Patents Examined by Dedei K Hammond
  • Patent number: 11588660
    Abstract: A load control system may include control devices for controlling electrical loads. The control devices may include load control devices, such as a lighting device for controlling an amount of power provided to a lighting load, and input devices, such as a remote control device configured to transmit digital messages comprising lighting control instructions for controlling the lighting load via the lighting device. The remote control device may communicate with the lighting device via an intermediary device, such as a hub device. The remote control device may detect a user interface event, such as a button press or a rotation of the remote control device. The remote control device or the hub device may determine whether to transmit digital messages to as unicast messages or multicast messages based on the type of user interface event detected.
    Type: Grant
    Filed: October 9, 2020
    Date of Patent: February 21, 2023
    Assignee: Lutron Technology Company LLC
    Inventors: Benjamin F. Bard, Thomas Lee Olson, David T. Saveri, III, Jaykrishna A. Shukla
  • Patent number: 11589433
    Abstract: A grow light includes a plurality of cool white LEDs, a plurality of warm white LEDs, and a driver electrically coupled to the cool white LEDs and the warm white LEDs. An intensity level and spectral composition of the radiant energy emitted by the grow light may be tuned or configured by varying a ratio of the quantity of cool white LEDs to the quantity of warm white LEDs, by varying a spatial arrangement among the cool white LEDs and the warm white LEDs, or by varying a level of current provided to some or all of the cool white LEDs and the warm white LEDs.
    Type: Grant
    Filed: October 20, 2021
    Date of Patent: February 21, 2023
    Assignee: CABATECH, LLC
    Inventor: Anthony Vilgiate
  • Patent number: 11589453
    Abstract: A system and method for injecting an electron beam to an accelerator are provided. The system may include a cathode, an anode, and a modulation electrode. The cathode, for generating the electron beam, may have a first electrical potential. The anode may have a second electrical potential. The modulation electrode, located between the cathode and the anode, may be configured to adjust at least one parameter of the electron beam. The at least one parameter of the electron beam may include at least one transverse parameter of the electron beam.
    Type: Grant
    Filed: December 23, 2020
    Date of Patent: February 21, 2023
    Assignee: SHANGHAI UNITED IMAGING HEALTHCARE CO., LTD.
    Inventor: Peng Wang
  • Patent number: 11589434
    Abstract: A portable lighting device includes a housing, a light source supported by the housing, and an alkaline battery positioned within the housing and coupled to the light source. The alkaline battery is configured to provide a drive current to the light source, and an intensity of the light source is dependent on the drive current. The portable lighting device also includes an electronic processor positioned within the housing and coupled to the light source and the alkaline battery. The electronic processor is configured to monitor a voltage of the alkaline battery, and execute a ramp-up algorithm to control the drive current based on the voltage of the alkaline battery.
    Type: Grant
    Filed: November 20, 2019
    Date of Patent: February 21, 2023
    Assignee: MILWAUKEE ELECTRIC TOOL CORPORATION
    Inventors: Li Zhang, Hao Cui, DanJun Guo
  • Patent number: 11589435
    Abstract: A method for rapidly and quantitatively adjusting a beam angle of an illuminating device includes: determining a target beam angle according to an actual scene, and sending, by using an input apparatus, the target beam angle to the illuminating device; receiving, by a receiver of the illuminating device, the target beam angle and sending the target beam angle to a controller of the illuminating device; determining, by the controller of the illuminating device, target power of each light source according to the target beam angle and a parameter table stored in a local read-only memory (ROM) or cloud of the illuminating device; and driving, by a driver, each light source to emit light according to the corresponding target power, enabling radiated light to be mixed in an illuminated space to change the beam angle, and obtaining the target beam angle according to a superposition principle for the intensity of light.
    Type: Grant
    Filed: April 8, 2022
    Date of Patent: February 21, 2023
    Assignee: ANDON HEALTH CO., LTD.
