Patents by Inventor Jason Ensher

Jason Ensher 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).

  • Patent number: 11567206
    Abstract: A LiDAR system including a laser amplification system is disclosed. The laser amplification system includes a laser source and an optical amplifier. The laser source has a laser cavity and is configured to output electromagnetic radiation. The optical amplifier includes quantum dots and is positioned outside the laser cavity to receive the electromagnetic radiation output from the laser source. The optical amplifier amplifies the received electromagnetic radiation using the quantum dots and outputs the amplified electromagnetic radiation.
    Type: Grant
    Filed: May 18, 2020
    Date of Patent: January 31, 2023
    Assignee: INSIGHT LIDAR, INC.
    Inventors: Jason Ensher, Christopher Wood
  • Patent number: 11493753
    Abstract: An optical system and a method for non-mechanically (i.e., without physical movement) scanning a laser using a lens, a steering optical element, and transmission and receive paths having a non-zero spatial offset. Also, an optical system and a method for non-linearly and non-mechanically scanning a laser using a lens and a steering optical element, such that detection points resulting from the scanned laser are non-linearly mapped into space.
    Type: Grant
    Filed: September 25, 2019
    Date of Patent: November 8, 2022
    Assignee: INSIGHT LIDAR, INC.
    Inventors: Christopher Wood, Jason Ensher, Russell Sibell
  • Patent number: 11448593
    Abstract: A device and method for performing reflectivity measurements at a distance by receiving two or more reflected signals (using two or more different wavelength sweeps) and calculating ratios of the two (or more) received reflected signals, for the purpose of determining the composition of a material or surface at a distance.
    Type: Grant
    Filed: March 4, 2020
    Date of Patent: September 20, 2022
    Assignee: INSIGHT PHOTONIC SOLUTIONS, INC.
    Inventors: Jason Ensher, Christopher Wood
  • Patent number: 11366203
    Abstract: An adaptive lag angle compensation scheme for coherent high-speed scanning LiDAR that accommodates diffraction-limited LiDAR beams and also accommodates mixing of return signals with the corresponding local oscillator signals.
    Type: Grant
    Filed: April 16, 2019
    Date of Patent: June 21, 2022
    Assignee: INSIGHT LIDAR, INC.
    Inventors: Christopher Wood, Jason Ensher
  • Patent number: 11175388
    Abstract: A LiDAR system comprising a laser source configured to output electromagnetic radiation based on an input signal and circuitry configured to supply the input signal to the laser source to control electromagnetic radiation output by the laser source, such that the laser source outputs a waveform including a plurality of output states. The laser source outputs electromagnetic radiation having a particular wavelength during the output states. Each of the plurality of output states is separated in time from neighboring output states of the plurality of output states by a time span. The particular wavelength of the electromagnetic radiation for a first output state of the plurality of output states is different from the particular wavelength of electromagnetic radiation for a second output state of the plurality of output states.
    Type: Grant
    Filed: November 21, 2018
    Date of Patent: November 16, 2021
    Assignee: INSIGHT LIDAR, INC.
    Inventors: Christopher Wood, Jason Ensher
  • Patent number: 11101619
    Abstract: A method for sweeping an electromagnetic radiation source (12) to produce single mode operation having an optimized side-mode suppression ratio over a continuous range of wavelengths within a prescribed temporal profile, the electromagnetic radiation source is configured to output electromagnetic radiation at a given wavelength based upon parameters. The method includes determining a set of parameter combinations that satisfy a condition for a desired set of wavelengths and a maximum side mode suppression ratio over the range of wavelengths. The set of parameter combinations define sub-paths for transitioning from one wavelength to another wavelength. Combinations of select sub-paths provide a multivariate path for transitioning over the range of wavelengths. The method also includes controlling the semiconductor laser to emit electromagnetic radiation over the range of wavelengths by traversing the multivariate path in a desired manner.
    Type: Grant
    Filed: September 18, 2019
    Date of Patent: August 24, 2021
    Assignee: INSIGHT PHOTONIC SOLUTIONS, INC.
    Inventors: Michael Minneman, Jason Ensher, Michael Crawford
  • Patent number: 10868405
    Abstract: A method for controlling an electromagnetic radiation source to produce single mode operation having an optimized side-mode suppression ratio over a set of wavelengths within a prescribed temporal profile. The electromagnetic radiation source is configured to output electromagnetic radiation at a given wavelength based upon parameters. The method includes determining a set of parameter combinations that satisfy a condition for a desired set of wavelengths and a minimum side mode suppression ratio over the range of wavelengths. The set of parameter combinations define sub-paths for nearly arbitrary transitions from one wavelength to another wavelength. Combinations of select sub-paths provide a multivariate path for transitioning over the range of wavelengths. The method also includes controlling the semiconductor laser to emit electromagnetic radiation over the range of wavelengths by traversing the multivariate path in a desired manner.
