CN117188664A - Lightening LED and stone curtain wall integrated system - Google Patents
Lightening LED and stone curtain wall integrated system Download PDFInfo
- Publication number
- CN117188664A CN117188664A CN202311173339.7A CN202311173339A CN117188664A CN 117188664 A CN117188664 A CN 117188664A CN 202311173339 A CN202311173339 A CN 202311173339A CN 117188664 A CN117188664 A CN 117188664A
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- 239000004575 stone Substances 0.000 title claims abstract description 50
- 238000005282 brightening Methods 0.000 claims abstract description 17
- 239000000463 material Substances 0.000 claims description 15
- 239000013078 crystal Substances 0.000 claims description 8
- 239000008186 active pharmaceutical agent Substances 0.000 claims description 4
- 230000010354 integration Effects 0.000 claims description 2
- 239000012634 fragment Substances 0.000 claims 2
- 230000000694 effects Effects 0.000 description 5
- 238000010586 diagram Methods 0.000 description 4
- 238000005286 illumination Methods 0.000 description 4
- 238000000034 method Methods 0.000 description 2
- 230000000630 rising effect Effects 0.000 description 2
- 238000006073 displacement reaction Methods 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 238000004146 energy storage Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000005192 partition Methods 0.000 description 1
- 125000006850 spacer group Chemical group 0.000 description 1
Landscapes
- Load-Bearing And Curtain Walls (AREA)
- Curtains And Furnishings For Windows Or Doors (AREA)
Abstract
The invention particularly relates to an integrated system for a brightening LED and a stone curtain wall, which comprises a keel frame which is vertically arranged, wherein an I-shaped supporting frame is fixedly arranged on one side of the keel frame, a groove area is respectively arranged at the upper position and the lower position of the I-shaped supporting frame, a stone curtain wall board and an LED lamp strip are arranged in each groove area, a fixing bolt is inserted into the I-shaped supporting frame and the keel frame and is fixed through nuts, a stone nut baffle is arranged on one side, close to the I-shaped supporting frame, of the stone curtain wall board, a stone lamp strip baffle is arranged between the stone curtain wall board and the LED lamp strip, the outer part of a wire groove is the outer wall of the wire groove, a lamp strip wire groove baffle is arranged between the LED lamp strip and the outer wall of the wire groove, the height of the LED lamp strip is lower than that of the stone curtain wall board, and the wire groove is used for communicating the wires of the LED lamp strip.
Description
Technical Field
The invention belongs to the field of building design, and particularly relates to an integrated system for a brightening LED and a stone curtain wall.
Background
In the related prior art, led lamp strips are usually arranged in wall joints of curtain walls, and certain space can be saved through the Led lamp strips. However, such an arrangement is only capable of providing a small area of the light strip, and cannot be provided in a larger size. And the fixed effect of this kind of setting method is not good enough to this kind of setting method Led lamp does not have direct contact with curtain illumination, and Led lamp area can not make the curtain have the brightening effect.
Disclosure of Invention
The invention aims to provide an integrated system for brightening an LED and a stone curtain wall, which aims to solve the problems in the background technology.
In order to solve the technical problems, the invention provides the following technical scheme:
the utility model provides a brightening LED and stone material curtain integration system, including erectting the dragon skeleton that sets up, the fixed I-shaped support frame that sets up in one side of dragon skeleton, the upper and lower position of I-shaped support frame respectively has a groove region, all be provided with stone material curtain wall board and LED lamp area in every groove region, the gim peg alternates I-shaped support frame and dragon skeleton and is fixed through the nut, one side that stone material curtain wall board is close to I-shaped support frame sets up stone material nut baffle, set up stone material lamp area baffle between stone material curtain wall board and the LED lamp area, the outside of wire casing is the wire casing outer wall, set up lamp area wire casing baffle between LED lamp area and the wire casing outer wall, the height of LED lamp area is less than the height of stone material curtain wall board, the wire casing is used for UNICOM LED lamp area's electric wire.
Further, the outside fixed photovoltaic board of stone material curtain wall board, the wire casing is used for UNICOM photovoltaic board's electric wire.
