CN211128388U - Super-thick super-high network communication circuit board - Google Patents
Super-thick super-high network communication circuit board Download PDFInfo
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- CN211128388U CN211128388U CN201922218421.2U CN201922218421U CN211128388U CN 211128388 U CN211128388 U CN 211128388U CN 201922218421 U CN201922218421 U CN 201922218421U CN 211128388 U CN211128388 U CN 211128388U
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- base plate
- circuit board
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- network communication
- communication circuit
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Abstract
The utility model discloses an ultra-thick superelevation layer network communication circuit board, including the fixed block, the outside of fixed block is equipped with first base plate, and the upper end of first base plate is equipped with the second base plate, and the upper end of second base plate is equipped with magnesium aluminium compound temperature resistant inoxidizing coating, and the upper end of magnesium aluminium compound temperature resistant inoxidizing coating is equipped with the third base plate, and the upper end of third base plate is equipped with silicon rubber high polymer dampproof course, and the upper end of silicon rubber high polymer dampproof course is equipped with the fourth base plate. The base layer and the protective layer of the circuit board are nine layers, so that the circuit board can be effectively prevented from warping, and the circuit board can be well protected; the circuit board can start the mini blower to blow the gaps of the electrical components on the surface of the circuit board, so that dust is blown off, and the dust is effectively prevented from accumulating to influence the use of the circuit board.
Description
Technical Field
The utility model relates to a circuit board technical field specifically is super thick superelevation layer network communication circuit board.
Background
The network communication circuit board has a plurality of using places, and sometimes the network communication circuit board is directly arranged outdoors.
A circuit board disclosed in grant publication No. CN 207531163U. The circuit board comprises a first surface and a second surface opposite to the first surface, the first surface is provided with a first electric connection area for transmitting electric signals and a first copper grid area arranged at the periphery of the first electric connection area, the second surface is provided with a second electric connection area for transmitting electric signals and a second copper grid area arranged at the periphery of the second electric connection area, the first electric connection area and the second electric connection area form the electric connection area, the first copper grid area and the second copper grid area form the copper grid area, and the density of the copper grid of the first copper grid area is different from that of the copper grid of the second copper grid area. The utility model provides a circuit board, the face is level and smooth, do not take place the warpage.
This patent can guarantee that the circuit board levels, can not take place the warpage, and super thick super high network communication circuit board is because thick, can not take place the warped phenomenon generally, but super thick super high network communication circuit board probably need set up outdoors, and outdoor dust is great, directly attached influences the normal use of circuit board very easily on the circuit board.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a super thick superelevation layer network communication circuit board to solve the attached problem that causes the influence to the circuit board of dust.
In order to achieve the above object, the utility model provides a following technical scheme: super-thick super high-level network communication circuit board, including the fixed block, the outside of fixed block is equipped with first base plate, the upper end of first base plate is equipped with the second base plate, the upper end of second base plate is equipped with magnesium aluminium compound temperature resistant inoxidizing coating, the upper end of magnesium aluminium compound temperature resistant inoxidizing coating is equipped with the third base plate, the upper end of third base plate is equipped with silicon rubber polymer dampproof course, the upper end of silicon rubber polymer dampproof course is equipped with the fourth base plate, the upper end of fourth base plate is equipped with the asbestos insulating layer, the upper end of asbestos insulating layer is equipped with the fifth base plate, the upper end of fifth base plate is equipped with the sixth base plate, be equipped with electrical component.
Preferably, be equipped with first recess and second recess in the fixed block, be equipped with the battery in the first recess, the battery is connected with mini air-blower through the wire.
Preferably, the mini air blower is fixedly arranged in the second groove, an air pipe is arranged at one end of the mini air blower, and a nozzle is arranged at the other end of the air pipe.
Preferably, an elastic clamping groove is formed in the sixth base plate, and an elastic clamping head is connected in the elastic clamping groove in a sliding mode.
Preferably, one end of the elastic clamping head penetrates through the elastic clamping groove to be connected with the ash containing frame.
Preferably, the elastic clamping head 27 is made of a regular hexagonal rubber material, and the elastic clamping groove 11 is in a regular hexagonal shape.
