Abstract:
An electronic device has a reception unit that captures positioning information satellites and receives satellite signals transmitted from the captured positioning information satellites, a solar panel, and a reception control unit that controls the reception unit. The reception control unit includes an evaluation unit that evaluates the reception environment based on power generation by the solar panel, and a mode selection unit that, based on the result from the evaluation unit, selects a time information reception mode for receiving the satellite signals and acquiring time information, or a position and time information reception mode for receiving the satellite signals and acquiring positioning information and time information, and controls operation of the reception unit in the reception mode selected by the mode selection unit.
Abstract:
The invention relates to a mechanism (5) comprising a measuring system (11, 13) mechanically connected to a display system (9) for displaying a time-related or other piece of information (2, 14). According to the invention, the display system (9) includes a quick correction device (10, 12) with an epicycloidal gear train for correcting said display of time-related or other information (2, 14) at any time while maintaining the relationship between the display system (9) and the measuring system (11, 13) during the correction phase.The invention particularly concerns the field of timepieces.
Abstract:
A wearable electronic device for conveying information in an analog manner at least in part by the use of at least one display hand positioned on the dial side of a dial, wherein the wearable electronic device uses the display hand(s) to convey information that is stored in the controller of the device and/or provided by sensors and/or an external transmitter. An actuation mechanism, preferably a stepper motor, is used to rotate the display hands in the clockwise and/or counterclockwise directions in predefined increments to convey the information.
Abstract:
A wearable electronic device for conveying information in an analog manner at least in part by the use of at least one display hand positioned on the dial side of a dial, wherein the wearable electronic device uses the display hand(s) to convey information that is stored in the controller of the device and/or provided by sensors and/or an external transmitter. An actuation mechanism, preferably a stepper motor, is used to rotate the display hands in the clockwise and/or counterclockwise directions in predefined increments to convey the information.
Abstract:
A wearable electronic device for conveying information in an analog manner at least in part by the use of at least one display hand positioned on the dial side of a dial, and a rotatable ring positioned on the opposite side of the dial, wherein the wearable electronic device uses the coordination of the display hand(s) and the ring to convey information that is stored in the controller of the device and/or provided by sensors and/or an external transmitter. An actuation mechanism, preferably a stepper motor, is used to rotate the display hand and ring in the clockwise and/or counterclockwise directions in predefined increments to convey the information. In the preferred embodiment, the wearable multimode electronic device is a wristwatch.
Abstract:
A wearable electronic device for conveying information in an analog manner at least in part by the use of at least one display hand positioned on the dial side of a dial, wherein the wearable electronic device uses the display hand(s) to convey information that is stored in the controller of the device and/or provided by sensors and/or an external transmitter. An actuation mechanism, preferably a stepper motor, is used to rotate the display hands in the clockwise and/or counterclockwise directions in predefined increments to convey the information.
Abstract:
A pulsimeter having an improved pulse measurement accuracy by having a good shading is provided. The pulsimeter include a main body 2, a finger insertion section 4 disposed on the main body to be inserted by a finger (FIG. 2), a pulse sensor 5 for sensing pulses of a finger inserted into the finger insertion section 4 (FIG. 2), and a display 6 for displaying the pulses sensed by the pulse sensor 5. The finger insertion section 4 is disposed on a surface (the reverse side of the main body 2) opposite to a surface provided with the display 6.
Abstract:
A pulsimeter includes a main body having a front face and a back face that is opposite the front face. A finger insertion section, into which a finger may be inserted, is arranged on the back face of the main body. Also included is a pulse sensor which is configured to sense pulses from a user's finger that has been inserted into the finger insertion section. A display, which is arranged on the front face of the main body, is configured to display the pulses sensed by the pulse sensor. The display and the finger insertion section are arranged such that the display may be observed by the user while the user's finger is inserted into the finger insertion section.
Abstract:
A device for measuring altitude and barometric pressure having a barometric pressure sensor, an amplifying circuit for amplifying the output signal from the pressure sensor, an analog to digital converter for converting the output signal from the amplifying circuit to a digital signal, and an altitude information generator for generating altitude information from the output signal of the analog to digital converter. A display displays the altitude information from the altitude information generator and the pressure information detected by the pressure sensor with pressure variation information and converts it into precise altitude information in accordance with temperature compensation data and altitude compensating data based upon regional and time information. The device may be used in climbing or the like with remarkable reliability.
Abstract:
A running shoe with an integral timer includes a shoe having an upper body portion and a lower sole portion divided into a toe portion and a rearward heel portion separated by a recessed arch portion. An electronic digital stop watch is embedded in the material utilized to form the recessed arch portion and a flexible cover is removably secured to cover a display and function control buttons provided on side wall portions of the central arch. A step counter may be mounted in the arch and includes an actuating switch embedded in the sole portion of the shoe for counting steps of an individual. Start/stop and reset buttons for the stop watch may be provided on heel and toe portions of the shoe, enabling an individual to actuate the stop watch by kicking the heel or toe of the shoe against an object.