COSMETIC CASE
20170086560 ยท 2017-03-30
Inventors
Cpc classification
A61L2202/14
HUMAN NECESSITIES
F21Y2113/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A45D33/006
HUMAN NECESSITIES
F21V33/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A45D33/24
HUMAN NECESSITIES
A61L2202/11
HUMAN NECESSITIES
International classification
A45D33/24
HUMAN NECESSITIES
H02J7/00
ELECTRICITY
H05K7/14
ELECTRICITY
A45D33/00
HUMAN NECESSITIES
Abstract
The present disclosure relates to a cosmetic case, including: a cover, a base, an applicator, a sanitizer which emits ultraviolet rays for sanitizing the applicator, a wave deflector, a power supply for supplying power to the sanitizer, and at least one indicator which is provided to indicate operation conditions of the sanitizer. The sanitizer emits ultra violet rays for a predetermined amount of time for sanitizing the applicator. Further, the cosmetic case includes a micro controller which controls operation conditions of the sanitizer.
Claims
1. A cosmetic case comprising: a cover; a base, the base includes a lower base and an upper base; an applicator stored in a cavity formed in the upper base; wherein an internal storage space is defined between the lower base and the upper base; wherein a sanitizer and a wave deflector are housed in the internal storage space in the lower base; wherein the sanitizer emits ultraviolet rays for sanitizing the applicator; and wherein at least a portion of the upper base allows the ultra-violet rays emitted by the sanitizer to pass through the internal storage space to the applicator.
2. The cosmetic case according to claim 1, wherein, the sanitizer emits UVC rays with wavelengths between 200-280 nanometers.
3. The cosmetic case according to claim 2, wherein, the sanitizer is surrounded by the wave deflector.
4. The cosmetic case according to claim 1, wherein the wave deflector is of a frustoconical shape comprising a reflective internal surface.
5. The cosmetic case according to claim 1, wherein at least a portion of the upper base is transparent or translucent to allow the ultra-violet rays emitted by the sanitizer to pass through the internal storage space to the applicator.
6. The cosmetic case according to claim 1, wherein the upper base comprises a side wall and a bottom wall and wherein the bottom wall has at least one aperture to allow the ultra-violet rays emitted by the sanitizer to pass through the internal storage space to the applicator.
7. The cosmetic case according to claim 1, wherein a printed circuit board is housed in the internal storage space and wherein the printed circuit board is attached to the lower base.
8. The cosmetic case according to claim 7, wherein the printed circuit board includes connected thereto a microcontroller, a battery, the wave deflector, and the sanitizer.
9. The cosmetic case according to claim 8, wherein the printed circuit board is combined with one or more indicators to indicate operation conditions of the sanitizer and wherein the one or more indicators are light emitting diodes which are turned on during sanitization of the applicator and are turned off after completion of the sanitization of the applicator.
10. The cosmetic case according to claim 9, wherein the light emitting diodes includes RGB LED and wherein RGB LED is selected from a group of LED consisting of non-pulsating LED, a pulsating LED and a flashing LED.
11. The cosmetic case according to claim 8, wherein the battery is mounted under the printed circuit board for supplying power to the sanitizer and wherein the battery is selected from one of a non-rechargeable battery and a rechargeable battery.
12. The cosmetic case according to claim 11, wherein a USB port for charging the rechargeable battery is included in the lower base.
13. The cosmetic case according to claim 8, wherein the printed circuit board includes at least one charging indicator to indicate charging of a battery.
14. The cosmetic case according to claim 8, wherein the printed circuit board is provided with a power button to actuate the sanitizer emitting the ultraviolet rays, and wherein the power button is combined to an attachment of the cover to the base so that the power button is pressed during closing of the cover.
15. The cosmetic case according to claim 8, wherein the wave deflector has at least one projection which is inserted into a corresponding at least one guide groove on the printed circuit board.
16. The cosmetic case according to claim 1, wherein the cosmetic case further comprises a lift tray for storing a cosmetic.
17. A cosmetic case comprising: a cover; a base, the base includes a lower base and an upper base, an internal storage space defined between the lower base and the upper base; a printed circuit board housed in the internal storage space; a wave deflector, a sanitizer, a microcontroller, and a battery attached to the printed circuit board in the internal storage space; wherein the sanitizer emits ultraviolet rays; and wherein at least a portion of the upper base allows the ultra-violet rays emitted by the sanitizer to pass through.
18. The cosmetic case according to claim 17, wherein the sanitizer is actuated for a predetermined amount of time controlled by the micro-controller.
19. The cosmetic case according to claim 17, wherein the sanitizer is switched on when a power button of the cosmetic case is pressed by closing of the cover and wherein the sanitizer is switched off by opening of the cover.
