METHOD OF ACTIVATION OF THE DEVICE, CIRCUIT AND ELECTRONIC DEVICE

RU2026108081A3Pending Publication Date: 2026-08-28HUAWEI TECH CO LTD
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Patent Information

Application Number
RU2026108081
Authority / Receiving Office
RU · RU
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-12-28
Publication Date
2026-08-28
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Claims

1. A first electronic device, wherein the first electronic device is configured to measure an indicator of the user's body condition, the first electronic device comprises an activation circuit, a power management module, a battery, and a data processing module, wherein the activation circuit has a first output and a second output, the first output is connected to the power management module, the second output is connected to the battery, and the power management module is connected to the data processing module; the activation circuit is configured to determine whether the user has put on the first electronic device or whether the user is preparing to put on the first electronic device; when the activation circuit determines that the user has put on the first electronic device or is about to put on the first electronic device, the connection between the first terminal and the second terminal switches from the cut-off state to the conducting state; the battery is configured to supply power to the data processing module using the power control module after a connection is established between the first terminal and the second terminal; the data processing module is configured to determine the user's body condition indicator based on the data received by the first electronic device.

2. The first electronic device according to claim 1, in which the data processing module, when the power is turned on, is further configured to control the connection between the first terminal and the second terminal of the activation circuit in such a way that the activation circuit is constantly in a conducting state.

3. The first electronic device according to claim 1 or 2, wherein the activation circuit comprises a first MOS transistor and a first sensor, wherein the drain of the first MOS transistor is a first terminal, the source of the first MOS transistor is a second terminal, one terminal of the first sensor is connected to the gate of the first MOS transistor, and the other terminal of the first sensor is grounded; the first sensor is configured to detect whether the user has put on the first electronic device or whether the user is ready to put on the first electronic device; the first sensor switches from a cut-off state to a conducting state when it is detected that the user has put on the first electronic device or is about to put on the first electronic device; when the first sensor is in the cutoff state, the first MOS transistor is also in the cutoff state, and when the first sensor is in the conducting state, the first MOS transistor is also in the conducting state.

4. The first electronic device according to claim 3, in which the activation circuit further comprises a first resistor, one terminal of which is connected to the source of the first MOS transistor, and the other terminal of which is connected to the gate of the first MOS transistor.

5. The first electronic device according to claim 3 or 4, wherein the activation circuit, the power management module, the battery and the data processing module are located in a first component of the first electronic device, wherein the first component is located within the second component, and the first component is detachable from the second component when the user puts on the first electronic device; the first sensor is an optical sensor, the first sensor is located on the side facing the second component when the first component is located inside the second component, and is configured to record changes in illumination; the first sensor switches from the cut-off state to the conducting state when it detects that the light intensity exceeds the first threshold value.

6. The first electronic device of claim 3 or 4, wherein the activation circuit, the power management module, the battery, and the data processing module are located in a first component of the first electronic device, wherein the first component is covered by a third component that is opaque, and the user removes the third component in preparation for putting on the first electronic device; the first sensor is an optical sensor, the first sensor is located on the side facing the third component and is configured to record changes in illumination; the first sensor switches from the cut-off state to the conducting state when it detects that the light intensity exceeds the first threshold value.

7. The first electronic device according to claim 3 or 4, wherein the activation circuit, the power management module, the battery and the data processing module are located in a first component of the first electronic device, wherein the first component is located within the second component, and the first component is detachable from the second component when the user puts on the first electronic device; the first sensor is a magnetic sensor, the second component comprises a magnet, and the first sensor is configured to detect changes in a magnetic field; the first sensor switches from the cut-off state to the conducting state when it is detected that the magnetic field strength of the magnet is below the second threshold value.

8. The first electronic device of claim 3 or 4, wherein the activation circuit, the power management module, the battery, and the data processing module are located in a first component of the first electronic device, wherein the first component is covered by a third component, and the user removes the third component in preparation for putting on the first electronic device; the first sensor is a magnetic sensor, the third component comprises a magnet, and the first sensor is configured to detect changes in a magnetic field; the first sensor switches from the cut-off state to the conducting state when it is detected that the magnetic field strength of the magnet is below the second threshold value.

