Stacked wireless charging cradle with applied sterilization function for pressure ulcer diagnosis and treatment device, and method of using same
The stackable wireless charging cradle with integrated UV sterilization addresses inefficiencies in charging and sterilization of pressure ulcer treatment devices by enabling simultaneous operations, enhancing efficiency and convenience.
Patent Information
- Application Number
- PCT/KR2025/001175
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-22
- Filing Date
- 2025-01-21
- Publication Date
- 2025-07-31
AI Technical Summary
Existing pressure ulcer treatment devices face inefficiencies in charging multiple devices simultaneously and require separate sterilization processes, which occupy nursing station space and reduce charging efficiency.
A stackable wireless charging cradle with integrated UV sterilization functionality, allowing simultaneous wireless charging and UV sterilization of patch-type devices, including a cradle body, wireless charging unit, UV sterilization unit, and control unit for controlling both operations.
Enhances charging and sterilization efficiency, enabling multiple devices to be charged and sterilized simultaneously, improving convenience, economic feasibility, and ease of use in hospital/clinic or home environments.
Smart Images

Figure KR2025001175_31072025_PF_FP_ABST
Abstract
Description
A stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function and a method of using the same.
[0001] The present invention relates to a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function and a method of using the same, and more particularly, to a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function that enables simultaneous stackable wireless charging and UV sterilization of a patch-type device and a method of using the same.
[0002] The content described in this section merely provides background information for one embodiment of the present invention and does not constitute prior art.
[0003]
[0004] In general, bedsores are conditions in which continuous pressure is applied to a part of the body while sitting or lying in one position, which causes a disruption of blood circulation (ischemia) in that area, resulting in damage (ulcers) to the subcutaneous tissue in that area. These bedsores are common in unconscious patients, patients with brain or spinal nerve damage that prevents them from moving, critically ill patients, and patients with general weakness. These patients do not feel pain in the area of pressure even when they remain in the same position for a long time, and even if they do feel pain, they are prone to pressure sores because they do not have the energy to change positions on their own.
[0005]
[0006] In addition, bedsores are particularly prone to occur in the back of the head, shoulders, buttocks (sacrum, ischium), greater trochanter (when lying on the side), and heels. Looking at the progression stages of bedsores, stage 1 bedsores indicate a condition in which continuous epidermal rash and inflammation are caused in normal skin, stage 2 bedsores indicate a superficial ulcer condition in which only the dermis layer is destroyed, and stage 3-4 bedsores indicate a condition in which the entire skin layer including the skin and subcutaneous fat is destroyed. A vacuum negative pressure wound therapy device has been proposed as a method for treating affected areas such as bedsores. This conventional vacuum negative pressure wound therapy device applies negative pressure to the wound area to suck out exudates such as pus and fluid generated from the wound area and simultaneously promotes the formation of granulation tissue in the wound area to promote wound healing. These vacuum negative pressure wound therapy devices generally include a negative pressure generating unit having a negative pressure motor for generating negative pressure, a tube for transmitting the negative pressure atmosphere generated by the negative pressure generating unit to the wound, and a tube adapter placed on the wound side and connected to the tube.
[0007]
[0008] In addition, in the case of devices that apply skin treatment technology using existing optical elements, there was an inconvenience in that it was difficult to apply them to bedsores that occur on multiple body parts at once because only a small number of devices, 1 or 2, could be charged in one cradle.
[0009]
[0010] In addition, in order to charge multiple devices, it is necessary to secure nursing station space for charging cradles and many charging cables, which not only reduces charging efficiency, but also increases the inconvenience of use due to the need to maintain the cleanliness of the device through a separate sterilization using UV in addition to the disposable patch, although sterilization is essential for the device used on bedsores and wounds. Republic of Korea Patent Publication No. 10-2020-0116707 is disclosed as a prior art document.
[0011]
[0012] The background technology described above is technical information that the inventor possessed for the purpose of deriving the present invention or acquired in the process of deriving the present invention, and cannot necessarily be said to be publicly known technology disclosed to the general public prior to the application for the present invention.
