Skin beauty patches and skin beauty devices

By employing a unique pin arrangement design in skin beauty patches and instruments, the type of beauty patch can be automatically identified and applied, solving the problems of manual confirmation and excessive buttons in existing technologies, and improving ease of use and appearance design.

CN113117245BActive Publication Date: 2025-10-28AMOREPACIFIC CORP +1
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Patent Information

Application Number
CN202010698207.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2019-12-31
Filing Date
2020-07-20
Publication Date
2025-10-28
Estimated Expiration
2040-07-20

AI Technical Summary

Technical Problem

Existing skin beauty patches and devices require manual confirmation and settings when connecting different types of beauty patches, and have too many operation buttons, making them inconvenient to use.

Method used

Employing a unique pin arrangement design, the connector's sensing pin and grounding pin automatically determine the type of beauty patch, and automatically execute the corresponding mode through the electrode arrangement of the main body, allowing multiple beauty patches to be controlled with a single operation button.

Benefits of technology

It enables automatic recognition of beauty patches and the main body and executes the inherent mode, reducing the number of operation buttons and improving ease of use and appearance design.

✦ Generated by Eureka AI based on patent content.

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Abstract

A skin beauty patch and a skin beauty device are disclosed. According to an embodiment of the present invention, a skin beauty patch may be provided, comprising: a stimulation delivery part for delivering stimulation to a user's skin; a connector for receiving at least one of an electrical signal and a power source supplied from an external source for delivery to the stimulation delivery part; and a connection part for connecting the stimulation delivery part and the connector.
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Description

Technical Field

[0001] This invention relates to skin beauty patches and skin beauty devices. Background Technology

[0002] Generally, as people pay more attention to skin care, the demand is increasing not only for cosmetics, but also for skin care patches and skin care devices that can directly improve skin condition.

[0003] In response to this demand, face masks and skin beauty patches with LEDs have recently become popular. These LEDs emit light of a specific wavelength that can improve the skin. Furthermore, various types of skin beauty patches with different functions or effects are available.

[0004] However, when connecting different types of skin beauty patches or skin beauty devices to the main body of the skin beauty device, users need to confirm the type of skin beauty patch and set it on the main body of the skin beauty device. Moreover, when the skin beauty patch is normally connected to the main body, it is inconvenient to press an additional operation button to execute the inherent mode of each skin beauty patch.

[0005] In addition, existing skin beauty patches or skin beauty devices, when providing multiple skin beauty patches, need to provide separate operation buttons on the main body to operate each skin beauty patch, thus causing the problem of too many operation buttons on the main body.

[0006] [Existing Technical Documents]

[0007] [Patent Documents]

[0008] Patent document: Korean Patent No. 10-1823263 (granted on January 24, 2018) Summary of the Invention

[0009] Technical issues

[0010] The embodiments of the present invention are proposed to solve the problems described above, and provide a skin beauty patch with a unique pin arrangement that can automatically determine the type of beauty patch when the beauty patch is connected to the body.

[0011] In addition, embodiments of the present invention provide a skin beauty device that automatically determines the type of the skin beauty patch and thereby automatically executes the inherent mode of the skin beauty patch.

[0012] In addition, embodiments of the present invention provide a skin beauty device that can control multiple skin beauty patches of different types with a single operation button.

[0013] Technical solution

[0014] According to one aspect of the present invention, a skin cosmetic patch can be provided, comprising: a stimulation delivery portion for delivering stimulation to a user's skin; a connector for receiving at least one of an electrical signal and a power source supplied from an external source for delivery to the stimulation delivery portion; and a connection portion for connecting the stimulation delivery portion and the connector, the connector comprising: a housing; a first region portion provided on one side of the housing, including twelve pins; and a second region portion provided on the other side of the housing, including twelve pins, arranged parallel to and opposite to the first region portion, wherein the pins of one of the first and second regions portions include a first pin to a twelfth pin, one of the first and twelfth pins being provided by a sensing pin for sensing the type of the stimulation delivery portion, the other of the first and twelfth pins being provided by a grounding pin, and at least four of the second to eleventh pins being assigned as skin stimulation pins for providing predetermined stimulation to the skin.

[0015] Furthermore, the pins in the first region and the other region of the second region can be arranged in the reverse order relative to the arrangement of the pins in the first region.

