CN213090600U - Manual electronic combined firework - Google Patents

Manual electronic combined firework Download PDF

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Publication number
CN213090600U
CN213090600U CN202021126686.6U CN202021126686U CN213090600U CN 213090600 U CN213090600 U CN 213090600U CN 202021126686 U CN202021126686 U CN 202021126686U CN 213090600 U CN213090600 U CN 213090600U
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Prior art keywords
air cylinder
processor module
lug
light
controller
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CN202021126686.6U
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Chinese (zh)
Inventor
薛伟琪
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Changzhou Golden Peacock Gift And Souvenir Co ltd
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Changzhou Golden Peacock Gift And Souvenir Co ltd
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Abstract

The utility model discloses a manual electronic combined firework, which comprises a starting switch, a controller and a plurality of launching tubes; a plurality of light-emitting elements are arranged in each emission barrel, and an emission mechanism is arranged below each emission barrel; the controller is electrically connected with the starting switch and used for receiving a signal of the starting switch so as to control the work of the transmitting mechanism; the controller comprises a processor module, and the processor module is connected with a light-emitting diode. The utility model discloses a launching light emitting component to the sky, having solved the problem that the protocol flower can not be used at night, set up the convenient operation of starting switch simultaneously, processor module is connected with emitting diode, can instruct the state of protocol flower.

