CN211371996U - Short lamp area equipment lamp area of growing up - Google Patents
Short lamp area equipment lamp area of growing up Download PDFInfo
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- CN211371996U CN211371996U CN201921885738.5U CN201921885738U CN211371996U CN 211371996 U CN211371996 U CN 211371996U CN 201921885738 U CN201921885738 U CN 201921885738U CN 211371996 U CN211371996 U CN 211371996U
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- circuit board
- light strip
- flat cable
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Abstract
The utility model relates to a short lamp area equipment growth lamp area, particularly, make long winding displacement earlier, long winding displacement is the long winding displacement of making with many parallel wires of a tunic bonding, perhaps glue the long winding displacement of making in the middle of many parallel wire clamps with two-layer membrane, the seal is glued or is pasted the double faced adhesive tape on the long winding displacement of disjunctor, perhaps the seal is glued or is pasted the double faced adhesive tape on the back in disjunctor short lamp area, arrange many disjunctor short lamp area head and the tail and paste long winding displacement on, again with short lamp area circuit board and long winding displacement welding switch on, make the long naked lamp area of LED disjunctor of assembled, divide with the branch strip machine and be cut into solitary long naked lamp area.
Description
Technical Field
The utility model relates to a LED lamp area field, concretely relates to short lamp area equipment growth lamp area.
Background
The prior art makes LED lamp and has following scheme:
1. in the existing scheme, after a plurality of 0.5-meter or 1.0-meter short lamp belts are butted or lapped end to end with a lamp belt, manual tin adding and heating are carried out to weld a plurality of anode and cathode main lines of the short lamp belts together respectively to manufacture a long lamp belt.
2. In the other existing scheme, a plurality of 0.5-meter or 1.0-meter short lamp belts are welded with small wires on positive and negative welding spots of a short lamp belt circuit board manually, then the short lamp belts are arranged end to end in sequence, and the small wires welded on the positive and negative electrodes are wound on a main wire of a flat cable one by one.
In order to overcome the defects and shortcomings, the manufactured short lamp strip of the connected circuit board and the connected long flat cable are firstly attached together in advance through an adhesive, then the short lamp strip and the long flat cable are welded and conducted, and then the connected long lamp strip assembled together is cut into single long lamp strips by a strip dividing machine.
Practical new content
The utility model relates to a short lamp area equipment growth lamp area, particularly, make long winding displacement earlier, long winding displacement is the long winding displacement of making with many parallel wires of a tunic bonding, perhaps glue the long winding displacement of making in the middle of many parallel wire clamps with two-layer membrane, the seal is glued or is pasted the double faced adhesive tape on the long winding displacement of disjunctor, perhaps the seal is glued or is pasted the double faced adhesive tape on the back in disjunctor short lamp area, arrange many disjunctor short lamp area head and the tail and paste long winding displacement on, again with short lamp area circuit board and long winding displacement welding switch on, make the long naked lamp area of LED disjunctor of assembled, divide with the branch strip machine and be cut into solitary long naked lamp area.
According to the utility model provides a short lamp area equipment growth lamp area newly, include: the long flat cable, the adhesive layer and the short lamp strips are characterized in that the short lamp strips are arranged end to end and are adhered to the long flat cable through the adhesive layer, the short lamp strips and the long flat cable are welded and conducted, the welding position is arranged at the edge of the short lamp strip circuit board or at the hole position of the short lamp strip circuit board, the adhesive layer is flush with the edge of the circuit board at the welding position or exceeds the edge of the circuit board or is retracted between the circuit board and the flat cable, the circuit board and the long flat cable are respectively arranged on a cutter face on two side faces in the longitudinal direction (long direction) of the long lamp strip, the adhesive layer and the long flat cable are respectively arranged on one cutter face on two side faces in the longitudinal direction (long direction) of the long lamp strip, only part of the adhesive layer and the long flat cable are respectively arranged on one cutter face, or the adhesive layer and the long flat cable are fully hidden and are clamped in the long flat cable and the circuit board, and the long flat cable are, the bonding glue layer is cured glue or uncured glue, the circuit board is a flexible circuit board, the long flat cable is formed by a layer of film bonding lead with glue, or is formed by at least one layer of film with glue wrapping the lead, and the metal of the lead is exposed on the long flat cable.
