Patent classifications
H04M2250/20
Display device including driving mechanism
Disclosed is a display device. The display device includes a display panel having an imaging area and a display area, wherein at least a portion of the display area surrounds the imaging area; and an imaging module located on a non-display side of the display panel and including an imaging element and a driving mechanism, wherein the driving mechanism drives the imaging element to move within an orthographic projection range of the imaging area. The display device of the present disclosure can address the problem that the imaging element is fixedly mounted in a position and the imaging range thereof is not adjustable.
Wearable terminal including user input unit with camera module
A mobile terminal includes a main body case, a user input unit configured to detect an input of a control command in a manner that one side of the user input unit is arranged to a side of the main body case and a controller configured to control according to the control command detected by the user input unit. The user input unit includes a rotatable input unit housing combined with the side of the main body case, a rotation detection unit configured to detect a rotation of the input unit housing and deliver a rotation input to the controller and a camera module mounted on the input unit housing. The mobile terminal can expand an input function using a stem button.
Electronic device, photographing method, and photographing apparatus with slidable arc-shaped surfaces
An electronic device, a photographing method, and a photographing apparatus are provided. The electronic device includes a camera, a main body portion, a connecting rod, and a driving apparatus; a rear face of the camera is provided with a first arc-shaped surface that protrudes in a direction away from the camera, the main body portion is provided with a second arc-shaped surface that matches and is slidably connected to the first arc-shaped surface, and the second arc-shaped surface is provided with a through hole; the connecting rod penetrates through the through hole, and a first end of the connecting rod is hinged to the first arc-shaped surface of the camera; and the driving apparatus is connected to a second end of the connecting rod, and is used to drive the connecting rod to drive the first arc-shaped surface to slide relative to the second arc-shaped surface.
Telephone System for Impaired Individuals
An expandable or all-in-one telephone system is designed for seniors suffering from Alzheimer's and other forms of dementia as well as other cognitively challenged individuals. The features and settings are managed by their caregivers through a web browser or a smartphone application. This phone system provides caregivers with peace of mind and care-receivers with an easy-to-use safe system customized to fit their individual abilities and adaptable as their needs change. Accordingly, the system may help seniors retain dignity and independence, while reducing daily stress points for caregivers.
Wearable device and method for AI applications
An artificial intelligence enabled system and method of use is disclosed. The system comprises a host computer such as a cellphone, and a wearable device suitable for AI applications. The device is a wearable watch type device or a head worn device that can communicate with the host computer.
Electronic device, camera device, and anti-shake method and anti-shake apparatus for camera device
This application discloses an electronic device, a camera device, and an anti-shake method and anti-shake apparatus for the camera device. The camera device includes a camera assembly, a support frame, a telescopic connection unit, and a driving unit. The camera assembly is disposed on the support frame and is configured to rotate around an optical axis of the camera assembly relative to the support frame. The telescopic connection unit is rotatably connected to the camera assembly, and a rotation axis of rotation of the telescopic connection unit relative to the camera assembly is parallel to the optical axis. The driving unit is connected to the telescopic connection unit and drives the telescopic connection unit to move. The camera assembly is configured to rotate around the optical axis along with movement of the telescopic connection unit.