    Inventors: Hao Wang, Qin Li, Jun Liu, Yang Guo, Fei Zhang
  • Patent number: 11582846
    Abstract: Disclosed embodiments provide a lighting controller and illumination system. A controller may include a phase-cut dimmer, a lighting receiver module, and at least two banks of lights. In embodiments, the lights may be LED (light emitting diode) lights, and the lighting receiver module is an LED driver. A first bank of lights illuminates at a first CCT and a second bank of lights illuminates at a second CCT. The controller communicates encoded information on a carrier signal that is received by the lighting receiver module. The lighting receiver module decodes the received encoded information and adjusts the intensity of the first and second bank of lights to create a combined CCT. The combined CCT may be realized by a combination of light from the first bank of lights and light from the second bank of lights. The combined CCT may be representative of a specified CCT.
    Type: Grant
    Filed: December 6, 2021
    Date of Patent: February 14, 2023
    Inventor: Tiejun Wang
  • Patent number: 11582847
    Abstract: An LED exterior luminaire comprising light-emitting diodes (LEDs) with a circadian-adjustable light output mode for its medical safety comprises at least two switchable LED chip chains I and III, wherein chain I comprising at least one LED chip emitting orange light from a wavelength range of 580 nm to 610 nm and at least one LED chip emitting red light from a wavelength range of 610 nm to 700 nm, chain III comprising at least one blue LED chip overlaid with a luminophore emitting a continuous band spectrum of visible light from a wavelength range of 440 nm to 700 nm and a correlated color temperature CCT of 2200 to 4200 K, wherein chains I and III are each separately connected to a power source via a dimming ballast that regulates the proportion of input current to each chain separately.
    Type: Grant
    Filed: January 4, 2022
    Date of Patent: February 14, 2023
    Inventor: Hynek Medricky
  • Patent number: 11582845
    Abstract: Embodiments of the present invention include a lighting fixture(s), a computer program product and a computer-implemented method that include program code executed by a processor(s) that obtains a request to implement a specified lighting pattern in the lighting fixture(s). Each lighting fixture includes effect lighting communicatively coupled to the processor(s) and functional lighting (oriented to illuminate a surface below the lighting fixture) communicatively coupled to the processor(s). The program code identifies the specified lighting pattern in a memory communicatively coupled to the processor(s), which includes a sequence for illuminating a portion of the effect lighting elements. The processor(s) executes the specified lighting pattern in the lighting fixture(s).
    Type: Grant
    Filed: October 28, 2021
    Date of Patent: February 14, 2023
    Inventors: Andrew Schuyler, Chad Recore, Gaetano Ling, Elger Oberwelz, Courtney Song, Tobias Toft, Aaron Wansch, Brian Wong, Joseph Fledderman
  • Patent number: 11573498
    Abstract: A high-power fast-pulse driver and illumination system for high speed metrology imaging is provided, which includes an illumination source and a driver circuit configured to overdrive the illumination source using high currents and/or high current densities. The high currents are currents higher than manufacturer-recommended currents used to drive the illumination source and the high current densities are current densities higher than manufacturer-recommended current densities used to drive the illumination source. The illumination source is operated using a lifetime preserving technique selected from a first technique of operating the illumination source at low duty cycles of 2% or less or a second technique of operating the illumination source in a burst mode at higher duty cycles for short intervals. The driver and illumination system may be incorporated in a variable focus lens (VFL) system, to define multiple exposure increments for acquiring one or more images focused at one or more focus planes.
    Type: Grant
    Filed: August 31, 2020
    Date of Patent: February 7, 2023
    Assignee: Mitutoyo Corporation
    Inventors: Paul Gerard Gladnick, Bjorn Erik Bertil Jansson
  • Patent number: 11565826
    Abstract: A navigation light system for an unmanned aerial vehicle, such as a multicopter type unmanned aerial vehicle, includes: a plurality of light emission units. E of the plurality of light emission units has a unit-specific light emission direction and is configured to provide a light output around the unit-specific light emission direction. Each of the plurality of light emission units includes a multi-color light source capable of emitting red light, green light, and white light. The plurality of light emission units are arranged to jointly provide a navigation light pattern around the unmanned aerial vehicle and wherein the light outputs of adjacent light emission units have an overlap the navigation light system is configured to operate each of the plurality of light emission units depending on a relation between a momentary flight direction of the unmanned aerial vehicle and the respective unit-specific light emission direction.