20. A cosmetic case comprising: a cover; a base, the base includes a lower base and an upper base, an internal storage space defined between the lower base and the upper base; a printed circuit board housed in the internal storage space; a sanitizer, a microcontroller, an indicator and a battery attached to the printed circuit board in the internal storage space; wherein the sanitizer emits ultraviolet rays; wherein at least a portion of the upper base allows the ultra-violet rays emitted by the sanitizer to pass through; wherein at least a portion of the upper base is transparent or translucent; and wherein an indicator light emitted during sanitization is visible to user's naked eyes through the transparent or translucent portion of the upper base.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031] So that the manner in which the above recited features of the present disclosure can be understood in detail, a more particular description of the disclosure, briefly summarized above, may be had by reference to embodiments, some of which are illustrated in the appended drawings. It is to be noted, however, that the appended drawings illustrate only typical embodiments of this disclosure and are therefore not to be considered limiting of its scope, for the disclosure may admit to other equally effective embodiments.
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038] To facilitate understanding, identical reference numerals have been used, where possible, to designate identical elements that are common to the figures. It is to be noted, however, that the appended drawings illustrate only typical embodiments of this disclosure and are therefore not to be considered limiting of its scope, for the disclosure may admit to other equally effective embodiments.
DETAILED DESCRIPTION
[0039]
[0040] According to a preferred embodiment of the disclosure, the sanitizer 140 includes a UV LED or any other conventional source which emits UVC rays with wavelengths between 200-280 nanometers (nm).
[0041] According to another embodiment, the sanitizer 140 disinfects the applicator.
[0042] According to present embodiment and as shown in
[0043] Further, as shown in
[0044] As shown specifically in
[0045] Further, as shown in
[0046] Further as shown in
[0047] Further as shown in
[0048] According to an embodiment, the applicator 130 may include an applying portion and a non-applying portion. Preferably, the applying portion faces towards the internal storage space 126 when the applicator 130 is stored in the cavity of the upper base 120. According to yet another embodiment of the present disclosure, the applicator 130 can be stored in the cavity of the upper base 120 only when its applying portion faces towards the internal storage space 126.
[0049] The upper base 124 is connected to the lower base 122 by suitable attachment means. As shown in
[0050] The internal storage space 126 further comprises a source of power supply 160. The source of power supply 160 includes: a printed circuit board 162 which is stored in the internal storage space 126 and the sanitizer 140 is mounted on the printed circuit board 162. The printed circuit board 162 is assembled in the internal storage space 126 and on the lower base 122. As shown in
[0051] The internal storage space 126 further includes at least one battery 129 to supply power to the sanitizer 140. The at least one battery 129 is mounted under the printed circuit board 162 and may be one time use or rechargeable, replaceable or one time use. According to the present embodiment and as shown in
[0052] The wave deflector 150 is assembled on the printed circuit board 162 in the internal storage space 126. The wave deflector 150 has at least one projection 152 which is inserted into a corresponding at least one guide groove 166 on the printed circuit board 162. Further, the wave deflector 150 has at least one fitment projection 154 which fits into a corresponding at least one fitment groove 168 on the printed circuit board 162.
[0053] According to yet another embodiment of the present disclosure, the one or more indicators 170a, 170b on the printed circuit board 162 also indicate charging of the at least one battery 129. The one or more indicators 170a, 170b emit different colored lights during sanitization of the applicator 130, during charging of the battery 129 and when the charging of the battery 129 is complete. Alternatively, the internal storage space 126 may comprise a separate charging indicator which indicates charging of the battery 129. The charging indicator is also formed with a light emitting diode which is turned on to emit a colored light during charging of the battery and emit a different colored light when the charging of the battery is complete. The light emitting diode includes one or more RGB LED which may be a pulsating or a flashing LED.
[0054] The printed circuit board 162 is further provided with a power button 172 which is combined to the hinge 190 and pressed during opening and closing of the cover 110. The power button 172 is provided to actuate the sanitizer 140 emitting the ultraviolet rays. The sanitizer 140 is actuated for a predetermined amount of time controlled by the micro-controller 180 when the power button 172 is pressed during closing of the cover 110. The sanitizer 140 is off during opening of the cover 110. According to an alternate embodiment, the power button 172 may be replaced by a sensor which functions during opening and closing of the cover 110. According to an embodiment, the button/sensor is a concealed button/sensor so that it operates only on closing and opening of the cosmetic case 100 and thus the button/sensor cannot be fiddled by the user. The power button 172 can be a magnetic or a mechanical button.
[0055] After using the applicator 130, as the cosmetic case 100 is closed, the power button 172 is pressed by closing of the cover 110 which turns on the sanitizer 140 for a predetermined amount of time controlled by the micro-controller 180 and sanitization process is indicated by one or more indicators 170a, 170b which is further controlled by the micro-controller 180. The light emitted by one or more indicators 170a, 170b during sanitization process is diffused towards the upper base 124. Accordingly, the user can confirm operation conditions of the sanitization as light emitted during sanitization is visible to user's naked eyes through the transparent or translucent side wall 125 of the upper base 124. Thus, a sanitized applicator 130 will be available to the user during next use of the cosmetic case 100.
[0056] Although the foregoing is directed to embodiments of the present disclosure, other and further embodiments of the disclosure may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow. Accordingly, the appended claims should be construed to encompass not only those forms and embodiments of the invention specifically described above, but to such other forms and embodiments as may be devised by those skilled in the art without departing from its true spirit and scope.