Skin beauty device equipped with sound wave vibration and electric perforation method

KR103003597B1Active Publication Date: 2026-08-12EM TECH CO LTD
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Patent Information

Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-04-24
Publication Date
2026-08-12

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Abstract

According to one aspect of the present invention, a skin beauty device equipped with a sound wave vibration and electroporation method may be provided, comprising a head portion that contacts the skin of a subject to cause electroporation, wherein the head portion comprises: a silicone body; a plurality of EP positive pads installed around the periphery of the front portion of the silicone body; an EP negative pad installed in the center of the front portion of the silicone body; a dispensing device portion installed in the inner center of the silicone body to dispense a preparation through the EP negative pad; and a sound wave generating device installed inside the silicone body, wherein the silicone body comprises: a first embossed pattern formed to attach the EP positive pad to the front portion of the body; a second embossed pattern formed to attach the EP negative pad to the center of the front portion of the body; and a third embossed pattern formed to electrically separate the EP positive pad and the EP negative pad to the front portion of the body.
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Description

Technology Field

[0001] The present invention relates to a skin beauty device equipped with sound wave vibration and an electroporation method, and more specifically, to a skin beauty device equipped with sound wave vibration and an electroporation method that simultaneously applies an electroporation method and sound wave vibration stimulation to improve the penetration efficiency of cosmetics into the skin. Background Technology

[0002] In general, cell membranes perform the essential function of separating molecular substances from the external environment. Cell membranes are composed of phospholipids, which self-assemble into highly insulated structures; thus, a significant energy barrier exists against electrically stimulated ion transport.

[0003] However, the phospholipid matrix can be disrupted by a strong external electric field. That is, a strong external electric field increases electrical conductivity and diffusion permeability, which is called electroporation (EP).

[0004] Through such electroporation, aqueous pores are formed in the cell membranes of the skin, etc. In other words, when electrical stimulation is applied to the skin, pores are formed, and this is called electroporation.

[0005] By utilizing this phenomenon, a cosmetic product is applied to the skin and then electroporated to allow the cosmetic product to penetrate the skin more easily, thereby achieving a cosmetic effect.

[0006] However, in the case of the conventional technology described above, since the penetration of cosmetics into the skin was achieved solely through electroporation, there was a problem in that the penetration efficiency was low and consequently, the cosmetic effect was also reduced.

[0007] Therefore, it is necessary to develop technology that can solve such problems. Prior art literature

[65535] Korean Patent Publication No. 10-2323570 (2021.11.08.) The problem to be solved

[0008] The technical problem that the present invention aims to solve is to provide a skin beauty device equipped with sound wave vibration and electroporation methods, which improves the penetration efficiency of cosmetics into the skin by simultaneously applying electroporation and sound wave vibration stimulation.

[0009] Another objective of the present invention is to provide a skin beauty device equipped with sound wave vibration and an electroporation method, wherein primary sound wave vibrations generated by a sound wave generator are converted into fine secondary vibrations by passing them through a medium and transmitted to an EP positive pad, so that the fine vibrations can be transmitted to a subject through skin contact, and the secondary fine vibrations promote the absorption of cosmetics without irritating the subject's skin.

[0010] Another objective of the present invention is to provide a skin beauty device equipped with sound wave vibration and electroporation methods, which offers excellent usability because the vibration stimulation ultimately delivered to the subject is gentle and does not cause discomfort to the subject, allows the EP positive pad and EP negative pad to provide a wide skin contact surface, and enables the cushioning effect of the silicone body and micro-vibrations based on the thin plate structure to be efficiently delivered to the subject's skin surface.

[0011] The technical problems of the present invention are not limited to those mentioned above, and other unmentioned technical problems will be clearly understood by those skilled in the art from the description below. means of solving the problem

[0012] According to one aspect of the present invention for solving the above technical problem, a skin beauty device equipped with a sound wave vibration and electroporation method, comprising a head portion that contacts the skin of a subject to cause electroporation, wherein the head portion comprises: a silicone body; a plurality of EP positive pads installed around the perimeter of the front portion of the silicone body; an EP negative pad installed in the center of the front portion of the silicone body; a dispensing device portion installed in the inner center of the silicone body to dispense a preparation through the EP negative pad; and a sound wave generating device installed inside the silicone body.

