AU2018101504A4 - Apparatus for optical defatting and eye bag removal - Google Patents

Apparatus for optical defatting and eye bag removal Download PDF

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Publication number
AU2018101504A4
AU2018101504A4 AU2018101504A AU2018101504A AU2018101504A4 AU 2018101504 A4 AU2018101504 A4 AU 2018101504A4 AU 2018101504 A AU2018101504 A AU 2018101504A AU 2018101504 A AU2018101504 A AU 2018101504A AU 2018101504 A4 AU2018101504 A4 AU 2018101504A4
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optical fiber
interface unit
pedal
microcontroller
optical
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AU2018101504A
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Mancang Feng
Zhisheng LIANG
Jianfeng Zhang
Yongyi Zhang
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Abstract

An apparatus for removing eye bags based on the technology of optical defatting, which is related to the field of beauty apparatuses, is provided. It is simple in structure, safe, reliable, and efficient in eye bag removal. The apparatus including a host machine; a treatment head which is connected to the host machine and configured to transmit optical fiber energy to a subdermal fatty layer; and a pedal control panel which is configured to control the optical fiber energy. The host machine includes a housing, a microcontroller, an optical signal transmitter, an optical fiber emitting interface unit and a pedal interface unit are all positioned on the housing; the microcontroller is connected to the optical signal transmitter via a first cable; the optical fiber emitting interface unit is connected to the optical signal transmitter via a second cable; the pedal interface unit is connected to the microcontroller via a third cable; the treatment head is connected to the optical fiber emitting interface unit via a first wire; and the pedal control panel is connected to the pedal interface unit via a second wire. Host machine 11 Voltage display 12 Optical fiber energy adjustment knob 7 Power switch button 8 Power switch 13 Microcontroller 3 Band mode button 9 Pulse width switch Optical signal button 10 transmitter 4 Pedal interface Optical fiber unit 5 emitting interface unit 6 Pedal control Treatment head 1 panel 2