Description

Manual electronic combined firework
Technical Field
The utility model relates to a manual formula electron combination fireworks display.
Background
With the national emphasis on environmental protection and the progress of the times, fireworks and crackers are gradually replaced by fireworks, so that the pollution can be reduced, and the use is safe. However, most of the current protocol of spraying color paper and paillette by air pipes is adopted in the protocol of spraying color paper and paillette by air pipes, so that the atmosphere can be increased when the fireworks are used in the daytime, the fireworks cannot be used at night, and the application has limitation. Moreover, some fireworks are easy to be unexpected once being improperly operated when being launched.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a manual formula electron combination protocol fireworks to prior art's weak point.
Realize the utility model discloses the technical scheme of purpose is: a manual electronic combined fireworks comprises a starting switch, a controller and a plurality of launching tubes; a plurality of light-emitting elements are arranged in each emission barrel, and an emission mechanism is arranged below each emission barrel; the controller is electrically connected with the starting switch and used for receiving a signal of the starting switch so as to control the work of the transmitting mechanism; the controller comprises a processor module, and the processor module is connected with a light-emitting diode.
The processor module is formed by connecting two chips in series, wherein the models of the two chips are SN8P2501B and SN8P2511 respectively; the 10 feet of the SN8P2501B are connected with the 4 feet of the SN8P 2511.
The launching mechanism comprises an air cylinder, an air cylinder plug, a pressing assembly and a driving assembly connected with the controller; the compressing assembly is used for compressing the air cylinder plug at the opening of the air cylinder so as to seal the air cylinder; the driving assembly is used for driving the pressing assembly to loosen so as to release the compressed gas in the gas storage cylinder, and therefore the light-emitting element in the firework cylinder is emitted.
The compressing assembly comprises a connecting piece sleeved at the opening of the air cylinder, a gland hinged with the connecting piece, a binding belt used for fixing the connecting piece and the gland together, and a ring sleeve used for connecting the launching cylinder and the air cylinder; one end of the gland, which is far away from the hinged part of the gland and the connecting piece, is provided with a first lug; the connecting piece is provided with a second lug corresponding to the first lug in position; the binding band is used for binding the first lug and the second lug together so as to press the air cylinder plug on the opening of the air cylinder.
The driving component comprises a resistance wire wound on the binding band; the resistance wire is connected with the processor module.
The resistance wire is electrically connected with the processor module through a lead.
The light-emitting element comprises a PCB and a plurality of LED lamps or a plurality of luminous bodies arranged on the PCB; the PCB is provided with an MCU and a power supply battery for supplying power to the MCU; each LED lamp or the plurality of luminous bodies are electrically connected with the MCU; and a vibration switch is connected in series between the power supply battery and the MCU.
A slow descending device is arranged on the light emitting element; the slow descending device comprises an umbrella cover; the umbrella surface is connected with the PCB through a plurality of umbrella ropes.
A manual electronic combined fireworks also comprises a base; the air storage cylinder is arranged on the base, and the vertical distance between the top of the launching cylinder and the base is 30-80 cm; the number of the launching barrels is 6-25; the height of the air cylinder is 7-17 cm.
The triggering parameter of the vibration switch is 1.0um-2.5 um.
By adopting the technical scheme, the utility model discloses following beneficial effect has: (1) the utility model discloses a launching light emitting component to the sky, having solved the problem that the protocol flower can not be used at night, set up the convenient operation of starting switch simultaneously, processor module is connected with emitting diode, can instruct the state of protocol flower.
(2) The utility model discloses a processor module is established ties by two chips and is formed, and the rational utilization space of being convenient for makes the installation more convenient.
(3) The utility model discloses a drive assembly is used for the drive to compress tightly the subassembly and unclamp and compress tightly the subassembly and loosen, need not manual operation, has further improved the security of using.
(4) The utility model discloses set up the connecting piece, the installation of the gland of being convenient for has set up first lug and second lug moreover, and the bandage of being convenient for is fixed gland and connecting piece.
(5) The utility model discloses a drive assembly adopts the resistance wire, utilizes the resistance wire with bandage fusing, simple structure not only, the cost is lower moreover, it is comparatively convenient to install.
(6) The utility model discloses a resistance wire passes through wire and processor module electric connection, supplies power through the processor module, and the resistance wire wiring, the power supply is more convenient.
(7) The utility model discloses set up the vibrations switch, when ventilating to launching tube inside, the vibrations switch vibrations are opened, and drive LED work controls simple structure.
(8) The utility model discloses set up and slowly fallen the device for light emitting component can stop longer time in the air, and it is longer to build the atmosphere time.
