CN211243681U - Depilatory instrument with radio frequency function - Google Patents

Depilatory instrument with radio frequency function Download PDF

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Publication number
CN211243681U
CN211243681U CN201921766771.6U CN201921766771U CN211243681U CN 211243681 U CN211243681 U CN 211243681U CN 201921766771 U CN201921766771 U CN 201921766771U CN 211243681 U CN211243681 U CN 211243681U
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unit
radio frequency
circuit
cold compress
control circuit
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CN201921766771.6U
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陈乐广
陈乐伟
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Guangdong Elfbeauty Intelligent Technology Co ltd
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Guangdong Elfbeauty Intelligent Technology Co ltd
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Abstract

The utility model discloses a depilatory apparatus with radio frequency function, which comprises a shell, a depilatory apparatus main body arranged in the shell and a treatment head exposed or selectively exposed out of the shell; the main body of the depilating instrument comprises a power supply module, a processor, a control circuit, a skin cold compress unit, a light irradiation depilating unit and an RF radio frequency unit; the power module, the processor and the control circuit are sequentially connected, and the control circuit is respectively connected with the skin cold compress unit, the light irradiation unhairing unit and the RF unit; the skin cold compress unit, the light irradiation unhairing unit and the RF unit are all output by the treatment head; so, integrate many-sided functions of light irradiation unhairing, skin cold compress and RF radio frequency on same appearance that moults for the function of the appearance that moults is abundanter, does not need a plurality of instruments of independent configuration, has reduced the acquisition cost, and the person of also being convenient for deposits the management to the instrument of user.