    Type: Grant
    Filed: June 10, 2019
    Date of Patent: December 15, 2020
    Assignee: INSIGHT PHOTONIC SOLUTIONS, INC.
    Inventors: Jason Ensher, Christopher Wood, Michael Minneman
  • Patent number: 10461500
    Abstract: A method for sweeping an electromagnetic radiation source (12) to produce single mode operation having an optimized side-mode suppression ratio over a continuous range of wavelengths within a prescribed temporal profile, the electromagnetic radiation source is configured to output electromagnetic radiation at a given wavelength based upon parameters. The method includes determining a set of parameter combinations that satisfy a condition for a desired set of wavelengths and a maximum side mode suppression ratio over the range of wavelengths. The set of parameter combinations define sub-paths for transitioning from one wavelength to another wavelength. Combinations of select sub-paths provide a multivariate path for transitioning over the range of wavelengths. The method also includes controlling the semiconductor laser to emit electromagnetic radiation over the range of wavelengths by traversing the multivariate path in a desired manner.
    Type: Grant
    Filed: September 2, 2016
    Date of Patent: October 29, 2019
    Assignee: INSIGHT PHOTONIC SOLUTIONS, INC.
    Inventors: Michael Minneman, Jason Ensher, Michael Crawford
  • Patent number: 10355446
    Abstract: A method for controlling an electromagnetic radiation source to produce single mode operation having an optimized side-mode suppression ratio over a set of wavelengths within a prescribed temporal profile. The electromagnetic radiation source is configured to output electromagnetic radiation at a given wavelength based upon parameters. The method includes determining a set of parameter combinations that satisfy a condition for a desired set of wavelengths and a minimum side mode suppression ratio over the range of wavelengths. The set of parameter combinations define sub-paths for nearly arbitrary transitions from one wavelength to another wavelength. Combinations of select sub-paths provide a multivariate path for transitioning over the range of wavelengths. The method also includes controlling the semiconductor laser to emit electromagnetic radiation over the range of wavelengths by traversing the multivariate path in a desired manner.
    Type: Grant
    Filed: November 3, 2017
    Date of Patent: July 16, 2019
    Assignee: INSIGHT PHOTONIC SOLUTIONS, INC.
    Inventors: Jason Ensher, Christopher Wood, Michael Minneman
  • Patent number: 9983030
    Abstract: A system and method for discriminately measuring the response of a plurality of spatially separated fiber sensors positioned along an optical fiber using a sweep of electromagnetic radiation. Each fiber sensor affects the transmission of a particular wavelength of electromagnetic radiation and the particular wavelength affected by a given fiber sensor is dependent on at least one environmental property of the given fiber sensor. By detecting the particular wavelength affected by a given sensor, it is possible to determine the environmental property of the given sensor.
    Type: Grant
    Filed: June 22, 2016
    Date of Patent: May 29, 2018
    Assignee: INSIGHT PHOTONIC SOLUTIONS, INC.
    Inventors: Jason Ensher, Michael Minneman, Michael Crawford
  • Patent number: 9595804
    Abstract: A system (10, 20) and method including a wavelength tuning mechanism and a laser path length tuning mechanism for reducing discontinuities in a sweep range. A processor (14) is coupled to a wavelength monitoring device (18) and the tuning mechanisms. The processor analyzes data from the wavelength monitor to adjust the wavelength tuning and cavity length tuning at discontinuities in the wavelength sweep to reduce the discontinuities.
    Type: Grant
    Filed: July 21, 2012
    Date of Patent: March 14, 2017
    Assignee: Insight Photonic Solutions, Inc.
    Inventors: Michael Minneman, Jason Ensher, Dennis Derickson, Michael Crawford
  • Publication number: 20160377456
    Abstract: A system and method for discriminately measuring the response of a plurality of spatially separated fiber sensors positioned along an optical fiber using a sweep of electromagnetic radiation. Each fiber sensor affects the transmission of a particular wavelength of electromagnetic radiation and the particular wavelength affected by a given fiber sensor is dependent on at least one environmental property of the given fiber sensor. By detecting the particular wavelength affected by a given sensor, it is possible to determine the environmental property of the given sensor.