9. The first electronic device according to any one of paragraphs 3-8, in which the activation circuit further comprises a second MOS transistor, the gate of the second MOS transistor is connected to the data processing module, the source of the second MOS transistor is grounded, and the drain of the second MOS transistor is connected to the gate of the first MOS transistor; the data processing module, when turned on, supplies the first voltage to the gate of the second MOS transistor; When the first voltage is applied to the gate of the second MOS transistor, the second MOS transistor switches from the cutoff state to the conducting state, so the first MOS transistor is constantly in the conducting state.

10. The first electronic device according to any one of paragraphs 1-9, in which the activation circuit is configured to detect whether the user has put on the first electronic device, and the first electronic device further comprises a timing module and a communication module, wherein The timing module is configured to start a time countdown after power is supplied to the data processing module, wherein the duration of the time countdown of the first electronic device is the period of time that has passed since the user began to put on the first electronic device; and the communication module is configured to send data on the body condition indicator to the second electronic device after establishing a communication connection with the second electronic device and sending, to the second electronic device, the first duration received by the first electronic device by means of timing, wherein the first duration relates to a first point in time, and the first point in time is the point in time at which the second electronic device begins to display data on the body condition indicator.

11. The first electronic device according to any one of paragraphs 1-9, in which the activation circuit is configured to detect whether the user is ready to put on the first electronic device, and the first electronic device further comprises a timing module, a communication module and a second sensor; the second sensor is configured to collect data used to display the body condition indicator after power is supplied to the data processing module; The timing module is configured to start a time countdown when the data collected by the second sensor satisfies a first predetermined condition, wherein the duration of the time countdown by the first electronic device is the time that has passed since the user began putting on the first electronic device; and the communication module is configured to send data on the body condition indicator to the second electronic device after establishing a communication connection with the second electronic device and sending, to the second electronic device, the first duration received by the first electronic device by means of timing, wherein the first duration relates to a first point in time, and the first point in time is the point in time at which the second electronic device begins to display data on the body condition indicator.

12. The first electronic device according to any one of paragraphs 1-11, in which the activation circuit is configured to detect whether the user is ready to put on the first electronic device, and the first electronic device further comprises a second sensor and an output module; the second sensor is configured to collect data used to display the body condition indicator after power is supplied to the data processing module; the output module is configured to output a first prompt information when the data collected by the second sensor satisfies a second predetermined condition, wherein the first prompt information promptly reminds the user to put on the first electronic device; the output module is further configured to output a second prompt information when the data collected by the second sensor satisfies the third predetermined condition, wherein the second prompt information informs the user about a malfunction of the first electronic device caused by its wear and tear.

13. An electronic device according to any one of paragraphs 1-12, in which the first electronic device is a continuous glucose monitoring (CGM) device and the indicator of the body's condition is the blood glucose level; or the first electronic device is a continuous ketone monitor (CKM) and the indicator of the body's condition is the level of ketones in the blood; or the first electronic device is a continuous lactate monitor (CLM) and the indicator of the body's state is the lactate level; or The first electronic device is an electrocardiographic patch, and the indicator of the body's state is the electrocardiographic signal.

14. A method for activating a device, wherein the method is applied in a first electronic device configured to measure an indicator of a body condition, the first electronic device comprises an activation circuit, a power management module, a battery, and a data processing module, the activation circuit comprises a first terminal and a second terminal, the first terminal is connected to the power management module, the second terminal is connected to the battery, and the power management module is connected to the data processing module, and the method comprises determining, using the first electronic device and the activation circuit, whether the user has put on the first electronic device or whether the user is about to put on the first electronic device; switching, using an activation circuit, when it is determined that the user has put on the first electronic device or is about to put on the first electronic device, the connection between the first terminal and the second terminal from a cut-off state to a conducting state; supplying, by means of the first electronic device after establishing a connection between the first terminal and the second terminal, power from the battery to the data processing module using the power control module; and determining, using a first electronic device using a data processing module, an indicator of the state of the user's body based on data received by the first electronic device.

