Abstract:
A method for testing a handheld electronic device installed with an open operating platform including a first testing instruction and a second testing instruction includes sending the first testing instruction to the handheld electronic device to switch the handheld electronic device from a high power consumption state to a low power consumption state; sending the second testing instruction to the handheld electronic device to switch the handheld electronic device from the low power consumption state to the high power consumption state; and executing the first testing instruction and the second testing instruction repeatedly in a loop based on a predetermined test duration and test count, such that tests performed on the handheld electronic device are precise and stable.
Abstract:
A method for testing handheld electronic device is for use in testing the power consumption level of a handheld electronic device equipped with an open operating platform. The method involves configuring, in the open operating platform, a radio communication unit and a display unit of the handheld electronic device; configuring the radio communication unit such that the radio communication unit can receive a data signal; adjusting controllably brightness of the display unit; and comparing, after a predetermined time period of control, an initial power level and a current power level of a battery in the handheld electronic device to evaluate power consumption of the handheld electronic device.
Abstract:
A read/write test method for handheld electronic product is introduced. The handheld electronic product is connected to a storage device and is equipped with an open platform having a data read/write test program installed thereon. In the read/write test method, the following steps are repeatedly executed according to a default test condition: the data read/write test program sends out a first test command to write a test data file into the storage device; the data read/write test program sends out a second test command to execute closing, opening and reading of the test data file; and the data read/write test program, upon confirmation of successful reading of the test data file, sends out a third test command to execute cutting, pasting, copying, and deleting of the test data file. Upon completion of the above steps, test results from each of the steps are output for a test operator to analyze.
Abstract:
A touch panel module has a touch panel, a sensation feedback panel, a control unit and a stimulating signal generating circuit. The sensation feedback panel is mounted on the touch panel and has multiple stimulating circuits arranged in a matrix configuration or a non-overlap configuration. The stimulating signal generating circuit electrically connects to the stimulating circuits and the control unit. When the control unit receives a touch signal produced by the touch panel, it controls the stimulating signal generating circuit to output stimulating currents to the stimulating circuits. When a user touches the stimulating circuits, the stimulating current can flow through the user's finger to electrically stimulate nerve, thereby achieving the sensation feedback effect to notice the user that the touch panel has been pressed properly to activate desired function.
Abstract:
A personal computer (PC) includes a main body, a processor received in the main body, and a projecting unit received in the main body and electrically connected to the processor. The PC does not include a built-in display. The processor transmits image signals to the projecting unit, the projecting unit projects images onto a nearby projection surface corresponding to received image signals, so that the nearby projection surface serves as a display of the PC.
Abstract:
Testing system and method with wireless transmission tested data function are provided. An electronic device performs self-testing by a testing program or a testing instrument so as to generate tested data and transmits the tested data to a server via a wireless network. A processing device linked to the server via the wireless network obtains and processes the tested data so as to generate processed data. The processing device further transmits the processed data to the server via the wireless network. Accordingly, the processing device immediately and remotely monitors the electronic device, which is located on a production line, thereby effectively reducing manpower and costs.