[0013] The present invention has been proposed to solve the above-mentioned problems of the existing proposed methods, and the purpose of the present invention is to provide a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device having a sterilization function and a method of using the same, which comprises a cradle body having a loading space positioned for wireless charging of a light irradiation device capable of performing light treatment through light irradiation to a bedsore area, a wireless charging unit for performing wireless charging of the light irradiation device positioned in the loading space of the cradle body, a UV sterilization unit for performing UV sterilization of the light irradiation device positioned in the loading space of the cradle body, and a control unit for controlling the operation of the wireless charging unit and the UV sterilization unit, thereby enabling simultaneous stackable wireless charging and UV sterilization of a patch-type device, and thereby further increasing convenience and efficiency of use.
[0014]
[0015] In addition, the present invention is configured to enable simultaneous stacked wireless charging and UV sterilization of patch-type devices, thereby maximizing the efficiency of charging and sterilization of patch-type devices, enabling repeated use through sterilization of patch-type devices, and providing a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function and a method of using the same, which enables high-efficiency charging and sterilization of multiple patch-type devices at once in a hospital / clinic or home environment.
[0016]
[0017] In addition, the present invention provides a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, which enables simultaneous stacked wireless charging and UV sterilization of a patch-type device, thereby improving the economic feasibility, ease of cleaning, fixation stability, ease of attachment and detachment, and ease of sterilization of a patch-type device that applies biophotonics of a wavelength capable of treating the affected area of a pressure ulcer, and a method of using the same.
[0018]
[0019] However, the technical problems to be solved by the present invention are not limited to the technical problems described above, and other technical problems may exist.
[0020] A stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to the features of the present invention to achieve the above-mentioned purpose is provided.
[0021] A stackable wireless charging cradle for pressure ulcer diagnosis and treatment devices with a sterilization function.
[0022] A cradle body having a loading space positioned for wireless charging of a light irradiation device capable of performing light therapy through light irradiation to a bedsore area;
[0023] A wireless charging unit that performs wireless charging of the light irradiation device located in the loading space of the cradle body;
[0024] A UV sterilization unit that performs UV sterilization of the light irradiation device located in the loading space of the cradle body; and
[0025] Its structural feature is that it includes a control unit for controlling the operation of the wireless charging unit and UV sterilization unit.
[0026]
[0027] Preferably, the cradle body,
[0028] It can be configured in a T-shaped structure having a loading space where a light irradiation device is positioned for wireless charging of a light irradiation device capable of performing light treatment through light irradiation to a bedsore area.
[0029]
[0030] More preferably, the cradle body,
[0031] The structure is configured in a T-shape having a loading space in which the light irradiation device is positioned, and the light irradiation device can be stacked in multiple layers in the loading space.
[0032]
[0033] Preferably, the light irradiating device is
[0034] It can be composed of an oval-shaped patch-shaped device that applies biophotonics of a wavelength capable of treating bedsores.
[0035]
[0036] More preferably, the light irradiating device,
[0037] The wireless charging cradle can be stacked in multiple layers in the loading space of the cradle body, so that wireless charging and UV sterilization can be performed simultaneously.
[0038]
[0039] More preferably, the wireless charging unit,
[0040] Wireless charging of the light irradiation device positioned in the loading space of the cradle body is performed, and at least one light irradiation device positioned and stacked in the loading space can be wirelessly charged.
[0041]
[0042] Even more preferably, the UV sterilizing unit,
[0043] UV sterilization of the light irradiation device positioned in the loading space of the cradle body is performed, and at least one light irradiation device positioned and stacked in the loading space can be UV sterilized.
[0044]
[0045] Even more preferably, the UV sterilizing unit,
[0046] The UV light may be positioned so that it is exposed to the periphery of the wireless charging unit that forms a charging space in the central portion of the loading space of the above cradle body.
[0047]
[0048] A method of using a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to the features of the present invention to achieve the above-mentioned purpose is as follows.
