An Integrated System Combining Software and Hardware Together
20210294064 · 2021-09-23
Inventors
Cpc classification
H04N23/55
ELECTRICITY
International classification
Abstract
The present invention relates to a new integrated system combining hardware and software together. It helps solving some existing problems and makes matters easier for the users of such new technology. This new technology enables users to dispense of some tools, like selfie stick, altogether with other tools used all the time. This new technique is not limited to specific age bracket, as it suits men, women and children. It enables user to clearly see numbers and messages at sunlight, via a novel software operable with all languages of computer and mobile (Windows, Android, Mac, IOS and others), in addition to a hardware.
Claims
1- An integrated system comprising software and hardware.
2- The system according to claim 1, wherein the software comprises: a—ordinary mirror b—concave mirror c—convex mirror d—caricatural mirror e—different advertising mirrors f—changing the color of words, letters, numbers and back grounds.
3- The system according to claim 1, wherein the hardware comprises: a—elastic or rubber band or the like, with suitable length and thickness, robustly surrounding the whole mobile, and having different colors and ornaments.
4- The system according to claim 3, comprising a rubber rectangle, a stand carrying one or more, fixed or moving lens.
5- The system according to claim 3, wherein the rubber rectangle has two parallel lines allowing the lens to safely move till standing above the mobile camera to take a selfie photo using a peephole-like lens, or a magnifying lens.
6- The system according to claim 4, wherein the rubber band has one fixed plus or minus lens mounted thereon to stand above the front or back phone camera.
7- The system according to claim 3, a rubber band with multiple lenses fixed thereon taking a square, rectangle or circular shape, that can move circularly to select the suitable lens to be placed above the mobile front or back camera; these lenses are plus or minus, magnifying or minimizing lenses.
8- The system according to claim 7, whereas two or more lenses located inside a square mounted on an elastic or rubber band, wherein such lenses moving inside a square or rectangle closed from 5 sides, and the desired lens may be selected to be placed above the mobile camera through a protrusion at the top or the bottom of the lenses.
9- The system according to the element (F) of claim 2 related to coloring letters, 1—letters, numbers and words may be colored in blue, yellow, orange, red and other colors, as desired, to allow reading at direct sunlight or under bright lights, and the backgrounds may also be changed into different colors to show words clearly. 2—The ability to clearly see words and numbers under bright lights by displaying them in different colors during chatting or messages. 3—Displaying the marks related to dialing or receiving a call in clear different colors. Besides, the keyboard may have different color to readily see it at sunlight, with the capability of changing its color. 4—While displaying letters or other marks at sunlight, the new technique tends to reducing the space, and compensating with a smaller diameter, while focusing on letters to appear shiner. That is, to concentrate light at the smallest possible space, using various colors.
10- The system according to claim 2 (A-B-C-D-E), whereas multi-purpose and multi-angled mirrors are used as follows. 1—Single or multiple mirrors in the same screen capable of vertical and horizontal rotation at different angles. Mirrors of different shapes and colours can be mounted at multiple angles (magnifying mirror, minimizing mirror, close-up mirror and a peephole-like mirror) 2—A convex, concave, normal or a peephole-like mirror can be independently added. Otherwise, a number of grouped or independent mirrors may be used or one mirror that covers the whole screen. 3—An advertising mirror (either convex, concave, or normal mirror) can be used for presenting an advertisement on an external frame (vertical, horizontal or both). It may be used for fixed advertisements, a vertically or horizontally moving advertisement at the top and/or bottom of the screen or at certain points of the mirror. 4—Selfie photos can be taken using screen copying software or an external hardware key or the like. A peephole can be installed above the front or back camera to provide selfie photo either by photo capturing or screen coping. 5—The user's photo is reflected on the screen of the tablet, mobile or computer. Hence, selfie photo are available either by photo capturing or screen coping. 6—The mirror may match screen in size (computer, mobile or tablet screen). It displays the photos as a fixed or changing caricature in a rapid or slow motion. The screen is copied to have a caricature photo in accordance to the program design. A software program can be designed for converting single or multiple mirrors into moving caricatures of different shapes and positions or multiple conventional shapes. In other words, preshapes and drawing can be designed and manipulated by the program. 7—Mirrors can be fixed at the left, right and front to display the left, right and front sides of the face. The mirror can be designed at different shapes. Multiple mirrors can be fixed at any position of the screen to display caricature or normal faces photos that can be copied by screening copying software. Each mirror can rotate in any direction and at whatever angle. Each screen can be used for displaying fixed or moving advertisements. 8—Multi-coloured mirrors can be fixed in the one screen as desired. The mirror program does not prevent incoming calls and allows computer, mobile or tablet usage. Advertisement, as well as flowers or other pictures or expressions, can be fixed on or outside the mirror. The user can also write at any part of the mirror or screen