Description

Depilatory instrument with radio frequency function
Technical Field
The utility model relates to an appearance field technique that moults especially indicates an appearance that moults with radio frequency function.
Background
The existing depilatory instrument mainly has two types, one type is that there is the light irradiation function of mouling, the other type has the light irradiation function of mouling concurrently and skin cold compress function, and when in actual use, it all has user experience effect to receive the limitation scheduling problem, and moreover, its circuit control structural design is comparatively complicated, on the one hand, leads to the design cost of manufacture to be difficult to further control, and on the other hand, complicated circuit also leads to automatically controlled fault rate high.
Therefore, a new technical solution needs to be developed to solve the above problems.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model discloses to the disappearance that prior art exists, its main objective provides a depilatory instrument with radio frequency function, integrates the many-sided function of light irradiation unhairing, skin cold compress and RF radio frequency on same depilatory instrument for depilatory instrument's function is abundanter, does not need a plurality of instruments of independent configuration, has reduced the acquisition cost, also convenient to use person to the management of depositing of instrument.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a depilating device with radio frequency function comprises a housing, a depilating device main body arranged in the housing, and a treatment head exposed or selectively exposed out of the housing;
the main body of the depilating instrument comprises a power supply module, a processor, a control circuit, a skin cold compress unit, a light irradiation depilating unit and an RF radio frequency unit; the power module, the processor and the control circuit are sequentially connected, and the control circuit is respectively connected with the skin cold compress unit, the light irradiation unhairing unit and the RF unit; the skin cold compress unit, the light irradiation unhairing unit and the RF unit are all output by the treatment head.
Preferably, the control circuit is connected with a driving circuit, and the driving circuit is respectively connected with the skin cold compress unit, the light irradiation unhairing unit and the RF unit.
As a preferable scheme, the skin cold compress unit comprises a refrigeration driving circuit and a refrigeration device, the driving circuit is connected to the refrigeration driving circuit, the refrigeration driving circuit is connected to the refrigeration device, and the refrigeration device performs cold compress on the skin through the treatment head.
As a preferred scheme, the light irradiation unit that moults is including intense pulse light drive circuit, intense pulse light output device, drive circuit connects in intense pulse light drive circuit, intense pulse light drive circuit connects in intense pulse light output device, intense pulse light output device exports intense pulse light through the treatment head.
As a preferred scheme, the RF radio frequency unit includes a current collecting circuit, an RF radio frequency energy generating circuit, and an RF radio frequency output device; the drive circuit is connected to the current acquisition circuit, the RF radio frequency energy generation circuit and the RF radio frequency output device are sequentially connected, and the RF radio frequency output device outputs RF radio frequency energy through the treatment head.
Preferably, the drive circuit is further connected to a cooling device for dissipating heat from the epilating apparatus.
Preferably, the control circuit is further connected with a temperature sensor.
Preferably, the control circuit is further connected with a skin identification module.
As a preferable scheme, the control circuit is further connected with a control unit, and the control unit is a key control device, a touch control device or a voice control device.
As a preferable scheme, the control circuit is further connected with a display module and/or a warning system.
Compared with the prior art, the utility model has obvious advantages and beneficial effects, concretely speaking, according to the technical scheme, the light irradiation unhairing, skin cold compress and RF radio frequency multi-aspect functions are integrated on the same unhairing instrument, so that the unhairing instrument has more abundant functions, a plurality of instruments do not need to be configured independently, the purchase cost is reduced, and the instrument storage management of a user is convenient; the RF radio frequency unit is added, so that the mechanical structure of the depilating instrument cannot be excessively increased, the circuit of the RF radio frequency unit is mainly added on the circuit and is connected with the original control circuit, the circuit is simple, the manufacturing feasibility is high, the practicability is high, and the depilating instrument is suitable for being popularized and applied to various depilating instruments.
To illustrate the structural features and functions of the present invention more clearly, the present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
Drawings
FIG. 1 is an assembled view of the preferred embodiment of the present invention;
FIG. 2 is an exploded view of the preferred embodiment of the present invention;
FIG. 3 is a first partial structural view of the preferred embodiment of the present invention;
FIG. 4 is a front view of the structure shown in FIG. 3;
FIG. 5 is an exploded view of the structure shown in FIG. 3;
FIG. 6 is another exploded view of the structure shown in FIG. 3;
FIG. 7 is an enlarged fragmentary view of FIG. 6;
FIG. 8 is a cross-sectional view of the structure shown in FIG. 3;
FIG. 9 is a second partial structural view of the preferred embodiment of the present invention;
FIG. 10 is another angular view of the structure shown in FIG. 9;
FIG. 11 is an exploded view of the structure shown in FIG. 9;
FIG. 12 is another exploded view of the structure shown in FIG. 9;
FIG. 13 is an exploded view of the lid shown in FIG. 2;
FIG. 14 is another exploded view of the lid shown in FIG. 2;
FIG. 15 is a block diagram of the circuit connections of the preferred embodiment of the present invention;
FIG. 16 is a third partial structural view of the preferred embodiment of the present invention;
FIG. 17 is a partial view of a preferred embodiment of the present invention with two types of lids;
fig. 18 is a diagram of a fourth partial structure according to the preferred embodiment of the present invention.
The attached drawings indicate the following:
fan 101 air duct 102
Casing 1022 before mounting hole 1021 tuber pipe
Air duct rear shell 1023 radiator 103
Substrate 1031 heat dissipation rib 1032
Extension 1041 of heat pipe 104
Air inlet side 105 of the fan the air outlet side 106 of the fan
