Eye-glasses users face endless difficulties to keep their glasses completely clean. Eye-glasses remain dirty because air contamination and dust easily adhere to one or more lenses of the eye-glasses. Furthermore, finger contact with lenses, as well as a user's body heat, humidity and sweating results in eyeglasses becoming foggy and dirty, which often results in discomfort for users.
Although there are a variety of eyeglasses cleaning devices in the market, none of them is based on a mixture of an electronic-mechanical apparatus that delivers a portable and effective solution for the endless problem of dirty eye-glasses.
This novel cleaning system removes dirt and dust, polishing lens in three simple steps without direct hand contact. In one hand, some effective inventions for cleaning eye-glasses are big, non-portable, impractical, time consuming and difficult to be used; on the other hand, portable, small, lightweight eye-glasses cleaners currently available in the market, have just simple manual features that are not completely effective.
Accordingly, it is desired to provided systems and methods that solve the disadvantages in the prior art.
It is an object of the present invention to provide a method and system for a portable eye-glasses cleaner.
It is an object of the device to be small and lightweight.
It is an object of the device to fit on the palm of a hand of a user.
It is an object of the device to be easily used, carried on and stored, giving peace of mind to users.
Objects of the invention are achieved by providing a portable eye-glasses cleaning device that is configured to allow users to wipe the lens by using an easy, fast and effective semi-automated procedure. The device is specially designed to effectively reach and clean both surfaces of the lens glasses no matter the shape of them.
In certain embodiments, the portable eye-glasses cleaning device is an electromechanical portable eye-glasses cleaning device.
In certain embodiments, a feasible three-step guide to using the device can describe how this invention works:
In certain embodiments, pressure on the left and right assembled covers will cause the assembled junction cover of the mechanism to move vertically downwards, making both upper and lower microfiber cleaning pads to simultaneously come into contact with both sides of the lens, which will provide an uniform, soft and effective cleaning by the rotation friction of microfiber pads; without leaving lines or spots in their path and without causing damage to lens.
Other objects of the invention and its particular features and advantages will become more apparent from consideration of the following drawings and accompanying detailed description. It should be understood that the detailed description and specific examples, while indicating the preferred embodiment of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
For better understanding and avoiding overcrowded and confusing figures, wires, connectors, screws, pins and other small parts are not shown in figures, additionally not all components are shown within all the following three figures:
In the following description, numerous details are set forth for the purpose of explanation. However, one of ordinary skill in the art will realize that the invention may be practiced without the use of these specific details.
According to embodiments of the invention, all components are set in one single device that could be made of several kind of materials, such as any kind of plastic and/or metallic elements, as well as electronic and mechanical components, which can be configured in different positions and arrangements into the device.
The invention is composed but not limited for the following elements: the device includes a well-designed mechanism to move the left and right (42 and 44) covers on a vertical axis over the left and right (46 and 48) bases and provide rotational motion to the upper and lower holder plates (32a and 32b). These elements are shown in
With the aim of providing a softer cleaning a upper circular cushion (34a) will be added and glued on the bottom of upper holder plate (32a), as well as on the top of lower holder plate (34b); thus, two (2) circular cushions will be set between holders plates (32a and 32b) and substitutable cleaning pad (36a and 36b). These cushions will provide an additional protection lay between holder plates and lens, minimizing lens damage possibilities.
Following a rectilinear motion over Y axis, assembled junction covers (42 and 44), move vertically up and down over the lower assembled (46 and 48) bases; throughout a number of sets of pistons (12), plungers (10) and micro-springs (14) or other compression mechanism.
Inside the plungers (10) and between left and right assembled bases (44 and 46) and the set of pistons (12) are the micro-springs (14), which once squeezed create a load to move up the left and right (42 and 44) assembled covers. In certain embodiments, the device could have 1, 2, 3 or more sets of plungers, pistons and micro-springs and alternatively can use a different moving compression mechanism.
As shown in certain embodiments, the upper holder plate (32a) and the upper circular cushion (34a), covered with the upper substitutable cleaning pad (36a) is gathered to the axis of the upper worm gear motor (20a), which is assembled with its pivot down between the left and right covers (42 and 44). As shown in certain embodiments, just below the same vertical Y axis of upper micromotor (20a) between the left and right bases (46 and 48), is put together with its pivot up; the lower micromotor (20b), on which axis is assembled the lower holder plate (32b) covered with the lower circular cushion (34b) and the lower substitutable cleaning pad (36b). Substitutable cleaning pads of the device can be manufactured using microfiber cloth, or other eye-glasses cleaning fabric or material.
If rotational motion is provided by worm gear micromotors (20a and 20b), they will be fed by a battery (16) which could be either regular or rechargeable, last one with the help of a battery charger circuit (18). The Device could be turn on by a limit switch (24) that could be located at the rear bottom of assembled left and right covers (42 and 44).
A LED chip (26) could be located in front side of the device covers and is turned on by a circuit incorporated LED switch (28), which is located at the left side of the right cover. Battery charger circuit (18) is placed at the top, but under the device assembled covers (42 and 44).
In certain embodiments, some of these components are set together by wires and connectors (22) to deliver the required energy from the rechargeable battery (16). The portable electronic-mechanical eye-glasses cleaning device could be manufactured using worm gear micromotors or other substitution manual impulse mechanism, electric, electronic or magnetic components, which also provide rotational motion to the upper and lower holder plates (32a and 32b).
In certain embodiments, a Retractable cleaning brush (40) could be assembled into the left base (46) and could be manually operated by a moving button on the side of the device. On the back of the left and right bases (46 and 48) junction is a double volume compartment box, which contains the refillable spray mini bottle for eye-glasses cleaner solution (38), and the double ended eye-glasses screwdriver (30). The double volume compartment box is closed by the back-compartment slide lid (50).
In certain embodiments, the device may be assembled according to different methods, one of them will be the following:
Having thus described several embodiments for practicing the inventive method, its advantages and objectives can be easily understood. Variations from the description above may and can be made by one skilled in the art without departing from the scope of the invention.
Accordingly, this invention is not to be limited by the embodiments as described, which are given by way of example only and not by way of limitation.
10. Sets of plungers
12. Sets of pistons
14. Sets of micro-springs inside the plungers
16. Rechargeable battery
18. Battery charger circuit
20
a. Upper worm gear micromotor
20
b. Lower worm gear micromotor
22. Wires and connectors
24. Limit Switch
26. LED Chip
28. LED Switch (incorporated into the battery charger circuit)
30. Double ended eye-glasses screwdriver
32
a. Upper holder plate
32
b. Lower holder plate
34
a. Upper circular cushion
34
a. Lower circular cushion
36
a. Upper substitutable cleaning pad
36
b. Lower substitutable cleaning pad
38. Refillable spray mini bottle for eye-glasses cleaner solution
40. Retractable cleaning brush
42. Left cover
44. Right cover
46. Left base
48. Right base
50. Back compartment slide lid
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/US2020/046870 | 8/18/2020 | WO |
Number | Date | Country | |
---|---|---|---|
62888733 | Aug 2019 | US |