Abstract:
An electronic device includes a connection interface, a voltage regulation unit, a storage unit, a charging unit, a processing unit, and a switching unit. The switching unit is coupled to the storage unit, the processing unit, and the connection interface. When the electronic device is in a power-exhaustion state and an external device having a charging function is coupled to the connection interface to provide a first supplying voltage to a power pin of the connection interface, the voltage regulation unit transforms the first supplying voltage to a first operation voltage to power the storage unit and the switching unit, and the switching unit couples the storage unit to the connection interface to transmit device information to the external device. When the external device provides a second supplying voltage to the power pin in response to the device information, the electronic device is in a charging state.
Abstract:
An optical touch control system. A monitor includes a first side, a second side, a third side, and a fourth side sequentially connected to each other. A first light guide, a second light guide, and a third light guide are respectively disposed on the first, second, and third sides of the monitor. A first beam splitter is adjacent to the first and second light guides. A second beam splitter is adjacent to the second and third light guides. A first light source and a second light source are respectively adjacent to the first and second beam splitters. A first image sensor is disposed between the first and fourth sides of the monitor. A second image sensor is disposed between the third and fourth sides. The first and second image sensors receive light transmitted onto the monitor via the first, second, and third light guides, identifying touch control operations.
Abstract:
An interaction system is provided. The interaction system has: a mobile device having: a location detection unit configured to retrieve a geographical location of the mobile device; and a server configured to retrieve the geographical location of the mobile device, wherein the server has a database configured to store at least one interaction object and location information associated with the interaction object, and the server further determines whether the location information of the interaction object corresponds to the geographical location of the mobile device, wherein when the location information of the interaction object corresponds to the geographical location of the mobile device, the server further transmits the interaction object to the mobile device, so that the mobile device executes the at least one interaction object.
Abstract:
A mechanism for deploying software over clouds is provided. The mechanism comprises the following steps. A source cloud platform stores a software project and builds up an environmental transfer configuration. The source cloud platform collects the settings of the software project and related resources to obtain a list file, and a target cloud platform receives the list file and assigns a corresponding data transmission status as un-transmitted. When the data transmission status is un-transmitted, the target cloud platform requests the source cloud platform for the software project. The source cloud platform transmits the software project to the target cloud platform. When the target cloud platform confirms that the software project has been received completely according to the list file, the target cloud platform accordingly installs the software project and builds up related resources.
Abstract:
A hard drive tray device applied in a server is provided. The server includes a housing. The hard drive tray device includes a rail member and a tray. The rail member is disposed at the inner wall of the housing. The tray is slidably engaged with the rail member so as to slide between an expanded position and a closed position relative to the housing. The tray includes a base for carrying two storage devices. The base has a hollow portion. The storage devices are respectively located at two sides of the hollow portion. When the tray slides to the expanded position, one of the storage devices and at least a part of the hollow portion are located outside the housing.
Abstract:
A platform and a method for dynamic software license are disclosed. The dynamic software license platform comprises a license pool, a register manager, a user configure unit and a license manager. The register manager receives a software application from a user end. The user configure unit grants a setting permission to the user end in response to the software application, and allows the user end to submit a license setting according to the setting permission. The license manager adds the software license provided by the software supplier to the license pool, and dynamically provides the software license from the license pool unit according to the license setting.
Abstract:
A flat display system includes a first flat device and a second flat device. The second flat device communicates with the first flat device via wireless communication. When the first flat device is located within a predetermined distance from the second flat device, the first flat device is transformed into an input device of the second flat device.
Abstract:
A firmware updating system and a method for updating the same are provided. The firmware updating system comprises an image updating device and an embedded device. The image updating device comprises a first storage device and a merging module. The first storage device is for storing a first header and a first file system. The merging system is for merging the first header and the first file system to output a first image file. The embedded device comprises a second storage device and a self-updating module. The second storage device is for storing a second image file. The second image file includes a second header, a second file system, and a third file system. The self-updating module is for updating the second file system of the second image file as the first file system according to the first image file.
Abstract:
An optical touch control system is disclosed. A reflector surrounds a monitor. At least one image detection module is adjacent to the monitor and includes an image sensor, a reflective mirror, and a light source. The image sensor is electrically connected to an image processor. The reflective mirror is disposed on the image sensor and inclines to the image sensor by a predetermined angle. The light source outputs light onto the monitor. The reflective mirror reflects the light reflected by the reflector to the image sensor, identifying a touch control operation.
Abstract:
The present invention provides an electronic device including a touch screen, an image processing unit, a determination unit, and a switching unit. The touch screen receives a predetermined gesture and displays a plurality of screen layers including a lock layer and a desktop. The image processing unit inserts the lock layer above the desktop in a locked mode, wherein the lock layer comprises a lock icon disposed at a predetermined position. The determination unit determines whether the predetermined gesture has been executed at the predetermined position on the lock layer when the touch screen has been triggered by the predetermined gesture in the lock mode. The switching unit forces the electronic device to enter a normal operating mode from the lock mode and execute an application corresponding to the lock icon at the predetermined position when the predetermined gesture has been executed at the predetermined position.