[0016] In addition, the first pin to the second pin can be arranged sequentially along a certain direction.

[0017] Additionally, two of the second to eleventh pins are designated as first stimulating pins to provide first stimulation to the skin; the other two of the second to eleventh pins are designated as second stimulating pins to provide second stimulation to the skin; the remaining two of the second to eleventh pins are designated as third stimulating pins to provide third stimulation to the skin; the remaining two of the second to eleventh pins are designated as fourth stimulating pins to provide fourth stimulation to the skin; and the remaining two of the second to eleventh pins are designated as fifth stimulating pins to provide fifth stimulation to the skin.

[0018] The first stimulating pin can provide light of a first wavelength for irradiating the skin.

[0019] In addition, the second stimulating pin can provide light of a second wavelength for irradiating the skin.

[0020] In addition, the third stimulating pin can provide light of a third wavelength for irradiating the skin.

[0021] In addition, the fourth stimulating pin can provide light of a fourth wavelength for irradiating the skin.

[0022] In addition, the fifth stimulating pin can provide a predetermined electric current to the skin.

[0023] In addition, one of the first to the fifth stimulation pins can be assigned as a power pin for supplying power to the stimulation delivery unit or for charging it.

[0024] In addition, one of the first to the fifth stimulation pins may be a pin provided as a common power source and assigned as a stimulation pin.

[0025] On one hand, according to other embodiments of the present invention, a skin beauty device can be provided, comprising: a skin beauty patch according to an embodiment of the present invention; a body provided for supplying at least one of an electrical signal and a power source to the skin beauty patch; and a connection part provided on the body, wherein the connector is configured to connect the skin beauty patch by a type corresponding to the connector, and has an electrode arrangement corresponding to the pin arrangement of the connector, the body senses the connection between the connector and the connection part, determines the type of the connected skin beauty patch, and activates a corresponding mode according to the type of the skin beauty patch.

[0026] In addition, when different types of skin beauty patches are connected to the contact part, the main body can determine the type of skin beauty patch by utilizing the inherent resistance values ​​of each skin beauty patch.

[0027] In addition, the main body can measure the voltage of the contact side electrode corresponding to one of the first to fifth stimulation pins, and cut off the line of the measured voltage when it is greater than a preset reference voltage.

[0028] Alternatively, the connection portion may be provided as a plurality of such portions, with at least one of the plurality of connection portions connected to a connector for a photostimulated skin beauty patch, and at least one of the plurality of connection portions connected to a microcurrent stimulated skin beauty patch.

[0029] Invention Effects

[0030] According to embodiments of the present invention, it has the advantage of automatically determining the type of beauty patch when the beauty patch is connected to the main body.

[0031] In addition, since the system automatically determines the type of skin care patch and automatically executes the inherent mode of that skin care patch, it can improve the convenience for users.

[0032] In addition, since multiple skin care patches of different types can be controlled by a single operation button, it has the advantages of reducing the space occupied by operation buttons and allowing for a more elegant design. Attached Figure Description

[0033] Figure 1 This is a structural diagram illustrating the structure of a skin cosmetic patch according to an embodiment of the present invention;

[0034] Figure 2 It shows including Figure 1 A perspective view of a skin beauty device according to another embodiment of the present invention;

[0035] Figure 3 yes Figure 1 The cross-sectional view of the AA line shows a cross-sectional view of the connector structure of a skin beauty patch according to an embodiment of the present invention;

[0036] Figure 4 This is a diagram showing the arrangement of pins in the connector of a skin cosmetic patch according to an embodiment of the present invention;

[0037] Figure 5 This is a perspective view showing the overall structure of a skin beauty device according to another embodiment of the present invention, separated into skin beauty patches and a main body.

[0038] Explanation of reference numerals in the attached figures

[0039] 1: Skin beauty device; 10: Skin beauty patches

[0040] 20: Main body; 30: Connecting part

[0041] 100: Stimulus transmission unit; 110: Light-emitting element

[0042] 120: Conductive plate; 200: Connector

[0043] 210: Shell 220: First Region

[0044] 230: Second area section; 300: Connecting section Detailed Implementation

[0045] Hereinafter, specific embodiments of the present invention will be described in detail with reference to the accompanying drawings.