Description

APPARATUS FOR OPTICAL DEFATTING AND EYE BAG REMOVAL
TECHNICAL FIELD
[0001] The present disclosure relates to the field of beauty apparatuses, and particularly, to an apparatus for removing eye bags based on the technology of optical defatting.
BACKGROUND
[0002] Currently, on the basis of the technologies such as radio frequency, ultrasound and laser, the beauty apparatuses are widely used for weight loss, eye bag removal, body odor treatment, and facial rejuvenation treatment including improvement of skin firmness and wrinkle removal. Typically, the beauty apparatuses generate an operation temperature of between 62°C and 75°C through in vitro thermal effect to cleave and recombine the collagen layer, achieving the purpose of tightening the skin. However, such beauty technology is apt to damage the skin of the users, the safety of the beauty scheme leaves much to be desired, and the treatment effect is not prominent. In today’s increasingly developing society, people pay more and more attention on the beauty, while issues such as air pollution are increasingly acute, making people more in need of creative techniques from the outside world for skin care. Thus, it is urgent to develop a safe, reliable, and efficient cosmetic technology that can achieve directional beauty effect.
SUMMARY
[0003] In view of the above-described problems, it is one objective of the invention to provide an apparatus for removing eye bags based on the technology of optical defatting that is simple in structure, safe, reliable, and efficient in eye bag removal.
[0004] To achieve the above objective, one embodiment of the present disclosure provides an apparatus for removing eye bags based on the technology of optical defatting, the apparatus including a host machine; a treatment head which is connected to the host machine and configured to transmit optical fiber energy to a subdermal fatty layer; and a pedal control panel which is configured to control the optical fiber energy. The host machine includes a housing, a microcontroller, an optical signal transmitter, an optical fiber emitting interface unit and a pedal interface unit. The microcontroller, the optical signal transmitter, the optical fiber emitting interface unit and the pedal interface unit are all positioned on the housing; the microcontroller is connected to the optical signal transmitter via a first cable; the optical fiber emitting interface unit is connected to the optical signal transmitter via a second cable; the pedal interface unit is connected to the microcontroller via a third cable; the treatment head is connected to the optical fiber emitting interface unit via a first wire; and the pedal control panel is connected to the pedal interface unit via a second wire.
[0005] As an improvement of the embodiment, the treatment head includes an insulation sheath and a transparent cylindrical optical fiber emitter positioned at one end of the insulation sheath.
[0006] As an improvement of the embodiment, the housing includes an optical fiber energy adjustment knob, a power switch button, a band mode button, a pulse width switch button; and the optical fiber energy adjustment knob, the power switch button, the band mode button, and the pulse width switch button are all connected to the microcontroller via cables.
[0007] As an improvement of the embodiment, the housing employs a housing capable of shielding electromagnetic wave.
[0008] Advantages of the apparatus for removing eye bags based on the technology of optical defatting according to embodiments of the present disclosure are summarized as follows.
[0009] 1. The light waves emitted by the optical fiber can reach the fat layer straightly, and the heat energy penetrates into the deep layer of the dermis. Thereafter, based on the theory of cell thermal dissolving, the fat cells are evenly liquefied, and the fats are dissolved. The apparatus is simple in structure, safe and reliable, and can effectively remove the eye bags. [0010] 2. The treatment head is provided with an insulation shell, ensuring the safety and reliability of the apparatus.
[0011] 3. A number of different buttons with different functions are provided, which is convenient for the operation of the apparatus.
[0012] 4. The housing of the apparatus can shield the electromagnetic waves, thus preventing the external waves from affecting the functions of the apparatus.
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] FIG. 1 is schematic diagram of an apparatus for removing eye bags based on the technology of optical defatting in accordance with one embodiment of the present disclosure; and [0014] FIG. 2 is a connection diagram of an apparatus for removing eye bags based on the technology of optical defatting in accordance with one embodiment of the present disclosure. [0015] Legends: 1. Treatment head; 2. Pedal control panel; 3. Microcontroller; 4. Optical signal transmitter; 5. Pedal interface unit; 6. Optical fiber emitting interface unit; 7. Optical fiber energy adjustment knob; 8. Power switch button; 9. Band mode button; 10. Pulse width switch button; 11. Host machine; 12. Voltage display; 13. Power switch.
DETAILED DESCRIPTION
[0016] The structure and use principle of an apparatus for removing eye bags based on the technology of optical defatting of the present disclosure are further illustrated by a few specific application examples. It should be noted that the following examples are intended to describe and not to limit the invention.
[0017] As shown in FIGS. 1 and 2, one embodiment of the present disclosure provides an apparatus for removing eye bags based on the technology of optical defatting. The apparatus includes a host machine 11, a treatment head 1 which is connected to the host machine and configured to transmit optical fiber energy to a subdermal fatty layer, and a pedal control panel 2 which is configured to control the optical fiber energy. The host machine 11 includes a housing, a microcontroller 3, an optical signal transmitter 4, an optical fiber emitting interface unit 6 and a pedal interface unit 5. The microcontroller 3, the optical signal transmitter 4, the optical fiber emitting interface unit 6 and the pedal interface unit 5 are all positioned in the housing; the microcontroller 3 is connected to the optical signal transmitter 4 via a first cable; the optical fiber emitting interface unit 6 is connected to the optical signal transmitter 4 via a second cable; the pedal interface unit 5 is connected to the microcontroller 3 via a third cable; the treatment head 1 is connected to the optical fiber emitting interface unit 6 via a first wire; and the pedal control panel 2 is connected to the pedal interface unit 5 via a second wire.
[0018] In this embodiment, the treatment head 1 includes an insulation sheath and a transparent cylindrical optical fiber emitter positioned at one end of the insulation sheath. Thus, the treatment head is simple in structure, and is safe and reliable. There is an optical fiber energy adjustment knob 7, a power switch button 8, a band mode button 9 and a pulse width switch button on the housing. The optical fiber energy adjustment knob 7, the power switch button 8, the band mode button 9, and the pulse width switch button 10 are all connected to the microcontroller 3 via cables. In addition, the housing further includes a voltage display 12, a power interface and a power switch 13. The power interface and the power switch 13 are positioned at the back of the housing. The voltage reading displayed on the voltage display 12 directly reflects whether the apparatus works or not under operating voltage. Stepping on the pedal control panel 2 can simply and conveniently control the transmission of the optical fiber energy, and the transmission of the optical fiber energy can be adjusted multi-directionally as needed. The housing employs a housing capable of electromagnetic wave shielding which can effectively avoid the interference of external electromagnetic waves so that the work efficiency of the apparatus can be improved during operation.
[0019] The apparatus for removing eye bags of the disclosure is simple in structure and is easy to operate. When operating the apparatus for eye bag removal, a user first connects the apparatus to a power supply, switches on the power switch 13, and then operates the treatment head 1 to remove the eye bags so as to achieve the cosmetic effect. During the process of use, the light waves emitted by the optical fiber can reach the fat layer straightly, and the heat energy penetrates into the deep layer of the dermis. Thereafter, based on the theory of cell thermal dissolving, the fat cells are evenly liquefied, and the fats are dissolved. Specifically, the deep thermal effect of the dermis induces the regeneration and reconstruction of the deep tissue of the dermis, thus tightening the dermis, achieving the efficacy of tightening and wrinkle removal. The beauty process of the apparatus is more intuitive, more direct, and exhibits better beauty effect than traditional technologies such as radiofrequency, ultrasound and laser. The apparatus approves a safe, reliable and effective manner for eye bags removing.
[0020] Finally it shall be noted that, the above embodiments are only used to describe but not to limit the technical solutions of the present disclosure; and within the concept of the present disclosure, technical features of the above embodiments or different embodiments may also be combined with each other, the steps may be implemented in an arbitrary order, and many other variations in different aspects of the present disclosure described above are possible although, for purpose of simplicity, they are not provided in the details. Although the present disclosure has been detailed with reference to the above embodiments, those of ordinary skill in the art shall appreciate that modifications can still be made to the technical solutions disclosed in the above embodiments or equivalent substations may be made to some of the technical features, and the corresponding technical solutions will not depart from the scope of the present disclosure due to such modifications or substations.

