Wave modulation device
By using a tuning device to generate high-frequency oscillations through central and peripheral crystals, the harmonic impact on the power grid caused by the concentrated use of household appliances is solved, thereby reducing harmonic currents and health hazards. This method is suitable for harmonic suppression of household appliances.
Patent Information
- Application Number
- CN202422777169.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-11-14
AI Technical Summary
Existing active power filters are bulky and unsuitable for home use, and require a power supply to operate, thus failing to effectively address the harmonic effects on the power grid when household appliances are used intensively.
A modulation device is used, which utilizes a central connecting wire and a modulation module, including a central crystal and peripheral crystals, to generate high-frequency oscillations through the piezoelectric effect, forming harmonic phenomena to affect the electric field and reduce the harmonic current injected into the power grid by household appliances.
It effectively reduces harmonic current injected into the power grid by household appliances, reduces neutral current overload in the power supply system, has a simple structure, is suitable for daily life, requires no power supply connection, and reduces health hazards.
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Figure CN223744384U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of harmonic, especially relates to a wave modulation device. BACKGROUND
[0002] Active power filter is through using current transformer to collect harmonic current on power system, then, through controller calculation and extraction of each harmonic current content, harmonic current instruction is generated, and then through power execution device, compensation current equal to harmonic current amplitude but opposite direction is generated, and compensation current is injected into power system, thereby offsetting harmonic current generated by nonlinear load. But the active power filter is large in size, not suitable for household or living place use, and needs to access power supply to normally operate, inconvenient for user daily life use, and only suitable for the connected power system to generate opposite compensation current to offset harmonic current generated by nonlinear load.
[0003] And in daily life, high-power semiconductor switching devices and various switching power supply products are used daily, such as TV, air conditioner, energy-saving lamp, dimmer, washing machine, microwave oven, etc., although the harmonic current injected into the power grid by each product is not large, but the number of these products is large, and the distribution is wide, and some household appliances will be used in some time period, such as TV, air conditioner, microwave oven, etc., thereby causing that in some time period, household appliances will make the harmonic current injected into the power grid cause harmonic problem of public power grid particularly prominent, which will cause the equipment connected to the power grid to be unable to work normally, and even cause failure, and also make the current of the neutral line of the power supply system overload, and affect the power transmission of the power supply system. UTILITY MODEL CONTENTS
[0004] In order to solve the defects in the prior art, the utility model provides a wave modulation device for solving the problem that the harmonic generated by the prior art daily household electrical appliances is injected into the power grid and affects power transmission.
[0005] The utility model solves the technical problems by adopting the following technical scheme:
[0006] A wave modulation device, comprising a center connecting wire and at least one wave modulation module, the wave modulation module comprising:
[0007] A top part;
[0008] A bottom part spaced from the top part;
[0009] A center crystal for generating piezoelectric effect, the center crystal being arranged between the top part and the bottom part;
[0010] A plurality of peripheral crystals for generating piezoelectric effect, each peripheral crystal being arranged between the top part and the bottom part, and the plurality of peripheral crystals being distributed around the center crystal.
[0011] a top center conductive sheet for conducting electricity, which is arranged on the top part and corresponds to the position of the center crystal and is in contact with the center crystal;
[0012] a plurality of top peripheral conductive sheets for conducting electricity, each of which is arranged on the top part, each of which corresponds to the position of a peripheral crystal and is in contact with the peripheral crystal, and two adjacent top peripheral conductive sheets are electrically connected by a first top wire;
[0013] a bottom center conductive sheet for conducting electricity, which is arranged on the bottom part and corresponds to the position of the center crystal and is in contact with the center crystal;
[0014] a plurality of bottom peripheral conductive sheets for conducting electricity, each of which is arranged on the bottom part, the first top wire is electrically connected with the first bottom wire through a first connecting wire, each of which corresponds to the position of a peripheral crystal and is in contact with the peripheral crystal, two adjacent bottom peripheral conductive sheets are electrically connected by a first bottom wire, and the bottom center conductive sheet is also electrically connected with the top center conductive sheet through a center connecting wire.
[0015] Further, the center connecting wire includes a second top wire having one end electrically connected with the top center conductive sheet, a second bottom wire having one end electrically connected with the bottom center conductive sheet, and a second connecting wire having two ends respectively connected with the second top wire and the second bottom wire;
[0016] The second top wire is arranged on the top part, the second bottom wire is arranged on the bottom part, the two ends of the second connecting wire are arranged close to the first top wire and the first bottom wire respectively, the second top wire and the second bottom wire are perpendicular to the first top wire, and the second top wire, the second bottom wire and the second connecting wire are perpendicular.
[0017] Further, the cross-sectional area of the peripheral crystal and the center crystal gradually increases and then gradually decreases from top to bottom, the middle of the bottom peripheral conductive sheet and the top peripheral conductive sheet is provided with a first via hole, the middle of the bottom center conductive sheet and the top center conductive sheet is provided with a second via hole, the upper and lower ends of the peripheral crystal are respectively arranged in the first via hole on the top peripheral conductive sheet and the first via hole on the bottom peripheral conductive sheet, and the upper and lower ends of the center crystal are respectively arranged in the second via hole on the top center conductive sheet and the second via hole on the bottom center conductive sheet;
[0018] The periphery of the first via hole is in contact with the peripheral crystal, and the periphery of the second via hole is in contact with the center crystal.
