WO2019141240A1 - 一种发光二极管光疗带以及装置 - Google Patents

一种发光二极管光疗带以及装置 Download PDF

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Publication number
WO2019141240A1
WO2019141240A1 PCT/CN2019/072356 CN2019072356W WO2019141240A1 WO 2019141240 A1 WO2019141240 A1 WO 2019141240A1 CN 2019072356 W CN2019072356 W CN 2019072356W WO 2019141240 A1 WO2019141240 A1 WO 2019141240A1
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WO
WIPO (PCT)
Prior art keywords
circuit board
phototherapy
flexible circuit
silica gel
light
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PCT/CN2019/072356
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English (en)
French (fr)
Inventor
赵文广
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纳克维斯环球有限公司
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Publication of WO2019141240A1 publication Critical patent/WO2019141240A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K1/00Printed circuits
    • H05K1/18Printed circuits structurally associated with non-printed electric components
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating

Definitions

  • the present invention relates to the field of medical devices, and in particular to a light-emitting diode phototherapy belt and device.
  • the flexible light-emitting diode phototherapy tapes of the prior art are all realized by covering the flexible circuit board with opaque neoprene and configuring an external power supply.
  • the light-emitting diode is soldered on the flexible circuit board.
  • the side of the neoprene close to the light-emitting diode needs to be left in the hole, so that the flexible light-emitting diode phototherapy belt is not waterproof, cannot be thoroughly cleaned, and chlorine
  • the rubber material contacts the human skin and poses a risk of sensitization.
  • the present invention provides a light-emitting diode phototherapy belt and device for the problems existing in the prior art, which is waterproof, easy to clean, and has no sensitization risk when contacting human skin.
  • the invention provides a light-emitting diode phototherapy belt, comprising an opaque silica gel layer, a transparent silica gel layer and a flexible circuit board;
  • the opaque silica gel layer is bonded to the periphery of the transparent silica gel layer to wrap the flexible circuit board between the opaque silica gel layer and the transparent silica gel layer; one side of the flexible circuit board is soldered a plurality of light emitting diodes, wherein one side of the flexible circuit board soldered with the light emitting diode is in contact with the transparent silicon dioxide layer, and the other side of the flexible circuit board is in contact with the opaque silicone layer; An opening that communicates with the flexible circuit board to electrically connect the control device to the flexible circuit board after being inserted into the opening.
  • a side of the transparent silicone layer that abuts the flexible circuit board has a groove disposed in one-to-one correspondence with the plurality of light-emitting diodes, and each of the light-emitting diodes is located in a corresponding recess thereof.
  • a side of the opaque silicone layer away from the flexible circuit board has a first protrusion, the opening is disposed on the first protrusion; and the first protrusion is adjacent to the flexible circuit board
  • One side is provided with a receiving groove, and the receiving groove is in communication with the opening; the flexible circuit board includes an input terminal, and the input terminal is disposed in the receiving groove to allow the control device to be inserted into the opening
  • the input terminals are electrically connected.
  • the first protrusion is further provided with a waterproof plug, and the waterproof plug is matched in size and shape to the opening for passing through the waterproof plug when the LED phototherapy belt is not used.
  • the opening is taken, and when the LED phototherapy belt is used, the waterproof plug is taken out from the opening.
  • the LED phototherapy belt further includes a Velcro strap.
  • a second protrusion is further disposed on an end of the opaque silicone layer away from the first protrusion, and the first protrusion and the second protrusion are respectively provided with a through hole, and each through hole is correspondingly disposed a metal ring, one end of each of the metal rings is connected to the other end through a corresponding through hole, so that the metal ring is fastened on the opaque silicone layer; the two ends of the Velcro strap are respectively fixed On the two metal rings, the user wears the LED phototherapy belt.
  • a thermally conductive powder is added to the opaque silica gel layer, and the transparent silica gel layer is made of fumed silica as a reinforcing agent.
  • the present invention provides a light-emitting diode phototherapy apparatus including a control device and the above-described light-emitting diode phototherapy tape;
  • the control device includes a control box and an output terminal electrically connected to the control box;
  • the output terminal of the control box is inserted into the opening of the LED phototherapy strip to be electrically connected to the flexible circuit board, so that the control box controls the operation of the LED phototherapy belt.
