Real time adjustment method for split screen size and split screen apparatus
A real-time adjustment and split-screen technology, applied in the input/output process of instruments, electrical digital data processing, and data processing, etc., can solve problems such as screen freezes, flickering, affecting use, etc., to reduce the number of processing times and save processing time. , Improve the effect of user experience
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Embodiment 1
[0082] With the development of split screen technology, in different applications, the number of split screen areas can be two or more, and the left and right split screens, up and down split screens, or a combination of the two can be used, but The principle of the split-screen size adjustment method is the same under different circumstances, so this embodiment will use two split-screen areas and a left-right split-screen method as an example to illustrate a specific split-screen size adjustment method.
[0083] Such as Figure 4 As shown, the method for real-time adjustment of the split-screen size proposed in the first embodiment includes the following steps:
[0084] Step 401. Preset three split-screen modes of the screen:
[0085] 1). Equal split screen (1:1): The left and right split screen areas have the same size.
[0086] 2).37 split screen (3:7): the left split screen area accounts for 30%, and the right split screen area accounts for 70%.
[0087] 3). Seven-three...
Embodiment 2
[0111] In Embodiment 1, by covering the window design, the problem of frequent window redrawing and content loading processing caused by the movement of SmartBar-S is solved, and at the same time, the user can intuitively understand the operation process, that is, the user can move the Control SmartBar-S to directly adjust to the target position, only need the last window redrawing and content loading process, which is more user-friendly. But in fact, other methods can also be used to replace the overlay window design, so as to realize the effect of intuitive operation.
[0112] Since the position adjustment of SmartBar-S is based on the final stop position of SmartBar-C, other methods can be used in the second embodiment to obtain the target position of SmartBar-S, such as Figure 7 shown, including the following steps:
[0113] Step 701. Preset three split screen modes of the screen: equal split screen (1:1), thirty-seven split screen (3:7), seven-three split screen (7:3), ...
Embodiment 3
[0120] In Embodiment 1 and Embodiment 2, the split-screen size adjustment solution in a scenario where the number of split-screen regions is two is described in detail.
[0121] In the third embodiment, for the scenario where the number of split screen areas is more than two, the split screen size adjustment scheme is as follows: apply the method described in embodiment 1 or embodiment 2, repeat the adjustment steps, and adjust each split area in turn to the target size.
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