[0013] A skin beauty device equipped with sound wave vibration and electroporation methods may be provided, characterized in that the above silicone body comprises: a first embossed pattern formed to attach an EP positive pad to the front of the body; a second embossed pattern formed to attach an EP negative pad to the center of the front of the body; and a third embossed pattern formed to electrically separate the EP positive pad and the EP negative pad to the front of the body.

[0014] In addition, the EP anode pad is manufactured in a flat shape that is fan-shaped with a wide outer edge and a narrow inner edge, a first border is formed along the outer edge of the fan shape, the first border is folded to wrap around the side border of the first embossed pattern, and a first boss can be formed on the back surface of the EP anode pad.

[0015] In addition, the EP cathode pad is a circular flat plate, a second edge is formed along the outer circumference of the disc shape, the second edge is folded to wrap around the side edge of the second embossed pattern, and a second boss can be formed on the back surface of the EP cathode pad.

[0016] In addition, the second bosses can be fixedly coupled to the silicone body side by passing through the second boss hole formed in the second embossed pattern and fastening it with a fastening flange and a bolt fastening member.

[0017] In addition, the sound wave generating device may include a base plate; a plurality of oscillator modules mounted on the base plate; and a diaphragm installed on the front of the oscillator modules to amplify sound wave vibrations.

[0018] In addition, the base plate may have a plurality of sound wave mounting parts and a plurality of third bosses formed around the outer circumference of the circular plate body, and a fourth discharge hole formed in the center where a discharge device part is located.

[0019] Additionally, an oscillator module for generating sound waves is inserted into the sound wave mounting portion, and the third bosses are axially coupled to the first bosses formed on the EP positive pads, and the sound wave mounting portion is formed between the third bosses and is formed in a number corresponding to the number of EP positive pads, and one oscillator module is mounted in each sound wave mounting portion to generate sound waves, and the sound waves generated from each oscillator module can vibrate each individual EP positive pad.

[0020] In addition, the second bosses can be axially coupled with a diaphragm mounted on the upper part of the third bosses.

[0021] In addition, the above diaphragm is configured such that the diaphragm bodies are connected by a bridge, and each of the diaphragm bodies is installed to be in contact with an oscillator module, and the sound waves amplified through the diaphragm can be transmitted to the EP positive pad via the receiving space (first medium) and the silicone body body (second medium) of the silicone body. Effects of the invention

[0022] As described above, the skin beauty device equipped with sound wave vibration and electroporation methods according to an embodiment of the present invention can provide the effect of improving the penetration efficiency of cosmetics into the skin by simultaneously applying electroporation and sound wave vibration stimulation.

[0023] In addition, the present invention converts primary sound wave vibrations generated by a sound wave generator into fine secondary vibrations by passing them through an air medium and a silicone medium and transmitting them to an EP anode pad, thereby allowing the fine vibrations to be transmitted to a subject through skin contact, and the secondary fine vibrations can provide the effect of promoting the absorption of cosmetics without irritating the subject's skin.

[0024] Furthermore, the present invention provides excellent usability because the vibration stimulation ultimately delivered to the subject is gentle, so the subject does not feel any aversion; it enables the EP positive and negative pads to provide a wide skin contact surface; and has the effect of efficiently delivering the cushioning effect of the silicone body and micro-vibrations to the subject's skin surface due to the thin plate structure. Brief explanation of the drawing

[0025] FIG. 1 is a perspective view illustrating the head portion of a skin beauty device according to one embodiment of the present invention. FIG. 2 is an exploded perspective view illustrating the head portion of a skin beauty device according to one embodiment of the present invention. FIG. 3 is a cross-sectional view illustrating the head portion of a skin beauty device according to one embodiment of the present invention. FIG. 4 is a layout diagram of a sound wave generating device of a skin beauty device according to one embodiment of the present invention. Specific details for implementing the invention

[0026] The advantages and features of the present invention and the methods for achieving them will become clear by referring to the embodiments described below in detail together with the accompanying drawings. However, the present invention is not limited to the embodiments disclosed below but may be implemented in various different forms. These embodiments are provided merely to ensure that the disclosure of the present invention is complete and to fully inform those skilled in the art of the scope of the invention, and the present invention is defined only by the scope of the claims. Throughout the specification, the same reference numerals refer to the same components.

[0027] "And / or" includes each of the mentioned items and all combinations of one or more.

[0028] The terms used herein are for describing embodiments and are not intended to limit the invention. In this specification, the singular form includes the plural form unless specifically stated otherwise in the text. As used herein, "comprising" and / or "comprising" does not exclude the presence or addition of one or more other components, steps, actions, and / or elements to the mentioned components, steps, actions, and / or elements.