  • control box includes a box, a circuit board and a button
  • a receiving cavity is disposed in the casing, the circuit board is disposed in the receiving cavity, and one side of the casing is provided with a receiving hole, and the receiving hole is in communication with the receiving cavity, and the button is disposed at the
  • the receiving hole is electrically connected to the circuit board, and the circuit board is further electrically connected to the output terminal, so that the circuit board controls the operation of the LED phototherapy band according to a user's key operation.
  • the LED phototherapy device further includes a power supply device
  • the power supply device is electrically connected to a circuit board of the control box through a power terminal for supplying power to the control device and the LED phototherapy band.
  • the power supply device is a power adapter, a car charger or a mobile power source.
  • the flexible circuit board is wrapped in a silicone layer, the silica gel layer is non-toxic and harmless, and there is no risk of sensitization in contact with human skin.
  • the silica gel layer on one side of the LED adopts a transparent silica gel layer, so that the light of the LED can be worn without opening.
  • the LED phototherapy tape is waterproof and easy to clean;
  • the transparent silica gel layer uses fumed silica as a reinforcing agent to make the light penetrate the coating layer to the human body to the maximum extent;
  • the opaque silica gel layer adds the thermal conductive powder, which is beneficial to the package.
  • the heat generated by the infrared diodes covered in the two layers of silica gel is exported as soon as possible, avoiding heat accumulation and causing overheating, burning the human skin; setting control device to control the working current and time of the LED phototherapy band, so that the light output of the LED phototherapy band Easy to control.
  • FIG. 1 is a schematic exploded view of a light-emitting diode phototherapy band according to Embodiment 1 of the present invention
  • FIG. 2 is a schematic structural view of a light-emitting diode phototherapy belt according to Embodiment 1 of the present invention
  • FIG. 3 is a schematic structural view of a transparent silica gel layer in a light-emitting diode phototherapy belt according to Embodiment 1 of the present invention
  • FIG. 4 is a schematic structural diagram of a light-emitting diode phototherapy belt according to Embodiment 1 of the present invention.
  • FIG. 5 is a schematic structural diagram of a light-emitting diode phototherapy apparatus according to Embodiment 2 of the present invention.
  • FIG. 6 is a schematic structural diagram of a control device in a light-emitting diode phototherapy apparatus according to Embodiment 2 of the present invention.
  • Embodiments of the present invention provide a light-emitting diode phototherapy tape, see FIG. 1, including an opaque silicone layer 2, a transparent silicone layer 5, and a flexible circuit board 4;
  • the opaque silica gel layer 2 is bonded to the periphery of the transparent silica gel layer 5 to wrap the flexible circuit board 4 between the opaque silica gel layer 2 and the transparent silica gel layer 5; the flexible circuit A plurality of light emitting diodes 41 are soldered to one surface of the board 4, and as shown in FIG. 2, one side of the flexible circuit board 4 to which the light emitting diodes 41 are soldered is in contact with the transparent silicone layer 5, and the other side of the flexible circuit board 4 Adjacent to the opaque silicone layer 2; the opaque silicone layer 2 is provided with an opening 21, and the opening 21 is in communication with the flexible circuit board 4, so that the control device is inserted into the opening 21 and the flexible The circuit board 4 is electrically connected.
  • the area of the flexible circuit board is generally smaller than the area of the opaque silica layer, and is smaller than the area of the transparent silica layer.
  • the flexible circuit board is sandwiched between the opaque silica layer and the transparent silica layer, and is located on the opaque silica layer and the transparent silica layer.
  • the central area allows direct contact between the perimeter of the opaque silicone layer and the perimeter of the transparent silica layer.
  • the opaque silica layer is surrounded and transparent by a non-toxic, non-hazardous binder (preferably a medical grade adhesive manufactured by Dow Corning).
  • the sides of the silicone layer are bonded together to wrap the flexible circuit board therein.
  • the LEDs soldered on the flexible circuit board are located on one side of the transparent silicone layer so that light can penetrate the transparent silica layer to act on the human body.