[0049] A method of using a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function,
[0050] (1) A step in which a light irradiation device capable of performing light therapy by irradiating light onto a bedsore area is positioned for wireless charging in the loading space of the cradle body;
[0051] (2) A step in which the control unit controls the operation of the wireless charging unit and the UV sterilization unit for wireless charging and UV sterilization of a light irradiation device positioned for wireless charging in the loading space of the cradle body;
[0052] (3) A step of performing wireless charging of a light irradiation device located in the loading space of the cradle body by a wireless charging unit; and
[0053] (4) The UV sterilization unit is characterized in that it includes a step of performing UV sterilization of a light irradiation device located in the loading space of the cradle body.
[0054]
[0055] Preferably, the cradle body,
[0056] It can be configured in a T-shaped structure having a loading space where a light irradiation device is positioned for wireless charging of a light irradiation device capable of performing light treatment through light irradiation to a bedsore area.
[0057]
[0058] More preferably, the cradle body,
[0059] The structure is configured in a T-shape having a loading space in which the light irradiation device is positioned, and the light irradiation device can be stacked in multiple layers in the loading space.
[0060]
[0061] Preferably, the light irradiating device is
[0062] It can be composed of an oval-shaped patch-shaped device that applies biophotonics of a wavelength capable of treating bedsores.
[0063]
[0064] More preferably, the light irradiating device,
[0065] The wireless charging cradle can be stacked in multiple layers in the loading space of the cradle body, so that wireless charging and UV sterilization can be performed simultaneously.
[0066]
[0067] More preferably, the wireless charging unit,
[0068] Wireless charging of the light irradiation device positioned in the loading space of the cradle body is performed, and at least one light irradiation device positioned and stacked in the loading space can be wirelessly charged.
[0069]
[0070] Even more preferably, the UV sterilizing unit,
[0071] UV sterilization of the light irradiation device positioned in the loading space of the cradle body is performed, and at least one light irradiation device positioned and stacked in the loading space can be UV sterilized.
[0072]
[0073] Even more preferably, the UV sterilizing unit,
[0074] The UV light may be positioned so that it is exposed to the periphery of the wireless charging unit that forms a charging space in the central portion of the loading space of the above cradle body.
[0075] According to the stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function proposed in the present invention and the method of using the same, the cradle body has a loading space positioned for wireless charging of a light irradiation device capable of performing light treatment through light irradiation to a pressure ulcer area, a wireless charging unit for performing wireless charging of the light irradiation device positioned in the loading space of the cradle body, a UV sterilization unit for performing UV sterilization of the light irradiation device positioned in the loading space of the cradle body, and a control unit for controlling the operation of the wireless charging unit and the UV sterilization unit, thereby enabling stackable wireless charging and UV sterilization of a patch-type device at the same time, and thereby further increasing convenience and efficiency of use.
[0076]
[0077] In addition, according to the stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function of the present invention and the method of using the same, the stackable wireless charging and UV sterilization of the patch-type device are configured to be possible simultaneously, thereby maximizing the efficiency of charging and sterilization of the patch-type device, enabling repeated use through sterilization of the patch-type device, and enabling high-efficiency charging and sterilization of multiple patch-type devices at once in a hospital / clinic or home environment.
[0078]
[0079] In addition, according to the stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function of the present invention and the method of using the same, the stackable wireless charging and UV sterilization of the patch-type device can be performed simultaneously, thereby making it possible to improve the economic feasibility, ease of cleaning, fixing stability, ease of attachment and detachment, and ease of sterilization of the patch-type device that applies biophotonics of a wavelength capable of treating the affected area of the pressure ulcer.
[0080]
[0081] In addition, the various advantageous advantages and effects of the present invention are not limited to the above-described contents, and will be more easily understood in the process of explaining specific embodiments of the present invention.
[0082] FIG. 1 is a drawing showing a configuration in which a light irradiation device is loaded into a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention, as a functional block.
[0083] FIG. 2 is a drawing showing the configuration of a layered wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention, as a functional block.
[0084] FIG. 3 is a schematic diagram illustrating a configuration in which a light irradiation device is loaded on a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to one embodiment of the present invention.