[0019] Further, the center crystal and the peripheral crystal are both regular octahedrons, the bottom peripheral conductive sheet, the top peripheral conductive sheet, the top center conductive sheet and the bottom center conductive sheet are all circular, the first via and the second via are both square, two opposite vertices on the center crystal are respectively located in the first via on the bottom center conductive sheet and the first via on the top center conductive sheet, and two opposite vertices on the peripheral crystal are respectively located in the second via on the bottom peripheral conductive sheet and the second via on the top peripheral conductive sheet.
[0020] Further, when the number of the wave modulation modules is one, the number of the first top conductive wires and the first bottom conductive wires is six, the six first top conductive wires are distributed in a regular hexagon, and the six first bottom conductive wires are distributed in a regular hexagon, and the number of the second connecting conductive wire, the second top conductive wire and the second bottom conductive wire is one.
[0021] Further, the number of the wave modulation modules is multiple, the first top conductive wires in two adjacent wave modulation modules are electrically connected, and the first bottom conductive wires in two adjacent wave modulation modules are electrically connected.
[0022] The top center conductive sheets on two adjacent wave modulation modules are connected by a third connecting conductive wire, and the bottom center conductive sheets on two adjacent wave modulation modules are connected by a fourth connecting conductive wire, and the number of the center connecting conductive wire is one, which is used to connect the top center conductive sheet in a wave modulation module and the bottom center conductive sheet in the wave modulation module.
[0023] Further, the peripheral crystal and the center crystal are both quartz crystals.
[0024] The bottom peripheral conductive sheet, the top peripheral conductive sheet, the bottom center conductive sheet and the top center conductive sheet are all copper sheets, and the first top conductive wire, the second top conductive wire, the first bottom conductive wire, the second bottom conductive wire, the first connecting conductive wire and the second connecting conductive wire are all copper wires.
[0025] Further, a plurality of first clamping claws are arranged on the top peripheral conductive sheet and the top center conductive sheet, a first limiting hole is arranged on the top part at a position corresponding to the first clamping claw, and one end of the first clamping claw is bent and pressed against the top part after penetrating through the first limiting hole; a plurality of second clamping claws are arranged on the bottom peripheral conductive sheet and the bottom center conductive sheet, a second limiting hole is arranged on the bottom part at a position corresponding to the second clamping claw, and one end of the second clamping claw is bent and pressed against the bottom part after penetrating through the first limiting hole.
[0026] The top peripheral conductive sheet and the top center conductive sheet are both located at the bottom of the top part, and the bottom peripheral conductive sheet and the bottom center conductive sheet are both located at the top of the bottom part.
[0027] Further, a plurality of support frames are arranged between the top part and the bottom part for spacing the top part and the bottom part.
[0028] Further, the top part comprises a top middle part, six top middle connecting rods and six top connecting rods sequentially connected to form a regular hexagon, one end of each of the top middle connecting rods is connected to the top middle part and the other end is connected to the top connecting rods perpendicularly, the first top conductive wires are arranged on the top connecting rods, the second top conductive wires are arranged on the top middle connecting rods, the top peripheral conductive sheets are arranged on the connection between two adjacent top connecting rods, and the top central conductive sheet is arranged on the top middle part.
[0029] The bottom part comprises a bottom middle part, six bottom middle connecting rods and six bottom connecting rods sequentially connected end to end, one end of each of the bottom middle connecting rods is connected to the bottom middle part and the other end is connected to the bottom connecting rods perpendicularly, the first bottom conductive wires are arranged on the bottom connecting rods, the second bottom conductive wires are arranged on the bottom middle connecting rods, the bottom peripheral conductive sheets are arranged on the connection between two adjacent bottom connecting rods, and the bottom central conductive sheet is arranged on the bottom middle part.
[0030] The support frame comprises a support column and upper and lower rods connected to both ends of the support column, a first limiting slot is arranged on the upper rod, a second limiting slot is arranged on the lower rod, the first and second limiting slots are both T-shaped slots, the second connecting conductive wires and the first connecting conductive wires are both arranged on the support column, and the second connecting conductive wires and the first connecting conductive wires are arranged at intervals, the top middle connecting rods and the top connecting rods are both partially arranged in the first limiting slot, and the bottom middle connecting rods and the bottom connecting rods are both partially arranged in the second limiting slot.
