Abstract:
A wearable electronic device includes, a light emitter that emits light with a certain wavelength toward a body while the device is worn on the body; a light receiver that measures an incident light amount of the light with the certain wavelength; a posture measurer that measures a posture of a part of the body where the device is worn; and one or more processors. The processor is configured to, determine a posture of the part of the body where the device is worn based on a measured result measured by the posture measurer, and set a first standard value for determining whether the device is worn on the body or not based on the incident light amount in a case that the part of the body where the device is worn is in a standard posture.
Abstract:
An electronic timepiece includes a turnable hand and a processor that controls a turn of the hand. When the processor performs a rapid shift of the hand to a set target position, the processor performs a control of a damping of reciprocation of the hand in which the hand performs a predetermined reciprocation about the target position as a reference position and gradually decreases an amplitude of the reciprocation thereof during the rapid shift.
Abstract:
An information processing apparatus includes a processor that periodically acquires output values from a sensor in a state where the sensor is worn adjacent to a body of a user via a wearable device, derives amplitude parameters representing amplitudes of a plurality of output values among the output values acquired from the sensor, the plurality of output values having been acquired at a plurality of different timings within a preset determination period, counts the number of amplitude parameters that are larger than a criterial value, among the derived amplitude parameters each representing a respective one of a plurality of amplitudes generated at different timings, the number being defined as an amplitude count for determination, and determines whether the wearable device is properly worn on the body of the user based on the amplitude count for determination.
Abstract:
The direction display device includes: a wireless communication section to perform near field wireless communication; a barometric pressure measuring section; a converting section to convert barometric pressure into altitude; an orientation measuring section to measure an orientation of a specified direction; an operation section; a display section; a registration controlling section to obtain current positional information from an external positioning device on the basis of a registration instruction of the measured orientation to store the current positional information as registered positional information so as to be correlated to registered orientation information; a registration position extracting section to extract the registered positional information including an altitude value whose difference from the converted altitude is within a predetermined range; and a display controlling section to cause the display section to indicate a direction regarding the registered orientation correlated to the registered positional information.
Abstract:
An information processing device includes, at least one processor that derives frequency characteristics of time-series data of a measurement result by an acceleration sensor and determines whether the time-series data indicates a running/walking state in accordance with whether all determination conditions including at least a first condition and a second condition are satisfied, the first condition being a condition that a frequency having maximum intensity in the derived frequency characteristics is equal to or higher than a lower limit frequency set in advance, and the second condition being a condition that at least one of the frequency having the maximum intensity or a frequency having second largest intensity in the frequency characteristics falls within a range equal to or higher than the lower limit frequency and equal to or lower than an upper limit frequency set in advance.
Abstract:
An electronic device includes a biometric detection value acquirer to acquire a biometric detection value for calculation of biometric information of a wearer of the electronic device and a processor, in which the processor estimates a change trend of information related to an action detail of the wearer and, based on the estimated change trend of information related to an action detail, selects an algorithm to calculate the biometric information from the biometric detection value.
Abstract:
A display device includes a display having a first area and a second area, a counter configured to count a number of steps of a user during walking, and a processor configured to alternately turn on display of the first area and display of the second area in a case where the number of steps of the user during walking is being counted by the counter.
Abstract:
A warning notification device includes a sensor, a notification unit, and a processor. The processor is configured to calculate a water depth from an output of the sensor every predetermined time and to calculate a surfacing amount from a change in the calculated water depth every predetermined time. When a long-term surfacing speed condition, which is to be determined on the basis of the surfacing amounts of a first number, is satisfied or when a short-term surfacing speed condition, which is to be determined on the basis of the recent surfacing amounts of a second number smaller than the first number, is satisfied, the processor enables the notification unit to issue a warning of a surfacing operation.
Abstract:
Provided is an altitude information acquiring device including a measuring unit which measures atmospheric pressure; a wireless communication unit which performs near field communication with an external device; an altitude information acquiring unit which acquires altitude information from an external positioning device through the wireless communication unit; an inversion detecting unit which detects an inversion of a changing direction of the atmospheric pressure periodically measured by the measuring unit; a communication control unit which controls a timing to acquire the altitude information through the wireless communication unit at a set timing, based on the inversion detected by the inversion detecting unit; and an integrated altitude change acquiring unit which acquires a rise altitude integrated value obtained by integrating an amount of altitude change upon a rise and a fall altitude integrated value obtained by integrating an amount of altitude change upon a fall, based on the acquired altitude information.