Wearable computing device
A finger-worn wearable ring device may include a ring-shaped housing, a printed circuit board, and a sensor module that includes one or more light-emitting components and one or more light-receiving components. The wearable ring device may further include a communication module configured to wirelessly communicate with an application executable on a user device.
1 . A wearable ring device configured to be worn on a finger of a user, the wearable ring device comprising:
a housing comprising:
an external housing comprising an exterior surface of the wearable ring device, the external housing comprising a first material; and
an internal housing comprising an interior surface of the wearable ring device that is configured to contact the user when the wearable ring device is worn by the user, the internal housing comprising a second material that is different from the first material, wherein the external housing and the internal housing together at least partially enclose a curved battery, a printed circuit board, and one or more components,
wherein the curved battery has a size and shape configured to fit within a curved portion of the housing, and
wherein the one or more components are electrically coupled with the printed circuit board and the curved battery, the one or more components comprising:
an accelerometer, a gyroscope, or both, configured to detect physical movement of the user;
a temperature sensor configured to detect skin temperature of the user;
a first light emitting diode (LED) configured to emit visible light and a second LED configured to emit at least one of infrared light or near-infrared light; and
one or more light sensors configured to detect at least one of the visible light, the infrared light, or the near-infrared light to support measurement of a heart rate of the user, a blood oxygenation level of the user, or both.
2 . The wearable ring device of claim 1 , wherein the second material of the internal housing comprises a potting material, wherein the potting material at least partially fills an internal space of the external housing and forms at least a portion of the interior surface of the wearable ring device.
3 . The wearable ring device of claim 2 , wherein the external housing further comprises an internal surface, a first flange, and a second flange, wherein the internal surface, the first flange, and the second flange at least partially enclose the internal space, and wherein the first flange and the second flange are configured to maintain the printed circuit board within the internal space.
4 . The wearable ring device of claim 2 , wherein the potting material comprises a transparent potting material that forms at least the portion of the interior surface of the wearable ring device, and wherein at least a subset of the one or more components are encapsulated within the transparent potting material.
5 . The wearable ring device of claim 1 , wherein the curved battery extends along a first portion of a curved perimeter of the external housing, and wherein the printed circuit board is electrically coupled with the curved battery and extends along a second portion of the curved perimeter of the external housing.
6 . The wearable ring device of claim 1 , further comprising one or more processors that are electrically coupled with the printed circuit board, wherein the one or more processors are individually or in combination configured to cause the wearable ring device to:
process one or more of the visible light, the infrared light, or the near-infrared light detected by the one or more light sensors based at least in part on a reflectance, an absorbance, or both.
7 . The wearable ring device of claim 1 , wherein the housing has a width between 3 mm and 8 mm.
8 . The wearable ring device of claim 1 , wherein the physical movement is indicative of at least one gesture of the user, and wherein, in response to the at least one gesture, the wearable ring device is configured to send a signal configured to cause an external device to perform one or more functions external to the wearable ring device.
9 . The wearable ring device of claim 1 , wherein the housing has an interior diameter between 12 mm and 24 mm and an exterior diameter between 18 mm and 30 mm.
10 . The wearable ring device of claim 9 , wherein the housing has a thickness between 1.5 and 3 mm, and a width between 3 mm and 8 mm.
11 . A wearable ring device configured to be worn on a finger of a user, the wearable ring device comprising:
a housing having an interior diameter between 12 mm and 24 mm and an exterior diameter between 18 mm and 30 mm, the housing comprising an exterior surface of the wearable ring device and an interior surface of the wearable ring device, wherein the exterior surface comprises a first material and the interior surface comprises a second material different from the first material, wherein at least a portion of the interior surface is configured to contact the user when the wearable ring device is worn by the user, and wherein the housing at least partially surrounds a curved battery, a printed circuit board, and one or more components,
wherein the curved battery has a size and shape configured to fit within a curved portion of the housing, and
wherein the one or more components are electrically coupled with the printed circuit board and the curved battery, the one or more components comprising:
an accelerometer, a gyroscope, or both, configured to detect physical movement of the user;
a temperature sensor configured to detect skin temperature of the user;
a first light emitting diode (LED) configured to emit visible light and a second LED configured to emit at least one of infrared light or near-infrared light; and
one or more light sensors configured to detect at least one of the visible light, the infrared light, or the near-infrared light to support measurement of a heart rate of the user, a blood oxygenation level of the user, or both.