(9) The vertical distance between the top of the launching tube and the base is 30-80cm, the number of the launching tubes is 6-25, the height of the air storage cylinder is 7-17cm, and the design of the parameters is adopted to ensure that the effect of the firework display is better.
(10) The utility model discloses a vibration switch's triggering parameter is 1.0um-2.5um, not only can ensure that the gas receiver spills can trigger vibration switch, can not trigger vibration switch moreover when the transportation, avoids light-emitting component's electric quantity to run off.
Drawings
In order that the present invention may be more readily and clearly understood, the following detailed description of the present invention is given in conjunction with the accompanying drawings, in which
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is an explosion diagram of the present invention.
Fig. 3 is a schematic structural diagram of the driving assembly of the present invention.
Fig. 4 is a front view of the PCB of the present invention.
Fig. 5 is a rear view of the PCB of the present invention.
Fig. 6 is a schematic diagram of the circuit structure of the PCB of the present invention.
Fig. 7 is a schematic structural view of the descent control device of the present invention.
Fig. 8 is a schematic diagram of the circuit structure of the present invention.
The reference numbers in the drawings are:
the device comprises a controller 1, a transmitting tube 2, a light-emitting element 3, a PCB 3-1, an LED lamp 3-2, an MCU3-3, a power supply battery 3-4, a vibration switch 3-5, a slow descending device 3-6, an umbrella cover 3-6-1, an umbrella rope 3-6-2, a transmitting mechanism 4, an air storage tube 4-1, an air storage tube plug 4-2, a pressing component 4-3, a connecting component 4-3-1, a pressing cover 4-3-2, a first lug 4-3-3, a second lug 4-3-4, a ring sleeve 4-3-5, a driving component 4-4, a binding belt 4-5, a resistance wire 4-4-1, a lead 4-4-2, a flat cable plug 4-4-3 and a base 5.
Detailed Description
(example 1)
Referring to fig. 1 to 8, the manual electronic combined fireworks of this embodiment includes a starting switch, a controller 1 and a plurality of launching tubes 2. A plurality of light-emitting elements 3 are arranged in each emission barrel 2, and an emission mechanism 4 is arranged below each emission barrel 2. The controller 1 is electrically connected with the starting switch and used for receiving a remote control signal sent by the starting switch so as to control the work of the transmitting mechanism 4.
The launching mechanism 4 comprises an air cylinder 4-1, an air cylinder plug 4-2, a pressing component 4-3 and a driving component 4-4 connected with the controller 1. The gas cylinder 4-1 stores inert compressed gas. The pressing component 4-3 is used for pressing the air cylinder plug 4-2 at the opening of the air cylinder 4-1 so as to seal the air cylinder 4-1. The driving assembly 4-4 is used for driving the pressing assembly 4-3 to be released so as to release the compressed gas in the gas storage cylinder 4-1, thereby emitting the light emitting element 3 in the firework cylinder.
The manual electronic combined firework of the embodiment further comprises a base 5, and the plurality of launching tubes 2 can be distributed on the base 5 according to the requirements designed by manufacturers. The vertical distance between the top of the launch canister 2 and the base is 30-80 cm. The number of the launch canister 2 is 6-25. The height of the air cylinder 4-1 is 7-17 cm.
The compressing component 4-3 comprises a connecting piece 4-3-1 sleeved at the opening of the air storage cylinder 4-1, a gland 4-3-2 hinged with the connecting piece 4-3-1, a binding belt 4-5 used for fixing the connecting piece 4-3-1 and the gland 4-3-2 together, and a ring sleeve 4-3-5 used for connecting the transmitting cylinder 2 and the air storage cylinder 4-1. The end of the gland 4-3-2 away from the hinged part of the gland and the connecting piece 4-3-1 is provided with a first lug 4-3-3. The connecting piece 4-3-1 is provided with a second lug 4-3-4 corresponding to the first lug 4-3-3. The binding band 4-5 is used to bind the first lug 4-3-3 and the second lug 4-3-4 together to press the air cylinder plug 4-2 against the opening of the air cylinder 4-1. The end of the first lug 4-3-3 is raised upwards and the end of the second lug 4-3-4 is raised downwards to prevent the binding band 4-5 from slipping off.
The driving component 4-4 comprises a resistance wire 4-4-1 wound on the binding belt 4-5. The resistance wire 4-4-1 is electrically connected with the controller 1. The controller 1 comprises a processor module. The processor module is formed by connecting two chips in series, wherein the models of the two chips are SN8P2501B and SN8P2511 respectively; the 10 pin of SN8P2501B is connected with the 4 pin of SN8P 2511; the light emitting diode D7 is connected to the pin 8 of the SN8P2501B through a resistor R7A; the base of the triode Q1 is connected to the 6 pins of the SN8P2501B through a resistor R1-1A; the base of the triode Q2 is connected to the 5 pins of the SN8P2501B through a resistor R1-2A; the base of the triode Q3 is connected to the 3 pins of the SN8P2501B through a resistor R1-3A; the base of the triode Q4 is connected to the 2 pin of SN8P2501B through a resistor R1-4A; the base of the triode Q5 is connected to the 1 pin of the SN8P2501B through a resistor R1-5A; the base of the triode Q6 is connected to the 14 pins of the SN8P2501B through a resistor R1-6A; the base of the triode Q7 is connected to the 13 th pin of the SN8P2501B through a resistor R1-7A; the base of the triode Q8 is connected to the 12 pins of the SN8P2501B through a resistor R1-8A; the base of the triode Q9 is connected to the pin 3 of the SN8P2511 through a resistor R1-9A; the base of the triode Q10 is connected to the 2 pin of the SN8P2511 through a resistor R1-10A; the base of the triode Q11 is connected to the 7 pins of the SN8P2511 through a resistor R1-11A; the base of transistor Q12 is connected to pin 3 of SN8P2511 through resistor R1-12A.