  • the silica gel layer on one side of the light-emitting diode adopts a transparent silica gel layer, and the light of the light-emitting diode can be penetrated without opening the hole, so that the light-emitting diode phototherapy belt is waterproof and easy to clean, and the silica gel layer is non-toxic and harmless. Exposure to human skin is not a risk of sensitization.
  • a side of the transparent silicone layer 5 that abuts the flexible circuit board 4 has a groove 51 disposed in one-to-one correspondence with the at least one light-emitting diode 41, and each light-emitting diode 41 is located. Its corresponding groove 51.
  • the groove provided on the transparent silica layer provides an assembly space for the LED on the flexible circuit board, and reduces the thickness of the transparent silica layer, thereby increasing the softness of the LED phototherapy band and increasing the transparency of the transparent silicone layer. Breathability on the surface of human skin.
  • a side of the opaque silicone layer 2 remote from the flexible circuit board 4 has a first protrusion 22, and the opening 21 is disposed on the first protrusion 22;
  • a side of the first protrusion 21 adjacent to the flexible circuit board 4 is provided with a receiving groove (not shown), and the receiving groove communicates with the opening 21;
  • the flexible circuit board 4 includes an input terminal The input terminal 42 is disposed in the accommodating groove to electrically connect the control device to the input terminal 42 after being inserted into the opening 21.
  • the position of the first protrusion on the opaque silicone layer corresponds to the position of the input terminal of the flexible circuit board, and the side of the first protrusion facing the flexible circuit board is provided with a groove for the flexible circuit.
  • the board terminals are placed.
  • the first protrusion is further provided with an opening communicating with the groove.
  • the first protrusion 22 is further provided with a waterproof plug 3, and the waterproof plug 3 is matched in size and shape to the opening 21 for not using the light emitting diode.
  • the opening 21 is plugged by the waterproof plug 3, and the waterproof plug 3 is taken out from the opening 21 when the light-emitting diode phototherapy tape is used.
  • the waterproof plug is inserted into the opening to prevent water from entering the flexible circuit board through the opening; when using the LED phototherapy belt, the waterproof plug is removed, An output terminal of the control device is inserted into the opening to be electrically connected to the flexible circuit board.
  • the LED phototherapy belt further includes a Velcro strap 6.
  • an end of the opaque silicone layer 2 remote from the first protrusion 22 is further provided with a second protrusion 24 , and the first protrusion 22 and the second protrusion 24 are respectively disposed on the second protrusion 24 .
  • the two sides of the Velcro strap 6 are respectively fixed on the two metal rings 1 for the user to wear the LED phototherapy belt.
  • first protrusion is generally disposed at one end of the outer side of the opaque silicone layer
  • second protrusion is disposed at the other end of the outer side of the opaque silicone layer
  • the through holes of the first protrusion and the second protrusion are disposed in parallel
  • Each metal ring is fixed on the opaque silicone layer through the corresponding through hole
  • the two ends of the Velcro strap are fixed on the two metal rings to fix the Velcro strap and the LED phototherapy belt, and the user can pass Velcro straps wear LED phototherapy bands.
  • a thermally conductive powder is added to the opaque silica gel layer, and the transparent silica gel layer is made of fumed silica as a reinforcing agent.
  • the heat-conducting powder is added to the opaque silica gel layer, which facilitates the heat generated by the infrared light-emitting diode to be discharged as soon as possible, so as to prevent the phototherapy belt from overheating and burning the human skin.
  • the transparent silica gel layer uses fumed silica as a reinforcing agent to achieve the best penetration of light energy.
  • an embodiment of the present invention further provides an LED phototherapy device, as shown in FIG. 5, comprising a control device and the above-mentioned LED phototherapy band 8;
  • the control device includes a control box 71 and the control box 71 Connected output terminal 72;
  • the output terminal 72 is inserted into the opening 21 of the light-emitting diode phototherapy tape 8 to be electrically connected to the flexible circuit board, so that the control box 71 controls the light-emitting diode phototherapy tape 8 to operate.
  • the operation of the LED phototherapy band is controlled by the control device.
