Mobile wireless customizable health and condition monitor
Abstract
A method and system for wellness monitoring using one or more wellness indicator inputs and values is provided. One or more wellness indicator monitoring devices may he provided for measuring wellness indicator input. The wellness indicator monitoring devices may have one or more sensors and a microcontroller in communication with the one or more sensors. One or more servers may communicate with the one or more wellness indicator monitoring devices over a network. A processor may be configured to manipulate the wellness indicator input, and one or more output device may create a desired output based on the wellness indicator values.
Claims
exact text as granted — not AI-modified1 . A wearable electronic device comprising:
a first sensor configured to detect a position or movement of the wearable electronic device; a second sensor configured to detect a physiological attribute of a person wearing the wearable electronic device; and circuitry coupled in communication to the first sensor and the second sensor and configured to receive a first output from the first sensor and a second output from the second sensor.
2 . The wearable electronic device of claim 1 , further comprising:
a wireless communication interface configured to transmit information corresponding to the first output of the first sensor to another electronic device.
3 . The wearable electronic device of claim 1 , further comprising:
a wireless communication interface configured to transmit information corresponding to the second output of the second sensor to another electronic device.
4 . The wearable electronic device of claim 1 , wherein
the first sensor is position sensor configured to detect a position of the wearable electronic device.
5 . The wearable electronic device of claim 4 , wherein
the position sensor is a network-based location sensor configured to detect the position of the wearable electronic device based on a wireless signal received from another device.
6 . The wearable electronic device of claim 4 , wherein
the position sensor is a global positioning system (GPS) sensor configured to detect the position of the wearable electronic device based on a signal received from one or more GPS satellites.
7 . The wearable electronic device of claim 1 , wherein
the first sensor is movement sensor configured to detect a movement of the wearable electronic device.
8 . The wearable electronic device of claim 7 , wherein
the movement sensor is a piezoelectric sensor configured to detect the movement of the wearable electronic device.
9 . The wearable electronic device of claim 7 , wherein
the movement sensor is an accelerometer configured to detect the movement of the wearable electronic device.
10 . The wearable electronic device of claim 7 , wherein
the movement sensor is a gyroscopic sensor configured to detect the movement of the wearable electronic device.
11 . The wearable electronic device of claim 1 , wherein
the second sensor is a temperature sensor configured to detect a temperature of the person wearing the wearable electronic device.
12 . The wearable electronic device of claim 1 , wherein
the second sensor is a pulse sensor configured to detect a pulse of the person wearing the wearable electronic device.
13 . The wearable electronic device of claim 1 , further comprising:
a wireless communication interface including an antenna configured to wirelessly transmit information generated based on the first output of the first sensor to another electronic device.
14 . The wearable electronic device of claim 1 , further comprising:
a wireless communication interface including an antenna configured to wirelessly transmit information generated based on the second output of the first sensor to another electronic device.
15 . The wearable electronic device of claim 1 , wherein
the circuitry is configured to operate the wearable electronic mode in an active mode and a sleep mode.
16 . The wearable electronic device of claim 1 , further comprising:
a flash memory, wherein the circuitry is configured to store information generated based on the first and second outputs in the flash memory.
17 . The wearable electronic device of claim 1 , further comprising:
a wrist band configured to attach the wearable electronic device to a wrist of the person wearing the wearable electronic device.
18 . The wearable electronic device of claim 1 , further comprising:
a mechanism configured to attach the wearable electronic device to a belt of the person wearing the wearable electronic device.
19 . A wearable sensor comprising:
a timing mechanism; a plurality of sensor pairs coupled to the timing mechanism, wherein each sensor pair comprises a plurality of sensor pairs; a band configured to couple the plurality of sensor pairs to a user; and a microcontroller communicatively coupled to the timing mechanism and the plurality of sensor pairs and configured to determine which of the plurality of sensor pairs detect an acceptable signal from the user.
20 . A wearable electronic device comprising:
means for detecting a position or movement of the wearable electronic device; means for detecting a physiological attribute of a person wearing the wearable electronic device; and means coupled in communication to the first sensor and the second sensor for receiving and processing a first output from the first sensor and a second output from the second sensor.Join the waitlist — get patent alerts
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