Further, the LED lamp strip comprises a LED body and a LED control circuit, the LED control circuit comprises a first driving circuit, a second driving circuit and a central control circuit, the first driving circuit and the second driving circuit are electrically connected with the central control circuit, the central control circuit is electrically connected with the configuration circuit, and the central control circuit controls the brightening of the LED body through the first driving circuit and the second driving circuit.
Further, the central control circuit comprises a single chip microcomputer circuit, the p2.0/A8 pin, the p2.1/A9 pin and the p2.2/A10 pin of the single chip microcomputer circuit are respectively and electrically connected with a control switch, and the configuration circuit comprises a crystal oscillator circuit and a reset circuit.
Further, the crystal oscillator circuit is electrically connected with the XTAL1 pin and the XTAL2 pin of the central control circuit, and the reset circuit is provided with a switch and is electrically connected with the RST pin of the central control circuit.
Further, the first driving circuit comprises a plurality of signal decoding chips, the input end pin of each signal decoding chip is electrically connected with the P1.0/T2 pin, the P1.1/T2EX pin and the P1.2 pin of the central control circuit, and the output end pin of each signal decoding chip is electrically connected with the led body.
Further, the second driving circuit comprises a plurality of serial-to-parallel chips, the serial-to-parallel chips are cascaded through DS pins or are electrically connected with the central control circuit, and output pins of the serial-to-parallel chips are electrically connected with the led body.
Advantageous effects
According to the invention, the LED lamp is in direct contact with the illumination of the curtain wall, the LED lamp strip can enable the curtain wall to have a brightening effect, the central control circuit controls the brightening of the LED body through the first driving circuit and the second driving circuit, and the circuit is stable in control and low in cost.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present invention.
FIG. 2 is a schematic view of a part of the structure of the present invention.
FIG. 3 is a circuit diagram of the central control of the present invention.
Fig. 4 is a diagram of a configuration circuit and a first driving circuit according to the present invention.
FIG. 5 is a diagram of a configuration circuit and a second driving circuit according to the present invention.
In the figures, a keel frame 100; a fixing bolt 200; a nut 300; a wire slot 400; stone curtain wall board 500; an LED light strip 600; an I-shaped support frame 101; stone lamp strip baffle 501; stone nut spacers 502; a lamp strip trunking partition 601; wire chase outer wall 602.
Detailed Description
The technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention, and it is apparent that the described embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
The invention discloses an integrated system of a brightening LED and a stone curtain wall, as shown in figures 1-2, comprising a vertically arranged keel frame 100, wherein one side of the keel frame 100 is fixedly provided with a I-shaped support frame 101, the upper and lower positions of the I-shaped support frame 101 are respectively provided with a groove area, each groove area is provided with a stone curtain wall board 500 and an LED lamp strip 600, a fixing bolt 200 is inserted into the I-shaped support frame 101 and the keel frame 100 and is fixed by a nut 300, one side of the stone curtain wall board 500, which is close to the I-shaped support frame 101, is provided with a stone nut baffle 502, a stone lamp strip baffle 501 is arranged between the stone curtain wall board 500 and the LED lamp strip 600, the outside of the groove 400 is a groove outer wall 602, a lamp strip groove baffle 601 is arranged between the LED lamp strip 600 and the groove outer wall 602, the height of the LED lamp strip 600 is lower than that of the stone curtain wall board 500, the wire slot 400 is used for communicating wires of the LED lamp strip 600, the photovoltaic panel is fixed on the outer side of the stone curtain wall board 500, the photovoltaic panel generates electricity and is input to an energy storage power supply or a power grid through an inverter, then the LED lamp strip 600 is powered, the wire slot 400 is used for communicating wires of the photovoltaic panel, the LED lamp strip comprises a LED body and a LED control circuit, as shown in fig. 3 to 5, the LED control circuit comprises a first driving circuit and a second driving circuit for driving the LED body, and a central control circuit, the first driving circuit and the second driving circuit are electrically connected with the central control circuit, the central control circuit is electrically connected with a configuration circuit, and the