According to a preferred embodiment of the present invention, the long light strip is assembled from the short light strip, wherein the flat cable is made of a film-bonded wire with glue, and a layer of ink is printed on the side of the non-glued wire to perform insulation and resistance welding.
According to a preferred embodiment of the utility model, a short lamp area equipment long lamp area, its characterized in that, the welded connection of short lamp area and long winding displacement switch on, direct soldering tin switches on or plus conductor and soldering tin switch on.
According to a new preferred embodiment of the present invention, a short lamp area equipment long lamp area, its characterized in that, when the lamp area is low voltage lamp area, short lamp area includes a plurality of the same periodic circuit, when being provided with the thread from beginning to end on the circuit board, the positive negative pole of short lamp area circuit board and long winding displacement connects the solder joint, only welds a group and just can realize putting through with the full conduction in short lamp area, when not establishing the thread from beginning to end on the circuit board, the positive negative pole solder joint that short lamp area circuit board must every cycle all realizes putting through with the winding displacement welding.
According to a new preferred embodiment of the present invention, a short lamp area equipment long lamp area, its characterized in that, when the lamp area is high-voltage lamp area, short lamp area has 2 the same periodic lines at most, short lamp area has a set of or two sets of positive negative pole solder joints and winding displacement welded connection to realize switching on completely.
The details of one or more embodiments of the invention are set forth in the accompanying drawings and the description below.
Drawings
The novel features, objects, and advantages of the invention will be apparent from the description which follows, taken in conjunction with the accompanying drawings, which are briefly described below.
Fig. 1 is a schematic plan view of a short lamp strip comprising a plurality of connected strips.
FIG. 2 is a partial view of a long row of lines made of a PET film with adhesive on one side and a plurality of conductive lines.
FIG. 3 is a partial view of a long row of lines made of PET film with glue on one side, ink on one side, and multiple wires.
FIG. 4 is a partial view of a long row of lines made of PET film with glue on one side and PET without glue on one side.
Fig. 5 is a partial schematic view of a long row of lines made of PET film with adhesive on both sides and a plurality of conductive lines.
Fig. 6 is a schematic plan view of a long row line with one side exposed with conducting points.
Fig. 7 is a schematic plan view of a long row line with glue on one side of a conduction point.
Fig. 8 is a partial schematic view of the printing paste between the short lamp strip and the long flat cable of the circuit board at the conducting position being flush with the edge of the board or the hole edge of the short lamp strip of the circuit board.
Fig. 9 is a partial schematic view of the printed adhesive between the short lamp strip and the long flat cable of the circuit board at the conducting position exceeding the edge of the board or the hole edge of the short lamp strip of the circuit board.
Fig. 10 is a partial schematic view of the printed adhesive between the short lamp strip and the long row line of the circuit board at the conducting position hidden under the edge of the board or the hole edge of the short lamp strip of the circuit board.
Fig. 11 is a partial schematic view of an edge conduction point of the short lamp strip and a conduction point of the long row line forming an edge conduction through tin connection.
Fig. 12 is a partial schematic view of the edge conduction point of the short lamp strip and the conduction point of the long row line being conducted through the tin connection forming hole.
Fig. 13 is a schematic plan view of an LED integrated long bare lamp strip made of an integrated short lamp strip and a long flat cable with glue.
Fig. 14 is a schematic plan view of a single long bare lamp strip.
Fig. 15 is a partial schematic view of the short lamp strip and the long flat cable with the adhesive on both sides of the cutting blade surface in the long direction of the long bare lamp strip.
Fig. 16 is a partial schematic view of the short lamp strip and the long flat cable in the long direction of the long bare lamp strip, wherein one side of the short lamp strip and the long flat cable is on one cutting tool surface, and one side of the short lamp strip and the long flat cable is hidden and retracted inside the short lamp strip and the long flat cable.