[0031] The utility model discloses beneficial effect is: the utility model discloses through first top wire, first bottom wire, first top conductive sheet, first bottom conductive sheet, center bottom conductive sheet, center top conductive sheet, center connection wire conductive, and cooperate with multiple peripheral crystal and center crystal use, make multiple peripheral crystal and / or center crystal produce piezoelectric effect and harmonic phenomenon to produce high frequency oscillation, form harmonic phenomenon to influence the electric field of periphery, to influence the generation and propagation of harmonic, to effectively reduce the harmonic current of household electrical appliances injection to the power grid, to effectively reduce the harmonic current of household electrical appliances injection to the power grid, prevent the harmonic problem of public power grid when household concentrated use, to reduce the current overload that neutral line of power supply system bears, reduce the influence of existing household electrical appliances to power supply system power transmission, and the structure of this embodiment is simple, and the volume is small, need not adopt and utilize current transformer gathers the harmonic on certain path again through controller calculation to generate compensation current and realize offset harmonic problem, applicable to the practicality in life routine. And due to pendulum effect, high frequency vibration can make surrounding microwave produce the field modulation reaction of same frequency resonance, make the harmonic of surrounding disharmonic and disorder low frequency gradually tend to approach high frequency and harmonic unified vibration frequency, then make the field domain of surrounding formation frequency consistent, harmonic unified waveband environment and energy field domain. Thus reduce the disharmonic stimulation of harmonic to the human body in field domain, keep stable frequency and state, then improve the adverse health hazards that disharmonic electromagnetic wave causes to human body, by this, can play the harmonic in the adjustment of surrounding environment. BRIEF DESCRIPTION OF DRAWINGS
[0032] In order to more clearly illustrate the technical scheme in the embodiment of the utility model, the following will be simply introduced to the drawing needed to be used in the embodiment description, the drawing in the following description is only some embodiments of the utility model, for the ordinary skilled person in the art, under the premise of not paying the creative labor, still can obtain other drawings according to these drawings.
[0033] Figure 1 It is the perspective view of the wave modulation module of the utility model;
[0034] Figure 2 It is the explosion view of the wave modulation module of the utility model;
[0035] Figure 3 It is Figure 2 The enlarged view of a area in;
[0036] Figure 4 It is Figure 2 The enlarged view of b area in;
[0037] Figure 5 It is the structural diagram of the support piece of the utility model;
[0038] Figure 6 It is the schematic diagram of multiple wave modulation modules of the utility model. DETAILED DESCRIPTION
[0039] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0040] Reference Figures 1-6 A wave modulation device in the embodiment.
[0041] The wave modulation device comprises a center connecting wire and at least one wave modulation module 100. The wave modulation module 100 comprises a top part 1, a bottom part 20 arranged in a spaced manner with the top part 1, a center crystal 5 for generating a piezoelectric effect, a plurality of peripheral crystals 4 for generating a piezoelectric effect, a top center conductive sheet 6 and a bottom center conductive sheet 30 for conducting electricity, and a plurality of top peripheral conductive sheets 3 and bottom peripheral conductive sheets 9 for conducting electricity. The center crystal 5 and the peripheral crystals 4 are arranged between the top part 1 and the bottom part 20, and the plurality of peripheral crystals 4 are distributed around the center crystal 5. The top center conductive sheet 6 is arranged on the top part 1 and is arranged in a position corresponding to the center crystal 5 and in contact with the center crystal 5. Each top peripheral conductive sheet 3 is arranged on the top part 1, and each top peripheral conductive sheet 3 is arranged in a position corresponding to a peripheral crystal 4 and in contact with the peripheral crystal 4, and two adjacent top peripheral conductive sheets 3 are electrically connected through a first top wire 2. The bottom center conductive sheet 30 is arranged on the bottom part 20 and is arranged in a position corresponding to the center crystal 5 and in contact with the center crystal 5. Each bottom peripheral conductive sheet 9 is arranged on the top part 1, and each bottom peripheral conductive sheet 9 is arranged in a position corresponding to a peripheral crystal 4 and in contact with the peripheral crystal 4, and two adjacent bottom peripheral conductive sheets 9 are electrically connected through a first bottom wire 10. The bottom center conductive sheet 30 is also electrically connected to the top center conductive sheet 6 through a center connecting wire 7, and the first top wire 2 is electrically connected to the first bottom wire 10 through a first connecting wire 40. Thus, the center connecting wire 7 and the center crystal 5 cooperate to form a circuit loop, and the first top wire 2, the first bottom wire 10, the first connecting wire 40 and the peripheral crystals 4 cooperate to form a circuit loop.
