US20240319858
2024-09-26
Physics
G06F3/04845
An innovative electronic device features a housing and a flexible display that is partially visible from the outside. The device is equipped with at least one processor that manages the flexible display's operations. When a user initiates a sliding action on the display, the processor identifies which area of the display needs to be moved and subsequently guides the user through visual indicators. This allows for a seamless transition as parts of the display are exposed or hidden based on user interactions.
The device aims to improve user experience by providing clear indicators and guidance for sliding actions. Upon receiving an initial input from the user, the processor highlights an edge area of the flexible display that is designated for sliding. Additionally, it presents a guide object to assist users in selecting the desired sliding direction and length, thus minimizing confusion and enhancing usability.
To ensure smooth operation, the device incorporates a feedback system that detects potential interference during sliding actions. If an obstruction is identified, the processor provides immediate feedback through various means, such as vibrations or visual alerts. This feature helps users recognize when their actions might be impeded, allowing them to adjust accordingly before proceeding with the sliding operation.
The electronic device is designed to adaptively display different types of content based on user inputs. When a sliding action occurs, the processor compares the basic display direction with content orientation to determine what should be shown on the newly exposed area. This capability ensures that users receive an intuitive and relevant experience as they interact with their device.
This slidable electronic device represents a significant advancement in portable technology, combining flexibility with user-friendly controls. By addressing common issues related to sliding operations, such as interference detection and content adaptation, it enhances overall functionality while maintaining an aesthetically pleasing design devoid of bezels or physical buttons. The innovative control method not only improves usability but also contributes to a more engaging interaction between users and their devices.