Fig. 17 is a partial schematic view of the long bare lamp with the short lamp strip and the long flat cable fully hidden and retracted inside the short lamp strip and the long flat cable.
Detailed Description
The present invention will be described in detail below by taking preferred embodiments as examples.
It will be understood by those skilled in the art that the following descriptions are provided for purposes of illustration and description of certain preferred embodiments only and are not intended to limit the scope of the present invention.
Manufacturing a plurality of short lamp strips:
the integrated multi-strip short lamp strip (shown in figure 1) which is 250mm wide, and is provided with reserved edge conduction points 1.1 and hole conduction points 1.2 is manufactured through the production process of the traditional short lamp strip for standby.
Description of the drawings: only 4 short lamp strips of the connected circuit board are drawn in fig. 1, so that the drawing can be seen more clearly, and 24 short lamp strips of the connected circuit board are actually produced.
Manufacturing a long flat cable:
a long flat cable (shown in figure 2) is prepared by sticking a plurality of long wires 3.1 on a PET film 2.2 with a 250mm wide surface and adhesive 2.1.
Alternatively, a long flat cable (shown in fig. 3 and 6) is prepared by sticking a plurality of long wires 3.1 on a PET film 2.2 having a width of 250mm and a tape 2.1 on one side, printing ink 3.2 on the side of the long wire where the copper wire is exposed, and exposing the conduction points 4.1 of the wires on the side of the ink 3.2.
Alternatively, a plurality of holes of a 250mm wide PET film 2.2 with glue 2.1 on one side and a PET film 2.2 without glue on one side are punched in advance by a punch, and then a plurality of long wires 3.1 are adhered to the two films to expose conduction points 4.1, so as to prepare a long flat cable (shown in fig. 4 and 6) for standby.
Or, two layers of 250mm wide PET films 2.2 with glue 2.1 on one side are used, wherein at least one layer is punched with a plurality of holes in advance by a punch, and a plurality of long wires 3.1 are stuck between the two layers of PET films 2.2 with glue 2.1 to expose conduction points 4.1 to form long lines (shown in figures 5 and 6) for standby.
Description of the drawings: fig. 2, fig. 3, fig. 4, fig. 5, and fig. 6 are only partially schematic diagrams for better illustration, and the actual production is to make a connected long flat cable by using 48 parallel long wires.
Production of adhesive layer
On the surface of the manufactured long flat cable with the exposed conduction points 4.1, according to the design of the engineering data of the adhesive layer, the adhesive 5.1 is uniformly printed to manufacture the long flat cable with the conduction points 4.1 and the adhesive 5.1 on the surface (shown in figure 7).
The short lamp strip is assembled into the long lamp strip:
arranging a plurality of short lamp belts of the connected circuit board (shown in figure 1) end to end, pasting the short lamp belts of the connected circuit board (shown in figure 7) on the connected long flat lines of a plurality of flat lines with glue, welding and conducting the short lamp belts of the circuit board and the long flat lines at the conduction points 4.1, forming edge conduction 7.2 (shown in figures 12 and 13) at the welding and conducting positions by the hole conduction points 1.2 of the short lamp belts of the circuit board and the conduction points 4.1 of the long flat lines through welding and forming hole conduction 7.2, forming edge conduction 7.3 (shown in figures 11 and 13) at the position two by the edge conduction points 1.1 of the short lamp belts and the conduction points 4.1 of the long flat lines through tin connection, manufacturing the assembled long bare lamp belts 7.1 of the LED connected body, wherein the printing glue 5.1 between the conduction positions of the short lamp belts 6.1 and the long flat lines 6.2 of the circuit board and the edge or the hole edge of the short lamp belts 6, or beyond the board edge or hole edge 5.1b of the short strip 6.1 of the circuit board (shown in fig. 9), or hidden under the board edge or hole edge 5.1c of the short strip of the circuit board (shown in fig. 10).