15. The method of claim 14, wherein the method further comprises control, by the first electronic device, of a connection between the first terminal and the second terminal of the activation circuit for maintaining it in a continuously conducting state under the condition that the power of the data processing module is turned on.

16. The method according to claim 14 or 15, wherein the activation circuit comprises a first MOS transistor and a first sensor, wherein the drain of the first MOS transistor is a first terminal, the source of the first MOS transistor is a second terminal, one terminal of the first sensor is connected to the gate of the first MOS transistor, and the other terminal of the first sensor is grounded; detecting, by the first electronic device using an activation circuit, whether the user is putting on the first electronic device, or whether the user is about to put on the first electronic device, in particular comprising detecting, by the first electronic device using the first sensor, whether the user has put on the first electronic device or whether the user is about to put on the first electronic device; switching, using the first sensor, from the cut-off state to the conducting state occurs upon detection that the user has put on the first electronic device or is preparing to put on the electronic device; when the first sensor is in the cutoff state, the first MOS transistor is in the cutoff state, and when the first sensor is in the conducting state, the first MOS transistor is in the conducting state.

17. The method of claim 16, wherein the activation circuit, the power management module, the battery, and the data processing module are located in a first component of the first electronic device, wherein the first component is located within the second component, and the first component is detachable from the second component when the user puts on the first electronic device; the first sensor is an optical sensor, and the first sensor is located on the side facing the second component when the first component is located inside the second component; detecting, by the first electronic device using the first sensor, whether the user is wearing the first electronic device, in particular comprising detecting, by the first electronic device, based on a change in illumination detected by the first sensor, whether the user is wearing the first electronic device; switching, by the first sensor, from the cut-off state to the conducting state when it is detected that the light intensity exceeds the first threshold value.

18. The method of claim 16, wherein the activation circuit, the power management module, the battery, and the data processing module are located in a first component of the first electronic device, wherein the first component is covered by a third component that is opaque, and the user removes the third component in preparation for putting on the first electronic device; the first sensor is an optical sensor, and the first sensor is located on the side facing the third component; detecting, by the first electronic device using the first sensor, whether the user is ready to put on the first electronic device, in particular comprising detecting, by the first electronic device, based on a change in illumination detected by the first sensor, whether the user is ready to put on the first electronic device; switching, by the first sensor, from the cut-off state to the conducting state when it is detected that the light intensity exceeds the first threshold value.

19. The method of claim 16, wherein the activation circuit, the power management module, the battery, and the data processing module are located in a first component of the first electronic device, wherein the first component is located within the second component, and the first component is detachable from the second component when the user puts on the first electronic device; the first sensor is a magnetic sensor, and the second component contains a magnet; detecting, by the first electronic device using the first sensor, whether the user is wearing the first electronic device, in particular comprising detecting, using the first electronic device, based on changes in the magnetic field detected by the first sensor, whether the user is wearing the first electronic device; switching, by the first sensor, from the cut-off state to the conducting state when it is detected that the magnetic field strength of the magnet is below the second threshold value.

20. The method of claim 16, wherein the activation circuit, the power management module, the battery, and the data processing module are located in a first component of the first electronic device, wherein the first component is covered by a third component, and the user removes the third component in preparation for putting on the first electronic device; the first sensor is a magnetic sensor, and the third component contains a magnet; detecting, by the first electronic device, using the first sensor, whether the user is ready to put on the first electronic device, in particular comprising detecting, by the first electronic device, based on changes in the magnetic field detected by the first sensor, whether the user is ready to wear the first electronic device; switching, by the first sensor, from the cut-off state to the conducting state when it is detected that the magnetic field strength of the magnet is below the second threshold value.