[0046] Furthermore, when describing the present invention, detailed descriptions of relevant well-known structures or functions are omitted if it is determined that such detailed descriptions would obscure the essence of the present invention.

[0047] Figure 1 This is a structural diagram illustrating the structure of a skin cosmetic patch according to an embodiment of the present invention. Figure 2 It shows including Figure 1 A perspective view of a skin beauty device according to another embodiment of the present invention, showing skin beauty patches. Figure 3 yes Figure 1 The cross-sectional view of the AA line shows a cross-sectional view of the connector structure of a skin beauty patch according to an embodiment of the present invention.

[0048] refer to Figures 1 to 3 According to an embodiment of the present invention, the skin beauty patch 10 may include a stimulation delivery part 100, a connector 200 and a connecting part 300.

[0049] An embodiment of the present invention includes the structures listed above, but this does not mean that it is composed of only these structures, but rather that it substantially includes these structures. It means that it may include other structures (e.g., well-known technologies in skin beauty patches). However, well-known technologies may obscure the spirit of the present invention, so detailed descriptions thereof are omitted.

[0050] The stimulation delivery unit 100 can be provided to deliver stimulation to the user's skin, and multiple units can be provided as needed. The stimulation delivery unit 100 can be freely deformed to correspond to the shape of a specific body part (e.g., face, neck, arms, legs, etc.) on the user's skin, and can be configured to maintain a deformed state.

[0051] The stimulation delivery unit 100 can be configured to adhere tightly to the user's skin when attached, eliminating or minimizing the gap between the stimulation delivery unit 100 and the skin. This allows for the effective delivery of cosmetic functions (e.g., irradiation with light of a predetermined wavelength, microcurrent-based stimulation) provided by the stimulation delivery unit 100 to the user's skin.

[0052] Specifically, the stimulation delivery part 100 can be configured in a predetermined size and shape to be adhered to a portion of the user's skin (e.g., face). For example, the stimulation delivery part 100 can be generally configured in a triangular plate shape, with a recessed portion formed on one side of the stimulation delivery part 100. The shape of the stimulation delivery part 100 is not greatly limited and can be configured in various shapes such as quadrilaterals and circles as needed.

[0053] A light-emitting element 110 capable of irradiating light of a predetermined wavelength can be provided on one side of the stimulation delivery section 100 (e.g., the inner side opposite to the user's skin).

[0054] The stimulation delivery unit 100 equipped with the light-emitting element 110 can be provided in multiple ways as needed. In this case, the light-emitting element 110 of each stimulation delivery unit 100 can be configured to have different wavelengths. Thus, the user can select different wavelengths of light to manage the skin as needed.

[0055] On the one hand, when multiple stimulation transmission units 100 are provided, an energized sheet 120 can be provided on one side of at least one stimulation transmission unit 100 to replace the light-emitting element.

[0056] The conductive pad 120 can deliver a certified safe microcurrent (e.g., low frequency) to the user's skin, thereby stimulating the skin through a method different from light irradiation to achieve cosmetic effects (see reference). Figure 5 ).

[0057] Multiple stimulus delivery units, 100 in number, are unlimited, such as Figure 5 As exemplified, one embodiment of the present invention comprises four stimulation transmission units 100 having light-emitting elements 110 and one stimulation transmission unit 100 having an energized sheet 120 for microcurrent stimulation, providing a total of five stimulation transmission units 100.

[0058] However, one embodiment of the present invention is not limited to that shown in the figures. The number and type of stimulation delivery units 100 can be varied as needed, and such variations also fall within the scope of the present invention.

[0059] Connector 200 can provide at least one of an electrical signal and a power source supplied from an external source (e.g., the body) to be transmitted to the stimulation delivery unit 100. Connector 200 will be described in detail again later.

[0060] The connecting part 300 can be provided to interconnect the stimulation transmission part 100 and the connector 200. The connecting part 300 can be provided to transmit at least one of an electrical signal (e.g., a power source) from an external source (e.g., a body) to the connector 200 to the stimulation transmission part 100. The connecting part 300 can be constructed of wires or the like capable of transmitting signals or electricity.

[0061] The following is for reference. Figure 3 as well as Figure 4 Specific description of connector 200.

[0062] The connector 200 may include a housing 210, a first region 220, and a second region 230.

