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Manufacturing method of RJ45 connector with anti-damage snap structure

Manufacturing method of RJ45 connector with anti-damage snap structure


Cat6A all plastic with snap RJ45 straight through head

Product parameters of Cat6A full plastic buckle RJ45 straight through head :

1, Rated current: 1.5AMPS

2, Rated voltage: 125VAC

3, Insulation resistance:>500MΩ

4, compressive strength: AC 1000V 50HZ or 60HZ for 1 minute

5, Contact resistance: <20MΩ

6. Ambient temperature: -40~+80℃

7. Conductor material: phosphor bronze plated with gold

8. Product certification: UL/ROHS

RJ45 type network communication connector, referred to as RJ45 connector, RJ45 connector is an important interface device in network connection.

When the traditional snap-on RJ45 connector is assembled, because the shielding shell will press on the snap during installation, it is easy to cause the snap to be damaged, thereby causing tripping and reducing the firmness of the RJ45 connector. Therefore, it is necessary to improve the existing technology to solve the tripping problem.
In view of this, the main purpose of the present invention is to provide an RJ45 connector with an anti-damage buckle structure, so as to enhance the structural strength of the buckle structure, prevent the buckle structure from being damaged and solve the problem of jamming. tripping problem.

To achieve the above object, the present utility model adopts the following technical scheme:

An RJ45 connector with an anti-damage snap structure includes an insulating body, an electrical module and a shielding shell; the electrical module is arranged in the insulating body; the shielding shell is wrapped outside the insulating body; the insulating body An assembly buckle and a functional buckle are protruded on the outer side of the shield; the assembly buckle and the functional buckle are sequentially arranged along the direction in which the insulating body is loaded into the shielding shell, the assembly buckle has an assembly guide surface, and the assembly buckle has an assembly guide surface. The side surface of the shielding shell is provided with a button hole which is matched with the assembly buckle and the function buckle.

As a preferred solution, an insertion slot is recessed at the front end of the insulating body, and the terminals of the electrical module are located in the insertion slot.

As a preferred solution, the assembly buckle and the functional buckle are located on the front outer side of the insulating body, the assembly guide surface is located on the front end surface of the assembly buckle, and the button hole is located on the front end side of the shielding shell.

As a preferred solution, the assembly buckle and the functional buckle are integrally formed and connected.

As a preferred solution, the shielding shell includes an upper shell and a lower shell, the aforesaid button holes are located on the upper shell, and the upper shell is provided with a way-out slot with an opening facing downward, the way-apart slot and the assembly buckle Fitted with the functional snap, the lower shell and the upper shell are fastened together up and down.


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