Abstract:
An electronic device including a casing, a touch display and a processor is provided. The casing has an opening, and the touch display is disposed inside the casing for receiving the operation of an input tool. The opening exposes a portion of the touch display. The touch display has a sensing surface. The processor is coupled to the touch display, and the user interface displayed by the touch display is determined by the processor. As a result, the convenience of operating the electronic device is increased.
Abstract:
An electronic device that has a sensing function with no-hindrance touching is provided. The electronic device includes a casing, a touch display and a processor. The casing has an opening, and the touch display is disposed inside the opening for receiving an operation of an input tool. The touch display has a sensing surface which allows the input tool to slide smoothly over the sensing surface and the casing. The processor is electrically coupled to the touch display, and the user interface displayed by the touch display is determined by the processor. As a result, the convenience of operating the electronic device is increased.
Abstract:
A graphical menu interface, an implementing method thereof, and an operating method thereof are provided. In the implementing method of the graphical menu interface, m function groups are provided first, and each of the function groups has at least one function. Then, an operating frame related to each function group is obtained and used as the menu icon representing a corresponding function group in the graphical menu interface. Finally, there are n function groups displayed on the screen, and the corresponding operating frames are used as the menu icons of these n function groups in the graphical menu interface. As a result, users can infer the position of each function in the graphical menu interface more intuitively, and thus the convenience in operating the graphical menu is improved.
Abstract:
An antenna device has a dielectric body with a convex surface and a concave surface. The antenna device further has a flexible printed circuit board disposed on the convex surface.
Abstract:
A wireless device initially has simultaneous circuit switched (CS) and packet switched (PS) services with a non-UMTS network. With the CS and PS services ongoing, the non-UMTS network transmits a HANDOVER TO UTRAN COMMAND message to the wireless device to perform a handover to UTRAN procedure. The HANDOVER TO UTRAN COMMAND message excludes information used for handing over the PS signaling connections to the UTRAN so that only CS signaling connections are handed over. The wireless device receives and parses the HANDOVER TO UTRAN COMMAND message to determine what signaling connections are being handed over. Upon determining that only CS signaling connections are being handed over, a radio resource control (RRC) layer within the wireless device informs an upper layer within the wireless device that no PS radio access bearers or no PS signaling connections are present.
Abstract translation:无线设备最初具有与非UMTS网络的同时电路交换(CS)和分组交换(PS)服务。 随着CS和PS服务的持续进行,非UMTS网络向无线设备发送HANDOVER TO UTRAN COMMAND消息以执行到UTRAN过程的切换。 切换到UTRAN命令消息不包括用于向UTRAN递送PS信令连接的信息,使得只有CS信令连接被切换。 无线设备接收并解析HANDOVER TO UTRAN COMMAND消息以确定正在切换的信令连接。 在确定只有CS信令连接被切换之后,无线设备内的无线资源控制(RRC)层通知无线设备内的上层,不存在PS无线接入承载或没有PS信令连接。
Abstract:
A heat-dissipation method comprises providing a heat-transfer module and a heat-dissipation module, wherein the heat-transfer module is disposed in a portable electronic device, and the heat-dissipation module is disposed in a battery charger. The heat-dissipation module then contacts the heat-transfer module to remove heat from the electronic device via conduction. Finally, the heat-dissipation module dissipates heat via conduction or convection.
Abstract:
A handheld device with a digital album to redisplay previously captured physical images and the applications of the same are provided, wherein the handheld device comprises an image-capture unit, an image-compression unit and a memory unit. The image-capture unit is used to garb initial image data by converting the physical image into initial image data. The image-compression unit is used to convert the initial image data into compressed data. The memory unit, used to store the compressed data, whereby the physical image can be redisplayed directly without the aid of an extra device.
Abstract:
A transmission device of a handheld electronic device including a housing having an inlet and an outlet, a fan installed within the housing for generating airflow from the inlet to the outlet and a guide tube installed on the housing having a first opening and a second opening, the first opening is located at the outlet side, the second opening is coupled to an opening of the handheld electronic device in a detachable manner to allow airflow generated by the fan into the handheld electronic device, the guide tube can improve cooling effect of the transmission device and the transmission device is capable of cooling the handheld electronic device to solve the heating problem while the handheld electronic device is being utilized.