The base electrode of the triode Q1 is grounded through a resistor R2-1A; the base electrode of the triode Q2 is grounded through a resistor R2-2A; the base electrode of the triode Q3 is grounded through a resistor R2-3A; the base electrode of the triode Q4 is grounded through a resistor R2-4A; the base electrode of the triode Q5 is grounded through a resistor R2-5A; the base electrode of the triode Q6 is grounded through a resistor R2-6A; the base electrode of the triode Q7 is grounded through a resistor R2-7A; the base electrode of the triode Q8 is grounded through a resistor R2-8A; the base electrode of the triode Q9 is grounded through a resistor R2-9A; the base electrode of the triode Q10 is grounded through a resistor R2-10A; the base electrode of the triode Q11 is grounded through a resistor R2-11A; the base of transistor Q12 is connected to ground through resistor R2-12A.
The emitter of the triode Q1 is grounded; the emitter of the triode Q2 is grounded; the emitter of the triode Q3 is grounded; the emitter of the triode Q4 is grounded; the emitter of the triode Q5 is grounded; the emitter of the triode Q6 is grounded; the emitter of the triode Q7 is grounded; the emitter of the triode Q8 is grounded; the emitter of the triode Q9 is grounded; the emitter of the triode Q10 is grounded; the emitter of the triode Q11 is grounded; the emitter of transistor Q12 is connected to ground.
The collector of the triode Q1 is connected with the pin 8 of the pin connector P1; the collector of the triode Q2 is connected with the pin 7 of the pin connector P1; the collector of the triode Q3 is connected with the pin 6 of the pin connector P1; the collector of the triode Q4 is connected with the pin 5 of the pin connector P1; the collector of the triode Q5 is connected with the 4 pins of the pin connector P1; the collector of the triode Q6 is connected with the pin 3 of the pin connector P1; the collector of the triode Q7 is connected with the pin 2 of the pin connector P1; the collector of the triode Q8 is connected with pin 1 of the pin connector P1; the collector of the triode Q9 is connected with the pin 9 of the pin connector P2; the collector of the triode Q10 is connected with the pin 8 of the pin connector P2; the collector of the triode Q11 is connected with the pin 7 of the pin connector P2; the collector of the transistor Q12 is connected to pin 6 of the pin connector P2.
Pin 1 of pin connector P2 is connected with the negative pole of battery DC and pin 1 of integrated voltage stabilizer WS; the 2 pin of the integrated voltage stabilizer WS is connected with the positive electrode of the battery DC; the pin 3 of the integrated voltage stabilizer WS is connected with the pin 4 of the SN8P2501B, the pin 1 of the SN8P2511 and the cathode of the light-emitting diode D7; the 8 pin of SN8P2511 is grounded; pin 11 of SN8P2501B is grounded; the pin 9 of the SN8P2501B is grounded through a key K1; the pin 1 of the pin connector P2 and the negative terminal of the battery DC are connected to the pin 1 of the pin connector P3 through the single pole single throw switch S1.
The resistance wire 4-4-1 is electrically connected with the processor module through a lead 4-4-2. Since the controller 1 of the embodiment can control a plurality of firework launcher tubes 2 to launch, in order to simplify the wiring of the circuit board of the controller 1, the wires 4-4-2 are electrically connected with the processor module through the flat cable plugs 4-4-3.
The light emitting element 3 comprises a PCB 3-1 and a plurality of LED lamps 3-2 or a plurality of luminous bodies arranged on the PCB 3-1. The PCB 3-1 is provided with a MCU3-3 and a power supply battery 3-4 for supplying power to the MCU3-3, and the power supply battery 3-4 is preferably a button battery. Each LED lamp 3-2 is electrically connected with the MCU 3-3. A vibration switch 3-5 is connected in series between the power supply battery 3-4 and the MCU3-3, and the triggering parameter of the vibration switch 3-5 is 1.0um-2.5 um. The light-emitting element 3 is provided with a slow descending device 3-6, the slow descending device 3-6 comprises an umbrella cover 3-6-1, and the umbrella cover 3-6-1 is connected with the PCB 3-1 through a plurality of umbrella ropes 3-6-2, so that the light-emitting element 3 can stay in the air for a longer time, and the atmosphere creating time is prolonged.
The working principle of the embodiment is as follows: firstly, when the LED is not in a starting state, the LED D7 is on; the controller 1 receives signals sent by the starting switch, the processor module outputs a plurality of control signals according to the received signals, each control signal is transmitted to the corresponding lead 4-4-2 through the flat cable plug 4-4-3, so that the resistance wire 4-4-1 connected with the corresponding lead 4-4-2 is fused, the corresponding binding wire is fused, after the binding wire is fused, the corresponding pressing plate loosens the pressing force on the corresponding air cylinder plug 4-2, compressed air in the corresponding air cylinder 4-1 can flush the air cylinder plug 4-2 and release the air cylinder plug 4-2 into the emitting cylinder 2, the light-emitting element 3 in the emitting cylinder 2 is ejected, meanwhile, the vibration switch 3-5 on the light-emitting element 3 is impacted by airflow to generate vibration to communicate the battery with the MCU3-3, and at the moment, the LED lamp 3-2 starts to work, the effect of fireworks is produced.
The above-mentioned embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above-mentioned embodiments are only specific embodiments of the present invention, and are not intended to limit the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (8)