11- The system according to claim 1, whereas 1—The program is compatible with current operating systems (android, windows and IOS) as well as expected future operating systems 2—It operates on large screens. Selfie photos can be captured from such screens, whether mobile or computer screens. 3—Advertisements, according to the previous items, include both audio and video advertisements
12- The system according to claim 1, whereas 1—In ordinary mobiles, a normal or double mirror (a mirror with two faces: a magnifying and a minimizing one) is fixed under the back cover of the mobile. It rotates around a vertical axis for the user to see both front and back sides of the mirror. 2—Camera properties can be altered using a circuit with slides. In other words, the circuit is divided into multiple magnifying or minimizing slides and close-up or a peep-like slides fixed above camera lens for near and far photos. Hence, the camera lense can work as a peephole that displays near objects as distant for capturing selfie images. 3—An external lens, like a peephole, can be used. It is easily fixed and removed in case of selfie photo capturing. It can be fixed on the front or back camera in simple ways. The magnification range of the peephole can be determined. It can be designed with properties that satisfy users' needs. 4—Circuits with magnifying or minimizing slides are fixed to rotate clockwise or counterclockwise on an axis. Otherwise, the slide-bearing bar is mounted to rotate reciprocally or as a cassette
13- The system according to claims 1 and 3, whereas 1—A fixed circular, rectangular or square rubber piece integrated in the peephole fixed on the mobile camera. It is used for selfie photo capturing or magnifying photos. 2—A rubber piece with openings and special location for peephole. Lenses above the rubber piece can be changed as desired. 3—A rubber band with a protrusion for peephole fixation. 4—A rubber band surrounding the mobile for fixing lenses of different capabilities. 5—The lens rubber is fixed between the lens and the mobile back by a special holder for locating the lens on mobile camera. 6—The lenses are designed to operate in mobiles in a circular way, rotatable lenses of different capabilities distributed around a circuit (A). The circuit moves to the right and the left for locating the proper lens above mobile camera through a zigzag circuit periphery protruding out of the mobile. In addition, there are mobile-integrated lenses that works reciprocately or as a cassette according to the same idea mentioned in A, 6a and 6b. It is operated electronically, mechanically or manually as desired. 7—The lens is fixed on mobile camera through a spring or an aspirator. 8—The lens-bearing band is fixed on a rubber piece. In case of choosing one lens, it freely moves on the rubber for locating the lens on the camera. 9—The circular lens is fixed by a special holder or by a rubber around the mobile. It is fixed on a special housing above the rubber. 10—Other objects can be intergrated into the rubber band surrounding the mobile. They are configured to fix the circular, square, rectangular or other lenses. 11—A rectangular or circular band that is automatically, electronically or manually operates inside and outside the mobile, on which magnifying or minimizing slides are fixed. 12—Shapes of different designs performing the same function, as illustrated in the drawings description. 13—Advertisements, mentioned above, refer to legible, audio and video advertisements.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0017]
[0023]
[0027]
[0031] Both the lens and lens holder should be of a good design to avoid degrading image quality by the influence of external environment
[0032]
[0033]
[0036]
[0042] A holder, appropriate to the mobile thickness, for fixing lenses on the mobile
[0043] A holder for moving lenses from one location to another
[0044]
[0048]
[0055]
[0059]
[0062]
[0066]
[0071]
[0076] The lenses are independently chosen with different numbers (+) (−)
[0077]
[0082]
[0085] Different lenses that can be moved to the right and the left to allow for choosing suitable lenses with different positive or negative numbers, such as −1 to −10 or more and +1 to +10 or more.
[0086] A Note:
[0087] The camera lens can be used as a minimizing fixed lens (i.e. as a peephole or a mobile internal fixed lens)
[0088]
[0089] The figure is similar to the previous square one except for taking the shape of one or more right and left movable circuit, similar to the square or rectangular shape fixed on the rubber band. [0090] 1—Right and left movable lenses, fixed at the bottom, for picking the proper lens [0091] 2—A lens concentrator, whereas any desired lens can be used [0092] 3—Fixation method [0093] 4—A rubber with a specific position for lens fixation surrounding the mobile tightly [0094] 5-2 The required lens is fixed by evacuated air; it takes the shape of a plastic piece below the peephole [0095] 5-3 A rubber piece on which upward, downward, right and left movable lens is fixed. It is mounted on mobile camera for capturing photos either by the fixed lens or mobile camera. [0096] 5-4 The lens is fixed by a holder provided with a spring for locating the lens above mobile camera through a holder at the mobile back. [0097] A circular body containing lenses of different strengths (+1, +10 or more) fixed by an air aspirator on a specific rubber piece surrounding the mobile. The lenses rotate around an axis for converting the lenses to the right and the left for locating the suitable lens on mobile camera. [0098] 2—A lens-bearing band fixed on a rubber belt with a specific track for the band to move on in order to locate the proper lens on the mobile lens for capturing photos. [0099] 3—A body including the chosen lens fixed on a rubber piece