[0085] FIG. 4 is a drawing showing the arrangement configuration of a wireless charging unit and a UV sterilization unit formed in a loading space of a cradle body of a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to one embodiment of the present invention.
[0086] FIG. 5 is a schematic perspective view showing the configuration of a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to one embodiment of the present invention.
[0087] FIG. 6 is a diagram illustrating a flow chart of a method of using a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention.
[0088] <Explanation of symbols>
[0089] 100: Wireless charging cradle according to one embodiment of the present invention
[0090] 101: Light Irradiation Device
[0091] 110: Cradle body
[0092] 111: Loading space
[0093] 120: Wireless charging unit
[0094] 130: UV sterilization unit
[0095] 140: Control Unit
[0096] 141: Control switch
[0097] S110: A step in which a light irradiation device capable of performing light therapy by irradiating light onto a bedsore area is positioned for wireless charging in the loading space of the cradle body.
[0098] S120: A step in which the control unit controls the operation of the wireless charging unit and the UV sterilization unit for wireless charging and UV sterilization of a light irradiation device positioned for wireless charging in the loading space of the cradle body.
[0099] S130: A step of performing wireless charging of a light irradiation device in which a wireless charging unit is located in a loading space of a cradle body.
[0100] S140: A step for performing UV sterilization of a light irradiation device located in a loading space of a cradle body, wherein a UV sterilization unit
[0101] Below, with reference to the attached drawings, embodiments of the present invention are described in detail so that those skilled in the art can easily implement them. However, the present invention may be implemented in various different forms and is not limited to the embodiments described herein. In the drawings, irrelevant parts have been omitted for clarity of description, and similar reference numerals have been used throughout the specification to indicate similar parts.
[0102]
[0103] Throughout the specification, when a part is said to be "connected" to another part, this includes not only the case where it is "directly connected" but also the case where it is "indirectly connected" with another element in between. Furthermore, when a part is said to "include" a component, this should be understood to mean that, unless specifically stated to the contrary, it may include other components rather than excluding them, and does not preclude the presence or addition of one or more other features, numbers, steps, operations, components, parts, or combinations thereof.
[0104]
[0105] The following examples are provided as detailed explanations to aid understanding of the present invention and do not limit the scope of the invention. Therefore, inventions with the same scope and function as the present invention are also within the scope of the present invention.
[0106]
[0107] In addition, each configuration, process, procedure or method included in each embodiment of the present invention may be shared within a scope that is not technically inconsistent with each other.
[0108]
[0109] FIG. 1 is a drawing showing a configuration in which a light irradiation device is loaded into a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention, as a functional block, and FIG. 2 is a drawing showing a configuration in which a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention, as a functional block. As illustrated in FIGS. 1 and 2, a stackable wireless charging cradle (100) for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention may be configured to include a cradle body (110) having a loading space (111) positioned for wireless charging of a light irradiation device (101) capable of performing light treatment through light irradiation to a pressure ulcer area, a wireless charging unit (120) for performing wireless charging of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), a UV sterilization unit (130) for performing UV sterilization of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), and a control unit (140) for controlling the operation of the wireless charging unit (120) and the UV sterilization unit (130). Hereinafter, with reference to the attached drawings, a detailed description will be given of the specific configuration of a laminated wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention.
[0110]
[0111] FIG. 3 is a schematic diagram showing a configuration in which a light irradiation device is loaded on a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention, FIG. 4 is a diagram showing the arrangement configuration of a wireless charging unit and a UV sterilization unit formed in a loading space of a cradle body of a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention, and FIG. 5 is a diagram showing a schematic perspective diagram configuration of a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention.
[0112]
[0113] The cradle body (110) is configured to have a loading space (111) positioned for wireless charging of a light irradiation device (101) capable of performing light therapy through light irradiation to a bedsore area. As illustrated in FIGS. 3 and 5, the cradle body (110) may be configured in a T-shaped structure having a loading space (111) in which a light irradiation device (101) capable of performing light therapy through light irradiation to a bedsore area is positioned for wireless charging of the light irradiation device (101). Here, the cradle body (110) is configured in a T-shaped structure having a loading space (111) in which the light irradiation device (101) is positioned, and a plurality of light irradiation devices (101) may be stacked in the loading space (111).