[0042] The embodiment is configured with a plurality of peripheral crystals 4 between the top part 1 and the bottom part 20, and the two ends or positions close to the two ends of each peripheral crystal 4 are respectively in contact with the bottom peripheral conductive sheet 9 and the top peripheral conductive sheet 3, the two adjacent top peripheral conductive sheets 3 are electrically connected through the first top lead 2, and the two adjacent bottom peripheral conductive sheets 9 are electrically connected through the first bottom lead 10. Therefore, when the first top lead 2, the top peripheral conductive sheet 3 on the top part 1, the first bottom lead 10 or the bottom peripheral conductive sheet 9 on the bottom part 20 are connected to the power supply (that is, the first top lead 2 is connected to the positive electrode, and the first bottom lead 10 is connected to the negative electrode; or, the first top lead 2 is connected to the negative electrode, and the first bottom lead 10 is connected to the positive electrode); or the top center conductive sheet 6, the bottom center conductive sheet 30 or the center connecting lead 7 are connected to the power supply (that is, the top center conductive sheet 6 is connected to the positive electrode, and the bottom center conductive sheet 30 is connected to the negative electrode; or, the bottom center conductive sheet 30 is connected to the negative electrode, and the top center conductive sheet 6 is connected to the positive electrode), the current passing through the peripheral crystal 4 and the center crystal 5 will produce a piezoelectric effect, causing the peripheral crystal 4 and the center crystal 5 to produce high-frequency oscillation and changes in electric field strength, forming harmonic phenomena to affect the surrounding electric field, to affect the generation and propagation of harmonics, and due to the pendulum effect, the high-frequency vibration can cause the surrounding microwave to produce a same-frequency resonance field reaction, making the surrounding inharmonic and chaotic low-frequency harmonics gradually tend to approach the high-frequency and harmonic unified vibration frequency, and then the surrounding field forms a frequency-consistent and harmonious unified waveband environment and energy field. Therefore, the harmonic stimulation to the human body in the field is reduced, the stable frequency and state are maintained, and then the adverse health hazards caused by inharmonic electromagnetic waves to the human body are improved. In this way, the harmonics in the surrounding environment can be adjusted to effectively reduce the harmonic current injected into the power grid by household appliances, prevent the harmonic problem caused by the concentrated use of household appliances to the public power grid, reduce the current overload borne by the neutral line of the power supply system, reduce the influence of existing household appliances on power transmission of the power supply system, and the structure of the embodiment is simple, small in size, and does not need to use a current transformer to collect harmonics on a certain path and then calculate compensation current through a controller to generate a compensation current to offset the harmonics. It is suitable for daily life.
[0043] The wave modulation device of the embodiment can also be used without being connected to the power supply, that is, the harmonics in the surrounding are cut by the first bottom lead 10, the second top lead 71 and the intermediate connecting lead to generate current by magnetic induction, which is then transmitted to the peripheral crystal 4 and the center crystal 5 to realize the piezoelectric effect and harmonic phenomena to affect the surrounding electric field, to affect the generation and propagation of harmonics, to realize the function of wave modulation, and to effectively reduce the harmonic current injected into the power grid by household appliances, to provide convenience for users, to save electric energy, and to prevent safety hazards caused by electricity. It is safer to use.
[0044] Furthermore, the center connecting wire 7 is arranged in different directions through the plurality of first top wires 2 or the plurality of first bottom wires 10 to cooperate with electromagnetic waves emitted in different directions, so that electromagnetic waves emitted in different directions can be cut by one or more of the center connecting wire 7, the first top wire 2, and the plurality of first bottom wires 10, and generate electric current, which cooperates with the peripheral crystal 4 and / or the center crystal 5 to affect the generation and propagation of harmonics.
[0045] In an embodiment, the center connecting wire 7 includes a second top wire 71 having one end electrically connected to the top center conductive sheet 6, a second bottom wire 73 having one end electrically connected to the bottom center conductive sheet 30, and a second connecting wire 72 having two ends respectively connected to the second top wire 71 and the second bottom wire 73. The second top wire 71 is arranged on the top part 1, the second bottom wire 73 is arranged on the bottom part 20, and the two ends of the second connecting wire 72 are arranged close to the first top wire 2 and the first bottom wire 10, respectively. By using the second top wire 71 and the second bottom wire 73 to cut electromagnetic waves at different angles from the second connecting wire 72, which is different from the first top wire 2 and the first bottom wire 10, the center crystal 5 and the peripheral crystal 4 can effectively improve the generation and propagation of harmonics in different angles.
[0046] In other embodiments, the center connecting wire 7 can also be composed of two conductive wires, one electric wire, or the like number of conductive wires, and can also cut electromagnetic waves at different angles from the first top wire 2 and the first bottom wire 10.
[0047] In an embodiment, the cross-sectional area of the peripheral crystal 4 and the central crystal 5 gradually increases and then gradually decreases from top to bottom, the middle of the bottom peripheral conductive sheet 9 and the top peripheral conductive sheet 3 is provided with a first via hole 31, the middle of the bottom central conductive sheet 30 and the top central conductive sheet 6 is provided with a second via hole 61, the upper and lower ends of the peripheral crystal 4 are placed in the first via hole 31 on the top peripheral conductive sheet 3 and the first via hole 31 on the bottom peripheral conductive sheet 9, and the upper and lower ends of the central crystal 5 are placed in the second via hole 61 on the top central conductive sheet 6 and the second via hole 61 on the bottom central conductive sheet 30. The periphery of the first via hole 31 is in contact with the peripheral crystal 4, and the periphery of the second via hole 61 is in contact with the central crystal 5. By providing the first via hole 31, the contact area of the peripheral crystal 4 with the bottom peripheral conductive sheet 9 and the top peripheral conductive sheet 3 can be increased, the stability of current transmission of the peripheral crystal 4 with the bottom peripheral conductive sheet 9 and the top peripheral conductive sheet 3 can be improved, and the piezoelectric effect and harmonic phenomenon of the peripheral crystal 4 can be effectively generated. By providing the second via hole 61, the contact area of the central crystal 5 with the bottom central conductive sheet 30 and the top central conductive sheet 6 can be increased, the stability of current transmission of the central crystal 5 with the bottom central conductive sheet 30 and the top central conductive sheet 6 can be improved, and the piezoelectric effect and harmonic phenomenon of the central crystal 5 can be effectively generated, and the generation and propagation of the harmonic can be improved.