    Type: Grant
    Filed: January 25, 2021
    Date of Patent: January 31, 2023
    Assignee: GOODRICH LIGHTING SYSTEMS GMBH
    Inventors: Anil Kumar Jha, Andre Hessling-Von Heimendahl
  • Patent number: 11565827
    Abstract: Rotorcraft lighting equipment includes a plurality of lighting devices configured to be mounted to an exterior of a rotorcraft, wherein each of the lighting devices comprises a plurality of individually controllable lighting modules which are configured for emitting light into different spatial directions; and a lighting control device configured for individually controlling the operation of the plurality of lighting modules for generating a desired light distribution of the light emitted by the plurality of lighting modules.
    Type: Grant
    Filed: April 15, 2021
    Date of Patent: January 31, 2023
    Assignee: GOODRICH LIGHTING SYSTEMS GMBH
    Inventors: Andre Hessling- Von Heimendahl, Anil Kumar Jha, Andreas Ueberschaer
  • Patent number: 11564298
    Abstract: A lighting apparatus includes a rectifier, a 0-10 V dimmer converter, a power circuit and a light source. The rectifier for receives an AC power from an AC input to generate a DC current. The TRIAC wall switch is selectively coupled to the AC input. The TRIAC wall switch is operated by a user with an first manual operation to suppress a portion of the AC power from the AC input corresponding to the first manual operation. The 0-10 V dimmer converter is selectively coupled to a 0-10 V dimmer. The 0-10 V dimmer converts a dimmer voltage of the 0-10 V dimmer to a dimmer signal corresponding to a second manual operation of the user. The power circuit is coupled to the 0-10 V dimmer converter and the rectifier to convert the DC current to a set of driving current. The light source includes multiple LED modules.
    Type: Grant
    Filed: September 29, 2021
    Date of Patent: January 24, 2023
    Assignee: XIAMEN ECO LIGHTING CO. LTD.
    Inventors: Qiyi Jiang, Bin Zhang, Donghong Su, Zhenyu Tang
  • Patent number: 11558948
    Abstract: A Smart ANSI Microcontroller is provided to retrofit preexisting light fixtures. The preexisting light fixtures are configured with 5 pin or 7 pin ANSI receptacles. The Smart ANSI Microcontroller is configured to accept a variety of control signals and to control the power output of the driver of the preexisting driver of the luminaire in order to control the light output of the luminaire. The Smart ANSI Microcontroller is configured with a 5 pin or 7 pin ANSI male connector that is configured for mating engagement with the 5 pin or 7 pin female ANSI connector found in typical prior art luminaires, such as street lamps. The Smart ANSI Microcontroller allows for contemporary accessory light controllers to be utilized with the preexisting luminaires. The contemporary light controllers can be configured to connect to the Smart ANSI Microcontroller via wireless and/or wired connection.
    Type: Grant
    Filed: March 1, 2021
    Date of Patent: January 17, 2023
    Inventors: Dan Dina, Robert Deely, George Walter Lewis
  • Patent number: 11552826
    Abstract: Method for the operation and expansion of a network of lights Described herein is method for the operation and the expansion of a network of lights, each light in the network including a control module which is assigned to a group, each control module being in communication with a group controller as well as control modules in the same group. The network can be expanded by installing new lights with their associated control modules (19), and each new control module scans its environment and transmits environmental information to a central server (20) where the environmental information is analysed and the new control modules are allocated into groups (21). After allocation to a group in which control modules may be moved from one group to another or a new group is formed, the new control modules are available for normal operation. This process is repeated for each new light and associated control module.
    Type: Grant
    Filed: February 4, 2020
    Date of Patent: January 10, 2023
    Assignee: SCHREDER
    Inventors: Helmut Schröder, Daniel Brand, Didier Wellens
  • Patent number: 11542033
    Abstract: A dynamic runway illumination system, including a light source having an addressable light beam direction, and a control unit configured to receive aircraft attitude information and the orientation of the runway selected for takeoff or landing, obtain horizontal and vertical axes, the horizontal axis being collinear with the takeoff or landing longitudinal direction, determine the actual and the reference aircraft trajectories, obtain the actual and the reference vertical approach angles, and the actual horizontal approach angle, and actuate onto the light source to perform an angular movement in the light beam direction of an absolute value of the actual vertical approach angle minus the absolute value of the reference vertical approach angle about the vertical axis, and an angular movement of an absolute value of the actual horizontal approach angle about the horizontal axis, to vertically and horizontally align the beam of the light source towards the runway direction.