First end 107 and second end 108
Fan case 109 splice end 110
Cold-compressing plate 71 refrigerating sheet assembly 72
Conducting plate 73 encloses frame 74
Support 721 refrigerating sheet 722
Conductive portion 731 covers 111, 111'
Outer cover plate 1111 and inner cover plate 1112
Transparent plate 1113 sealing ring 1114
Power supply module 10 of depilating apparatus 1
Processor 20 controls circuit 30
The skin cold compress unit 40 irradiates the depilating unit 50 with light
RF radio frequency unit 60 treatment head 70
Temperature sensor 80 skin identification module 90
Cooling device 100 circuit board 120
First magnet 701 and second magnet 1115
Skin induction coil 702 laser lamp tube 51
The reflective cup 52 blocks the silica gel 53.
Detailed Description
Fig. 1 to 18 show a specific structure of a preferred embodiment of the present invention.
A multifunctional depilating device with reliable heat dissipation comprises a housing, a depilating device body arranged in the housing, and a treatment head 70 exposed or selectively exposed out of the housing; the depilation instrument 1 is generally designed in an L-shaped configuration with a gripping portion for easy gripping by a user.
The depilating instrument main body is provided with a depilating mechanism, a heat dissipation mechanism and a control unit, and the control unit is electrically connected with the depilating mechanism and the heat dissipation mechanism respectively; the depilating mechanism comprises a light irradiation depilating unit 50 and a skin cold application unit 40; an RF radio frequency unit 60 is also provided; the RF radio frequency unit 60 is connected to the control unit, and the RF radio frequency unit 60 outputs through the treatment head 70.
As shown in fig. 3 to 6, the heat dissipation mechanism includes a fan 101, an air duct 102, a heat sink 103 and a heat pipe 104; the shell is provided with an air inlet and an air outlet; the air inlet side 105 of the fan 101 is arranged corresponding to the air inlet, the air outlet side 106 of the fan 101 is arranged corresponding to the first end 107 of the air pipe 102, and the second end 108 of the air pipe 102 is arranged corresponding to the air outlet and penetrates through the first end 107 along the interior of the air pipe 102; the heat sink 103 is disposed in the air duct 102 and corresponds to the air outlet side 106 of the fan 101; one end of the heat pipe 104 is connected with the heat sink 103, and the other end of the heat pipe 104 is connected with the skin cold compress unit 40.
The front side of the air duct 102 is provided with a mounting hole 1021, the heat sink 103 is installed from the mounting hole 1021, the front side of the heat sink 103 is exposed at the front side of the air duct 102, one end of the heat pipe 104 is connected with the front side of the heat sink 103, and the heat pipe 104 is arranged outside the air duct 102. Generally, the air duct 102 includes a front housing 1022 and a rear housing 1023, which are assembled together, and the mounting hole 1021 is disposed on the front housing 1022.
Preferably, the fan 101 is installed in the fan casing 109, and the fan casing 109 is in a volute shape; the front side of the fan housing 109 serves as the air inlet side of the fan, and the fan housing 109 has a splice end 110 (also referred to as the right end of the fan housing) serving as the air outlet side of the fan and communicating with the first end of the air duct 102. After the heat sink 103 is installed in the air duct 102 through the installation hole 1021, one end of the heat sink 103 is exposed at the first end 107 of the air duct 102 in a protruding manner, and the splicing end 110 of the fan casing 109 is positioned at one end of the heat sink 103 in a sleeving manner and spliced at the first end 107 of the air duct 102; thus, the heat sink 103 is installed in the air duct 102 and corresponds to the air outlet side of the fan 101, on one hand, the wind energy in the air duct can better guide away the heat of the heat sink, and on the other hand, the length of the heat pipe 104 can be shortened, the heat conduction stroke is shortened, and the heat conduction is accelerated.
As shown in fig. 6 to 8, the heat sink 103 has a substrate 1031, a plurality of heat dissipation ribs 1032 arranged at intervals are extended from the rear side of the substrate 1031, and air gaps are formed between adjacent heat dissipation ribs 1032; the substrate 1031 covers the mounting hole 1021; and a heat pipe mounting position is provided at a front side of the substrate 1031 to connect one end of the heat pipe. The upper side and/or the lower side of the heat dissipation rib are/is designed into a convex-concave type curved surface. And, the front side of the substrate 1031 is also provided with auxiliary heat dissipation ribs. Here, two heat pipes 104 are provided, and two corresponding heat pipe mounting positions are formed on the front side of the substrate 1031 and are fixed by riveting; between two heat pipe installation positions, arrange aforementioned supplementary heat dissipation rib, supplementary heat dissipation rib's upper and lower side is also preferred to be designed for convex-concave formula curved surface, so, can increase the area of contact of air and radiator for radiating rate. From the above description of the heat sink 103, it is obvious that the heat sink 103 of the present embodiment has many advantages, such as a smart structural design, relatively simple structure, easy production, assembly and positioning, and favorable control of product cost, and the assembled heat sink has a compact structure, and a small volume of the portion exposed outside the air duct, which effectively saves the design space in the depilating apparatus, and simultaneously, achieves the purpose of improving the heat dissipation efficiency through specific structural designs of the heat dissipation ribs, the auxiliary heat dissipation ribs, and the like.
As shown in fig. 3, 5 and 6, an extension 1041 is formed by extending the other end of the heat pipe 104 backwards, and the extension 1041 is connected to the skin cold compress unit 40.