  • the output terminal of the control device is electrically connected to the input terminal of the LED phototherapy band to realize communication between the control device and the LED phototherapy band, and the control device sends a control signal to the flexible circuit board in the LED phototherapy band to control the operation of the flexible circuit board.
  • control box 71 includes a box body, a circuit board 74 and a button 75; the box body includes an upper case 76 and a lower case 77;
  • a receiving cavity is formed between the upper casing 76 and the lower casing 77.
  • the circuit board 74 is disposed in the receiving cavity.
  • One side of the casing (such as the casing 76) is provided with a receiving hole 73, and the receiving hole 73 is The receiving cavity is in communication, the button 75 is disposed in the receiving hole 73 and electrically connected to the circuit board 74, and the circuit board 74 is further electrically connected to the output terminal 72 to make the circuit board 74
  • the light-emitting diode phototherapy belt is controlled according to a user's key operation.
  • buttons can be set according to actual needs, as shown in FIG. 5, generally divided into three buttons, namely, button T, button EN, and button S.
  • the circuit board is preloaded with a corresponding control program, the button T is used to select the working time, the button EN is used to select the light energy of the LED, and the button S is used to start and stop the operation.
  • the user can select the working time and the light energy of the LED to start and stop the operation of the LED phototherapy belt by operating the button. Each time the operation is stopped, the board records the time and energy combination of the last treatment.
  • the LED phototherapy device further includes a power supply device 9;
  • the power supply device 9 is electrically connected to the circuit board 74 via a power terminal 91 for supplying power to the control device 7 and the LED phototherapy belt 8.
