DEFECT-FREE DESIGN SOLUTION FOR AB DOUBLE-SIDED AND DOUBLE-SCREEN SMART PHONE
20210385313 · 2021-12-09
Inventors
Cpc classification
G06F1/165
PHYSICS
H04M2250/22
ELECTRICITY
G06F1/1626
PHYSICS
International classification
Abstract
Several key points about the design scheme in the specification: 1. The smartphone is designed with AB double-sided double screen. 2. The unrestricted arrangement of the large touch display screen (the screen-to-body ratio is less than or equal to 100%) of smartphone (Side A). 3. On the side of the small touch display screen that gathers the handset opening(Earpiece opening), main camera lens and selfie camera lens (Side B), the main camera and selfie camera can be mutually independent or combined. The total number of camera lenses can be 1−n. 4. In order not to marginalize the phone function of smartphone, the phone function is arranged on the side of the small touch display screen (Side B). The handset opening(Earpiece opening) is still in an important position. 5. Avoid adding internal or external mechanical parts. 6. All the components and their windows or openings on the side of the small touch display screen, including the touch screen, can be designed and arranged flexibly in terms of specifications and location.
Claims
1. The smartphone is designed with AB double-sided double screen, in which a large touch screen with a screen-to-body ratio of less than or equal to 100% is placed on the Side A of the mobile phone as the large screen display and operation area, It is possible but not necessary to arrange other components such as sensors and their windows or openings that occupy panel space except for the large touch display screen and under-screen sensors on Side A, Side A can be fully or partially used for the arrangement of a large touch display screen, The small touch display screen with an appropriate size, handset opening(Earpiece opening), one or several lenses of main camera and selfie camera (the main camera and selfie camera can be mutually independent or combined, therefore, the total number of camera lenses can be 1−n) can be flexibly arranged in various positions on the Side B of mobile phone as the display and operation area mainly for making and receiving calls, On this basis, Side B can be arranged with other components such as sensors and their windows or openings that need to occupy panel space, as well as under-screen sensors and other components.
2. Side B of AB double-sided double-screen smartphone in this design is equivalent to the front of a traditional smartphone where the main camera lens on the back of a traditional smartphone with the standard screen is flipped and moved, The moved main camera lens is on the same side as the handset opening(Earpiece opening), touch display screen and selfie camera lens (the main camera and selfie camera can be mutually independent or combined, Therefore, the total number of camera lenses can be 1−n), clearing the back of phone completely to form Side A to place a touch display screen with a screen-to-body ratio of less than or equal to 100% on Side A, With the large touch screen of Side A, the touch display screen, handset opening(Earpiece opening) and camera lens on Side B can be designed and arranged flexibly in terms of specifications and location.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
Description of the Drawings
[0006] Description of the drawings: FIG. 1 of drawings is the visual illustration diagram of the core concept of this design, mainly to illustrate that the handset and its opening(Earpiece opening), the main camera and the selfie camera (they can be mutually independent or combined, Therefore, the total number of camera lenses can be 1−n) lens, as well as the small touch display screen with appropriate size, specification, shape and location are arranged on a plane (Side B) at the same time, and other components occupying the panel space and their openings and windows also have sufficient arrangement space on this plane (side B). The A side of the mobile phone can be fully or partially used for the arrangement of a large touch display screen with a screen-to-body ratio of less than or equal to 100%. FIG. 1 is not the design drawing of a specific structure and appearance.
Best Implementation Method of this Invention
[0007]
EMBODIMENTS OF INVENTION
Implementation Method of this Invention
[0008]
Industrial Applicability
[0009]
Free Content of Sequence Listing
[0010]