(未图示)由印刷导电层形成,并在该共模抑制模组800表面设有与第三、第四、第五线圈电性连接的若干导接片801,共模抑制模组800安装于内置电路板30、300或外部电路板40、400,第三、第四、第五线圈的一端通过该等导接片801与内置电路板30、300或外部电路板40、400的导电路径连接。本实用新型各实施方式的其余结构与连接关系与前述四种先前设计基本相同,在此不做赘述。Please refer to FIG. 13 to FIG. 16 , which disclose partial perspective exploded views of four implementations of the present invention, and refer to FIGS. 12 a to 12 c for their circuit diagrams. As a further improvement, the utility model puts the previously designed transformer in an insulating
本实用新型将变压器装入壳体内,形成结构稳定的变压器模组600,从而可以方便表面焊接连接。所述共模抑制模组800为积层滤波器,第三、第四线圈由印刷导电层形成,此种结构可大大缩小共模抑制模组800的体积,并改善其电气性能,方便自动化贴装。The utility model packs the transformer into the casing to form a
Claims (8)
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CNU2008203020666U CN201323337Y (en) | 2008-09-10 | 2008-09-10 | Electric connector system |
| US12/556,588 US7708595B2 (en) | 2008-09-10 | 2009-09-10 | Electrical connector system with magnetic module |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CNU2008203020666U CN201323337Y (en) | 2008-09-10 | 2008-09-10 | Electric connector system |
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| CN201323337Y true CN201323337Y (en) | 2009-10-07 |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102088137B (en) * | 2009-12-08 | 2014-03-12 | 富士康(昆山)电脑接插件有限公司 | Electric connector |
| CN105655759A (en) * | 2014-11-21 | 2016-06-08 | 富士康(昆山)电脑接插件有限公司 | Electric connector and electric connector system |
-
2008
- 2008-09-10 CN CNU2008203020666U patent/CN201323337Y/en not_active Expired - Lifetime
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102088137B (en) * | 2009-12-08 | 2014-03-12 | 富士康(昆山)电脑接插件有限公司 | Electric connector |
| CN105655759A (en) * | 2014-11-21 | 2016-06-08 | 富士康(昆山)电脑接插件有限公司 | Electric connector and electric connector system |
| CN105655759B (en) * | 2014-11-21 | 2019-02-12 | 富士康(昆山)电脑接插件有限公司 | Electric connector and electric connector system |
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