INTERNAL WATERPROOF AND DUSTPROOF MODULE
20230335957 ยท 2023-10-19
Inventors
Cpc classification
H01R13/5202
ELECTRICITY
International classification
Abstract
The present disclosure relates to the technical field of sockets, in particular to an internal waterproof and dustproof module. The internal waterproof and dustproof module includes a front case and a protection door; the protection door is arranged inside the front case; a limiting post is arranged on a side surface of the front case; the limiting post penetrates through a middle case and a rear case in sequence; a sealing ring is arranged inside the middle case; and an L-pole connecting mechanism, an N-pole connecting mechanism, a first limiting mechanism, and a second limiting mechanism are respectively arranged inside the rear case.
Claims
1. An internal waterproof and dustproof module, comprising a front case (1) and a protection door (2), wherein the protection door (2) is arranged inside the front case (1); a limiting post (3) is arranged on a side surface of the front case (1); the limiting post (3) penetrates through a middle case (4) and a rear case (6) in sequence; a sealing ring (5) is arranged inside the middle case (4); and an L-pole connecting mechanism, an N-pole connecting mechanism, a first limiting mechanism, and a second limiting mechanism are respectively arranged inside the rear case (6).
2. The internal waterproof and dustproof module according to claim 1, wherein the L-pole connecting mechanism comprises an L-pole copper sheet (7) and a first connecting block (8); the L-pole copper sheet (7) is arranged inside the rear case (6); the first connecting block (8) is arranged on a side surface of the L-pole copper sheet (7); and the first connecting block (8) is located inside the rear case (6).
3. The internal waterproof and dustproof module according to claim 2, wherein a side surface of a second connecting block (11) is connected with a second connecting plate (12); and a side surface of the second connecting plate (12) is a slope.
4. The internal waterproof and dustproof module according to claim 3, wherein the first limiting mechanism comprises a first movable block (9) and a first connecting plate (10); one side of the first movable block (9) is connected with the rear case (6); the first connecting plate (10) is arranged on a side surface of the first movable block (9); and an upper end of the rear case (6) is connected with the first connecting block (8).
5. The internal waterproof and dustproof module according to claim 4, wherein the second limiting mechanism comprises a third connecting plate (13) and a second movable block (14); the third connecting plate (13) is located right below the second connecting plate (12); and the third connecting plate (13) is arranged on a side surface of the second movable block (14).
6. The internal waterproof and dustproof module according to claim 5, wherein the N-pole connecting mechanism comprises a third connecting block (15) and an N-pole copper sheet (18); the N-pole copper sheet (18) is arranged inside the rear case (6); the third connecting block (15) is arranged on a side surface of the N-pole copper sheet (18); the third connecting block (15) is located inside the rear case (6); and the third connecting block (15) is located right under the second movable block (14).
7. The internal waterproof and dustproof module according to claim 6, wherein a fourth connecting block (16) is located below the third connecting block (15); a side surface of the fourth connecting block (16) is connected with a fourth connecting plate (17); and the fourth connecting plate (17) is located below the first connecting plate (10).
8. The internal waterproof and dustproof module according to claim 1, wherein a grounding copper sheet (19) is arranged on a side surface of the rear case (6).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020] In the drawings: 1: front case; 2: protection door; 3: limiting post; 4: middle case; 5: sealing ring; 6: rear case; 7: L-pole copper sheet; 8: first connecting block; 9: first movable block; 10: first connecting plate; 11: second connecting block; 12: second connecting plate; 13: third connecting plate; 14: second movable block; 15: third connecting block; 16: fourth connecting block; 17: fourth connecting plate; 18: N-pole copper sheet; and 19: grounding copper sheet.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] The technical solutions in the embodiments of the present disclosure will be described clearly and completely below in combination with the accompanying drawings of the embodiments of the present disclosure. Apparently, the described embodiments are only part of the embodiments of the present disclosure, not all embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present disclosure without creative work shall fall within the protection scope of the present disclosure.