Claims (4)

  1. CLAIMS:
    1. An apparatus for removing eye bags based on the technology of optical defatting, is characterized by, comprising: a host machine; a treatment head which is connected to the host machine and configured to transmit optical fiber energy to a subdermal fatty layer; and a pedal control panel which is configured to control the optical fiber energy; the host machine comprising a housing, a microcontroller, an optical signal transmitter, an optical fiber emitting interface unit and a pedal interface unit; the microcontroller, the optical signal transmitter, the optical fiber emitting interface unit and the pedal interface unit are all positioned on the housing; the microcontroller is connected to the optical signal transmitter via a first cable; the optical fiber emitting interface unit is connected to the optical signal transmitter via a second cable; the pedal interface unit is connected to the microcontroller via a third cable; the treatment head is connected to the optical fiber emitting interface unit via a first wire; and the pedal control panel is connected to the pedal interface unit via a second wire.
  2. 2. The apparatus according to claim 1, is characterized by, the treatment head is consisted of an insulation sheath and a transparent cylindrical optical fiber emitter positioned at one end of the insulation sheath.
  3. 3. The apparatus according to claim 1 or claim 2 , is characterized by, the housing is provided with an optical fiber energy adjustment knob, a power switch button, a band mode button, a pulse width switch button; and the optical fiber energy adjustment knob, the power switch button, the band mode button, and the pulse width switch button are all connected to the microcontroller via cables.
  4. 4. The apparatus according to claim 3, is characterized by, the housing employs a housing capable of shielding electromagnetic wave.
AU2018101504A 2017-10-12 2018-10-10 Apparatus for optical defatting and eye bag removal Active AU2018101504A4 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201721310227 2017-10-12
CN201721310227.1 2017-10-12

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AU2018101504A4 true AU2018101504A4 (en) 2018-11-15

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HK (1) HK1244160A2 (en)

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HK1244160A2 (en) 2018-07-27

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