[0029] Furthermore, throughout the specification, when a part is described as being "connected" to another part, this includes not only cases where they are "directly connected," but also cases where they are "indirectly" or "electrically connected" with other members or elements in between.

[0030] Additionally, throughout the specification, the description that each layer (film), region, pattern, or structure is formed "on" or "under" the substrate, each layer (film), region, pad, or pattern includes both direct formation and formation through another layer. The criteria for "on" or "under" each layer are described based on the drawings.

[0031] Furthermore, expressions such as 'first, second,' etc., are used solely to distinguish multiple compositions and do not limit the order or other characteristics between the compositions.

[0032] Furthermore, the flowcharts illustrated in the drawings are merely illustrative steps to obtain the most desirable results in carrying out the present invention, and it is obvious that other steps may be added or some steps may be deleted.

[0033] Unless otherwise defined, all terms used in this specification (including technical and scientific terms) may be used in a meaning commonly understood by those skilled in the art to which the present invention pertains. Additionally, terms defined in commonly used dictionaries are not to be interpreted ideally or excessively unless explicitly and specifically defined otherwise.

[0034] FIG. 1 is a perspective view illustrating the head portion of a skin beauty device according to one embodiment of the present invention, FIG. 2 is an exploded perspective view illustrating the head portion of a skin beauty device according to one embodiment of the present invention, FIG. 3 is a cross-sectional view illustrating the head portion of a skin beauty device according to one embodiment of the present invention, and FIG. 4 is a layout diagram of a sound wave generating device of a skin beauty device according to one embodiment of the present invention.

[0035] Referring to FIGS. 1 to 4, the configuration of a head portion of a skin beauty device according to an embodiment of the present invention is disclosed.

[0036] The head portion (100) may be provided with a configuration that applies electric perforation and sound wave vibration by contacting the skin of the subject.

[0037] The head unit (100) may largely include a silicone body (110), an EP positive pad (120), an EP negative pad (130), a discharge unit (140), and a sound wave generating unit (150).

[0038] The above silicone body (110) can provide a disc-shaped body.

[0039] A first embossed pattern (111) for attaching an EP positive pad (120) may be formed on the front surface of the body. The first embossed pattern (111) may be a structure that protrudes a certain height from the front surface of the body and may be in the form of a plurality of them arranged at equal intervals around the circumferential perimeter.

[0040] At this time, the outer shape of the first embossed pattern (111) can be manufactured to have the same shape as the EP positive pad (120). The first embossed pattern (111) may be a fan shape with a wide outer edge and a narrow inner edge.

[0041] A first boss hole (111a) may be formed in the first embossed pattern (111). The first boss hole (111a) may be penetrated by a first boss (123) formed in the EP positive pad (120).

[0042] The EP positive pad (120) coupled to the first embossed pattern (111) can be provided by processing a metal material containing any one of SUS, Al, Zn, or an alloy thereof, or a material having conductivity through plastic plating into a thin plate shape.

[0043] Regarding the external shape of the EP anode pad (120) described above, it may have a flat shape that is fan-shaped with a wide outer edge and a narrow inner edge. At this time, a first border (121) may be formed along the outer edge of the fan shape of the EP anode pad (120). The first border (121) may be in a folded shape to wrap around the side border of the first embossed pattern (111).

[0044] A first boss (123) may be formed on the back side of the above EP positive pad (120). The first boss (123) is in the form of a column protruding a certain length, and a female screw tap capable of bolt fastening may be formed on the column.

[0045] At least one or more of the first bosses (123) may be formed. FIG. 2 illustrates an example in which two first bosses (123) are formed on each side of the fan shape of the EP positive pad (120), but this is not limited thereto, and one or more may be freely formed.

[0046] Likewise, FIG. 2 illustrates an example in which five EP positive pads (120) are formed at equal intervals along the circumferential direction of the silicone body (110), but this is not limited thereto and the number of installations can be freely determined.

[0047] A second embossed pattern (113) for attaching an EP negative pad (130) may be formed in the front center of the above silicone body (110). The second embossed pattern (113) may be a disc-shaped structure protruding a certain height from the front center of the body.

[0048] At this time, the external shape of the second embossed pattern (113) can be manufactured to have the same shape as the shape of the EP negative pad (130).