  • the power supply device is a power adapter, a car charger or a mobile power source.
  • the power supply device supplies power to the control device, and the control device provides a stable operating current to the LED phototherapy band and drives the LED to output light energy.
  • the embodiment of the invention adopts a silica gel layer to wrap the flexible circuit board therein.
  • the silica gel layer is non-toxic and harmless, and has no sensitization risk when contacting human skin.
  • the silica gel layer on one side of the light-emitting diode adopts a transparent silica gel layer, and the light is emitted without opening. The light from the diode penetrates out, making the LED phototherapy tape waterproof and easy to clean; the transparent silica layer uses gas-phase white carbon black as a reinforcing agent to make the light penetrate the coating layer to the human body; the opaque silicone layer adds heat conduction.
  • Powder which is beneficial to the heat generated by the infrared diodes coated in the two layers of silica gel, is introduced as soon as possible, avoiding the accumulation of heat and causing overheating, burning the human skin; setting control device to control the working current and time of the LED phototherapy band, so that the light-emitting diode phototherapy The energy with output is easy to control.

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  • Biomedical Technology (AREA)
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Abstract

一种发光二极管光疗带(8),包括不透明硅胶层(2)、透明硅胶层(5)和柔性电路板(4);所述不透明硅胶层(2)与所述透明硅胶层(5)的四周粘合在一起,将所述柔性电路板(4)包裹在所述不透明硅胶层(2)和所述透明硅胶层(5)之间;所述柔性电路板(4)的一面焊接有多个发光二极管(41),所述柔性电路板(4)焊接有发光二极管(41)的一面与所述透明硅胶层(5)相抵接,所述柔性电路板(4)的另一面与所述不透明硅胶层(2)相抵接;所述不透明硅胶层(2)上设有开口(21),所述开口(21)与所述柔性电路板(4)相连通,以使控制装置(7)插入所述开口(21)后与所述柔性电路板电连接(4)。相应的,还提供了一种发光二极管光疗装置。该光疗装置能够防水,易于清洗,且接触人体皮肤无致敏风险。

Description

一种发光二极管光疗带以及装置 技术领域
本发明涉及医疗器械领域,尤其涉及一种发光二极管光疗带以及装置。
背景技术
现有技术中的柔性发光二极管光疗带均是用不透明的氯丁橡胶包覆柔性线路板并配置外接电源来实现。但是柔性线路板上焊接有发光二极管,为了让发光二极管的发光面裸露出来,氯丁橡胶的靠近发光二极管的一面需要留孔,从而导致柔性发光二极管光疗带不防水,不能彻底清洗,而且,氯丁橡胶材料接触人体皮肤,有致敏的风险。
技术问题
