Patents by Inventor John E. Hoot

John E. Hoot has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20140085717
    Abstract: A closed-loop telescope control system is disclosed that greatly improves the accuracy of telescope operation. Using image information collected by sensors mounted on the telescope, a control system can improve pointing accuracy by observing the actual position of a selected object and making minute pointing corrections. Tracking accuracy is greatly improved using image information to directly control servo motor operation by a telescope control. Additional automated features are possible by the closed-loop capacity of the disclosure to improve the efficiency of a telescope system.
    Type: Application
    Filed: September 21, 2012
    Publication date: March 27, 2014
    Inventors: KENNETH W. BAUN, John E. Hoot
  • Patent number: 7482564
    Abstract: Embodiments of the present disclosure include presenting data related to image information captured by a telescope on an electronic display, such as, for example, a high definition display. For example, a telescope control system may advantageously output video or other signals to one or more displays in a multi-media or image presentation. In certain preferred embodiments, such display comprises high definition displays, or the like. For example, such display may comprise entertainment, academic or other presentations.
    Type: Grant
    Filed: April 20, 2005
    Date of Patent: January 27, 2009
    Assignee: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Hoot
  • Publication number: 20080212176
    Abstract: Embodiments of the present disclosure include self-aligning telescope control systems and self-alignment methods. In an embodiment, a telescope control system orients a telescope with respect to the celestial sphere by pointing the telescope in the direction of an alignment star or alignment area of the sky. The telescope control system images a field of view in the alignment area, and processes the images to determine the celestial coordinates of a center of the filed a field of view the alignment area. The telescope control system then maps the telescope's coordinate system to the celestial coordinate system. Once mapped, the telescope control system can advantageously slew the telescope to any desired celestial object in the viewable sky based on, for example, user selection, system recommendations, combinations of the same, or the like.
    Type: Application
    Filed: March 4, 2008
    Publication date: September 4, 2008
    Inventors: Kenneth W. Baun, John E. Hoot
  • Patent number: 7339731
    Abstract: Embodiments of the present disclosure include self-aligning telescope control systems and self-alignment methods. In an embodiment, a telescope control system orients a telescope with respect to the celestial sphere by pointing the telescope in the direction of an alignment star or alignment area of the sky. The telescope control system images a field of view in the alignment area, and processes the images to determine the celestial coordinates of a center of the filed a field of view the alignment area. The telescope control system then maps the telescope's coordinate system to the celestial coordinate system. Once mapped, the telescope control system can advantageously slew the telescope to any desired celestial object in the viewable sky based on, for example, user selection, system recommendations, combinations of the same, or the like.
    Type: Grant
    Filed: April 20, 2005
    Date of Patent: March 4, 2008
    Assignee: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Hoot
  • Publication number: 20080017784
    Abstract: Apparatus and methods are disclosed that enable a device to locate and track a light source. In certain preferred embodiments, the device is a telescope and the light source is the sun. In some embodiments, the apparatus includes a plurality of photodetectors and a plurality of shade casting members. The shade casting members may be disposed substantially symmetrically about an optical axis of the apparatus. In certain embodiments, the apparatus can locate and track the light source by comparing one or more signals produced by the photodetectors in response to light received from the light source.
    Type: Application
    Filed: July 21, 2006
    Publication date: January 24, 2008
    Inventors: John E. Hoot, Kenneth W. Baun
  • Patent number: 7221527
    Abstract: Embodiments of an automated telescope system are operable in multiple modes, including alt-az and equatorial modes. The telescope system aligns and orients itself to the celestial coordinate system using, for example, data gained through tracking the drift of a celestial object. In various embodiments, an imager may be used to find and track celestial objects.