[0114]
[0115] In addition, the cradle body (110) can be configured to enable UV sterilization and wireless charging in a stacked structure, taking into account the cost-effectiveness, ease of cleaning, fixing stability, ease of attachment and detachment, and sterilization method of the light irradiation device (101), which is a patch-type device that applies biophotonics of a wavelength capable of treating the affected area of bedsores. The cradle body (110) has a stacked structure in which the light irradiation device (101) can be stacked, and the internal shape is designed to be curved to facilitate cleaning management, thereby increasing ease of cleaning. In addition, the light irradiation device (101), which is a patch-type device, is stacked in a stacked form without shaking during the charging process, and is configured with a characteristic structure in which charging efficiency and fixing stability are maximized so that multiple devices can be charged at once.
[0116]
[0117] In addition, the light irradiation device (101) may be configured as an oval patch-shaped device that applies biophotonics of a wavelength capable of treating bedsores. Such light irradiation devices (101) may be stacked in multiples in the loading space (111) of the cradle body (110) of the wireless charging cradle (100) so that wireless charging and UV sterilization can be performed simultaneously. Here, the light irradiation device (101) may be configured to include an LED that generates light in a wavelength band of 600 nm to 1000 nm as a light source that applies biophotonics of a wavelength capable of treating bedsores.
[0118]
[0119] The wireless charging unit (120) is configured to wirelessly charge the light irradiation device (101) positioned in the loading space (111) of the cradle body (110). This wireless charging unit (120) performs wireless charging of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), and may function to wirelessly charge at least one or more light irradiation devices (101) positioned and stacked in the loading space (111). Here, the wireless charging unit (120) may be operated together with the UV sterilization unit (130) under the control of the control unit (140) to be described later.
[0120]
[0121] In addition, as illustrated in FIG. 4, the wireless charging unit (120) is installed inside the central portion of the loading space (111) of the cradle body (110), thereby forming a wireless charging space, and can perform wireless charging of at least one light irradiation device (101) loaded in the charging space.
[0122]
[0123] The UV sterilization unit (130) is configured to perform UV sterilization of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110). This UV sterilization unit (130) may perform UV sterilization of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), and may function to UV sterilize at least one or more light irradiation devices (101) positioned and stacked in the loading space (111). Here, the UV sterilization unit (130) may be arranged so that UV rays are exposed to the periphery of the wireless charging unit (120) that forms a charging space in the central portion of the loading space (111) of the cradle body (110).
[0124]
[0125] In addition, the UV sterilization unit (130) may be configured in a circular structure so that UV rays can be exposed along the outer edge, i.e., the outer border, of the wireless charging unit (120) that forms a charging space in the central portion of the loading space (111) of the cradle body (110), as illustrated in FIGS. 4 and 5, respectively.
[0126]
[0127] The control unit (140) is configured to control the operation of the wireless charging unit (120) and the UV sterilization unit (130). This control unit (140) may be configured to include an operation switch (141) that a user can operate for wireless charging and UV sterilization treatment when at least one light irradiation device (101) is stacked and positioned in the loading space (111) of the cradle body (110). Here, the control unit (140) can operate the wireless charging unit (120) and the UV sterilization unit (130) simultaneously so that the wireless charging and UV sterilization functions of the stacked light irradiation devices (101) can be performed simultaneously through the user's operation of the operation switch (141). That is, the control unit (140) can control the UV sterilization unit (130) to automatically operate in conjunction when the wireless charging unit (120) is charged.