[0049] A second boss hole (113b) may be formed in the second embossed pattern (113). The second boss hole (113b) may be penetrated by the second boss (133) formed in the EP negative pad (130).

[0050] The EP negative pad (130) coupled to the second embossed pattern (113) can be provided by processing a metal material containing any one of SUS, Al, Zn, or an alloy thereof, or a material having conductivity through plastic plating into a thin plate shape.

[0051] At this time, a first discharge hole (113a) may be formed in the center of the second embossed pattern (113). A nozzle of a discharge device part (140) for discharging a formulation such as a cosmetic product may be connected to the first discharge hole (113a) to provide a passage for discharging the cosmetic product.

[0052] To describe the external shape of the EP negative pad (130), the EP negative pad (130) may be in the form of a circular flat plate. At this time, a second border (132) may be formed along the circular outer periphery of the EP negative pad (130). The second border (132) may be in a folded shape to wrap around the side border of the second embossed pattern (113).

[0053] A second boss (133) may be formed on the back side of the EP negative pad (130). The second boss (133) is in the form of a column protruding a certain length, and a female screw tap capable of bolt fastening may be formed on the column.

[0054] At least one or more of the second bosses (133) may be formed. FIG. 2 illustrates an example in which four second bosses (133) are formed along the circumferential direction of the EP negative pad (130), but this is not limited thereto, and two or more may be freely formed.

[0055] The second bosses (133) are joined by penetrating the second boss hole (113b) formed in the second embossed pattern (113), and the second bosses (133) penetrating the second boss hole (113b) can be fixedly joined to the silicone body (110) side by the fastening flange (135).

[0056] The above fastening flange (135) may be a circular plate. Fastening holes (135a) for fastening a bolt fastening member (not shown) may be formed in the above fastening flange (135). The above fastening holes (135a) may be formed at a position where they meet the second boss (133).

[0057] For example, by fastening a bolt fastening member through the fastening holes (135a) on the back side of the fastening flange (135) and fastening it to the second bosses (133), the EP negative pad (130) can be maintained in a fixed state without being separated from the silicone body (110).

[0058] A third discharge hole (135b) may be formed in the center of the above-mentioned fastening flange (135), and a discharge device part (140) may be coupled to the third discharge hole (135b).

[0059] A third embossed pattern (115) may be formed on the front surface of the above silicone body (110) to electrically separate the EP positive pad (120) and the EP negative pad (130). The third embossed pattern (115) may be formed with linear partitions (115a) protruding between the first embossed patterns (111) and circular partitions (115b) formed to surround the second embossed pattern (113). The linear partitions (115a) may be connected radially to the circular partitions (115b).

[0060] At this time, the third embossed pattern (115) is exposed to the outside, and the EP positive pads (120) are separated by linear partitions (115a), and the EP positive pads (120) and EP negative pads (130) can be separated by circular partitions (115b).

[0061] The first embossed pattern (111), the second embossed pattern (113), and the third embossed pattern (115) can be injection molded into the same body as the silicone body (110).

[0062] The back surface of the body of the above silicone body (110) may provide a receiving space (117) in which a discharge device part (140) and a sound wave generating device (150) are received.

[0063] The front body of the above silicone body (110) can provide a cushioning sensation to the user by forming a certain thickness. The above receiving space (117) can be formed using a cylindrical structure that extends along the edge of the front body.

[0064] At this time, the outer wall of the receiving space (117) can serve as a connecting part that is detachably connected to the main body of the skin beauty device to which the present invention is applied.

[0065] Referring to FIG. 3, a dispensing device part (140) for dispensing a formulation such as cosmetics may be installed in the inner center of the silicone body (110).

[0066] At this time, the discharge device (140) may be composed of a cartridge in which a preparation is received and an actuator that applies pressure to discharge the preparation received in the cartridge.

[0067] The nozzle of the above cartridge can be configured to allow the formulation to be discharged to the outside by passing through the first discharge hole (113a) formed in the center of the second embossed pattern (113) and the second discharge hole (131) formed in the EP negative pad (130).

[0068] According to one aspect of the present invention, an internal sound wave generating device (150) of the silicone body (110) may be installed.

[0069] The configuration of the sound wave generating device (150) will be explained with reference to FIGS. 2 and FIGS. 4.

[0070] As shown in FIG. 2, the above sound wave generating device (150) can be largely composed of a base plate (151), an oscillator module (153), and a diaphragm (155).

