Abstract:
A smartphone includes a receiver, a log acquirer, a determiner, an information notifier, and a display. The receiver is in wireless communication with a time display device. The log acquirer acquires log data from the time display device by the receiver. The determiner determines the usage status of the time display device on the basis of the log data acquired by the log acquirer. The information notifier provides, via the display, notification of information corresponding to the usage status determined by the determiner.
Abstract:
A timer measurement device includes a signal output unit, an operation input unit and a processor. The processor stores ordered time settings including at least respective timer values. When an elapsed time that is measured by using a clock signal output by the signal output unit reaches a timer value of a time setting selected from the time settings, the processor resets the elapsed time, and switches the selected time setting to a next time setting among the ordered time settings. If the operation input unit receives a predetermined change command during, the measurement of the elapsed time for the timer value of the selected time setting, the processor performs, in response to the change command, a change processing which changes a remaining time with respect to the elapsed time for the timer value of the selected time setting.
Abstract:
Disclosed is an analog electronic timepiece including a first pointer which rotates freely with respect to a dial, a driving control unit which controls rotation of the first pointer, and an operation unit which receives an input operation performed by a user. In the analog electronic timepiece, the driving control unit includes an intermittent fast forwarding unit which performs a fast forwarding operation with temporary stops, where the rotation of the first pointer is stopped for a predetermined time period every time the first pointer is rotated by being fast forward for a predetermined number of steps according to a predetermined starting operation performed on the operation unit, the predetermined number of steps being 2 or more steps.
Abstract:
A smartphone includes: a near-field communication unit capable of performing communication with an electronic terminal including an acceleration sensor used to count the number of steps and measure the intensity of exercise of a user; a GPS positioning unit which makes a positional measurement; and a CPU. The electronic terminal includes the acceleration sensor used to count the number of steps and measure the intensity of exercise of the user. The near-field communication unit receives, from the electronic terminal, an exercise log indicative of the number of steps of the user. The CPU displays, on a touch panel display, a route log positioned by the GPS positioning unit and the exercise log in association with each other.
Abstract:
An electronic timepiece includes a first display section including a first rotatable part and a processor. In the first display section, a predetermined number of display contents being a same display content is simultaneously displayed at predetermined angle intervals in a rotation angle range of the first rotatable part, wherein the predetermined number is two or more. The first display section makes a display pattern that shows change in the display content appear the predetermined number of times cyclically according to rotation of the first rotatable part. When causing the first display section to display a first display content of first display contents included in the display pattern, the processor selects an angular position from angular positions for the first display content in the predetermined number of display patterns, and causes the first rotatable part to rotate to the selected angular position.
Abstract:
An electronic timepiece includes a timer that clocks a current time, a receiver that receives radio waves, a switch that receives an operation from a user, and a processor. The processor acquires, in accordance with the operation received by the switch, a determination result indicating whether the radio waves are receivable by the receiver, and selects and executes one of a first processing and at least one second processing that differs from the first processing. The first processing is processing to correct the current time clocked by the timer on the basis of the radio waves received by the receiver. The processor does not select the first processing when the determination results indicate that the radio waves are not receivable by the receiver.
Abstract:
An electronic timepiece includes indicators, an operation receiving unit, a timing unit and a processor. The operation receiving unit receives an operation performed by a user. The timing unit counts a date and time at present. The processor carries out operation control of the indicators and obtains a local time setting based on a time difference between a predetermined standard time and a local time at a target position. The processor makes at least apart of the indicators display the local time in accordance with the operation received by the operation receiving unit and obtains the local time setting based on a difference between the displayed local time and the date and time counted by the timing unit.
Abstract:
An electronic timepiece includes indicators, an operation receiving unit, a timing unit and a processor. The operation receiving unit receives an operation performed by a user. The timing unit counts a date and time at present. The processor carries out operation control of the indicators and obtains a local time setting based on a time difference between a predetermined standard time and a local time at a target position. The processor makes at least a part of the indicators display the local time in accordance with the operation received by the operation receiving unit and obtains the local time setting based on a difference between the displayed local time and the date and time counted by the timing unit.
Abstract:
An electronic timepiece includes a timer unit, a timepiece-side communication unit, a timepiece-side daylight saving time information storage unit and a processor. The timer unit counts local time at a current position. The timepiece-side communication unit communicates with an external device. The timepiece-side daylight saving time information storage unit stores daylight saving time implementation information therein at least at the current position. The processor corrects the local time in correspondence to an implementation situation of daylight saving time at the current position, based on the daylight saving time implementation information, acquires update information of the daylight saving time implementation information from the external device through the timepiece-side communication unit and reflects the acquired update information in the daylight saving time implementation information.