[0048] In an embodiment, the central crystal 5 and the peripheral crystal 4 are both regular octahedrons, the bottom peripheral conductive sheet 9, the top peripheral conductive sheet 3, the top central conductive sheet 6 and the bottom central conductive sheet 30 are all circular, the first via hole 31 and the second via hole 61 are both square, two opposite vertices on the central crystal 5 are placed in the first via hole 31 on the bottom central conductive sheet 30 and the first via hole 31 on the top central conductive sheet 6, and two opposite vertices on the peripheral crystal 4 are placed in the second via hole 61 on the bottom peripheral conductive sheet 9 and the second via hole 61 on the top peripheral conductive sheet 3, that is, the electric axis direction of the central crystal 5 and the peripheral crystal 4 extends along the direction of the distance between the first via hole 31 and the second via hole 61. At this time, the piezoelectric effect generated by the central crystal 5 and the peripheral crystal 4 under the action of the current force is the strongest, that is, the harmonic phenomenon is the strongest, so that the central crystal 5 and the peripheral crystal 4 can effectively generate high-frequency oscillation, and the effect of adjusting the wave can be achieved by using high-frequency vibration, and the generation and propagation of the harmonic can be affected.
[0049] In one embodiment, when there is only one tuning module 100, there are six first top wires 2 and six first bottom wires 10, arranged in a regular hexagonal pattern. There is also one second connecting wire 72, one second top wire 71, and one second bottom wire 73. This allows the first top wires 2 and 10 to cut electromagnetic waves in more directions, enabling the peripheral crystal 4 and the central crystal 5 to generate high-frequency oscillations driven by the current generated by the cutting electromagnetic waves through the first top wires 2 and 10.
[0050] In one embodiment, the number of tuning modules 100 is multiple, such as... Figure 6 As shown, the first top conductor 2 in two adjacent tuning modules 100 are electrically connected, and the first bottom conductor 10 in two adjacent tuning modules 100 are electrically connected. The top center conductive plate 6 on two adjacent tuning modules 100 is connected by a third connecting conductor 110, and the bottom center conductive plates on two adjacent tuning modules are connected by a fourth connecting conductor (not shown in the figure). There is one center connecting conductor 7, which is used to connect the top center conductive plate 6 in one tuning module 100 to the bottom center conductive plate 30 in the same tuning module 100. The second top conductor 71 and the second bottom conductor 10 in the center connecting conductor 7 can be used to connect to a power source. When the tuning module 100 is hexagonal, and the six first top conductors 2 and six first bottom conductors 10 in each tuning module 100 are all distributed in a regular hexagon, one first top conductor 2 and one first bottom conductor 10 are shared by two adjacent tuning modules 100. Based on this, the user can configure an appropriate number of tuning modules 100 according to the magnitude of the harmonic current in order to effectively eliminate the harmonic problem.
[0051] In one embodiment, both the peripheral crystal 4 and the central crystal 5 can be quartz crystals, or they can be piezoelectric materials such as barium titanate or tartrate.
[0052] In one embodiment, the bottom peripheral conductive sheet 9, the top peripheral conductive sheet 3, the bottom center conductive sheet 30, and the top center conductive sheet 6 are all copper sheets, specifically, preferably T2 copper sheets. The first top wire 2, the second top wire 71, the first bottom wire 10, the second bottom wire 73, the first connecting wire 40, and the second connecting wire 72 are all copper wires. By using copper wires and copper sheets, conductivity can be effectively improved, thereby reducing energy consumption on the bottom peripheral conductive sheet 9, the top peripheral conductive sheet 3, the bottom center conductive sheet 30, the top center conductive sheet 6, the first top wire 2, the second top wire 71, the first bottom wire 10, the second bottom wire 73, the first connecting wire 40, and the second connecting wire 72. This allows the peripheral crystal 4 and the center crystal 5 to generate a stronger piezoelectric effect, effectively increasing the oscillation frequency of the peripheral crystal 4 and the center crystal 5.
[0053] In an embodiment, the top peripheral conductive sheet 3 and the top central conductive sheet 6 are each provided with a plurality of first clamping claws 32, the top part 1 is provided with first limiting holes 141 at positions corresponding to the first clamping claws 32, and one end of the first clamping claw 32 is bent and pressed against the top part 1 after passing through the first limiting hole 141. In this way, the top peripheral conductive sheet 3 and the top central conductive sheet 6 can be fixed on the top part 1. Specifically, the number of first clamping claws 32 on the top peripheral conductive sheet 3 is three, and they are evenly distributed to stably fix the top peripheral conductive sheet 3 on the top part 1, and the first top lead 2 is fixed on the first clamping claw 32, that is, the first clamping claw 32 can facilitate the fixation of the first top lead 2. In addition, the six top connecting rods 11 are arranged in a regular hexagon, that is, the included angle between two adjacent top connecting rods 11 is 120°, and the included angle between two adjacent first clamping claws 32 is also 120°, so that two adjacent first top leads 2 are respectively distributed on two adjacent top connecting rods 11.