本发明针对现有技术中存在的问题,提供了一种发光二极管光疗带及装置,能够防水,易于清洗,且接触人体皮肤无致敏风险。
技术解决方案
本发明就上述技术问题而提出的技术方案如下:
本发明提供一种发光二极管光疗带,包括不透明硅胶层、透明硅胶层和柔性电路板;
所述不透明硅胶层与所述透明硅胶层的四周粘合在一起,以将所述柔性电路板包裹在所述不透明硅胶层和所述透明硅胶层之间;所述柔性电路板的一面焊接有多个发光二极管,所述柔性电路板焊接有发光二极管的一面与所述透明硅胶层相抵接,所述柔性电路板的另一面与所述不透明硅胶层相抵接;所述不透明硅胶层上设有开口,所述开口与所述柔性电路板相连通,以使控制装置插入所述开口后与所述柔性电路板电连接。
进一步地,所述透明硅胶层与所述柔性电路板相抵接的一面具有与所述多个发光二极管一一对应设置的凹槽,每个发光二极管位于其相应的凹槽中。
进一步地,所述不透明硅胶层的远离所述柔性电路板的一面具有第一凸起,所述开口设置在所述第一凸起上;所述第一凸起的靠近所述柔性电路板的一面设有容纳槽,且所述容纳槽与所述开口相连通;所述柔性电路板包括输入端子,所述输入端子设置在所述容纳槽中,以使控制装置插入所述开口后与所述输入端子电连接。
进一步地,所述第一凸起上还设有防水塞,所述防水塞的大小和形状与所述开口相匹配,用于在不使用所述发光二极管光疗带时,通过所述防水塞塞住所述开口,在使用所述发光二极管光疗带时,从所述开口处取出所述防水塞。
进一步地,所述发光二极管光疗带还包括魔术贴绑带。
所述不透明硅胶层的远离所述第一凸起的一端还设有第二凸起,所述第一凸起和所述第二凸起上均设有通孔,且每一通孔处对应设有金属环,每一所述金属环的一端穿过相应的通孔与其另一端连接,以使所述金属环紧固在所述不透明硅胶层上;所述魔术贴绑带的两端分别固定在两个金属环上,以供用户穿戴所述发光二极管光疗带。
优选地,所述不透明硅胶层中添加有导热粉,所述透明硅胶层采用气相白炭黑作为补强剂。
相应地,本发明提供一种发光二极管光疗装置,包括控制装置和上述发光二极管光疗带;所述控制装置包括控制盒以及与所述控制盒电连接的输出端子;
在使用所述发光二极管光疗带时,所述控制盒的输出端子插入所述发光二极管光疗带的开口与柔性电路板电连接,使所述控制盒控制所述发光二极管光疗带工作。
进一步地,所述控制盒包括盒体、电路板和按键;
所述盒体内设有容纳腔,所述电路板设置在所述容纳腔中,所述盒体的一面开设有容纳孔,所述容纳孔与所述容纳腔相连通,所述按键设置在所述容纳孔中且与所述电路板电连接,所述电路板还与所述输出端子电连接,使所述电路板根据用户的按键操作控制所述发光二极管光疗带工作。
进一步地,所述发光二极管光疗装置还包括供电装置;
所述供电装置通过电源端子与所述控制盒的电路板电连接,用于给所述控制装置和所述发光二极管光疗带供电。
优选地,所述供电装置为电源适配器、车载充电器或移动电源。
有益效果
本发明实施例提供的技术方案带来的有益效果是:
采用硅胶层将柔性电路板包裹在其中,硅胶层无毒、无害,接触人体皮肤无致敏风险,位于发光二极管一面的硅胶层采用透明硅胶层,无需开孔即可使发光二极管的光线穿透出去,使发光二极管光疗带防水、易于清理;透明硅胶层采用气相白炭黑作为补强剂,使光线最大限度地穿透包覆层, 作用于人体;不透明硅胶层添加导热粉,利于包覆在两层硅胶里的红外线二极管产生的热量尽快导出, 避免热量聚积导致过热, 灼伤人体皮肤;设置控制装置,对发光二极管光疗带的工作电流和时间进行控制,使发光二极管光疗带输出的能量易于控制。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例一提供的发光二极管光疗带的分解结构示意图;
图2是本发明实施例一提供的发光二极管光疗带的结构示意图;
图3是本发明实施例一提供的发光二极管光疗带中透明硅胶层的结构示意图;
图4是本发明实施例一提供的发光二极管光疗带的具体结构示意图;
图5是本发明实施例二提供的发光二极管光疗装置的结构示意图;
图6是本发明实施例二提供的发光二极管光疗装置中控制装置的结构示意图。
本发明的实施方式
为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明实施方式作进一步地详细描述。
实施例一
本发明实施例提供了一种发光二极管光疗带,参见图1,包括不透明硅胶层2、透明硅胶层5和柔性电路板4;
所述不透明硅胶层2与所述透明硅胶层5的四周粘合在一起,以将所述柔性电路板4包裹在所述不透明硅胶层2和所述透明硅胶层5之间;所述柔性电路板4的一面焊接有多个发光二极管41,如图2所示,所述柔性电路板4焊接有发光二极管41的一面与所述透明硅胶层5相抵接,所述柔性电路板4的另一面与所述不透明硅胶层2相抵接;所述不透明硅胶层2上设有开口21,所述开口21与所述柔性电路板4相连通,以使控制装置插入所述开口21后与所述柔性电路板4电连接。