[0022] In specific implementation: As shown in
[0023] The L-pole connecting mechanism includes an L-pole copper sheet 7 and a first connecting block 8; the L-pole copper sheet 7 is arranged inside the rear case 6; the first connecting block 8 is arranged on a side surface of the L-pole copper sheet 7; the first connecting block 8 is located inside the rear case 6; and a lower end of the first connecting block 8 abuts against the first limiting mechanism. When the device is in use, the L-pole copper sheet 7 is connected to an external line, and the L-pole copper sheet 7 is connected to the first connecting block 8.
[0024] A side surface of a second connecting block 11 is connected with a second connecting plate 12; and a side surface of the second connecting plate 12 is a slope. When the second connecting block 11 is in contact with the first connecting block 8, the second connecting block can be communicated with the first connecting block, so that a current enters the second connecting block 11 through the first connecting block 8, and then enters the second connecting plate 12 through the second connecting block 11.
[0025] The first limiting mechanism includes a first movable block 9 and a first connecting plate 10; one side of the first movable block 9 is connected with the rear case 6; the first connecting plate 10 is arranged on a side surface of the first movable block 9; and an upper end of the rear case 6 is connected with the first connecting block 8. When the first movable block 9 moves upwards, the first movable block 9 can be in contact with the first connecting block 8, so that the first connecting block 8 is communicated with the first movable block 9.
[0026] The second limiting mechanism includes a third connecting plate 13 and a second movable block 14; the third connecting plate 13 is located right below the second connecting plate 12; and the third connecting plate 13 is arranged on a side surface of the second movable block 14. When the second connecting plate 12 is in contact with the third connecting plate 13, a current can flow between the second connecting plate 12 and the third connecting plate 13, and the current can also be conducted to the second movable block 14 through the third connecting plate 13.
[0027] The N-pole connecting mechanism includes a third connecting block 15 and an N-pole copper sheet 18; the N-pole copper sheet 18 is arranged inside the rear case 6; the third connecting block 15 is arranged on a side surface of the N-pole copper sheet 18; the third connecting block 15 is located inside the rear case 6; and the third connecting block 15 is located right under the second movable block 14.
[0028] A fourth connecting block 16 is located below the third connecting block 15; a side surface of the fourth connecting block 16 is connected with a fourth connecting plate 17; and the fourth connecting plate 17 is located below the first connecting plate 10. The second movable block 14 may drive the third connecting block 15 to move when moving downwards, and the first connecting plate 10 may be in contact with the fourth connecting plate 17 when moving downwards, so that the current can flow between the first connecting plate 10 and the fourth connecting plate 17.
[0029] A grounding copper sheet 19 is arranged on a side surface of the rear case 6. The grounding copper sheet 19 can directly conduct the current to the ground, which ensures that the device has no leakage phenomenon.
[0030] According to the present disclosure, when the device is in use, a standard plug is plugged into the device, and the protection door 2 and the sealing ring 5 can ensure the sealing property of the device, and two pins are arranged on a side surface of the plug.
[0031] The pin on one side is in contact with the second connecting plate 12, the third connecting plate 13, and the second movable block 14. At this time, the second connecting plate 12 and the third connecting plate 13 can limit the pin. At this time, the pin can be driven by the slope of the second movable block 14 to move downwards to be in contact with the third connecting block 15, so that a channel is formed among the N-pole copper sheet 18, the third connecting block 15, the second movable block 14, and the pin. After the pin on the other side is plugged between the first connecting plate 10 and the fourth connecting plate 17, the first movable block 9 can be driven to move upwards to be in contact with the first connecting block 8, so that a channel is formed among the L-pole copper sheet 7, the first connecting block 8, the first movable block 9, and the pin. Thus, an electrical apparatus is powered on.
[0032] In addition, it should be understood that although this specification is described in accordance with the implementation modes, and each implementation mode does not only contain one independent technical solution. This narration in the specification is only for clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in all the embodiments can also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.