Round thermostat with flanged rotatable user input member and wall-facing optical sensor that senses rotation
First Claim
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1. A thermostat for controlling an HVAC system comprising:
- a housing having a frustum-shaped body having a circular cross-section and a central axis generally perpendicular to a wall when the thermostat is wall-mounted, the frustum-shaped body including a sidewall that extends along a length of the central axis between first and second ends of the frustum-shaped body, the first end of the frustum-shaped body being wall-facing when the thermostat is wall-mounted, the second end of the frustum-shaped body being user-facing when the thermostat is wall-mounted, the first end of the frustum-shaped body having a first diameter and the second end of the frustum-shaped body having a second, larger diameter, the sidewall including inside and outside surfaces, the inside surface defining an interior for housing components of the thermostat;
a processing system disposed within the interior of the housing;
an electronic display coupled to the processing system and disposed within the interior of the housing, the electronic display being adapted to display information to a user and having a generally circular appearance when viewed by the user;
a rotatable user input member mounted proximate the second end of the frustum-shaped body of the housing, the rotatable user input member having an axis of rotation generally perpendicular to the wall when the thermostat is wall-mounted, wherein user rotation of the rotatable user input member results in user input for adjusting a temperature setting of the thermostat, the rotatable user input member having an inner portion extending radially inward with a surface that faces axially outward away from the wall when the thermostat is wall-mounted; and
an optical sensor mounted within the interior of the housing and positioned to face axially inward toward the wall so as to face the axially outward facing surface of the inner portion of the rotatable user input member, the optical sensor being configured to sense movement of said surface so as to detect rotational movement of the inner portion of the rotatable user input member and to generate electrical signals therefrom;
wherein the processing system is adapted and configured to detect user input for adjusting the temperature setting of the thermostat based on the electrical signals generated by the optical sensor.
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Abstract
A sleek, low-profile wall-mountable thermostat for controlling an HVAC system is described. The thermostat includes a ring-shaped controller that rotates about a central axis, and an optical sensor directed away from the central axis and toward a radially inward-facing surface of the ring-shaped controller so as to accurately detect optical signals indicating controller'"'"'s rotational movement.
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Citations
20 Claims
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1. A thermostat for controlling an HVAC system comprising:
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a housing having a frustum-shaped body having a circular cross-section and a central axis generally perpendicular to a wall when the thermostat is wall-mounted, the frustum-shaped body including a sidewall that extends along a length of the central axis between first and second ends of the frustum-shaped body, the first end of the frustum-shaped body being wall-facing when the thermostat is wall-mounted, the second end of the frustum-shaped body being user-facing when the thermostat is wall-mounted, the first end of the frustum-shaped body having a first diameter and the second end of the frustum-shaped body having a second, larger diameter, the sidewall including inside and outside surfaces, the inside surface defining an interior for housing components of the thermostat; a processing system disposed within the interior of the housing; an electronic display coupled to the processing system and disposed within the interior of the housing, the electronic display being adapted to display information to a user and having a generally circular appearance when viewed by the user; a rotatable user input member mounted proximate the second end of the frustum-shaped body of the housing, the rotatable user input member having an axis of rotation generally perpendicular to the wall when the thermostat is wall-mounted, wherein user rotation of the rotatable user input member results in user input for adjusting a temperature setting of the thermostat, the rotatable user input member having an inner portion extending radially inward with a surface that faces axially outward away from the wall when the thermostat is wall-mounted; and an optical sensor mounted within the interior of the housing and positioned to face axially inward toward the wall so as to face the axially outward facing surface of the inner portion of the rotatable user input member, the optical sensor being configured to sense movement of said surface so as to detect rotational movement of the inner portion of the rotatable user input member and to generate electrical signals therefrom; wherein the processing system is adapted and configured to detect user input for adjusting the temperature setting of the thermostat based on the electrical signals generated by the optical sensor. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. A thermostat for controlling an HVAC system comprising:
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a housing; a processing system disposed within the housing; an electronic display coupled to the processing system and mounted on the housing and adapted to display information to a user, the electronic display having a generally circular appearance when viewed by the user; a rotatable user input member mounted on the housing so as to surround the electronic display and rotate about a central axis, the rotatable user input member having an inner portion extending radially inward with a surface that faces axially outward away from the wall when the thermostat is wall-mounted; and an optical sensor mounted within the housing and positioned to face axially inward toward the wall so as to face the axially outward facing surface of the inner portion of the rotatable user input member, wherein the optical sensor senses movement of said surface so as to detect rotation of said rotatable user input member to detect user input to the thermostat. - View Dependent Claims (9, 10, 11, 12, 13, 14, 15)
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16. In a thermostat for controlling an HVAC system, a method for detecting user input comprising:
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sensing, via an axially oriented optical sensor, movement of a surface of a radially extending inner portion of a rotatable user input member upon user rotation of the rotatable user input member, the axially oriented optical sensor being disposed within a housing of the thermostat and positioned axially outwardly relative to the inner portion so that the optical sensor faces said surface of the inner portion and faces a wall when the thermostat is wall-mounted; generating electrical signals via the axially oriented optical sensor based on the sensed movement of said surface so as to sense rotational movement of the inner portion of the rotatable user input member; processing said electrical signals via a processing system disposed within the housing, said processed electrical signals corresponding to an extent of user rotation of the rotatable user input member and to an adjustment of a temperature setting of the thermostat; and displaying information to the user on a circular-appearing electronic display of the thermostat corresponding to the adjustment of the temperature setting of the thermostat, wherein said displaying comprises actuating one or more dot-matrix elements of a non-circular dot-matrix color display element mounted at a location that is axially outward relative to the inner portion of the rotatable user input member, the thermostat comprising a circular cover disposed axially outward relative to the non-circular dot-matrix color display element and having a clear circular center portion and a colored outer portion, the circular cover permitting a corresponding circular portion of the non-circular dot-matrix color display element to be visible through the circular cover and the colored outer portion of the circular cover masking an outer remaining portion of the non-circular dot-matrix color display element so as to create the circular appearance of the circularly appearing electronic display. - View Dependent Claims (17)
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18. The method of 16, wherein said rotatable user input member rotatably slides about a bottom frame of the thermostat, and wherein said rotatable user input member has a lip or edge that is positioned within a groove of the bottom frame.
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19. The method of 18, wherein a bearing surface of the bottom frame is greased or otherwise lubricated to smooth and dampen rotational movement of the rotatable user input member.
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20. The method of 16, further comprising outputting synthesized audible ticks in correspondence with user rotation of the rotatable user input member.
Specification