Abstract:
A smart bracelet display control system and a smart bracelet. The smart bracelet display control system comprises a processing module, a position detecting module, a displaying module and a storing module, the position detecting module is configured to detect current position information of itself; the storing module is configured to store a correspondence relationship between set position information of the position detecting module and a display position of the displaying module; the processing module is configured to determine a current display position of the displaying module according to the correspondence relationship and the current position information; and the displaying module is configured to display content to be displayed according to the current display position. The present disclosure does not need a user to rotate the bracelet to change the position of the display screen, and is capable of facilitating the user to view the display content.
Abstract:
A display control system and a display apparatus are disclosed. The display control system includes a circuit board including a top edge, a bottom edge opposite to the top edge and a side edge intersecting with the top edge and the bottom edge, a length of the top edge and a length of the bottom edge being larger than that of the side edge; a core module on the circuit board for processing display information; an image data output interface on the circuit board, connected with the core module for outputting display image data; a plurality of function modules on the circuit board, connected with the core module for transmitting the display information to the core module. The function modules and the core module are along the top edge, and the image data output interface is on a side of the function modules close to the bottom edge.
Abstract:
An automatic object recognition method and an automatic object recognition system, a shopping device and a non-transitory computer readable storage medium are disclosed. The automatic object recognition method includes: acquiring a first image and a second image, both the first image and the second image including a same object, and the second image being a depth image; extracting a feature point of the object based on the first image; obtaining a joint feature based on the feature point from the first image and depth information of the second image; and recognizing the object based on the joint feature.
Abstract:
A 3D play system is provided. The system includes a head-mounted/headset device. The head-mounted device includes a supporting structure; a first lens; and a second lens. The supporting structure is configured to support two display devices. The first lens is configured to zoom an image displayed by a first device and project the zoomed image onto a left eye. The second lens is configured to zoom an image displayed by a second display device and project the zoomed image onto a right eye. The 3D play system imposes less limitation on watching environment and allows a user to watch 3D images conveniently.