[0128]
[0129] In this way, the wireless charging cradle (100) including a cradle body (110) having a loading space (111) positioned for wireless charging of a light irradiation device (101) capable of performing light treatment through light irradiation to a bedsore area, a wireless charging unit (120) performing wireless charging of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), a UV sterilization unit (130) performing UV sterilization of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), and a control unit (140) for controlling the operation of the wireless charging unit (120) and the UV sterilization unit (130) allows general users in a hospital / clinic or home environment to easily and quickly access the charging process through wireless charging, and by arranging a UV lamp that is automatically applied during charging, the sterilization function of a patch device dedicated to diagnosing / treating bedsores can be performed simultaneously with charging.
[0130]
[0131] FIG. 6 is a diagram illustrating a flowchart of a method for using a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention. As illustrated in FIG. 6, the method for using a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention may be implemented by including a step (S110) in which a light irradiation device capable of performing light treatment by irradiating light onto a pressure ulcer area is positioned for wireless charging in a loading space of a cradle body, a step (S120) in which a control unit controls the operation of a wireless charging unit and a UV sterilization unit for wireless charging and UV sterilization of the light irradiation device positioned for wireless charging in the loading space of the cradle body, a step (S130) in which the wireless charging unit wirelessly charges the light irradiation device positioned in the loading space of the cradle body, and a step (S140) in which the UV sterilization unit performs UV sterilization of the light irradiation device positioned in the loading space of the cradle body.
[0132]
[0133] In step S110, a light irradiation device (101) capable of performing light therapy through light irradiation to a bedsore area is positioned for wireless charging in the loading space (111) of the cradle body (110). The cradle body (110) in step S110 may be configured as a T-shaped structure having a loading space (111) in which the light irradiation device (101) capable of performing light therapy through light irradiation to a bedsore area is positioned for wireless charging, as illustrated in FIGS. 3 and 5, respectively. Here, the cradle body (110) is configured as a T-shaped structure having a loading space (111) in which the light irradiation device (101) is positioned, and a plurality of light irradiation devices (101) may be stacked in the loading space (111).
[0134]
[0135] In addition, the cradle body (110) can be configured to enable UV sterilization and wireless charging in a stacked structure, taking into account the cost-effectiveness, ease of cleaning, fixing stability, ease of attachment and detachment, and sterilization method of the light irradiation device (101), which is a patch-type device that applies biophotonics of a wavelength capable of treating the affected area of bedsores. The cradle body (110) has a stacked structure in which the light irradiation device (101) can be stacked, and the internal shape is designed to be curved to facilitate cleaning management, thereby increasing ease of cleaning. In addition, the light irradiation device (101), which is a patch-type device, is stacked in a stacked form without shaking during the charging process, and is configured with a characteristic structure in which charging efficiency and fixing stability are maximized so that multiple devices can be charged at once.
[0136]
[0137] In addition, the light irradiation device (101) may be configured as an oval patch-shaped device that applies biophotonics of a wavelength capable of treating bedsores. Such light irradiation devices (101) may be stacked in multiples in the loading space (111) of the cradle body (110) of the wireless charging cradle (100) so that wireless charging and UV sterilization can be performed simultaneously. Here, the light irradiation device (101) may be configured to include an LED that generates light in a wavelength band of 600 nm to 1000 nm as a light source that applies biophotonics of a wavelength capable of treating bedsores.
[0138]
[0139] In step S120, the control unit (140) controls the operation of the wireless charging unit (120) and the UV sterilization unit (130) for wireless charging and UV sterilization of the light irradiation device (101) positioned for wireless charging in the loading space (111) of the cradle body (110). The control unit (140) in step S120 may be configured to include an operation switch (141) that the user can operate for wireless charging and UV sterilization treatment in a state where at least one light irradiation device (101) is stacked and positioned in the loading space (111) of the cradle body (110). Here, the control unit (140) can operate the wireless charging unit (120) and the UV sterilization unit (130) simultaneously so that the wireless charging and UV sterilization functions of the stacked light irradiation devices (101) can be performed simultaneously through the user's operation of the operation switch (141). That is, the control unit (140) can control the UV sterilization unit (130) to automatically operate in conjunction when the wireless charging unit (120) is charged.