1. A manual formula electron combination fireworks display which characterized in that: comprises a starting switch, a controller (1) and a plurality of launching tubes (2); a plurality of light-emitting elements (3) are arranged in each emission barrel (2), and an emission mechanism (4) is arranged below each emission barrel (2); the controller (1) is electrically connected with the starting switch and used for receiving a signal of the starting switch so as to control the work of the transmitting mechanism (4); the controller (1) comprises a processor module, and the processor module is connected with a light-emitting diode.
2. The manual electronic combined fireworks according to claim 1, characterized in that: the processor module is formed by connecting two chips in series, wherein the models of the two chips are SN8P2501B and SN8P2511 respectively; the 10 feet of the SN8P2501B are connected with the 4 feet of the SN8P 2511.
3. The manual electronic combined fireworks according to claim 1, characterized in that: the launching mechanism (4) comprises an air cylinder (4-1), an air cylinder plug (4-2), a pressing component (4-3) and a driving component (4-4) connected with the controller (1); the compressing component (4-3) is used for compressing the air cylinder plug (4-2) at the opening of the air cylinder (4-1) so as to seal the air cylinder (4-1); the driving assembly (4-4) is used for driving the pressing assembly (4-3) to be released so as to release the compressed gas in the air storage cylinder (4-1) and further emit the light-emitting element (3) in the firework cylinder.
4. A hand-operated electronic fireworks display according to claim 3, characterized in that: the compressing component (4-3) comprises a connecting piece (4-3-1) sleeved at the opening of the air cylinder (4-1), a gland (4-3-2) hinged with the connecting piece (4-3-1), a binding band (4-5) used for fixing the connecting piece (4-3-1) and the gland (4-3-2) together, and a ring sleeve (4-3-5) used for connecting the transmitting cylinder (2) and the air cylinder (4-1); one end of the gland (4-3-2) far away from the hinged part of the gland and the connecting piece (4-3-1) is provided with a first lug (4-3-3); a second lug (4-3-4) corresponding to the first lug (4-3-3) is arranged on the connecting piece (4-3-1); the binding band (4-5) is used for binding the first lug (4-3-3) and the second lug (4-3-4) together so as to press the air cylinder plug (4-2) at the opening of the air cylinder (4-1).
5. A hand-operated electronic fireworks display according to claim 3, characterized in that: the driving component (4-4) comprises a resistance wire (4-4-1) wound on the binding band (4-5); the resistance wire (4-4-1) is electrically connected with the processor module.
6. The manual electronic combined fireworks according to claim 5, characterized in that: the resistance wire (4-4-1) is electrically connected with the processor module through a lead (4-4-2).
7. The manual electronic combined fireworks according to claim 1, characterized in that: the light-emitting element (3) comprises a PCB (printed circuit board) (3-1) and a plurality of LED lamps (3-2) arranged on the PCB (3-1); the PCB (3-1) is provided with an MCU (3-3) and a power supply battery (3-4) for supplying power to the MCU (3-3); each LED lamp (3-2) is electrically connected with the MCU (3-3); and a vibration switch (3-5) is connected in series between the power supply battery (3-4) and the MCU (3-3).
8. The manual electronic combined fireworks according to claim 7, characterized in that: a slow descending device (3-6) is arranged on the light emitting element (3); the slow descending device (3-6) comprises an umbrella surface (3-6-1); the umbrella surface (3-6-1) is connected with the PCB (3-1) through a plurality of umbrella ropes (3-6-2).
CN202021126686.6U 2020-06-17 2020-06-17 Manual electronic combined firework Active CN213090600U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021126686.6U CN213090600U (en) 2020-06-17 2020-06-17 Manual electronic combined firework

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021126686.6U CN213090600U (en) 2020-06-17 2020-06-17 Manual electronic combined firework

Publications (1)

Publication Number Publication Date
CN213090600U true CN213090600U (en) 2021-04-30

Family

ID=75621073

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021126686.6U Active CN213090600U (en) 2020-06-17 2020-06-17 Manual electronic combined firework

Country Status (1)

Country Link
CN (1) CN213090600U (en)

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