[0063] An accommodating space for arranging the first region 220 and the second region 230 is formed inside the housing 210. Additionally, as... Figure 5 As shown, the housing 210 can be inserted into the connection part 30 provided in the main body 20 of the skin beauty device 1.

[0064] like Figure 3 As shown, the housing 210 can be configured with the same shape that is symmetrical on the top and bottom and left and right sides respectively. For example, it can be a circle with rounded curves on the left and right sides of a quadrilateral basic frame so that it is not restricted by the directionality of the top or bottom when inserted into the connecting part 30.

[0065] Therefore, when the user inserts the housing 210 of the connector 200 into the contact portion 30 of the main body 20, there is no need to consider the up / down insertion direction. Even if it is inserted in any direction, the connector 200 can be connected to the contact portion 30.

[0066] The first region 220 can be provided on one side inside the housing 210, including twelve pins A1-A12. In addition, the second region 230 can be provided on the other side inside the housing 210, also including twelve pins B1-B12.

[0067] At this time, as Figure 3 As shown, the second region 230 can be separated from the first region 220 by a predetermined distance and is arranged parallel to the first region 220.

[0068] Among them, pins A1-A12 and B1-B12 of a certain region in the first region 220 and the second region 230 can be arranged sequentially along a certain direction as the first pin to the twelfth pin.

[0069] For example, the twelve pins A1-A12 contained in the first region 220 can be... Figure 3 On the drawing, the pins arranged sequentially from left to right are: first pin A1, second pin A2, third pin A3, fourth pin A4, fifth pin A5, sixth pin A6, seventh pin A7, eighth pin A8, ninth pin A9, tenth pin A10, eleventh pin A11, and twelfth pin A12. The pins A1-A12 in the first area 220 can be spaced apart by a predetermined interval as needed.

[0070] At this time, the other region of the first region 220 and the second region 230 (e.g., the second region 230) can be arranged in the reverse order relative to the sequential arrangement of the pins of the certain region (e.g., the first region 220).

[0071] For example, the twelve pins B1-B12 contained in the second region 230 can be obtained from... Figure 3 On the left side of the drawing, from right to left, the pins are arranged in sequence as follows: 12th pin B12, 11th pin B11, 10th pin B10, 9th pin B9, 8th pin B8, 7th pin B7, 6th pin B6, 5th pin B5, 4th pin B4, 3rd pin B3, 2nd pin B2, and 1st pin B1. The pins B1-B12 in the second region 230 can be spaced apart by a predetermined interval as needed.

[0072] That is, the first pin A1 of the first region section 220 and the twelfth pin B12 of the second region section 230 may be configured opposite to each other, and the twelfth pin A12 of the first region section 220 and the first pin B1 of the second region section 230 may be configured opposite to each other.

[0073] In this configuration, pins with the same sequence (number) in the first region 220 and the second region 230 are configured to perform the same function and purpose. For example, the first pin A1 of the first region 220 and the first pin B1 of the second region 230 can be the same pins that perform the same function and purpose.

[0074] Therefore, when the housing 210 of the connector 200 is inserted into the contact portion 30 of the main body 20, even if the insertion directions are different (up / down), the pins of the connector 200 with the same function are connected to the corresponding electrodes of the contact portion 30 regardless of the insertion position, so the connector 200 performs the same function and action.

[0075] For the connector 200, refer to Figure 4 To provide further details.

[0076] refer to Figure 4 One of the first pins A1 and B1 and the twelfth pins A12 and B12 of the first region 220 and the second region 230 can be provided by a sensing application pin for sensing the type of the stimulus transmission section 100.

[0077] As described above, the stimulation transmission unit 100 can be prepared in various types according to various functions, and one of the first pins and the twelfth pin can be made of a sensing application pin so as to automatically sense when one of the stimulation transmission units 100 of the various types of stimulation transmission units 100 is turned on.

[0078] Additionally, another pin among the first pins A1 and B1 and the twelfth pins A12 and B12 of the first region section 220 and the second region section 230 can be provided by a grounding pin. For example, as Figure 4 As shown, in one embodiment of the present invention, the first pins A1 and B1 are composed of sensing pins, and the twelfth pins A12 and B12 are composed of grounding pins. However, in another embodiment, the first pins A1 and B1 may be composed of grounding pins, and the twelfth pins A12 and B12 may be composed of sensing pins.