[0054] The bottom peripheral conductive sheet 9 and the bottom central conductive sheet 30 are each provided with a plurality of second clamping claws 92, the bottom part 20 is provided with second limiting holes 34 at positions corresponding to the second clamping claws 92, and one end of the second clamping claw 92 is bent and pressed against the bottom part 20 after passing through the first limiting hole 141. In this way, the bottom peripheral conductive sheet 9 and the bottom central conductive sheet 30 can be fixed on the bottom part 20. Specifically, the number of first clamping claws 32 on the bottom peripheral conductive sheet 9 is three, and they are evenly distributed to stably fix the bottom peripheral conductive sheet 9 on the bottom part 20, and the first bottom lead 10 is fixed on the second clamping claw 92, that is, the second clamping claw 92 can facilitate the fixation of the first bottom lead 10. In addition, the six bottom connecting rods 21 are arranged in a regular hexagon, that is, the included angle between two adjacent bottom connecting rods 21 is 120°, and the included angle between two adjacent second clamping claws 92 is also 120°, so that two adjacent first bottom leads 10 are respectively distributed on two adjacent bottom connecting rods 21.
[0055] In an embodiment, the top peripheral conductive sheet 3 and the top central conductive sheet 6 are both located at the bottom of the top part 1, and the bottom peripheral conductive sheet 9 and the bottom central conductive sheet 30 are both located at the top of the bottom part 20. That is, the top peripheral conductive sheet 3, the top central conductive sheet 6, the bottom peripheral conductive sheet 9 and the bottom central conductive sheet 30 are all located between the top part 1 and the bottom part 20. In this way, the top peripheral conductive sheet 3, the top central conductive sheet 6, the bottom peripheral conductive sheet 9 and the bottom central conductive sheet 30 can be prevented from being scratched by external products, thereby protecting the top peripheral conductive sheet 3, the top central conductive sheet 6, the bottom peripheral conductive sheet 9 and the bottom central conductive sheet 30, and increasing the service life of the wave modulation device of the embodiment. Of course, in other embodiments, the top peripheral conductive sheet 3 and the top central conductive sheet 6 can be arranged at the top of the top part 1, and the bottom peripheral conductive sheet 9 and the bottom central conductive sheet 30 are both located at the bottom of the bottom part 20.
[0056] In an embodiment, a plurality of support frames 8 are arranged between the top part 1 and the bottom part 20 to separate the top part 1 and the bottom part 20, and the top part 1 and the bottom part 20 are arranged in a spaced manner by the support frames 8.
[0057] In an embodiment, the top part 1 includes a top intermediate part 13, six top intermediate connecting rods 12 and six top connecting rods 11 connected in sequence to form a regular hexagon, so that the top part 1 has a benzene ring structure. One end of each top intermediate connecting rod 12 is connected to the top intermediate part 13, and the other end is connected perpendicularly to the top connecting rod 11. The first top conductive wire 2 is arranged on the top connecting rod 11, the second top conductive wire 71 is arranged on the top intermediate connecting rod 13, the top peripheral conductive sheet 3 is arranged at the connection between two adjacent top connecting rods 11, and the top central conductive sheet 6 is arranged on the top intermediate part 13. The bottom part 20 includes a bottom intermediate part 23, six bottom intermediate connecting rods 22 and six bottom connecting rods 21 connected in sequence end to end. One end of each bottom intermediate connecting rod 22 is connected to the bottom intermediate part 23, and the other end is connected perpendicularly to the bottom connecting rod 21. The first bottom conductive wire 10 is arranged on the bottom connecting rod 21, the second bottom conductive wire 73 is arranged on the bottom central connecting rod 22, the bottom peripheral conductive sheet 9 is arranged at the connection between two adjacent bottom connecting rods 21, and the bottom central conductive sheet 30 is arranged on the bottom intermediate part 23.
[0058] The support frame 8 includes a support column 81, an upper rod 82 and a lower rod 83 connected to both ends of the support column 81. The upper rod 82 is provided with a first limiting slot 821, and the lower rod 83 is provided with a second limiting slot 831. The first limiting slot 821 and the second limiting slot 831 are both T-shaped slots. The second connecting conductive wire 72 is arranged on the support column 81. The top intermediate connecting rod 12 and the top connecting rod are arranged in the first limiting slot 821, and the bottom intermediate connecting rod 22 and the bottom connecting rod are arranged in the second limiting slot 831.