    Type: Grant
    Filed: July 25, 2005
    Date of Patent: May 22, 2007
    Assignee: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Hoot
  • Patent number: 7209229
    Abstract: An apparatus, system and method are provided for composing an image at a selectable wavelength, wavelengths or bandwidth. Light passing through an entrance slit is dispersed into a spectrum and recorded. In an embodiment, spectral images corresponding to respective portions of an object are generated. Image data corresponding to a selected wavelength, wavelengths or bandwidth is extracted from the spectral images and compiled into an image of the object. In an embodiment, user optics are provided which allow a user to align the object with the entrance slit or to focus the light from the object onto the entrance slit.
    Type: Grant
    Filed: June 9, 2004
    Date of Patent: April 24, 2007
    Assignee: Meade Instruments Corporation
    Inventor: John E. Hoot
  • Patent number: 7092156
    Abstract: A fully automated telescope system is able to be fully operable in both Alt-Az and polar configurations. In either configuration, the telescope aligns itself to the celestial coordinate system following a simplified initialization procedure during which the telescope tube is first pointed north and then pointed towards a user's horizon. A command processor, under application software program control orients the telescope system with respect to the celestial coordinate system given the initial directional inputs. The initial telescope orientation may be further refined by initially inputting a geographical location indicia, or by shooting one or two additional celestial objects. Once the telescope's orientation with respect to the celestial coordinate system is established, the telescope system will automatically move to and track any desired celestial object without further alignment invention by a user.
    Type: Grant
    Filed: February 4, 2003
    Date of Patent: August 15, 2006
    Assignee: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Hoot
  • Patent number: 7079317
    Abstract: An automated telescope includes an optical system and respective altitude and azimuth motor systems. Each motor system is configured to rotate the optical system about a corresponding altitude or azimuth axis. Each of the altitude and azimuth motor systems includes a motor and a microprocessor configured to control its respective motor. A third microprocessor is connected to microprocessors of both the altitude and azimuth motor systems. The third microprocessor is programmed to determine a relationship between a celestial coordinate system and an altitude-azimuth coordinate system and to generate motion control commands based at least in part on the determined relationship. Each microprocessor of the altitude and azimuth motor systems then controls its respective motor based at least in part on the motion control commands.
    Type: Grant
    Filed: February 5, 2003
    Date of Patent: July 18, 2006
    Assignee: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Hoot, Brian G. Tingey
  • Patent number: 6922283
    Abstract: A fully automated telescope system is operable in both alt-az and equatorial modes. In either configuration, the telescope system aligns and orients itself to the celestial coordinate system following a simplified initialization procedure during which the telescope tube is first pointed North and then pointed towards the horizon. A command processor, under application software control, orients the telescope system with respect to the celestial coordinate system given the initial directional inputs. The initial telescope orientation is refined by automatically inputting geographical location data and a timing parameter. A simplified tracking procedure allows tracking of celestial objects after the telescope system has had its axis positions initialized to a horizontal and a vertical index. Object tracking is subsequently performed with no additional orientation procedure required.
    Type: Grant
    Filed: January 26, 2001
    Date of Patent: July 26, 2005
    Assignee: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Hoot
  • Publication number: 20040047036
    Abstract: A fully automated telescope system is able to be fully operable in both Alt-Az and polar configurations. In either configuration, the telescope aligns itself to the celestial coordinate system following a simplified initialization procedure during which the telescope tube is first pointed north and then pointed towards a user's horizon. A command processor, under application software program control orients the telescope system with respect to the celestial coordinate system given the initial directional inputs. The initial telescope orientation may be further refined by initially inputting a geographical location indicia, or by shooting one or two additional celestial objects. Once the telescope's orientation with respect to the celestial coordinate system is established, the telescope system will automatically move to and track any desired celestial object without further alignment invention by a user.