[0079] On the one hand, at least four pairs of pins from the second pins A2, B2 to the eleventh pins A11, B11 of the first region 220 and the second region 230 can be assigned as skin stimulating pins to provide predetermined stimulation to the skin. For reference, one pair of pins refers to two pins.

[0080] Specifically, two of the second pins A2 and B2 and the eleventh pins A11 and B11 of the first region 220 and the second region 230 can be assigned as first stimulating pins to provide first stimulation to the skin. The first stimulating pins can provide light of a first wavelength for irradiating the skin.

[0081] For example, refer to Figure 4The first stimulating pin can be positioned at the locations of the second pins A2 and B2 and the third pins A3 and B3. In this case, the stimulation delivery section 100 can have a first light-emitting element 110 that emits light of a first wavelength (e.g., near-infrared wavelength) to provide first stimulation to the skin. That is, the first light-emitting element 110 can irradiate light of the near-infrared wavelength.

[0082] Additionally, two other pins from the second to eleventh pins of the first region 220 and the second region 230 can be assigned as second stimulating pins for providing second stimulation to the skin. These second stimulating pins can provide light of a second wavelength for irradiating the skin.

[0083] For example, the second stimulation pins can be positioned at the fourth pins A4 and B4 and the fifth pins A5 and B5. In this case, the stimulation delivery section 100 can be equipped with a second light-emitting element 110 that emits light of a second wavelength (e.g., a yellow wavelength) to provide a second stimulation to the skin. That is, the second light-emitting element 110 can irradiate light of the yellow wavelength.

[0084] Additionally, two other pins among the second to eleventh pins of the first region 220 and the second region 230 can be assigned as third stimulating pins for providing third stimulation to the skin. These third stimulating pins can provide light of a third wavelength for irradiating the skin.

[0085] For example, the third stimulation pins can be positioned at the sixth pins A6 and B6 and the seventh pins A7 and B7. In this case, the stimulation delivery section 100 can be equipped with a third light-emitting element 110 that emits light of a third wavelength (e.g., red wavelength) to provide third stimulation to the skin. That is, the third light-emitting element 110 can irradiate red wavelength light.

[0086] Additionally, two other pins among the second to eleventh pins of the first region 220 and the second region 230 can be assigned as fourth stimulation pins for providing a fourth stimulus to the skin. These fourth stimulation pins can provide light of a fourth wavelength for irradiating the skin.

[0087] For example, the fourth stimulation pins can be positioned at the eighth pins A8 and B8 and the ninth pins A9 and B9. In this case, the stimulation delivery section 100 can be equipped with a fourth light-emitting element 110 that emits light of a fourth wavelength (e.g., green wavelength) to provide a fourth stimulation to the skin. That is, the fourth light-emitting element 110 can irradiate green wavelength light.

[0088] Additionally, two other pins among the second to eleventh pins of the first region 220 and the second region 230 can be designated as fifth stimulation pins to provide fifth stimulation to the skin. These fifth stimulation pins can provide a predetermined current to the skin, thereby stimulating the skin through low-frequency massage.

[0089] For example, the fifth stimulation pins can be positioned at the tenth pins A10 and B10 and the eleventh pins A11 and B11. In this case, the stimulation transmission section 100 can be equipped with an electric pad 120 for providing the fifth stimulation (e.g., microcurrent) to the skin. The electric pad 120 can be attached to the skin to provide low-frequency stimulation, thereby massaging the skin.

[0090] Among them, one of the first to fifth stimulation pins A2 / B2-A11 / B11 may also be adapted to perform other functions besides stimulation (e.g., power supply or charging). Thus, one of the first to fifth stimulation pins can be assigned as a power pin for supplying power or charging the stimulation delivery unit 100.

[0091] On the one hand, as a different embodiment from the above, one of the first to fifth stimulation pins may be a stimulation pin for providing the first to fifth stimulations, which is a commonly used power pin of the normally supplied common connector 200 (purpose change).

[0092] When the main body 20 of the skin beauty device 1 is connected to the connector 200 and the connection part 30, the voltage of the electrode on the side of the connection part 30 that is in contact with one of the first to fifth stimulation pins is measured.

[0093] When the measured voltage is greater than the preset reference voltage (e.g., 5V) in the control unit of the main body 20, the control unit of the main body 20 can cut off the input line of the measured voltage to protect the main body 20.