[0071] The base plate (151) may have a circular plate shape. A plurality of sound wave mounting parts (151a) and a plurality of third bosses (151b) may be formed around the outer circumference of the base plate (151).

[0072] An oscillator module (153) for generating sound waves may be inserted into the sound wave mounting portion (151a). Additionally, the third bosses (151b) may be axially coupled to the first bosses (123) formed on the EP positive pad (120).

[0073] At this time, the first bosses (123) can be axially connected to the third boss (151b) by passing through the first boss hole (111a) formed in the first embossed pattern (111). Accordingly, the diameter of the third boss (151b) is manufactured to be a diameter in which the first boss (123) can be axially connected, and the first bosses (123) axially connected to the third boss (151b) can maintain a mutual connection structure by being fastened using a separate bolt fastening member (not shown).

[0074] The above sound wave mounting portion (151a) may be located between the third bosses (151b). For example, the sound wave mounting portion (151a) may be formed in a number corresponding to the number of EP positive pads (120).

[0075] As shown in FIG. 2, when there are 5 EP positive pads (120), 5 corresponding sound wave mounting parts (151a) are also formed. One oscillator module (153) is mounted on each sound wave mounting part (151a) to generate sound waves, and the sound waves generated from each oscillator module (153) can vibrate each individual EP positive pad (120).

[0076] A fourth discharge hole (151c) may be formed in the center of the base plate (151), and a discharge device part (140) may be located in the fourth discharge hole (151c).

[0077] At this time, the second bosses (133) can be axially connected with a diaphragm (155) mounted on the upper portion of the third bosses (151b). The diaphragm (155) may be a thin metal plate. At this time, boss through holes (155b) for the first bosses (123) to pass through may be formed in the diaphragm (155).

[0078] The above diaphragm (155) may be configured such that five plates are connected by a bridge (155a). Each of the plates may be installed to be in contact with the oscillator module (153) and may serve to amplify the sound wave oscillation of the oscillator module (153).

[0079] The sound waves amplified through the above diaphragm (155) can be transmitted to the EP positive pad (120) via the receiving space (first medium) (117) of the silicone body (110) and the silicone body body (second medium).

[0080] At this time, the sound wave vibrations transmitted through the first and second media can be transmitted to the subject's skin in the form of fine vibrations.

[0081] As described above, the skin beauty device equipped with sound wave vibration and electroporation methods according to an embodiment of the present invention can provide the effect of improving the penetration efficiency of cosmetics into the skin by simultaneously applying electroporation and sound wave vibration stimulation.

[0082] In addition, the present invention converts primary sound wave vibrations generated by a sound wave generator into fine secondary vibrations by passing them through an air medium and a silicone medium and transmitting them to an EP anode pad, thereby allowing the fine vibrations to be transmitted to a subject through skin contact, and the secondary fine vibrations can provide the effect of promoting the absorption of cosmetics without irritating the subject's skin.

[0083] In addition, the present invention provides excellent usability because the vibration stimulation ultimately delivered to the subject is gentle, so the subject does not feel any aversion, and enables the EP positive pad and EP negative pad to provide a wide skin contact surface, and can provide the effect of efficiently delivering the cushioning effect of the silicone body and micro-vibrations to the subject's skin surface due to the thin plate structure.

[0084] As described above, the electroporation type skin beauty device according to the embodiment of the present invention can provide the effect of improving the penetration efficiency of cosmetics into the skin by simultaneously applying electroporation and sound wave vibration stimulation.

[0085] In addition, the present invention converts primary sound wave vibrations generated by a sound wave generator into fine secondary vibrations by passing them through an air medium and a silicone medium and transmitting them to an EP anode pad, thereby allowing the fine vibrations to be transmitted to a subject through skin contact, and the secondary fine vibrations can provide the effect of promoting the absorption of cosmetics without irritating the subject's skin.

[0086] Furthermore, the present invention provides excellent usability because the vibration stimulation ultimately delivered to the subject is gentle, so the subject does not feel any aversion; it enables the EP positive and negative pads to provide a wide skin contact surface; and has the effect of efficiently delivering the cushioning effect of the silicone body and micro-vibrations to the subject's skin surface due to the thin plate structure.

[0087] Although the present invention has been described above, those skilled in the art will recognize that the invention may be implemented in other forms while maintaining the technical concept and essential features of the invention.