As shown in fig. 9 to 12, in this embodiment, the skin cold compress unit 40 is disposed corresponding to the treatment head 70, the treatment head 70 is in an oval shape, and includes a cold compress plate 71, a cooling plate assembly 72, a conductive plate 73, and an enclosure frame 74, the cold compress plate 71 is a metal plate, and the enclosure frame 74 is a reflective ring or a conductive ring; the cold-compressing plate 71 is provided with a through hole which is through from left to right, the refrigerating sheet assembly 72 comprises a support 721 and a refrigerating sheet 722, the support 721 and the conducting plate 73 are both provided with abdicating holes which are through corresponding to the through hole, the upper end and the lower end of the support 721 are respectively provided with the refrigerating sheet 722, and the upper end and the lower end of the conducting plate 73 are both extended with a conducting action part 731; the conduction action part 731 is in contact with the heating surface of the refrigerating sheet 722, and the refrigerating surface of the refrigerating sheet 722 is in contact with the cold compressing plate 71; during assembly, the cold-compressing plate 71, the bracket 721 and the conducting plate 73 are locked by screws, preferably detachably connected; the surrounding frame 74 is arranged at the left end of the conducting plate 73 and surrounds the periphery of the yielding hole; the other ends of the two heat pipes 104 are respectively in contact with the conduction action parts 731 through the extension parts 1041, and the contact area is large, and the contact stability between the other ends of the two heat pipes 104 and the conduction action parts 731 is good. Preferably, the heat pipe 104 has an evaporation section that is in contact with the conduction action part 731 to quickly conduct away heat, and a condensation section that is connected to a heat sink. Generally, the light irradiation depilation unit 50 is provided corresponding to the through hole for generating light for irradiating the skin to remove hairs.
As shown in fig. 2, 13 and 14, the cover 111 is detachably disposed on the outer side (right side in the figures) of the treatment head 70, and the detachable positioning manner can adopt a magnetic attraction design, so that the structure is simple, the detachment is convenient, the practicability is strong, the first magnet 701 is disposed on the treatment head 70, and the second magnet 1115 is disposed on the cover 111, so as to realize the detachable magnetic attraction positioning of the cover 111 on the treatment head 70. The cover 111 generally includes an outer cover plate 1111, an inner cover plate 1112, a transparent plate 1113, and a gasket 1114. In general, more than two covers 111 may be provided to meet different size requirements, such as the cover 111, cover 111' shown in FIG. 17.
FIG. 15 is a block diagram of the circuit connection of the preferred embodiment of the present invention;
from the electrical control perspective, the main body of the hair removal device includes a power module 10, a processor 20, a control circuit 30, a skin cold compress unit 40, a light irradiation hair removal unit 50 and an RF radio frequency unit 60; the power module 10, the processor 20 and the control circuit 30 are sequentially connected, and the control circuit 30 is respectively connected to the skin cold compress unit 40, the light irradiation depilating unit 50 and the RF radio frequency unit 60; the skin cold compress unit 40, the light irradiation depilating unit 50 and the RF radio frequency unit 60 are all output through the treatment head 70. The control circuit 30 is connected to a driving circuit, and the driving circuit is respectively connected to the skin cold compress unit 40, the light irradiation depilating unit 50 and the RF radio frequency unit 60. Typically, the processor 20 has a timer to control the activation time of each functional module. Therefore, the aforementioned control unit may also refer to a combination of the processor 20 and the control circuit 30. The processor 20 and the control circuit 30 are disposed on the circuit board 120. Typically, a skin induction coil 703 is provided within treatment head 70, which is connected to control circuit 30.
As shown in fig. 16, the power module 10 is preferably an energy storage capacitor for storing energy for laser emission, and here, it is disposed in the grip portion, and the space utilization is good.
Specifically, the method comprises the following steps: the skin cold compress unit 40 comprises a refrigeration driving circuit and a refrigeration device, the driving circuit is connected to the refrigeration driving circuit, the refrigeration driving circuit is connected to the refrigeration device, and the refrigeration device carries out cold compress on the skin through the treatment head 70.
The light irradiation unhairing unit 50 is including intense pulse light drive circuit, intense pulse light output device, drive circuit connects in intense pulse light drive circuit, intense pulse light drive circuit connects in intense pulse light output device, intense pulse light output device exports intense pulse light through treatment head 70.
The RF radio frequency unit 60 includes a current collecting circuit, an RF radio frequency energy generating circuit, and an RF radio frequency output device; the drive circuit is connected to the current collection circuit, the RF radio frequency energy generation circuit and the RF radio frequency output device are sequentially connected, and the RF radio frequency output device outputs RF radio frequency energy through the treatment head 70, specifically, outputs the RF radio frequency energy by means of the cold compress plate.
And, a temperature sensor 80 is also connected to the control circuit 30. The control circuit 30 is also connected to a skin identification module 90. The drive circuit is further connected to a cooling device 100 for dissipating heat to the epilating apparatus. The control circuit 30 is further connected to a control unit, which is a key control device, a touch control device or a voice control device. The control circuit 30 is further connected to a display module and/or a warning system.
As shown in fig. 18, the light irradiation depilation unit 50 mainly includes a laser lamp 51, a reflective cup 52 located at the periphery of the laser lamp 51, a blocking silica gel 53 for blocking high voltage, a light filter located at the light outgoing side of the laser lamp 51, and a light guide groove, wherein the light filter is installed in the light guide groove; the blocking silica gel 53 is in a ring structure to surround the periphery of the light irradiation depilation unit 50 and is isolated between the heat pipe 104 and the light irradiation depilation unit 50.
To sum up, the utility model is mainly designed to integrate various functions of light irradiation unhairing, skin cold compress and RF radio frequency on the same unhairing instrument, so that the unhairing instrument has more abundant functions, a plurality of instruments do not need to be configured independently, the purchase cost is reduced, and the user can conveniently store and manage the instruments; the RF radio frequency unit is added, so that the mechanical structure of the depilating instrument cannot be excessively increased, the circuit of the RF radio frequency unit is mainly added on the circuit and is connected with the original control circuit, the circuit is simple, the manufacturing feasibility is high, the practicability is high, and the depilating instrument is suitable for being popularized and applied to various depilating instruments.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention, so that any slight modifications, equivalent changes and modifications made by the technical spirit of the present invention to the above embodiments are all within the scope of the technical solution of the present invention.