    Type: Application
    Filed: February 4, 2003
    Publication date: March 11, 2004
    Applicant: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Smith, John E. Hoot, Michael A. Wachala, Brian G. Tingey, Brent G. Duchon, Stanley H. Dewan
  • Publication number: 20030197930
    Abstract: A fully automated telescope system is operable in both alt-az and equatorial modes. In either configuration, the telescope system aligns and orients itself to the celestial coordinate system following a simplified initialization procedure during which the telescope tube is first pointed North and then pointed towards the horizon. A command processor, under application software control, orients the telescope system with respect to the celestial coordinate system given the initial directional inputs. The initial telescope orientation is refined by automatically inputting geographical location data and a timing parameter. A simplified tracking procedure allows tracking of celestial objects after the telescope system has had its axis positions initialized to a horizontal and a vertical index. Object tracking is subsequently performed with no additional orientation procedure required.
    Type: Application
    Filed: January 26, 2001
    Publication date: October 23, 2003
    Inventors: Kenneth W. Baun, John E. Hoot
  • Publication number: 20030156324
    Abstract: A fully automated telescope system is able to be fully operable in both Alt-Az and polar configurations. In either configuration, the telescope aligns itself to the celestial coordinate system following a simplified initialization procedure during which the telescope tube is first pointed north and then pointed towards a user's horizon. A command processor, under application software program control orients the telescope system with respect to the celestial coordinate system given the initial directional inputs. The initial telescope orientation may be further refined by initially inputting a geographical location indicia, or by shooting one or two additional celestial objects. Once the telescope's orientation with respect to the celestial coordinate system is established, the telescope system will automatically move to and track any desired celestial object without further alignment invention by a user.
    Type: Application
    Filed: February 5, 2003
    Publication date: August 21, 2003
    Applicant: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Smith, John E. Hoot, Michael A. Wachala, Brian G. Tingey, Brent G. Duchon, Stanley H. Dewan
  • Patent number: 6392799
    Abstract: A fully automated telescope system is able to be fully operable in both Alt-Az and polar configurations. In either configuration, the telescope aligns itself to the celestial coordinate system following a simplified initialization procedure during which the telescope tube is first pointed north and then pointed towards a user's horizon. A command processor, under application software program control orients the telescope system with respect to the celestial coordinate system given the initial directional inputs. The initial telescope orientation may be further refined by initially inputting a geographical location indicia, or by shooting one or two additional celestial objects. Once the telescope's orientation with respect to the celestial coordinate system is established, the telescope system will automatically move to and track any desired celestial object without further alignment invention by a user.
    Type: Grant
    Filed: October 26, 1999
    Date of Patent: May 21, 2002
    Assignee: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Hoot
  • Publication number: 20010033416
    Abstract: An intelligent telescope system independently acquires and tracks designated celestial objects with little to no knowledge of the night sky being required by a user. The telescope system hosts and runs an application routine in order to have the telescope system conduct a tour of interesting celestial objects that are visible from an observer's location. Tour programs are created by a user and stored in memory in the system's microprocessor controlled command module or, alternatively, pre-defined tour programs are downloaded from a repository, such as in Internet web site, for storage in the system's memory and subsequent use.
    Type: Application
    Filed: December 29, 2000
    Publication date: October 25, 2001
    Inventors: Kenneth W. Baun, John E. Hoot
  • Patent number: 6304376
    Abstract: A fully automated telescope system is able to be fully operable in both Alt-Az and polar configurations. In either configuration, the telescope aligns itself to be celestial coordinate system following a simplified initialization procedure during which the telescope tube is first pointed north and then pointed towards a user's horizon. A command processor, under application software program control orients the telescope system with respect to the celestial coordinate system given the initial directional inputs. The initial telescope orientation may be further refined by initially inputting a geographical location indicia, or by shooting one or two additional celestial objects. Once the telescope's orientation with respect to the celestial coordinate system is established, the telescope system will automatically move to and track any desired celestial object without further alignment invention by a user.
    Type: Grant
    Filed: April 18, 2000
    Date of Patent: October 16, 2001
    Assignee: Meade Instruments Corporation
    Inventors: Kenneth W. Baun, John E. Smith, John E. Hoot, Michael A. Wachala, Brian G. Tingey, Brent G. Duchon, Stanley H. Dewan