central control circuit controls the illumination of the LED body through the first driving circuit and the second driving circuit; the central control circuit comprises a single chip microcomputer circuit, p2.0/A8 pins, p2.1/A9 pins and p2.2/A10 pins of the single chip microcomputer circuit are respectively and electrically connected with a control switch, the configuration circuit comprises a crystal oscillator circuit and a reset circuit, the crystal oscillator circuit is electrically connected with an XTAL1 pin and an XTAL2 pin of the central control circuit, the reset circuit is provided with a switch and is electrically connected with an RST pin of the central control circuit, the first driving circuit comprises a plurality of signal decoding chips, for example, 74HC138 is a high-speed CMOS device, and the 74HC138 pins are compatible with low-power-consumption Schottky TTL (LSTTL) series. The 74HC138 decoder may accept 3-bit binary weighted address inputs (A0, A1, and A2) and, when enabled, provide 8 exclusive low-active outputs (Y0 through Y7). 74HC138 has 3 enable inputs: two low active (E1 and E2) and one high active (E3). Unless E1 and E2 are low and E3 is high, 74HC138 will hold all outputs high. The input terminal pin of each signal decoding chip is electrically connected with the P1.0/T2 pin, the P1.1/T2EX pin and the P1.2 pin of the central control circuit, the output terminal pin of each signal decoding chip is electrically connected with the led body, and the second driving circuit comprises a plurality of serial-parallel chips, for example, a displacement buffer with 74HC595 and 74HC595 being 8-bit serial input and parallel output: the parallel output is a tri-state output. On the rising edge of SCK, serial data is input into the internal 8-bit shift buffer by SDL and output by Q7', while parallel output is that on the rising edge of LCK, data in 8-bit shift buffer is stored into 8-bit parallel output buffer. When the control signal of the serial data input end OE is low-enable, the output value of the parallel output end is equal to the value stored in the parallel output buffer, the serial-parallel chip is cascaded through a DS pin or is electrically connected with the central control circuit, and the output pins of the serial-parallel chip are electrically connected with the led body.
Therefore, the Led lamp is in direct contact with the illumination of the curtain wall, the Led lamp strip can enable the curtain wall to have a brightening effect, the central control circuit controls brightening of the Led body through the first driving circuit and the second driving circuit, and the circuit is stable in control and low in cost.
In the embodiment to be protected, the invention discloses an integrated system for lightening LEDs and stone curtain walls, which comprises a keel frame 100 vertically arranged, wherein one side of the keel frame 100 is fixedly provided with a I-shaped supporting frame 101, the upper and lower positions of the I-shaped supporting frame 101 are respectively provided with a groove area, each groove area is provided with a stone curtain wall plate 500 and an LED lamp strip 600, a fixing bolt 200 penetrates through the I-shaped supporting frame 101 and the keel frame 100 and is fixed through a nut 300, one side of the stone curtain wall plate 500 close to the I-shaped supporting frame 101 is provided with a stone nut baffle 502, a stone lamp strip baffle 501 is arranged between the stone curtain wall plate 500 and the LED lamp strip 600, the outside of the groove 400 is a groove outer wall 602, a lamp strip groove baffle 601 is arranged between the LED lamp strip 600 and the groove outer wall 602, and the height of the LED lamp strip 600 is lower than that of the stone curtain wall plate 500, and the groove 400 is used for communicating wires of the LED lamp strip 600.
Preferably, the photovoltaic panel is fixed to the outside of the curtain wall panel 500, and the wire chase 400 is used to communicate wires of the photovoltaic panel.
Preferably, the LED lamp strip comprises a LED body and an LED control circuit, wherein the LED control circuit comprises a first driving circuit, a second driving circuit and a central control circuit, the first driving circuit and the second driving circuit are used for driving the LED body, the first driving circuit and the second driving circuit are electrically connected with the central control circuit, the central control circuit is electrically connected with the configuration circuit, and the central control circuit controls the brightening of the LED body through the first driving circuit and the second driving circuit.
Preferably, the central control circuit comprises a single chip microcomputer circuit, the p2.0/A8 pin, the p2.1/A9 pin and the p2.2/A10 pin of the single chip microcomputer circuit are respectively and electrically connected with a control switch, and the configuration circuit comprises a crystal oscillator circuit and a reset circuit.