Claims (10)

1. An appearance that moults with radio frequency function which characterized in that: comprises a shell, an epilating instrument main body arranged in the shell and a treatment head exposed or selectively exposed out of the shell;
the main body of the depilating instrument comprises a power supply module, a processor, a control circuit, a skin cold compress unit, a light irradiation depilating unit and an RF radio frequency unit; the power module, the processor and the control circuit are sequentially connected, and the control circuit is respectively connected with the skin cold compress unit, the light irradiation unhairing unit and the RF unit; the skin cold compress unit, the light irradiation unhairing unit and the RF unit are all output by the treatment head.
2. The radio frequency-enabled hair removal instrument of claim 1, wherein: the control circuit is connected with a driving circuit, and the driving circuit is respectively connected with the skin cold compress unit, the light irradiation unhairing unit and the RF unit.
3. A radio frequency-enabled hair removal apparatus as claimed in claim 2, wherein: the skin cold compress unit comprises a refrigeration driving circuit and a refrigeration device, the driving circuit is connected to the refrigeration driving circuit, the refrigeration driving circuit is connected to the refrigeration device, and the refrigeration device performs cold compress on the skin through the treatment head.
4. A radio frequency-enabled hair removal apparatus as claimed in claim 2, wherein: the light irradiation unhairing unit is including intense pulse light drive circuit, intense pulse light output device, drive circuit connects in intense pulse light drive circuit, intense pulse light drive circuit connects in intense pulse light output device, intense pulse light output device exports intense pulse light through the treatment head.
5. A radio frequency-enabled hair removal apparatus as claimed in claim 2, wherein: the RF unit comprises a current acquisition circuit, an RF energy generation circuit and an RF output device; the drive circuit is connected to the current acquisition circuit, the RF radio frequency energy generation circuit and the RF radio frequency output device are sequentially connected, and the RF radio frequency output device outputs RF radio frequency energy through the treatment head.
6. A radio frequency-enabled hair removal apparatus as claimed in claim 2, wherein: the driving circuit is also connected with a cooling device used for radiating heat for the depilating instrument.
7. The radio frequency-enabled hair removal instrument of claim 1, wherein: the control circuit is also connected with a temperature sensor.
8. The radio frequency-enabled hair removal instrument of claim 1, wherein: the control circuit is also connected with a skin identification module.
9. The radio frequency-enabled hair removal instrument of claim 1, wherein: the control circuit is further connected with a control unit, and the control unit is a key control device, a touch control device or a voice control device.
10. The radio frequency-enabled hair removal instrument of claim 1, wherein: the control circuit is further connected with a display module and/or a warning system.
CN201921766771.6U 2019-10-21 2019-10-21 Depilatory instrument with radio frequency function Active CN211243681U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921766771.6U CN211243681U (en) 2019-10-21 2019-10-21 Depilatory instrument with radio frequency function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921766771.6U CN211243681U (en) 2019-10-21 2019-10-21 Depilatory instrument with radio frequency function

Publications (1)

Publication Number Publication Date
CN211243681U true CN211243681U (en) 2020-08-14

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921766771.6U Active CN211243681U (en) 2019-10-21 2019-10-21 Depilatory instrument with radio frequency function

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113729936A (en) * 2021-10-18 2021-12-03 深圳维娜美容仪器有限公司 Intelligent depilating instrument device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113729936A (en) * 2021-10-18 2021-12-03 深圳维娜美容仪器有限公司 Intelligent depilating instrument device
CN113729936B (en) * 2021-10-18 2023-04-11 深圳维娜美容仪器有限公司 Intelligent depilating instrument device

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