[0094] This is configured to protect the main body 20 from damage when, for example, the user connects the general charger connector 200 to the connection section 30 of the main body 20 instead of the connector 200 of the stimulation transmission section 100. Normally, the voltage on the corresponding pin of the general charger connector 200 is greater than the reference voltage (e.g., 5V). Therefore, when the measured voltage is greater than the reference voltage, the control unit of the main body 20 determines that the other charger connector 200 is connected instead of the connector 200 of the stimulation transmission section 100. In order to protect the main body 20 and its internal circuitry, the input line for measuring the voltage can be cut off.

[0095] On the one hand, refer to Figure 5 This describes a skin beauty device 1 according to another embodiment of the present invention.

[0096] In other embodiments of the present invention, the skin beauty device 1 may include the beauty patch 10, the main body 20, and the connection part 30 as described above.

[0097] The skin beauty patch 10 is the same as the skin beauty patch 10 according to an embodiment of the present invention described above, therefore detailed description is omitted.

[0098] The main body 20 may provide at least one of an electrical signal (e.g., first to fifth stimulation signals) and a power source for supplying the skin beauty patch 10.

[0099] Additionally, the connection part 30 is provided in the main body 20 and can be configured in a type corresponding to the connector 200 to enable connection with the connector 200 of the skin beauty patch 10. For example, when the connector 200 of the skin beauty patch 10 is configured in a standard specification of type C with the structure described above, the connection part 30 can also be formed in a corresponding form to enable connection with the type C connector 200.

[0100] Furthermore, the contact portion 30 may be configured to have an electrode arrangement corresponding to the pin arrangement of the connector 200 as described above. Therefore, since the electrode arrangement of the contact portion 30 is the same as the pin arrangement of the connector 200, figures relating to the electrode arrangement of the contact portion 30 are omitted.

[0101] Therefore, in the skin beauty device 1, which includes a skin beauty patch 10, a main body 20, and a connecting part 30, the main body 20 can automatically sense that the connector 200 of the skin beauty patch 10 is connected to the connecting part 30, determine the type of the connected skin beauty patch 10, and automatically activate the unique corresponding mode of the skin beauty patch 10 according to the type of the skin beauty patch 10.

[0102] For example, when a first skin beauty patch 10 with a first stimulation function is connected among multiple skin beauty patches 10, the main body 20 can sense the connection, determine the type of skin beauty patch 10, and then automatically activate the first stimulation mode (e.g., irradiation of near-infrared light) of the first skin beauty patch 10.

[0103] In order to automatically determine the type of skin beauty patch 10, the main body 20 can be configured as follows.

[0104] When different types of skin beauty patches 10 are connected to the contact unit 30, the main body 20 can determine the type of skin beauty patch 10 by utilizing the inherent resistance value of each skin beauty patch 10. That is, multiple skin beauty patches 10 are configured with different inherent resistance values. When a certain skin beauty patch 10 is connected to the main body 20, the control unit of the main body 20 measures the inherent resistance value of that skin beauty patch 10 and determines the type of that skin beauty patch 10 based on this value.

[0105] When the main body 20 recognizes the type of skin beauty patch 10, it can automatically activate the inherent mode of the skin beauty patch 10 even without operating the other operation button 21.

[0106] refer to Figure 5 An operation button 21 may be provided on one side of the main body 20. The operation button 21 can be used to stop or restart the automatic start of the corresponding skin beauty patch 10.

[0107] Normally, when multiple skin beauty patches 10 are provided, the number of operation buttons 21 for activating each skin beauty patch 10 also needs to be the same as the number of skin beauty patches 10. However, according to this embodiment, since the main body 20 can identify the type of skin beauty patch 10 using the inherent resistance values ​​of each skin beauty patch 10, the skin beauty patch 10 can be controlled by only one operation button 21.

[0108] In addition, as described above, the main body 20 measures the voltage of the electrode on the contact portion 30 corresponding to one of the first to fifth stimulation pins A2 / B2-A11 / B11 of the connector 200, and when the voltage is greater than a preset reference voltage, the input line of the measured voltage can be cut off to prevent damage to the main body 20 or the circuit.

[0109] Therefore, even if the user connects the connector 200 of an external device (e.g., a charger) of the same type to the connection section 30, the control section of the main body 20 can cut off the internal input line to protect the main body 20. At the same time, it can interrupt the internal system of the main body 20 or issue a warning to the user (e.g., flashing or alarm).