需要说明的是,柔性电路板的面积一般小于不透明硅胶层的面积,同时小于透明硅胶层的面积,柔性电路板夹在不透明硅胶层和透明硅胶层之间,且位于不透明硅胶层和透明硅胶层的中心区域,使不透明硅胶层的四周和透明硅胶层的四周能够直接接触,通过无毒无害的粘合剂(优选为道康宁公司生产的医用级粘合剂)将不透明硅胶层的四周和透明硅胶层的四周粘合在一起,以将柔性电路板包裹在其中。柔性电路板上焊接的发光二极管位于透明硅胶层一侧,以使光线能够穿透透明硅胶层作用于人体。本实施例将位于发光二极管一侧的硅胶层采用透明硅胶层,无需开孔即可使发光二极管的光线穿透出去,使发光二极管光疗带防水、易于清理,而且硅胶层无毒、无害,接触人体皮肤无致敏风险。
进一步地,如图3所示,所述透明硅胶层5与所述柔性电路板4相抵接的一面具有与所述至少一个发光二极管41一一对应设置的凹槽51,每个发光二极管41位于其相应的凹槽51中。
需要说明的是,透明硅胶层上设置的凹槽给柔性电路板上的发光二极管提供装配空间,且降低透明硅胶层的厚度,从而增加发光二极管光疗带的柔软度,同时增加透明硅胶层贴合在人体皮肤表面的透气性。
进一步地,如图1所示,所述不透明硅胶层2的远离所述柔性电路板4的一侧具有第一凸起22,所述开口21设置在所述第一凸起22上;所述第一凸起21的靠近所述柔性电路板4的一侧设有容纳槽(图中未示出),且所述容纳槽与所述开口21相连通;所述柔性电路板4包括输入端子42,所述输入端子42设置在所述容纳槽中,以使控制装置插入所述开口21后与所述输入端子42电连接。
需要说明的是,不透明硅胶层上的第一凸起的位置与柔性电路板的输入端子的位置相对应,且第一凸起的朝向柔性电路板的一侧设有凹槽,以供柔性电路板端子放置。另外,第一凸起上还设有与凹槽相连通的开口,在使用发光二极管光疗带时,将控制装置的输出端子插入到开口处,与柔性电路板的输入端子电连接,即可实现控制装置对柔性电路板的控制,进而实现控制装置对发光二极管光疗带工作的控制。
进一步地,如图1所示,所述第一凸起22上还设有防水塞3,所述防水塞3的大小和形状与所述开口21相匹配,用于在不使用所述发光二极管光疗带时,通过所述防水塞3塞住所述开口21,在使用所述发光二极管光疗带时,从所述开口21处取出所述防水塞3。
需要说明的是,在不使用发光二极管光疗带时,无需插入控制装置,将防水塞塞入开口,以防止水通过开口进入柔性电路板;在使用发光二极管光疗带时,取下防水塞,将控制装置的输出端子插入开口,以与柔性电路板电连接。
进一步地,如图4所示,所述发光二极管光疗带还包括魔术贴绑带6。
结合图1所示,所述不透明硅胶层2的远离所述第一凸起22的一端还设有第二凸起24,所述第一凸起22和所述第二凸起24上均设有通孔25,且每一通孔25处对应设有金属环1,每一所述金属环1的一端穿过相应的通孔25与其另一端连接,以使所述金属环1紧固在所述不透明硅胶层2上;所述魔术贴绑带6的两端分别固定在两个金属环1上,以供用户穿戴所述发光二极管光疗带。
需要说明的是,第一凸起一般设置在不透明硅胶层的外侧的一端,第二凸起设置在不透明硅胶层的外侧的另一端,第一凸起和第二凸起上的通孔平行设置,每个金属环通过相应的通孔固定在不透明硅胶层上,魔术贴绑带的两端固定在两个金属环上,以将魔术贴绑带与发光二极管光疗带固定连接,用户即可通过魔术贴绑带穿戴发光二极管光疗带。
优选地,所述不透明硅胶层中添加有导热粉,所述透明硅胶层采用气相白炭黑作为补强剂。
需要说明的是,不透明硅胶层中添加有导热粉,利于红外线发光二极管产生的热量尽快导出, 以免光疗带过热, 灼伤人体皮肤。透明硅胶层采用气相白炭黑为补强剂, 达到光能量的最佳穿透效果。 
实施例二
相应地,本发明实施例还提供了一种发光二极管光疗装置,如图5所示,包括控制装置和上述发光二极管光疗带8;所述控制装置包括控制盒71以及与所述控制盒71电连接的输出端子72;
在使用所述发光二极管光疗带8时,所述输出端子72插入所述发光二极管光疗带8的开口21与柔性电路板电连接,使所述控制盒71控制所述发光二极管光疗带8工作。
需要说明的是,发光二极管光疗带的工作由控制装置来控制。控制装置的输出端子与发光二极管光疗带的输入端子电连接,实现控制装置与发光二极管光疗带的通信,控制装置向发光二极管光疗带中的柔性电路板发送控制信号,以控制柔性电路板工作。
进一步地,如图6所示,所述控制盒71包括盒体、电路板74和按键75;所述盒体包括上壳76和下壳77;
上壳76和下壳77之间构成容纳腔,所述电路板74设置在所述容纳腔中,所述盒体的一侧(如上壳76)开设有容纳孔73,所述容纳孔73与所述容纳腔相连通,所述按键75设置在所述容纳孔73中且与所述电路板74电连接,所述电路板74还与所述输出端子72电连接,使所述电路板74根据用户的按键操作控制所述发光二极管光疗带工作。