[0140]
[0141] In step S130, the wireless charging unit (120) performs wireless charging of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110). The wireless charging unit (120) in step S130 performs wireless charging of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), and may function to wirelessly charge at least one or more light irradiation devices (101) positioned and stacked in the loading space (111).
[0142]
[0143] In addition, as illustrated in FIG. 4, the wireless charging unit (120) is installed inside the central portion of the loading space (111) of the cradle body (110), thereby forming a wireless charging space, and can perform wireless charging of at least one light irradiation device (101) loaded in the charging space.
[0144]
[0145] In step S140, the UV sterilization unit (130) performs UV sterilization of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110). The UV sterilization unit (130) in step S140 performs UV sterilization of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), and may function to UV sterilize at least one or more light irradiation devices (101) positioned and stacked in the loading space (111). Here, the UV sterilization unit (130) may be positioned so that UV rays are exposed to the periphery of the wireless charging unit (120) that forms a charging space in the central portion of the loading space (111) of the cradle body (110).
[0146]
[0147] In addition, the UV sterilization unit (130) may be configured in a circular structure so that UV rays can be exposed along the outer edge, i.e., the outer border, of the wireless charging unit (120) that forms a charging space in the central portion of the loading space (111) of the cradle body (110), as illustrated in FIGS. 4 and 5, respectively.
[0148]
[0149] As described above, a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function according to an embodiment of the present invention and a method of using the same include a cradle body having a loading space positioned for wireless charging of a light irradiation device capable of performing light treatment through light irradiation to a pressure ulcer area, a wireless charging unit for performing wireless charging of the light irradiation device positioned in the loading space of the cradle body, a UV sterilization unit for performing UV sterilization of the light irradiation device positioned in the loading space of the cradle body, and a control unit for controlling the operation of the wireless charging unit and the UV sterilization unit, thereby enabling simultaneous stackable wireless charging and UV sterilization of a patch-type device, and thereby further increasing convenience and efficiency of use. In particular, by configuring stackable wireless charging and UV sterilization of a patch-type device to be simultaneous, the efficiency of charging and sterilization of the patch-type device is maximized, and multiple repeated use is possible through sterilization of the patch-type device, and multiple patch-type devices can be charged and sterilized at once in a hospital / clinic or home environment with high efficiency. It is also possible to make a patch-type device that applies biophotonics of a wavelength capable of treating bedsores economically, is easy to clean, has stable fixation, is easy to remove, and has an easy sterilization effect.
[0150]
[0151] The foregoing description of the present invention is for illustrative purposes only, and those skilled in the art will readily appreciate that the present invention can be readily modified into other specific forms without altering the technical spirit or essential characteristics of the present invention. Therefore, the embodiments described above should be understood as illustrative in all respects and not restrictive. For example, each component described as a single entity may be implemented in a distributed manner, and similarly, components described as distributed may be implemented in a combined manner.
[0152]
[0153] The scope of the present invention is indicated by the claims described below rather than the detailed description above, and all changes or modifications derived from the meaning and scope of the claims and their equivalent concepts should be interpreted as being included in the scope of the present invention.
Claims
1. A stackable wireless charging cradle (100) for a pressure ulcer diagnosis and treatment device with a sterilization function, A cradle body (110) having a loading space (111) positioned for wireless charging of a light irradiation device (101) capable of performing light therapy through light irradiation to a bedsore area; A wireless charging unit (120) that performs wireless charging of the light irradiation device (101) located in the loading space (111) of the cradle body (110); A UV sterilization unit (130) that performs UV sterilization of the light irradiation device (101) located in the loading space (111) of the cradle body (110); and A stackable wireless charging cradle for a bedsore diagnosis and treatment device with a sterilization function, characterized in that it includes a control unit (140) for controlling the operation of the wireless charging unit (120) and the UV sterilization unit (130).
2. In the first paragraph, the cradle body (110) A stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that it is configured in a T-shaped structure having a loading space (111) in which a light irradiation device (101) is positioned for wireless charging of a light irradiation device (101) capable of performing light treatment through light irradiation to a pressure ulcer area.
