USB Type C male electric connector and transmission conductor structure thereof
A technology of transmission conductors and electrical connectors, which is applied in the direction of connection, parts of connection devices, circuits, etc., and can solve the problem that it is difficult for users to quickly distinguish the definition of solder pins
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Embodiment 1
[0100] Please refer to Figure 1 to Figure 8 As shown, it shows the specific structure of the first preferred embodiment of the present invention, which is a USB type C connector that has elastic contacts arranged up and down, and pins that are grouped and misplaced, and can be plugged in front and back. It is a kind of USB 3.1. Its socket depth, length, thickness, and width are all designed in accordance with the association's size specifications, and can be submitted to the association for certification; its high-frequency characteristics and high-current main characteristics are designed in accordance with the association's high-frequency and electrical specifications. , exceeding best association standards. The main structure of this USB type C connector includes a shielding partition 10, a first transmission conductor group 20, a second transmission conductor group 30, a first insulating colloid 40, a second insulating colloid 50, a first shielding shell body 60 and a se...
Embodiment 2
[0120] Such as Figure 9 to Figure 11 As shown, it shows the specific structure of the second preferred embodiment of the present invention, which is a USB type C connector that has elastic contacts arranged up and down, and pins that are grouped and misplaced, and can be plugged in front and back. It is a USB3.1. The main structure of this USB type C connector is basically the same as that of the first embodiment, so it will not be described again. The difference is that the first pin group 25 and the second pin group 26 are arranged in a single row and coplanar , the third set of pins 35 and the fourth set of pins 36 are arranged in a single row, the first set of pins 25, the second set of pins 26 and the third set of pins 35, The fourth pin group 36 is located on two different upper and lower surfaces, forming a structure capable of clamping the circuit board on the upper and lower sides, also known as the HotBar form.
[0121] The upper and lower two rows of splints comp...
Embodiment 3
[0124] Such as Figure 12 to Figure 14 As shown, it shows the specific structure of the third preferred embodiment of the present invention, which is a USB type C connector that has elastic contacts arranged up and down, and pins that are grouped and misplaced, and can be plugged in front and back. It is a kind of USB 3.0. The main structure of this USB type C connector is basically the same as that of the first embodiment, so it will not be described again. The difference is:
[0125] The first transmission conductor group 20 has a structure of a first contact part group 21, which extends backward from the first contact part group 21 into a first elastic arm part group 22, and then extends backward from the first elastic arm part group 22 into The first holding part group 23 and the second holding part group 24 extend backward from the first holding part group 23 into the first pin part group 25, and extend backward from the second holding part group 24 into the second pin ...
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