[0059] Through the above structure, the second top lead 71 is perpendicular to the first top lead 2, the second bottom lead 73 is perpendicular to the first bottom lead 10, and the second connecting lead 72 is perpendicular to the first top lead 2, the second top lead 71, the first bottom lead 10 and the second bottom lead 73, so that the first top lead 2, the second top lead 71, the first bottom lead 10 and the second bottom lead 73 can cut electromagnetic waves in any direction in cooperation with the second connecting lead 72, so that the surrounding crystal 4 and the center crystal 5 can generate high-frequency oscillation under the action of any electromagnetic wave, so that the wave modulation device of the embodiment can interfere with the surrounding field microwave. Due to the pendulum effect, the high-frequency vibration can make the surrounding microwave produce a field modulation reaction of the same frequency resonance, so that the surrounding inharmonic and chaotic low-frequency harmonics gradually tend to approach the vibration frequency of high-frequency harmonic unification, and then the surrounding field forms a wave band environment and energy field with consistent frequency and harmonic unification. Thus, the inharmonic stimulation of harmonics to the human body in the field is reduced, the stable frequency and state are maintained, and then the adverse health hazards caused by inharmonic electromagnetic waves to the human body are improved.
[0060] And by using the T-shaped first limiting groove 821, the support member can be effectively in full contact with the top connecting rod 11 and the top intermediate connecting rod 12, so as to strengthen the stability of the connection between the top connecting rod 11 and the top intermediate connecting rod 12, and strengthen the stability of the structure of the top part 1. By using the T-shaped second limiting groove 831, the support member can be effectively in full contact with the bottom connecting rod 21 and the bottom intermediate connecting rod 22, so as to strengthen the stability of the connection between the bottom connecting rod 21 and the bottom intermediate connecting rod 22, and strengthen the stability of the structure of the bottom part 20. And the strength of the support frame 8 supporting the top part 1 and the bottom part 20 is strengthened, the stability of the structure of the wave modulation device of the embodiment is effectively improved, and the service life of the wave modulation device of the embodiment is increased.
[0061] In an embodiment, the upper rod 82 and the lower rod 83 are provided with a reinforcing part 84 between the support column 81, and the reinforcing part 84 can effectively improve the strength of the support frame 8, increase the support strength of the support frame 8, and improve the service life of the wave modulation device of the embodiment.
[0062] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directional indications will also change accordingly.
[0063] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the technical features or implying the number of the technical features indicated. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" throughout the text includes three schemes, taking A and / or B as an example, including A technical scheme, B technical scheme, and A and B technical scheme that meet at the same time; in addition, the technical schemes of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, when the combination of technical schemes appears contradictory or cannot be realized, it should be considered that the combination of technical schemes does not exist, nor is it within the scope of protection required by the present application.
[0064] The above is only the preferred embodiment of the present application, and does not limit the patent range of the present application, any equivalent structural transformation made by using the content of the present application specification and drawings, or directly / indirectly applied in other related technical fields is included in the patent protection range of the present application.
Claims
1. A wave modulating device, characterized by The center connecting wire and at least one wave modulation module, the wave modulation module comprises: a top part; a bottom part arranged in a spaced manner with the top part; a center crystal for generating piezoelectric effect, the center crystal is arranged between the top part and the bottom part; a plurality of peripheral crystals for generating piezoelectric effect, each of the peripheral crystals is arranged between the top part and the bottom part, and the plurality of peripheral crystals are distributed around the center crystal; a top center conductive sheet for conducting electricity, the top center conductive sheet is arranged on the top part and is arranged in correspondence with the position of the center crystal and in contact with the center crystal; a plurality of top peripheral conductive sheets for conducting electricity, each of the top peripheral conductive sheets is arranged on the top part, each of the top peripheral conductive sheets is arranged in correspondence with the position of a peripheral crystal and in contact with the peripheral crystal, and two adjacent top peripheral conductive sheets are electrically connected through a first top wire; a bottom center conductive sheet for conducting electricity, the bottom center conductive sheet is arranged on the bottom part and is arranged in correspondence with the position of the center crystal and in contact with the center crystal; a plurality of bottom peripheral conductive sheets for conducting electricity, each of the bottom peripheral conductive sheets is arranged on the bottom part, each of the bottom peripheral conductive sheets is arranged in correspondence with the position of a peripheral crystal and in contact with the peripheral crystal, and two adjacent bottom peripheral conductive sheets are electrically connected through a first bottom wire, the bottom center conductive sheet is also electrically connected with the top center conductive sheet through a center connecting wire, and the first top wire is electrically connected with the first bottom wire through a first connecting wire.
2. A modulating device according to claim 1, characterized in that The center connecting wire comprises a second top wire having one end electrically connected with the top center conductive sheet, a second bottom wire having one end electrically connected with the bottom center conductive sheet, and a second connecting wire having two ends respectively connected with the second top wire and the second bottom wire; The second top wire is arranged on the top part, the second bottom wire is arranged on the bottom part, and the two ends of the second connecting wire are arranged close to the first top wire and the first bottom wire respectively.