21. The method according to any one of paragraphs 16-20, in which the activation circuit further comprises a second MOS transistor, the gate of the second MOS transistor is connected to the data processing module, the source of the second MOS transistor is grounded, and the drain of the second MOS transistor is connected to the gate of the first MOS transistor, and after the first electronic device activates the battery to supply power to the data processing module using the power management module, the method further comprises when the data processing module is turned on, applying, by the first electronic device, a high level voltage to the gate of the second MOS transistor using the data processing module; and when a high-level voltage is applied to the gate of the second MOS transistor, ensuring, by the first electronic device using the second MOS transistor, that the first MOS transistor is constantly in a conducting state, so that the second MOS transistor switches from the cutoff state to the conducting state when a high-level voltage is applied to the gate of the second MOS transistor.

22. The method according to any one of paragraphs 14-21, in which the first electronic device detects, using the activation circuit, whether the user has put on the first electronic device, and after the first electronic device activates the battery to supply power to the data processing module using the power management module, the method further comprises the start of the time counting by the first electronic device, where the duration of the time counting by the first electronic device is the period of time that has passed since the moment the user starts putting on the first electronic device; sending, by the first electronic device, data on the body condition indicator to the second electronic device after establishing a communication connection with the second electronic device, and sending, to the second electronic device, a first duration received by the first electronic device by means of timing, where the first duration refers to a first point in time, and the first point in time is the point in time at which the second electronic device begins to display data on the body condition indicator.

23. The method according to any one of paragraphs 14-22, in which the first electronic device further comprises a second sensor, the first electronic device detects, using an activation circuit, whether the user is ready to put on the first electronic device, and after the first electronic device activates the battery to supply power to the data processing module using the power control module, the method further comprises collecting, by a first electronic device using a first sensor, data used to display an indicator of the state of the body; starting the timing by the first electronic device when the data collected by the second sensor satisfies a first predetermined condition, where the duration of the timing by the first electronic device is the period of time that has passed since the user began putting on the first electronic device; sending, by the first electronic device, data on the body condition indicator to the second electronic device after establishing a communication connection with the second electronic device, and sending, to the second electronic device, a first duration received by the first electronic device by means of timing, wherein the first duration relates to a first point in time, and the first point in time is the point in time at which the second electronic device begins to display the body condition indicator.

24. The method according to any one of paragraphs 14-23, in which the first electronic device detects, using an activation circuit, whether the user is ready to put on the first electronic device, the first electronic device further comprises a second sensor, and the method further comprises collecting, by the first electronic device using the second sensor, data used to display the body condition indicator after power is supplied to the data processing module; outputting, by the first electronic device, a first prompting information when the data collected by the second sensor satisfies a second predetermined condition, wherein the first prompting information promptly reminds the user to put on the first electronic device; and outputting, by the first electronic device, a second prompt information when the data collected by the second sensor satisfies a third predetermined condition, wherein the second prompt information informs the user of a malfunction of the first electronic device caused by its wear and tear.

25. The method according to any one of paragraphs 14-24, in which the first electronic device is a continuous glucose monitoring (CGM) device and the indicator of the body's condition is the blood glucose level; or the first electronic device is a continuous ketone monitor (CKM) and the indicator of the body's condition is the level of ketones in the blood; or the first electronic device is a continuous lactate monitor (CLM) and the indicator of the body's state is the lactate level; or The first electronic device is an electrocardiographic patch, and the indicator of the body's state is the electrocardiographic signal.

26. An electronic device comprising a first electronic device, a second component and / or a third component, wherein if the electronic device comprises a first electronic device and a second component, then the first component of the first electronic device is located in the second component; if the electronic device comprises a first electronic device and a third component, then the third component covers the first component in the first electronic device; or if the electronic device comprises a first electronic device, a second component and a third component, then the first component of the first electronic device is located in the second component, and the third component closes the outlet of the second component and is designed to close the first component, wherein the first electronic device is the first electronic device according to any one of paragraphs 1-13.

27. An electronic device comprising a memory, one or more processors and one or more programs, wherein, upon execution of one or more programs by one or more processors, the electronic device is able to implement the method according to any of paragraphs 14-25.

28. A machine-readable storage medium containing instructions, wherein, when the instructions are run in an electronic device, the electronic device is enabled to perform the method according to any of paragraphs 14-25.