The crystal oscillator circuit is electrically connected with the XTAL1 pin and the XTAL2 pin of the central control circuit, and the reset circuit is provided with a switch and is electrically connected with the RST pin of the central control circuit.
Preferably, the first driving circuit includes a plurality of signal decoding chips, an input terminal pin of each signal decoding chip is electrically connected with a P1.0/T2 pin, a P1.1/T2EX pin and a P1.2 pin of the central control circuit, and an output terminal pin of each signal decoding chip is electrically connected with the led body.
Preferably, the second driving circuit comprises a plurality of serial-parallel chips, the serial-parallel chips are cascaded through DS pins or are electrically connected with the central control circuit, and output pins of the serial-parallel chips are electrically connected with the led body.
It will be appreciated by those skilled in the art that the present invention can be carried out in other embodiments without departing from the spirit or essential characteristics thereof. The embodiments disclosed above are illustrative in all respects, and not exclusive. All changes that come within the scope of the invention or equivalents thereto are intended to be embraced therein.
Claims (7)
1. The utility model provides a brightening LED and stone material curtain integration system, a serial communication port, including erectting dragon skeleton (100) that set up, the fixed I-shaped support frame (101) that sets up in one side of fossil fragments frame (100), the upper and lower position of I-shaped support frame (101) respectively has a groove region, all be provided with stone material curtain wallboard (500) and LED lamp area (600) in each groove region, fixed bolt (200) alternate I-shaped support frame (101) and fossil fragments frame (100) and fixed through nut (300), stone material curtain wallboard (500) are close to one side of I-shaped support frame (101) and set up stone material nut baffle (502), set up stone material lamp area baffle (501) between stone material curtain wallboard (500) and the LED lamp area (600), the outside of wire casing (400) is wire casing outer wall (602), set up lamp area wire casing baffle (601) between LED lamp area (600) and wire casing outer wall (602), the height of LED lamp area (600) is less than the height of stone material curtain wallboard (500), wire casing (400) are used for UNICOM LED lamp area (600).
2. The integrated system of lightening LEDs and stone curtain wall according to claim 1, characterized in that the outer side of the stone curtain wall plate (500) is fixed with a photovoltaic panel, and the wire chase (400) is used for communicating wires of the photovoltaic panel.
3. The integrated system of the brightening LED and the stone curtain wall according to claim 1, wherein the LED lamp strip comprises a LED body and an LED control circuit, the LED control circuit comprises a first driving circuit and a second driving circuit for driving the LED body, and a central control circuit, the first driving circuit and the second driving circuit are electrically connected with the central control circuit, the central control circuit is electrically connected with the configuration circuit, and the central control circuit controls brightening of the LED body through the first driving circuit and the second driving circuit.
4. The integrated system of the brightening LED and the stone curtain wall according to claim 3, wherein the central control circuit comprises a single chip microcomputer circuit, p2.0/A8 pins, p2.1/A9 pins and p2.2/a10 pins of the single chip microcomputer circuit are respectively and electrically connected with a control switch, and the configuration circuit comprises a crystal oscillator circuit and a reset circuit.
5. The illuminated LED and stone curtain wall integrated system according to claim 4, wherein the crystal oscillator circuit is electrically connected to XTAL1 pin, XTAL2 pin of the central control circuit, and the reset circuit sets the switch and is electrically connected to RST pin of the central control circuit.
6. The system of claim 3, wherein the first driving circuit comprises a plurality of signal decoding chips, an input terminal pin of each signal decoding chip is electrically connected with a P1.0/T2 pin, a P1.1/T2EX pin, and a P1.2 pin of the central control circuit, and an output terminal pin of each signal decoding chip is electrically connected with the LED body.
7. The integrated system of the brightening LED and the stone curtain wall according to claim 3, wherein the second driving circuit comprises a plurality of serial-parallel chips, the serial-parallel chips are cascaded through DS pins or are electrically connected with the central control circuit, and output pins of the serial-parallel chips are electrically connected with the LED body.
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CN202311173339.7A CN117188664B (en) | 2023-09-12 | 2023-09-12 | Lightening LED and stone curtain wall integrated system |
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CN202311173339.7A CN117188664B (en) | 2023-09-12 | 2023-09-12 | Lightening LED and stone curtain wall integrated system |
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