Abstract:
A method of setting/calibrating a feature or function in a setting/calibrating mode of an electronic device comprising at least one actuatable selector, wherein the setting/calibrating of the feature or function requires an actuation of the at least one selector, wherein the electronic device comprises at least one indicator hand coupled to an actuation mechanism that rotates the at least one indicator hand in at least one of a clockwise and counterclockwise direction, wherein the method comprises the steps of using the at least one indicator hand to indicate the actuatable selector for actuation; setting/calibrating the feature or function; and exiting the setting/calibration mode. An electronic device that carries out the foregoing method is also disclosed.
Abstract:
An electronic timepiece has a display device that displays display information, a drive mechanism that drives the display device, a crown that can perform a rotary operation, and a control device that corrects the display information displayed on the display device by the rotary operation of the crown. The control device has a single correction mode and a continuous correction mode which are selected by the rotary operation of the crown. In the single correction mode, a single correction signal is output to the drive mechanism so that the display device is corrected as much as a single correction quantity. In the continuous correction mode, a continuous correction signal is output to the drive mechanism so that the display device is corrected as much as a continuous correction quantity. The continuous correction quantity is set depending on types of the display information to be corrected in the continuous correction mode.
Abstract:
Embodiments of the present application relate to a method and apparatus for setting an alarm clock. The method includes receiving an input directed at a time-display area on a display screen of a device, adjusting time information displayed on the display screen according to the input, and setting an alarm clock according to the adjusted time information.
Abstract:
An operating method of a clock-calendar and a portable electronic device using the same are provided, where a touch screen display of the portable electronic device displays the clock-calendar with a clock pattern. In the method, a gesture on the touch screen display corresponding to the clock-calendar is detected and analyzed, where the gesture includes a gesture starting point and a gesture finishing point on the touch screen display. After the gesture is analyzed, the clock-calendar is operated according to the gesture.
Abstract:
A portable electronic apparatus has a display for displaying display segments. A selecting circuit selects one of the display segments displayed by the display. A display brightness controller controls the display so that the display segment selected by the selecting circuit has a display brightness higher than that of the other display segments displayed by the display.
Abstract:
An electronic timepiece includes a primary timepiece circuit unit including a frequency supply for providing a relatively high frequency signal, a frequency converter responsive to the relatively high frequency signal to provide a relatively low frequency time unit signal, timing signals, and a plurality of word pulses indicative of a plurality of data words representing time data concerning the current time, and a set of additional data other than the time data, a timekeeping register arranged to store the time data and the additional data, and display elements for displaying the time data and the additional data. A secondary timepiece circuit unit includes a register arranged to store the additional data to be transferred to the timekeeping register.
Abstract:
An electronic timepiece having a single digital display and being suitable to operate as a standard timekeeping wristwatch or in the alternative as a chronograph. Separate divider circuits are provided for performing the timekeeping and chronograph functions. A single set of switches is provided for controlling the operation of either divider circuit, a single selector circuit selecting which function is to be displayed and which divider is to be controlled by the switches. Indication means are provided for indicating which function is being displayed.
Abstract:
A portable electronic device equipped with timekeeping circuit means for providing at least units of seconds and tens of seconds of time information, and display means for displaying said time information in digital form, which comprises first external control member for inputting numeric data signals, a control circuit for selecting at least said tens of seconds of said time data for correction, second external control member for inputting control signals to actuate said control circuit, first gate means for applying said numeric data signals to said timekeeping circuit means to effect correction of at least said tens of seconds of time information, second gate means for automatically resetting said units of seconds of time information to zero in response to correction of said tens of seconds of time information.
Abstract:
An electronic timepiece includes a frequency supply for providing a relatively high frequency time base signal, a frequency converter responsive to the relatively high frequency time base signal to provide a timing signal, a clock signal, and a time unit signal. A timekeeping circuit is responsive to the time unit signal to provide a time information signal, and at least one of the timing signal, clock signal, and time information signal is chopped into periodic bursts to effect transfer of the at least one of the timing signal, clock signal, and time information signal from one part to another part in the timepiece. The time in response to the time information signal is displayed.
Abstract:
A pulse generating means is adapted to be rotated in either direction by a manual operation and to produce a plurality of trains of pulse signals the frequencies of which are varied in accordance with the speed of rotation. The pulse trains have different phase differentials which are inverted when the direction of the rotation of the pulse generating means is reversed. Either the up counting mode or the down counting mode of an up-and-down counter is selected in accordance with the output from the pulse generating means, so as to correct the contents of the counter by an addition or a subtraction.