Dynamic Object Enlargement and Segmented Display for Touch Interaction
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Current devices with touch input technologies face challenges in providing an intuitive and efficient method for users to interact with objects on a display, particularly in executing applications and managing their size and functionality based on user inputs, leading to a suboptimal user experience.
Innovation Solution
A method and device that allow users to interact with objects on a display by receiving user inputs to enlarge and execute applications, with dynamic threshold-based display and execution modes, including vibration feedback, to provide summary or detailed information based on object size, and manage application execution through touch, drag, and pressure inputs.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of information
If the object is enlarged to display detailed information and execute application, then the information display capability is improved, but the display area for other objects is reduced
Solution Approach 1:
The display screen is segmented into multiple regions: a first region for displaying the enlarged object and application execution interface, and a second region for displaying other objects. This segmentation allows detailed information to be displayed in the first region while preserving display area for other objects in the second region, resolving the contradiction between information display capability and overall display area utilization.
2Adaptability or versatility
If multiple execution modes are provided for the object, then the user interaction flexibility is improved, but the device complexity is increased
Solution Approach 1:
The system dynamically switches between different execution modes (first execution mode for enlarged display with application execution, second execution mode for other operations) based on user input characteristics such as drag distance and duration. This dynamic adaptation provides multiple execution modes for flexible user interaction without requiring complex manual configuration, as the system automatically selects the appropriate mode based on real-time user behavior.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Enhances user interaction by allowing seamless execution and management of applications on a display based on user inputs, improving the user interface by providing intuitive size adjustments and feedback mechanisms, thus enhancing the overall user experience.
Implementation Method 1
gradually enlarging and displaying the object
Implementation Method 2
generating a vibration as the executing result of the application is displayed
Data Source
AI summary
A method and device for executing an object on a display. The method of executing an object includes receiving a user input to an object displayed on a display; gradually enlarging and displaying the object; and executing the application corresponding to the object as the object is enlarged.