3. A modulating device according to claim 2, characterised in that The cross-sectional area of the peripheral crystal and the center crystal gradually increases and then gradually decreases from top to bottom, first vias are arranged in the middle of the bottom peripheral conductive sheet and the top peripheral conductive sheet, second vias are arranged in the middle of the bottom center conductive sheet and the top center conductive sheet, the upper and lower ends of the peripheral crystal are respectively located in the first vias on the top peripheral conductive sheet and the first vias on the bottom peripheral conductive sheet, and the upper and lower ends of the center crystal are respectively located in the second vias on the top center conductive sheet and the second vias on the bottom center conductive sheet; The periphery of the first via is in abutment with the peripheral crystal, and the periphery of the second via is in abutment with the center crystal.
4. A modulating device according to claim 3, characterised in that The center crystal and the peripheral crystal are both regular octahedrons, the bottom peripheral conductive sheet, the top peripheral conductive sheet, the top center conductive sheet and the bottom center conductive sheet are all circular, the first via and the second via are both square, two opposite vertices on the center crystal are respectively located in the first via on the bottom center conductive sheet and the first via on the top center conductive sheet, and two opposite vertices on the peripheral crystal are respectively located in the second via on the bottom peripheral conductive sheet and the second via on the top peripheral conductive sheet.
5. A modulating device according to any one of claims 2-4, characterised in that When the number of the wave modulation modules is one, the number of the first top conductive lines and the first bottom conductive lines is six, the six first top conductive lines are distributed in a regular hexagon, and the six first bottom conductive lines are distributed in a regular hexagon, and the number of the second connecting conductive line, the second top conductive line and the second bottom conductive line is one.
6. A modulating device according to any one of claims 1-4, characterized in that The number of the wave modulation modules is multiple, the first top conductive lines in two adjacent wave modulation modules are electrically connected, and the first bottom conductive lines in two adjacent wave modulation modules are electrically connected. The top center conductive sheets on two adjacent wave modulation modules are connected by a third connecting conductive line, and the bottom center conductive sheets on two adjacent wave modulation modules are connected by a fourth connecting conductive line; the number of the center connecting conductive line is one, which is used to connect the top center conductive sheet in a wave modulation module and the bottom center conductive sheet in the wave modulation module.
7. A wave modulating device according to any one of claims 2-4, characterized in that The peripheral crystal and the center crystal are both quartz crystals. The bottom peripheral conductive sheet, the top peripheral conductive sheet, the bottom center conductive sheet and the top center conductive sheet are all copper sheets; and the first top conductive line, the second top conductive line, the first bottom conductive line, the second bottom conductive line, the first connecting conductive line and the second connecting conductive line are all copper wires.
8. A modulator as claimed in any one of claims 2 to 4, wherein A plurality of first clamping claws are arranged on the top peripheral conductive sheet and the top center conductive sheet, a first limiting hole is formed in the top part at a position corresponding to the first clamping claw, and one end of the first clamping claw is bent and pressed against the top part after penetrating through the first limiting hole; a plurality of second clamping claws are arranged on the bottom peripheral conductive sheet and the bottom center conductive sheet, a second limiting hole is formed in the bottom part at a position corresponding to the second clamping claw, and one end of the second clamping claw is bent and pressed against the bottom part after penetrating through the second limiting hole. The top peripheral conductive sheet and the top center conductive sheet are located at the bottom of the top part, and the bottom peripheral conductive sheet and the bottom center conductive sheet are located at the top of the bottom part.
9. A modulator as claimed in claim 2, wherein A plurality of support frames are arranged between the top part and the bottom part to separate the top part from the bottom part.
10. A modulating device according to claim 9, characterised in that The top part includes a top middle part, six top middle connecting rods and six top connecting rods connected in sequence to form a regular hexagon, one end of each top middle connecting rod is connected to the top middle part, and the other end is connected perpendicularly to the top connecting rod, the first top conductive line is arranged on the top connecting rod, the second top conductive line is arranged on the top center connecting rod, the top peripheral conductive sheet is located at the connection between two adjacent top connecting rods, and the top center conductive sheet is located on the top middle part. The bottom part comprises a bottom middle part, six bottom middle connecting rods and six bottom connecting rods connected in sequence end to end, one end of each bottom middle connecting rod is connected to the bottom middle part and the other end is connected perpendicularly to the bottom connecting rod, the first bottom conductor is arranged on the bottom connecting rod, the second bottom conductor is arranged on the bottom middle connecting rod, the bottom peripheral conductive sheet is arranged on the connection between two adjacent bottom connecting rods, and the bottom central conductive sheet is arranged on the bottom middle part. The support frame comprises a support column, an upper rod and a lower rod connected to two ends of the support column, a first limiting slot is formed in the upper rod, a second limiting slot is formed in the lower rod, the first limiting slot and the second limiting slot are both T-shaped slots, the second connecting conductor and the first connecting conductor are both arranged on the support column, and the second connecting conductor and the first connecting conductor are arranged at intervals; the top middle connecting rod and the top connecting rod are both partially arranged in the first limiting slot, and the bottom middle connecting rod and the bottom connecting rod are both partially arranged in the second limiting slot.