需要说明的是,按键可以根据实际需求设置多个,如图5所示,一般分为三个按键,即按键T、按键EN和按键S。电路板中预载有相应的控制程序,按键T用于选择工作时间,按键EN用于选择发光二极管的光能量,按键S用于操作的开始和停止。
用户可通过对按键的操作,选择工作时间和发光二极管的光能量,启动和停止发光二极管光疗带的工作,每次停止工作时,电路板记录最后一次治疗的时间和能量组合。
进一步地,如图5所示,所述发光二极管光疗装置还包括供电装置9;
所述供电装置9通过电源端子91与所述电路板74电连接,用于给所述控制装置7和所述发光二极管光疗带8供电。
优选地,所述供电装置为电源适配器、车载充电器或移动电源。
需要说明的是,供电装置给控制装置供电,进而控制装置给发光二极管光疗带提供稳定的工作电流,驱动发光二极管输出光能量。
本发明实施例采用硅胶层将柔性电路板包裹在其中,硅胶层无毒、无害,接触人体皮肤无致敏风险,位于发光二极管一面的硅胶层采用透明硅胶层,无需开孔即可使发光二极管的光线穿透出去,使发光二极管光疗带防水、易于清理;透明硅胶层采用气相白炭黑作为补强剂,使光线最大限度地穿透包覆层, 作用于人体;不透明硅胶层添加导热粉,利于包覆在两层硅胶里的红外线二极管产生的热量尽快导出, 避免热量聚积导致过热, 灼伤人体皮肤;设置控制装置,对发光二极管光疗带的工作电流和时间进行控制,使发光二极管光疗带输出的能量易于控制。
以上所述仅为本发明的较佳实施例,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种发光二极管光疗带,其特征在于,包括不透明硅胶层、透明硅胶层和柔性电路板;
    所述不透明硅胶层与所述透明硅胶层的四周粘合在一起,以将所述柔性电路板包裹在所述不透明硅胶层和所述透明硅胶层之间;所述柔性电路板的一面焊接有多个发光二极管,所述柔性电路板焊接有发光二极管的一面与所述透明硅胶层相抵接,所述柔性电路板的另一面与所述不透明硅胶层相抵接;所述不透明硅胶层上设有开口,所述开口与所述柔性电路板相连通,以使控制装置插入所述开口后与所述柔性电路板电连接。
  2. 根据权利要求1所述的发光二极管光疗带,其特征在于,所述透明硅胶层与所述柔性电路板相抵接的一面具有与所述多个发光二极管一一对应设置的凹槽,每个发光二极管位于其相应的凹槽中。
  3. 根据权利要求1所述的发光二极管光疗带,其特征在于,所述不透明硅胶层的远离所述柔性电路板的一面具有第一凸起,所述开口设置在所述第一凸起上;所述第一凸起的靠近所述柔性电路板的一面设有容纳槽,且所述容纳槽与所述开口相连通;所述柔性电路板包括输入端子,所述输入端子设置在所述容纳槽中,以使控制装置插入所述开口后与所述输入端子电连接。
  4. 根据权利要求3所述的发光二极管光疗带,其特征在于,所述第一凸起上还设有防水塞,所述防水塞的大小和形状与所述开口相匹配,用于在不使用所述发光二极管光疗带时,通过所述防水塞塞住所述开口,在使用所述发光二极管光疗带时,从所述开口处取出所述防水塞。
  5. 根据权利要求3所述的发光二极管光疗带,其特征在于,所述发光二极管光疗带还包括魔术贴绑带;
    所述不透明硅胶层的远离所述第一凸起的一端还设有第二凸起,所述第一凸起和所述第二凸起上均设有通孔,且每一通孔处对应设有金属环,每一所述金属环的一端穿过相应的通孔与其另一端连接,以使所述金属环紧固在所述不透明硅胶层上;所述魔术贴绑带的两端分别固定在两个金属环上,以供用户穿戴所述发光二极管光疗带。
  6. 根据权利要求1所述的发光二极管光疗带,其特征在于,所述不透明硅胶层中添加有导热粉,所述透明硅胶层采用气相白炭黑作为补强剂。
  7. 一种发光二极管光疗装置,其特征在于,包括控制装置和如权利要求1至5任一项所述的发光二极管光疗带;所述控制装置包括控制盒以及与所述控制盒电连接的输出端子;在使用所述发光二极管光疗带时,所述控制盒的输出端子插入所述发光二极管光疗带的开口与柔性电路板电连接,使所述控制盒控制所述发光二极管光疗带工作。
  8. 根据权利要求7所述的发光二极管光疗装置,其特征在于,所述控制盒包括盒体、电路板和按键;
    所述盒体内设有容纳腔,所述电路板设置在所述容纳腔中,所述盒体的一侧开设有容纳孔,所述容纳孔与所述容纳腔相连通,所述按键设置在所述容纳孔中且与所述电路板电连接,所述电路板还与所述输出端子电连接,使所述电路板根据用户的按键操作控制所述发光二极管光疗带工作。
  9. 根据权利要求7所述的发光二极管光疗装置,其特征在于,所述发光二极管光疗装置还包括供电装置;所述供电装置通过电源端子与所述电路板电连接,用于给所述控制装置和所述发光二极管光疗带供电。
  10. 根据权利要求9所述的发光二极管光疗装置,其特征在于,所述供电装置为电源适配器、车载充电器或移动电源。
     
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