[0088] The scope of the rights of the present invention shall be determined primarily by the patent claims; however, configurations directly derived from the descriptions in the patent claims, as well as all modifications or variations derived from configurations equivalent thereto, shall be interpreted as being included within the scope of the rights of the present invention. Explanation of the symbols

[0089] 100: Head section 110: Silicone body 111: First embossed pattern 111a: First boss hole 113: Second embossed pattern 113a: First discharge hole 113b: Second boss hole 115: Third embossed pattern 115a: Linear bulkhead 115b: Circular bulkhead 117: Receiving section 120: EP positive pad 121: First rim 123: First boss 130: EP negative pad 131: Second discharge hole 132: Second rim 133: Second boss 135: Fastening flange 135a: Fastening hole 135b: Third discharge hole 140: Discharge device section 150: Sound wave generator 151: Base plate 151a: Sound wave mounting section 151b: Third boss 151c: Fourth discharge hole 153: Oscillator Module 155: Diaphragm 155a: Bridge 155b: Boss Penetration Hole

Claims

Claim 1 A skin beauty device equipped with a sound wave vibration and electroporation method, comprising a head portion that contacts the skin of a subject to cause electroporation, wherein the head portion comprises: a silicone body; a plurality of EP positive pads installed around the perimeter of the front portion of the silicone body; an EP negative pad installed in the center of the front portion of the silicone body; a dispensing device portion installed in the inner center of the silicone body to dispense a preparation through the EP negative pad; and a sound wave generating device installed inside the silicone body, wherein the silicone body comprises: a first embossed pattern formed on the front portion of the body to attach the EP positive pad; and a second embossed pattern formed in the center of the front portion of the body to attach the EP negative pad. A skin beauty device equipped with sound wave vibration and electroporation methods, comprising a third embossed pattern formed on the front surface of the body to electrically separate an EP positive pad and an EP negative pad, wherein the EP positive pad has a fan-shaped planar form with a wide outer periphery and a narrow inner periphery, a first border is formed along the outer periphery of the fan shape, and the first border is folded to wrap around the side border of the first embossed pattern, and the EP negative pad is a circular flat plate, a second border is formed along the outer periphery of the circular flat plate, and the second border is folded to wrap around the side border of the second embossed pattern. Claim 2 A skin beauty device equipped with sound wave vibration and electroporation methods, characterized in that, in claim 1, a first boss is formed on the back surface of the EP anode pad. Claim 3 A skin beauty device equipped with sound wave vibration and electroporation methods, characterized in that, in claim 1, a second boss is formed on the back surface of the EP cathode pad. Claim 4 A skin beauty device equipped with sound wave vibration and electroporation methods, characterized in that, in claim 3, the second bosses are fastened to the silicone body side by passing through a second boss hole formed in the second embossed pattern and fastening it with a fastening flange and a bolt fastening member. Claim 5 A skin beauty device equipped with sound wave vibration and electroporation methods, wherein, in claim 1, the sound wave generating device comprises a base plate, a plurality of oscillator modules mounted on the base plate, and a diaphragm installed on the front of the oscillator modules to amplify sound wave vibrations. Claim 6 A skin beauty device equipped with sound wave vibration and electroporation methods, wherein, in claim 5, the base plate is characterized by having a plurality of sound wave mounting parts and a plurality of third bosses formed around the outer circumference of a circular plate, and a fourth discharge hole formed in the center where a discharge device part is located. Claim 7 A skin beauty device equipped with sound wave vibration and electroporation methods, wherein, in claim 6, an oscillator module for generating sound waves is inserted into the sound wave mounting part, the third bosses are axially coupled to the first bosses formed on the EP positive pad, the sound wave mounting part is formed between the third bosses and is formed in a number corresponding to the number of EP positive pads, and one oscillator module is mounted in the sound wave mounting part to generate sound waves, and the sound waves generated from each oscillator module vibrate each individual EP positive pad. Claim 8 A skin beauty device equipped with sound wave vibration and electroporation methods, characterized in that, in claim 7, the second bosses are axially coupled with a vibrating plate mounted on the upper part of the third bosses. Claim 9 A skin beauty device equipped with sound wave vibration and electroporation methods, characterized in that, in claim 8, the diaphragm is formed such that the diaphragm bodies are connected by a bridge, and each of the diaphragm bodies is installed to be in contact with an oscillator module, and the sound waves amplified through the diaphragm are transmitted to an EP anode pad via a receiving space (first medium) and a silicone body (second medium) of the silicone body.

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