3. In the second paragraph, the cradle body (110) A stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that it is configured in a T-shaped structure having a loading space (111) in which the light irradiation device (101) is positioned, and the light irradiation device (101) is stacked in multiple layers in the loading space (111).
4. In any one of the first to third clauses, the light irradiation device (101) A stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized by comprising an oval-shaped patch-shaped device that applies biophotonics of a wavelength capable of treating pressure ulcer areas.
5. In the fourth paragraph, the light irradiation device (101) A stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that the wireless charging cradle (100) is stacked in multiple layers in the loading space (111) of the cradle body (110) so that wireless charging and UV sterilization are performed simultaneously.
6. In the fourth paragraph, the wireless charging unit (120) A stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that it wirelessly charges the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), and wirelessly charges at least one light irradiation device (101) positioned and stacked in the loading space (111).
7. In the 6th paragraph, the UV sterilization unit (130) A stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that UV sterilization of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110) is performed, and at least one light irradiation device (101) positioned and stacked in the loading space (111) is UV sterilized.
8. In the 7th paragraph, the UV sterilization unit (130) A stackable wireless charging cradle for a bedsore diagnosis and treatment device with a sterilization function, characterized in that the wireless charging unit (120) forming a charging space in the central portion of the loading space (111) of the cradle body (110) is positioned so that UV rays are exposed to the outer surface thereof.
9. A method of using a stackable wireless charging cradle (100) for a pressure ulcer diagnosis and treatment device with a sterilization function, (1) A step in which a light irradiation device (101) capable of performing light treatment through light irradiation to a bedsore area is positioned for wireless charging in the loading space (111) of the cradle body (110); (2) A step in which the control unit (140) controls the operation of the wireless charging unit (120) and the UV sterilization unit (130) for wireless charging and UV sterilization of the light irradiation device (101) positioned for wireless charging in the loading space (111) of the cradle body (110); (3) A step in which the wireless charging unit (120) performs wireless charging of the light irradiation device (101) located in the loading space (111) of the cradle body (110); and (4) A method of using a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that it includes a step of performing UV sterilization of a light irradiation device (101) located in a loading space (111) of the cradle body (110) by a UV sterilization unit (130).
10. In the 9th paragraph, the cradle body (110) A method of using a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that it is configured in a T-shaped structure having a loading space (111) in which a light irradiation device (101) is positioned for wireless charging of a light irradiation device (101) capable of performing light treatment through light irradiation to a pressure ulcer area.
11. In the 10th paragraph, the cradle body (110) A method of using a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that the cradle has a structure in the shape of the letter D and has a loading space (111) in which the light irradiation device (101) is positioned, and the light irradiation device (101) is stacked in multiple layers in the loading space (111).
12. In any one of the 9th to 11th clauses, the light irradiation device (101) A method of using a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized by comprising an oval-shaped patch-shaped device that applies biophotonics of a wavelength capable of treating pressure ulcer areas.
13. In the 12th paragraph, the light irradiation device (101) A method of using a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that the wireless charging cradle (100) is stacked in multiple layers in the loading space (111) of the cradle body (110) so that wireless charging and UV sterilization are performed simultaneously.
14. In the 12th paragraph, the wireless charging unit (120) A method of using a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that wireless charging is performed on the light irradiation device (101) positioned in the loading space (111) of the cradle body (110), and at least one light irradiation device (101) positioned and stacked in the loading space (111) is wirelessly charged.
15. In the 14th paragraph, the UV sterilization unit (130) A method of using a stacked wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that UV sterilization of the light irradiation device (101) positioned in the loading space (111) of the cradle body (110) is performed, and at least one light irradiation device (101) positioned and stacked in the loading space (111) is UV sterilized.
16. In the 15th paragraph, the UV sterilization unit (130) A method of using a stackable wireless charging cradle for a pressure ulcer diagnosis and treatment device with a sterilization function, characterized in that the wireless charging unit (120) forming a charging space in the central portion of the loading space (111) of the cradle body (110) is positioned so that UV rays are exposed to the outer surface thereof.
Citation Information
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