Preferably, one end of the ash containing frame and the sixth substrate are positioned on the same horizontal plane.
Compared with the prior art, the beneficial effects of the utility model are that: 1. the base layer and the protective layer of the circuit board are nine layers, so that the circuit board can be effectively prevented from warping, and the circuit board can be well protected.
2. The circuit board can start the mini blower to blow the gaps of the electrical components on the surface of the circuit board, so that dust is blown off, and the dust is effectively prevented from accumulating to influence the use of the circuit board.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is an enlarged view of the point A of the present invention;
fig. 3 is an enlarged view of B of the present invention.
In the figure: 1. a fixed block; 21. a first substrate; 22. a second substrate; 23. a temperature-resistant protective layer of a magnesium-aluminum compound; 24. a third substrate; 25. a silicone rubber high molecular polymer moisture barrier; 26. a fourth substrate; 27. an asbestos insulation layer; 28. a fifth substrate; 29. a sixth substrate; 3. an electrical component; 41. a first groove; 42. a second groove; 43. a storage battery; 44. a mini blower; 45. an air duct; 46. a spout; 51. an elastic clamping groove; 52. an elastic chuck; 53. ash containing frame.
Detailed Description
Referring to fig. 1, fig. 2 and fig. 3, the present invention provides a technical solution: the ultra-thick ultra-high network communication circuit board comprises a fixed block 1, wherein a first substrate 21 is arranged on the outer side of the fixed block 1, a second substrate 22 is arranged at the upper end of the first substrate 21, a magnesium-aluminum compound temperature-resistant protective layer 23 is arranged at the upper end of the second substrate 22, and the magnesium-aluminum compound temperature-resistant protective layer 23 provides fire protection for the circuit board; a third substrate 24 is arranged at the upper end of the magnesium-aluminum compound temperature-resistant protective layer 23, a silicon rubber high-molecular polymer moisture-proof layer 25 is arranged at the upper end of the third substrate 24, and the silicon rubber high-molecular polymer moisture-proof layer 25 provides moisture-proof protection for the circuit board; a fourth substrate 26 is arranged at the upper end of the silicon rubber high polymer moisture-proof layer 25, an asbestos insulation layer 27 is arranged at the upper end of the fourth substrate 26, and the asbestos insulation layer 27 provides insulation protection for the circuit board; a fifth substrate 28 is arranged at the upper end of the asbestos insulation layer 27, a sixth substrate 29 is arranged at the upper end of the fifth substrate 28, and the electrical element 3 is arranged on the sixth substrate 29; the total six layers of substrates are respectively the first substrate 21, the second substrate 22, the third substrate 24, the fourth substrate 26, the fifth substrate 28 and the sixth substrate 29, so that the thickness of the circuit board is increased, and the circuit board is not warped.
Referring to fig. 1, 2 and 3, a first groove 41 and a second groove 42 are formed in the fixing block 1, and the size of the fixing block 1 is consistent with that of the substrate and the protective layer; the storage battery 43 is arranged in the first groove 41, a switch is arranged beside the storage battery 43 and can control the on-off of the mini blower 44, the storage battery 43 is connected with the mini blower 44 through a lead, the mini blower 44 is fixedly arranged in the second groove 42, one end of the mini blower 44 is provided with an air pipe 45, the other end of the air pipe 45 is provided with a nozzle 46, and the length of the nozzle 46 is consistent with the width of the sixth substrate 29.
Referring to fig. 1, 2 and 3, an elastic clamping groove 51 is formed in the sixth base plate 29, an elastic clamping head 52 is slidably connected to the elastic clamping groove 51, the elastic clamping head 52 is made of a rubber material with a regular hexagon shape, and the elastic clamping groove 51 is in a regular hexagon shape; one end of the elastic clamping head 52 penetrates through the elastic clamping groove 51 to be connected with the ash containing frame 53, and the elastic clamping head 52 is inserted into the elastic clamping groove 51 to conveniently fix the position of the ash containing frame 53; one end of the dust holding frame 53 is at the same level as the sixth substrate 29.
