Abstract:
A mobile communication device with camera comprises a mobile communication module, a camera module, a storage unit, a display unit, and a switching module. The mobile communication module has a first transmission interface, the camera module has a second transmission interface; image data processed that are outputted by means of the camera module via the second transmission interface, and next the image data outputted that are received by the mobile communication module via the first transmission interface, and next the image data received that are transmitted to the storage unit to be stored and to the display unit to be displayed. The switching module is installed in the mobile communication module for switching to the camera module operation or the mobile communication module operation.
Abstract:
A portable electronic device with an operation mode determined in accordance with power consumption and an operation mode switching method thereof are proposed. The method examines the voltage required by different systems to control every power system independently. By examining the capacity of a battery cell unit and comparing the capacity result with a first reference capacity and a second reference capacity, whether to offer operation power in order to operate a mobile communication module or a digital camera module is determined. Therefore, when a digital camera module, which has high power consumption requirements, is off, the mobile communication module can still operate to effectively use energy provided by the power supply unit.
Abstract:
A mobile communication device with camera comprises a mobile communication module, a camera module, a storage unit, a display unit, and a switching module. The mobile communication module has a first transmission interface, the camera module has a second transmission interface; image data processed that are outputted by means of the camera module via the second transmission interface, and next the image data outputted that are received by the mobile communication module via the first transmission interface, and next the image data received that are transmitted to the storage unit to be stored and to the display unit to be displayed. The switching module is installed in the mobile communication module for switching to the camera module operation or the mobile communication module operation.
Abstract:
A portable electronic device with an operation mode determined in accordance with power consumption and an operation mode switching method thereof are proposed. The method examines the voltage required by different systems to control every power system independently. By examining the capacity of a battery cell unit and comparing the capacity result with a first reference capacity and a second reference capacity, whether to offer operation power in order to operate a mobile communication module or a digital camera module is determined. Therefore, when a digital camera module, which has high power consumption requirements, is off, the mobile communication module can still operate to effectively use energy provided by the power supply unit.
Abstract:
A portable electronic device for sharing a common storage device via a by-pass mode is disclosed. The portable electronic device includes a portable electronic system, a DSC (Digital Still Camera), and a mass storage system. The portable electronic system has a first process unit and a signal multiplexer electrically connected with each other. The DSC system has a second process unit. The DSC system is electrically connected with the signal multiplexer. The mass storage system is electrically connected with the signal multiplexer. Whereby, when a raw image signal is captured via the DSC system, the raw image signal is processed via the second process unit to obtain a predetermined image signal. The predetermined image signal is then stored in the mass storage system via the signal multiplexer.
Abstract:
A power connection device for connecting a flash tube and a camera module includes a wire, a first electrical connector, and a second electrical connector. One end of the wire is connected with the flash tube, and the first electrical connector is electrically connected with the other end of the wire. The second electrical connector is located at a power supply terminal of the camera module and the second electrical connector is electrically plugged with the first electrical connector. Thereby, the flash tube is connected with the camera module via the power connection device.
Abstract:
A buffer structure for reducing external forces to be transmitted from a PCB to a lens module via a support element is disclosed. The buffer structure comprises a plurality of first and second buffer units. In addition, the lens module is fixed on a first one side of the support element via the first buffer units, and a second one side of the support element is fixed on the PCB via the second buffer units. Thereby, each first buffer unit generate a first buffer effect between the lens module and the support element, and each second buffer unit generate a second buffer effect between the PCB and a combination of the lens module and the support element.
Abstract:
A connecting structure for a lens and a main board includes a board having a first through hole, a lens module having a second through hole, and at least one connecting device. The connecting device passes through the first through hole and the second through hole to connect the board and the lens module. The connecting device has a first adjusting part that corresponds to the first through hole, and a second adjusting part that corresponds to the second through hole. The first through hole and the second through hole are adjusted and controlled via the first adjusting part and the second adjusting part so that there is a proper space between the lens module and the board. The flatness of the lens module affected by the warp of the main board is avoided and the MTF of the lens module is kept on its best state.
Abstract:
A power connection device for connecting a flash tube and a camera module includes a wire, a first electrical connector, and a second electrical connector. One end of the wire is connected with the flash tube, and the first electrical connector is electrically connected with the other end of the wire. The second electrical connector is located at a power supply terminal of the camera module and the second electrical connector is electrically plugged with the first electrical connector. Thereby, the flash tube is connected with the camera module via the power connection device.