Abstract:
A method of biostimulating phototherapy is provided. The method comprises illuminating a subject's body portion with light having a first wavelength in the range of 600-900 nm. The method further comprises the step of at least one of reducing and preventing hyperthermia of the body portion by illuminating the body portion with light having a second wavelength which is at least one of in the range of 400-600 nm and in the range of 900-2500 nm. Further, a phototherapy device is provided which comprises a first light source and a second light source. The first light source is configured to emit light having a first wavelength which is in the range of 600-900 nm. The second light source is configured to emit light having a second wavelength which is at least one of in the range of 400-600 nm and in the range of 900-2500 nm. At least a portion of the device is a patch which is formed for conforming to at least part of the body portion. The device further comprises a sensor for sensing at least one skin property and a controller configured to operate at least the second light source as a function of the determined skin property.
Abstract:
Disclosed are methods and apparatus for lighting control. One or more properties of light output are controlled based on user manipulation of a mobile computing device (110, 510) such as a mobile phone. Data from a mobile computing device may be utilized to implement lighting property adjustments for one or more LEDs (132) based on the data. The data may be user gesture data that is based on physical movement of the mobile computing device in space by the user.
Abstract:
Methods and apparatus, including computer program products, for a lighting application for an interactive electronic device. A system includes an interactive electronic device remotely linked to a lighting system, the interactive electronic device including a processor, a memory, the memory including an operating system, one or more user applications and an interactive lighting process, a user interface, one or of the interactive more sensors, a communications device, and the lighting system including a light controller linked to a light-emitting unit, the light controller including a communications device responsive to one or more lighting adjustment signals received from the interactive lighting process. The interactive lighting process includes detecting a context of the interactive electronic device, and transmitting a lighting adjustment signal from the communications device to a light controller of a lighting system in response to the detected context.
Abstract:
Methods and apparatus for lighting control. In some embodiments methods and apparatus are provided that sense a low lighting condition at a location and direct light toward that location after detection of the low lighting condition. In some embodiments apparatus are provided that include a plurality of networked LEDs (20, 30, 220, 230, 320, 330, 420, 430, 520, 530). Some of the LEDs may be illuminated in response to sensed light conditions at certain locations.
Abstract:
Methods and apparatus related to controlling illumination on a lighting unit (10). The method includes reading orientation data from an orientation sensor (17) on the lighting unit as well as reading distance data from a distance sensor (15) on the lighting unit. A controller (63) is provided to control various light output surfaces (12) on the lighting unit. Once the controller determines the orientation of the lighting unit as well as distance data of the lighting unit from external structures or luminaire structures, the controller adjusts various light output characteristics of the lighting unit. The method may additionally include a memory storage which allows the controller to compare read data with stored data to determine an associated light fixture type for automated commissioning. Alternatively, the lighting unit can reconfigure itself to output light in various orientations based upon said read data.
Abstract:
Methods and apparatus related to compensating for electrical changes resulting from cut-out of a portion of a grid of a plurality of LEDs (20A-T; 120; 220; 320). A compensating unit (40; 140; 240; 340) may be coupled to free wire segments of the grid that are created by the cut-out and the compensating unit (40; 140; 240; 340) may be configured to alter current supplied to remaining LEDs of the grid of LEDs. The compensating unit is configured to and/or may be configured to lessen current supplied to one or more LEDs of an LED-based lighting unit.
Abstract:
Methods and apparatus related to compensating for electrical changes resulting from cut-out of a portion of a grid of a plurality of LEDs (20A-T; 120; 220; 320). A compensating unit (40; 140; 240; 340) may be coupled to free wire segments of the grid that are created by the cut-out and the compensating unit (40; 140; 240; 340) may be configured to alter current supplied to remaining LEDs of the grid of LEDs. The compensating unit is configured to and/or may be configured to lessen current supplied to one or more LEDs of an LED-based lighting unit.
Abstract:
Methods and apparatus related to controlling illumination on a lighting unit (10). The method includes reading orientation data from an orientation sensor (17) on the lighting unit as well as reading distance data from a distance sensor (15) on the lighting unit. A controller (63) is provided to control various light output surfaces (12) on the lighting unit. Once the controller determines the orientation of the lighting unit as well as distance data of the lighting unit from external structures or luminaire structures, the controller adjusts various light output characteristics of the lighting unit. The method may additionally include a memory storage which allows the controller to compare read data with stored data to determine an associated light fixture type for automated commissioning. Alternatively, the lighting unit can reconfigure itself to output light in various orientations based upon said read data.
Abstract:
Methods and apparatus, including computer program products, for a lighting application for an interactive electronic device (12). A system (10) includes an interactive electronic device (12) remotely linked to a lighting system (14), the interactive electronic device (12) including a processor (16), a memory (18), the memory including an operating system (26), one or more user applications (28) and an interactive lighting process (100), a user interface (20), one or of the interactive more sensors (22), a communications device (24), and the lighting system (14) including a light controller (50) linked to a light-emitting unit (52), the light controller (50) including a communications device (54) responsive to one or more lighting adjustment signals received from the interactive lighting process (100). The interactive lighting process (100) includes detecting (102) a context of the interactive electronic device (12), and transmitting (104) a lighting adjustment signal from the communications device (24) to a light controller (50) of a lighting system (14) in response to the detected context.
Abstract:
The user interaction system comprises a portable pointing device (101) connected to a camera (102) and sending pictures to a digital signal processor (120), capable of recognizing an object (130) and a command given by the user (100) by moving the pointing device (101) in a specific way, and controlling an electrical apparatus (110) on the basis of this recognition.