[0110] On the one hand, according to other embodiments of the present invention, the main body 20 of the skin beauty device 1 is capable of recognizing the type of skin beauty patch 10, so it is not a problem to provide only one connection part 30. However, multiple connection parts 30 can be provided so that the user can use different skin beauty patches 10 at the same time.

[0111] At this time, at least one of the plurality of contact parts 30 can be connected to the connector 200 of the photostimulated skin beauty patch 10, and at least one of the plurality of contact parts 30 can be connected to the connector 200 of the microcurrent stimulated skin beauty patch 10. Therefore, the user can use the photostimulated skin beauty patch 10 and the microcurrent stimulated skin beauty patch 10 simultaneously.

[0112] refer to Figure 1 as well as Figure 5The illustration shows a case where two contact parts 30 are provided; however, this is merely an example, and the number of contact parts 30 can be increased or decreased as needed. However, the number of contact parts 30 can be determined to be the same as or less than the number of usable skin beauty patches 10.

[0113] The above description illustrates specific embodiments of the skin beauty patch and skin beauty device according to the present invention. However, these are merely examples and should be interpreted as not limiting the invention thereto, but rather encompassing the broadest scope based on the fundamental ideas disclosed in this specification. Those skilled in the art can combine and substitute the disclosed embodiments to implement patterns of shapes not presented, without departing from the scope of the invention. Furthermore, it should be understood that those skilled in the art can easily modify or alter the embodiments disclosed in this specification, and such modifications or alterations also fall within the scope of the present invention.

Claims

1. A skin beauty patch, comprising: Stimulation delivery unit, providing stimulation to be delivered to the user's skin; A connector, providing at least one of an electrical signal and a power source for receiving the stimulation transmission part from an external supply; as well as A connecting portion is provided for connecting the stimulation delivery portion and the connector. The connector includes: case; A first region, provided on one side of the housing, includes twelve pins; and A second region, provided on the other side of the housing, includes twelve pins arranged parallel to and opposite to the first region. The pins in either the first region or the second region include the first to the twelfth pins. Either the first pin or the twelfth pin is provided by a sensing pin for sensing the type of the stimulus transmitter, and the other pin is provided by a grounding pin. Two of the pins, the second to the eleventh, are the first stimulation pins used to irradiate the skin with the first wavelength of light. The other two pins among the second to eleventh pins are second stimulation pins used to irradiate the skin with second-wavelength light. Of the second to eleventh pins, the two pins that are not used as the first stimulation pin and the second stimulation pin are third stimulation pins used to irradiate the skin with third-wavelength light. Of the second to eleventh pins, the two pins that are not used as the first to third stimulating pins are fourth stimulating pins used to irradiate the skin with fourth-band light. The two pins from the second to the eleventh pin that are not used as the first to the fourth stimulation pins are constituted by a fifth stimulation pin for providing an electric current that can stimulate the skin through low-frequency massage.

2. The skin cosmetic patch according to claim 1, wherein, The pins of the first region and the other region of the second region are arranged in reverse order relative to the pins of any other region.

3. The skin cosmetic patch according to claim 2, wherein, The first to the twelfth pins are arranged sequentially along a certain direction.

4. A skin beauty device, comprising: Skin cosmetic patch as described in any one of claims 1 to 3; The main body provides at least one of an electrical signal and a power source for supplying the skin cosmetic patch; as well as A connecting part is provided in the main body, which is configured to connect the skin cosmetic patch by means of a connector of a type corresponding to the connector, and has an electrode arrangement corresponding to the pin arrangement of the connector. The main body senses the connection between the connector and the connection part, determines the type of the connected skin beauty patch, and activates the corresponding mode according to the type of the skin beauty patch.

5. The skin beauty device according to claim 4, wherein, When different types of skin beauty patches are connected to the contact point, the main body determines the type of skin beauty patch by utilizing the inherent resistance values ​​of each skin beauty patch.

6. The skin beauty device according to claim 4, wherein, The connection unit is provided in multiple ways. At least one of the plurality of contact points is connected to the connector of the photostimulated skin cosmetic patch. At least one of the plurality of contact points is connected to a skin beauty patch for microcurrent stimulation.

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