An electronic watch may include a tactile switch and/or one or more sensors for detecting rotational and translational inputs. The watch may include a display configured to produce graphical outputs that may change in response to rotational inputs, translational inputs, and/or touch inputs received
An electronic watch may include a tactile switch and/or one or more sensors for detecting rotational and translational inputs. The watch may include a display configured to produce graphical outputs that may change in response to rotational inputs, translational inputs, and/or touch inputs received at the display. The watch include a crown positioned along an exterior of the watch enclosure and a shaft coupled to the crown and extending into the enclosure. The tactile switch and/or the one or more sensors may be used to detect rotational and/or translational inputs provided at the crown.
대표청구항▼
1. A watch, comprising: a watch enclosure having a portion configured to act as a first lead for an electrocardiograph (ECG);a crown positioned along a side of the watch enclosure and configured to act as a second lead for the ECG;a touch-sensitive display positioned at least partially within the wa
1. A watch, comprising: a watch enclosure having a portion configured to act as a first lead for an electrocardiograph (ECG);a crown positioned along a side of the watch enclosure and configured to act as a second lead for the ECG;a touch-sensitive display positioned at least partially within the watch enclosure and configured to receive a touch input and display a graphical output;a processor configured to determine the ECG using the first and second leads;a rotation sensor positioned within the watch enclosure and configured to detect a rotational input; anda translation sensor positioned within the watch enclosure and configured to detect a translational input;wherein the touch-sensitive display is configured to modify the graphical output in response to each of: the ECG;the rotational input detected by the rotation sensor;the translational input detected by the translation sensor; andthe touch input detected by the touch-sensitive display. 2. The watch of claim 1, wherein: the crown includes a conductive portion;the watch further comprises: a conductive shaft that is electrically coupled to the conductive portion; anda circuit that is electrically coupled to the conductive shaft; andthe conductive shaft extends into an interior volume of the watch enclosure. 3. The watch of claim 2, wherein: the translation sensor is a tactile switch configured to detect the translational input by detecting translation of the conductive shaft; andthe conductive shaft, the conductive portion of the crown, and the tactile switch are electrically isolated from the watch enclosure. 4. The watch of claim 1, wherein: the portion of the watch enclosure is configured to contact a wrist of a user; andthe crown is configured to contact a finger of the user. 5. The watch of claim 1, wherein the processor determines the ECG by determining a voltage using the first and second leads. 6. The watch of claim 1, wherein: the graphical output includes a group of icons; andthe group of icons are scrolled in a continuous manner in response to both the rotational input and the touch input. 7. The watch of claim 1, wherein: the graphical output includes a group of icons;an icon of the group of icons corresponds to a received message; anda position of the icon is varied in a continuous manner in accordance with either the rotational input or the touch input. 8. A watch, comprising: a watch enclosure defining an interior volume and an opening extending to the interior volume, the watch enclosure having a first conductive portion that is configured to contact a first body part contacting the watch enclosure and act as a first electrode;a crown having a second conductive portion that is configured to contact a second body part contacting the crown and act as a second electrode;a shaft coupled to the crown and extending through the opening and into the interior volume of the watch enclosure;a processor positioned in the interior volume;a touch-sensitive display positioned at least partially within the interior volume and having a touch sensor configured to detect a touch input;a rotation sensor configured to detect a rotational input; anda tactile switch configured to detect a translational input; wherein: the first and second electrodes are used to detect at least one voltage;the processor uses the at least one voltage to determine a characteristic of a user's heart;the shaft and the tactile switch electrically couple the second conductive portion of the crown to the processor; andthe touch-sensitive display is configured to depict a graphical output, the graphical output responsive to each of: the rotational input;the translational input; andthe touch input. 9. The watch of claim 8, wherein the characteristic of the user's heart is an electrocardiograph (ECG). 10. The watch of claim 8, wherein: the at least one voltage comprises: a first voltage detected at the first electrode; anda second voltage detected at the second electrode; anddetermining the characteristic of the user's heart comprises comparing the first voltage with the second voltage. 11. The watch of claim 8, wherein: the first body part is a wrist of a first arm of a user; andthe second body part is a finger of a second arm of the user. 12. The watch of claim 8, wherein: the watch is configured to be worn by a user; andthe watch enclosure is configured to contact the user while the watch is worn. 13. The watch of claim 8, wherein the rotation sensor comprises an optical sensor that is configured to detect the rotational input using reflected light reflected by the shaft. 14. The watch of claim 8, wherein: the tactile switch comprises a dome;the tactile switch is configured to detect the translational input when the shaft collapses the dome; andthe tactile switch is electrically insulated from the watch enclosure. 15. A watch, comprising: an enclosure comprising a conductive material and configured to contact a wrist of a user when the watch is worn;a crown positioned along a side of the enclosure and electrically isolated from the enclosure;a touch-sensitive display carried by the enclosure and configured to detect touch input and display graphical objects;a rotation sensor carried by the enclosure and configured to detect rotational input;a translation sensor carried by the enclosure and configured to detect translational input; anda processor operably coupled to the enclosure, the crown, the touch-sensitive display, the rotation sensor, and the translation sensor, the processor configured to: measure electrocardiograph (ECG) characteristics of the user using a signal from at least one of the enclosure or the crown;in response to the touch input, cause the graphical objects to move across the touch-sensitive display;in response to the rotational input, cause the graphical objects to move across the touch-sensitive display; andin response to the translational input, cause a display of different graphical objects on the touch-sensitive display. 16. The watch of claim 15, wherein the processor is further configured to, in response to measuring the ECG characteristics, cause a graphical object related to the ECG characteristics to be displayed on the touch-sensitive display. 17. The watch of claim 15, wherein: the watch further comprises a shaft coupled to the crown and extending into the enclosure; andthe shaft electrically couples the crown to the processor. 18. The watch of claim 17, wherein: the translation sensor is a tactile switch configured to detect translation of the shaft;the tactile switch cooperates with the shaft to electrically couple the crown to the processor; andthe shaft and the tactile switch are electrically isolated from the enclosure. 19. The watch of claim 15, wherein the processor measures the ECG characteristics of the user by: causing one of the enclosure or the crown to provide an electrical signal; andcausing the other of the enclosure or the crown to receive the electrical signal through a body of the user. 20. The watch of claim 19, wherein the processor measures the ECG characteristics of the user by comparing one or more characteristics of the electrical signal when provided with one or more characteristics of the electrical signal when received.
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