12 . The wearable ring device of claim 11 , wherein the housing comprises:
an external housing comprising the first material and the exterior surface of the wearable ring device; and
an internal housing comprising the second material and the interior surface of the wearable ring device, wherein the second material of the internal housing comprises a potting material, and wherein the potting material at least partially fills an internal space of the external housing and forms at least a portion of the interior surface of the wearable ring device.
13 . The wearable ring device of claim 12 , wherein the external housing further comprises an internal surface, a first flange, and a second flange, wherein the internal surface, the first flange, and the second flange at least partially define the internal space, and wherein the first flange and the second flange are configured to maintain the printed circuit board within the internal space.
14 . The wearable ring device of claim 11 , wherein the curved battery extends along a first portion of a curved perimeter of the housing, and wherein the printed circuit board is electrically coupled with the curved battery and extends along a second portion of the curved perimeter of the housing.
15 . The wearable ring device of claim 11 , further comprising one or more processors that are electrically coupled with the printed circuit board, wherein the one or more processors are individually or in combination configured to cause the wearable ring device to:
process one or more of the visible light, the infrared light, or the near-infrared light detected by the one or more light sensors based at least in part on a reflectance, an absorbance, or both.
16 . The wearable ring device of claim 11 , wherein the housing has a thickness between 1.5 mm and 3 mm and a width between 3 mm and 8 mm.
17 . The wearable ring device of claim 11 , wherein the physical movement is indicative of at least one gesture of the user, and wherein, in response to the at least one gesture, the wearable ring device is configured to send a signal configured to cause an external device to perform one or more functions external to the wearable ring device.
18 . A wearable ring device configured to be worn on a finger of a user, the wearable ring device comprising:
a housing having an interior diameter between 12 mm and 24 mm, an exterior diameter between 18 mm and 30 mm, and a thickness between 1.5 mm and 3 mm, the housing comprising:
an external housing comprising an exterior surface of the wearable ring device, the external housing comprising a first material; and
an internal housing comprising an interior surface of the wearable ring device that is configured to contact the user when the wearable ring device is worn by the user, the internal housing comprising a second material that is different from the first material, wherein the external housing and the internal housing together at least partially enclose a curved battery, a printed circuit board, and one or more components,
wherein the curved battery has a size and shape configured to fit within a curved portion of the housing, and
wherein the one or more components are electrically coupled with the printed circuit board and the curved battery, the one or more components comprising:
an accelerometer, a gyroscope, or both, configured to detect physical movement of the user;
a temperature sensor configured to detect skin temperature of the user;
a first light emitting diode (LED) configured to emit visible light and a second LED configured to emit at least one of infrared light or near-infrared light; and
one or more light sensors configured to detect at least one of the visible light, the infrared light, or the near-infrared light to support measurement of a heart rate of the user, a blood oxygenation level of the user, or both.
19 . The wearable ring device of claim 18 , wherein:
the external housing further comprises an internal surface, a first flange, and a second flange, wherein the internal surface, the first flange, and the second flange at least partially enclose an internal space, and
the second material of the internal housing at least partially fills the internal space of the external housing and forms at least a portion of the interior surface of the wearable ring device.
20 . The wearable ring device of claim 18 , wherein the curved battery extends along a first portion of a curved perimeter of the external housing, and wherein the printed circuit board is electrically coupled with the curved battery and extends along a second portion of the curved perimeter of the external housing.