The assembled LED integrated long bare lamp strip 7.1 is cut into single long bare lamp strips 8.1 on the same section by a slitting machine, the short lamp strips 6.1 and the long row lines 6.2 in the long direction of the long bare lamp strips and the two sides of the adhesive are both on a cutting tool surface 9.1a, or one side of each short lamp strip is on one section 9.1a, and one side of each short lamp strip is hidden and retracted inside the short lamp strips and the long row lines 9.1b, or the adhesive is completely hidden and retracted inside the short lamp strips and the long row lines 9.1b (shown in figures 15, 16 and 17).
The present invention is described in detail with reference to the attached drawings by using specific embodiments of an assembled LED long light strip and a manufacturing method thereof. It will be understood by those skilled in the art, however, that the foregoing is illustrative and descriptive of some specific embodiments only, and not limiting as to the scope of the invention, which is defined in the claims.
Claims (5)
1. A short light strip assembled long light strip, comprising:
long flat cable
Adhesive glue layer
Multi-strip short lamp belt
The long lamp strip is characterized in that a plurality of short lamp strips are arranged end to end and are bonded on a long row line through bonding adhesive layers, the short lamp strips and the long row line are welded and connected, the welding positions are arranged at the plate edges of a short lamp strip circuit board or the hole positions of the short lamp strip circuit board, the bonding adhesive layers are flush with the edge of the circuit board at the welding positions or exceed the edge of the circuit board or are retracted and hidden between the circuit board and the row line, the circuit board and the long row line are respectively arranged on a cutter face on two side faces in the longitudinal direction of the long lamp strip, the bonding adhesive layers and the long row line are respectively arranged on one cutter face, or only part of the bonding adhesive layers and the long row line are respectively arranged on one cutter face, or the bonding adhesive layers are fully hidden and retracted and clamped in the long row line and the circuit board and are not arranged on one cutter face together with the long row line, and the bonding adhesive layers are cured glue or uncured glue, the circuit board is a flexible circuit board, the long flat cable is formed by bonding a layer of film with glue on a conducting wire, or is formed by wrapping a conducting wire with at least one layer of film with glue on two layers of films, and conducting wire metal is exposed on the long flat cable.
2. The long light strip assembled from short light strips as claimed in claim 1, wherein the flat cable is made of a film-bonded wire with adhesive, and the side of the wire not adhered with the adhesive is printed with a layer of ink to serve as an insulation solder mask.
3. The long light strip assembled from the short light strips according to claim 1, wherein the short light strip and the long flat cable are connected by soldering directly or by adding a conductor and soldering.
4. The long light strip assembled from the short light strips according to claim 1, wherein the short light strip comprises a plurality of identical periodic circuits when the low-voltage light strip is a low-voltage light strip, and when the circuit board is provided with a main line from head to tail, the positive and negative electrode connecting pads of the short light strip circuit board and the long flat cable are welded together to realize the full conduction between the flat cable and the short light strip.
5. The long light strip assembled from the short light strips according to claim 1, wherein the short light strip has at most 2 identical periodic lines when the long light strip is a high-voltage light strip, and the short light strip has one or two sets of positive and negative electrode pads and a flat cable welded connection to achieve full conduction.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921885738.5U CN211371996U (en) | 2019-10-26 | 2019-10-26 | Short lamp area equipment lamp area of growing up |
Applications Claiming Priority (1)
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CN201921885738.5U CN211371996U (en) | 2019-10-26 | 2019-10-26 | Short lamp area equipment lamp area of growing up |
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CN211371996U true CN211371996U (en) | 2020-08-28 |
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CN201921885738.5U Active CN211371996U (en) | 2019-10-26 | 2019-10-26 | Short lamp area equipment lamp area of growing up |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2021077869A1 (en) * | 2019-10-26 | 2021-04-29 | 王定锋 | Long lamp strip assembled from short lamp strips and fabrication method |
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2019
- 2019-10-26 CN CN201921885738.5U patent/CN211371996U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2021077869A1 (en) * | 2019-10-26 | 2021-04-29 | 王定锋 | Long lamp strip assembled from short lamp strips and fabrication method |
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