    Type: Grant
    Filed: April 7, 2020
    Date of Patent: January 3, 2023
    Assignee: Airbus Operations S.L.
    Inventor: Gabrielle Josephine Christiane De Brouwer
  • Patent number: 11540369
    Abstract: A lighting system with color temperature adjustment function is provided, which includes a lighting device and a mobile temperature signal transmitting device. The lighting device includes a color temperature control module, a wireless signal receiving module and a plurality of light sources having different color temperatures. The mobile temperature signal transmitting device includes a wireless signal transmitting module and a temperature detecting module. The temperature detecting module detects an environmental temperature and transmits a temperature signal to the wireless signal receiving module via the wireless signal transmitting module for the color temperature control module to control the light sources. Thus, the color temperature of the lighting device can be related to the environmental temperature.
    Type: Grant
    Filed: January 6, 2022
    Date of Patent: December 27, 2022
    Inventors: Fuxing Lu, Rongtu Liu
  • Patent number: 11540374
    Abstract: Disclosed is an integrated multifunctional drive power supply for an LED lamp, including a drive power supply housing in which a main control panel is arranged and includes a drive power supply module, a dimming module, and a color temperature regulation module, wherein an MCU processor is arranged in the drive power supply module; a dimming signal interface of the dimming module is connected with a dimming port of the drive power supply module; a dimming signal output end of the dimming module is connected with a dimming power signal input end of the LED lamp; a color temperature regulation signal interface of the color temperature regulation module is connected with an LED output port of the drive power supply module; and a color temperature signal output end of the color temperature regulation module is connected with a color temperature regulation signal receiving end of the LED lamp.
    Type: Grant
    Filed: December 30, 2021
    Date of Patent: December 27, 2022
    Assignee: Shenzhen Haixing Technology Co., Ltd.
    Inventors: Huishi Tan, Zheng Peng
  • Patent number: 11516900
    Abstract: A method for driving one or more electrically powered light sources, such as LED modules, may include applying a pulse-width-modulated signal thereto having a pulse-repetition frequency and a duty-cycle, the duty-cycle being selectively variable in order to vary the intensity of light emitted by the light source or light sources. To counter the occurrence of temporal light artefacts, or TLAs, the method may include frequency modulating the pulse-width-modulated signal (VPWM) by varying the pulse-repetition frequency thereof around a certain value between a lower frequency value and a higher frequency value, thus giving rise to a signal with combined FM/PWM modulation.
    Type: Grant
    Filed: June 2, 2021
    Date of Patent: November 29, 2022
    Assignee: OSRAM GMBH
    Inventors: Francesco Angelin, Alessio Griffoni
  • Patent number: 11497101
    Abstract: A priority control circuit for the operation of vehicle lamps. The priority control circuit includes a first circuit and a second circuit. The first circuit includes a first PNP transistor, a first NPN transistor having a gate connected to a collector of the first PNP transistor, and a first output port connected to a collector of the first NPN transistor. When a first lamp turn-on signal for turning on a first lamp is input, the first circuit turns on a second lamp and a third lamp. The second circuit includes a second NPN transistor, a second PNP transistor having a gate connected to a collector of the second NPN transistor, and a second output port connected to a collector of the second PNP transistor. The second circuit controls priorities for the operation of the second lamp and the third lamp.
    Type: Grant
    Filed: July 24, 2020
    Date of Patent: November 8, 2022
    Assignee: Hyundai Mobis Co., Ltd.
    Inventor: Mi Seon Kim
  • Patent number: 11490494
    Abstract: A method for controlling an electronic device with a remote control includes detecting a motion of the remote control and determining a command associated with the detected motion. The determined command is sent from the remote control to the electronic device. A corresponding remote control includes a motion detector for detecting a motion of the remote control, a device for determining a command associated with the detected motion, and a transmitter for sending the determined command to the electronic device.
    Type: Grant
    Filed: September 6, 2018
    Date of Patent: November 1, 2022
    Assignee: LEDVANCE GMBH
    Inventors: Yongchang Dai, Huajin Huang, Wang Jiang, Yafen Zhang