The utility model discloses when concrete implementation: when the circuit board is used outdoors for a period of time, the switch beside the storage battery 43 is turned on, the storage battery 43 supplies power to the mini blower 44 through the lead, so that the mini blower 44 blows air to the outside, the air is blown out from the nozzle 46 through the air duct 45, dust at the gap between the electric elements 3 on the sixth substrate 29 is blown to the right as much as possible, most of the dust falls into the dust containing frame 53 at the rightmost side, after the circuit board is used for a period of time, the dust containing frame 53 can be pulled to the right to enable the elastic chuck 52 to be separated from the elastic clamping groove 51, the dust containing frame 53 is taken down, the elastic chuck 52 on the circuit board is inserted into the elastic clamping groove 51 after being cleaned, and the circuit board is provided with six layers of substrates, namely the first substrate 21, the second substrate 22, the third substrate 24, the fourth substrate 26, the fifth substrate 28 and the sixth substrate 29, so that the thickness of the circuit board is increased, and a magnesium aluminum compound temperature-resistant protective layer 23 is inserted in the substrate to provide fireproof protection for the circuit board, a silicon rubber high-molecular polymer moisture-proof layer 25 provides moistureproof protection for the circuit board, and an asbestos insulating layer 27 provides insulating protection for the circuit board, so that the circuit board is further effectively protected.
Claims (7)
1. Super thick superelevation layer network communication circuit board, including fixed block (1), its characterized in that: the outside of fixed block (1) is equipped with first base plate (21), the upper end of first base plate (21) is equipped with second base plate (22), the upper end of second base plate (22) is equipped with magnesium aluminium compound temperature resistant inoxidizing coating (23), the upper end of magnesium aluminium compound temperature resistant inoxidizing coating (23) is equipped with third base plate (24), the upper end of third base plate (24) is equipped with silicon rubber polymer dampproof course (25), the upper end of silicon rubber polymer dampproof course (25) is equipped with fourth base plate (26), the upper end of fourth base plate (26) is equipped with asbestos insulating layer (27), the upper end of asbestos insulating layer (27) is equipped with fifth base plate (28), the upper end of fifth base plate (28) is equipped with sixth base plate (29), be equipped with electric elements (3) on sixth base plate (29).
2. The ultra-thick ultra-high network communication circuit board of claim 1, wherein: be equipped with first recess (41) and second recess (42) in fixed block (1), be equipped with battery (43) in first recess (41), battery (43) are connected with mini air-blower (44) through the wire.
3. The ultra-thick ultra-high network communication circuit board of claim 2, wherein: mini-blower (44) are fixed to be located in second recess (42), mini-blower (44)'s one end is equipped with tuber pipe (45), the other end of tuber pipe (45) is equipped with spout (46).
4. The ultra-thick ultra-high network communication circuit board of claim 1, wherein: an elastic clamping groove (51) is formed in the sixth base plate (29), and an elastic clamping head (52) is connected to the elastic clamping groove (51) in a sliding mode.
5. The ultra-thick ultra-high network communication circuit board of claim 4, wherein: one end of the elastic clamping head (52) passes through the elastic clamping groove (51) to be connected with the ash containing frame (53).
6. The ultra-thick ultra-high network communication circuit board of claim 4, wherein: the elastic clamping head (52) is made of a regular hexagonal rubber material, and the elastic clamping groove (51) is in a regular hexagon shape.
7. The ultra-thick ultra-high network communication circuit board of claim 5, wherein: one end of the ash containing frame (53) is positioned at the same horizontal plane with the sixth substrate (29).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922218421.2U CN211128388U (en) | 2019-12-12 | 2019-12-12 | Super-thick super-high network communication circuit board |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922218421.2U CN211128388U (en) | 2019-12-12 | 2019-12-12 | Super-thick super-high network communication circuit board |
Publications (1)
Publication Number | Publication Date |
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CN211128388U true CN211128388U (en) | 2020-07-28 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201922218421.2U Active CN211128388U (en) | 2019-12-12 | 2019-12-12 | Super-thick super-high network communication circuit board |
Country Status (1)
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CN (1) | CN211128388U (en) |
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2019
- 2019-12-12 CN CN201922218421.2U patent/CN211128388U/en active Active
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