    Type: Application
    Filed: June 22, 2016
    Publication date: December 29, 2016
    Inventors: Jason Ensher, Michael Minneman, Michael Crawford
  • Publication number: 20160372890
    Abstract: A method for sweeping an electromagnetic radiation source (12) to produce single mode operation having an optimized side-mode suppression ratio over a continuous range of wavelengths within a prescribed temporal profile, the electromagnetic radiation source is configured to output electromagnetic radiation at a given wavelength based upon parameters. The method includes determining a set of parameter combinations that satisfy a condition for a desired set of wavelengths and a maximum side mode suppression ratio over the range of wavelengths. The set of parameter combinations define sub-paths for transitioning from one wavelength to another wavelength. Combinations of select sub-paths provide a multivariate path for transitioning over the range of wavelengths. The method also includes controlling the semiconductor laser to emit electromagnetic radiation over the range of wavelengths by traversing the multivariate path in a desired manner.
    Type: Application
    Filed: September 2, 2016
    Publication date: December 22, 2016
    Inventors: Michael Minneman, Jason Ensher, Michael Crawford
  • Patent number: 9482511
    Abstract: A system and method for sweeping electromagnetic radiation over a first coherence length and a second length over a range of wavelengths to generate an image. Electromagnetic radiation having a first coherence length is generated and swept over a range of wavelengths. Electromagnetic radiation having a second coherence length is generated and swept over a range of wavelengths. The electromagnetic radiation is splitting through a reference path and a sample path; Electromagnetic radiation returned from the reference path and the sample path is detected, wherein the detector generates output signals corresponding to the received electromagnetic radiation. In one embodiment, the output signals are processed to generate an image. The image may be interleaved with data corresponding to the electromagnetic radiation having the first coherence length and the second coherence length.
    Type: Grant
    Filed: July 21, 2012
    Date of Patent: November 1, 2016
    Assignee: Insight Photonic Solutions, Inc.
    Inventors: Michael Minneman, Jason Ensher, Michael Crawford, Thomas Milner
  • Patent number: 9455549
    Abstract: A method for sweeping an electromagnetic radiation source (12) to produce single mode operation having an optimized side-mode suppression ratio over a continuous range of wavelengths within a prescribed temporal profile, the electromagnetic radiation source is configured to output electromagnetic radiation at a given wavelength based upon parameters. The method includes determining a set of parameter combinations that satisfy a condition for a desired set of wavelengths and a maximum side mode suppression ratio over the range of wavelengths. The set of parameter combinations define sub-paths for transitioning from one wavelength to another wavelength. Combinations of select sub-paths provide a multivariate path for transitioning over the range of wavelengths. The method also includes controlling the semiconductor laser to emit electromagnetic radiation over the range of wavelengths by traversing the multivariate path in a desired manner.
    Type: Grant
    Filed: September 13, 2012
    Date of Patent: September 27, 2016
    Assignee: Insight Photonic Solutions, Inc.
    Inventors: Michael Minneman, Jason Ensher, Michael Crawford
  • Patent number: 9404729
    Abstract: A system and method for correcting the optical response of an OCT system is presented. The system and method characterize the optical response of the OCT system to determine an optical loss of the OCT system as a function of wavelength. The optical loss corresponds to a reduction in the magnitude of electromagnetic radiation leaving an interferometer of the OCT system compared to the electromagnetic radiation entering the interferometer. The optical loss of the OCT system may be determined by generating output signals using the OCT system when the system does not contain a sample or contains an electromagnetic radiation absorbing material. A controller may control the source to pre-emphasize the electromagnetic radiation to correct for the optical response of the OCT system.
    Type: Grant
    Filed: February 26, 2014
    Date of Patent: August 2, 2016
    Assignee: Insight Photonic Solutions, Inc.
    Inventors: Michael Minneman, Paul Boschert, Michael Crawford, Jason Ensher
  • Patent number: 9385501
    Abstract: A system and method for triggering data acquisition in a semiconductor laser system including outputting electromagnetic energy from the semiconductor laser over a range of wavelengths according to a signaling path. The signaling path includes a plurality of discrete data inputs to the semiconductor laser for outputting electromagnetic energy over a range of wavelengths and the signaling path includes one or more perturbances in transitioning from one wavelength to another wavelength along the signaling path. A series of triggering signals for input to a measurement system is generated by the semiconductor laser. The semiconductor laser also generates a series of valid signal indicators when the outputted electromagnetic energy is not undergoing one or more perturbances. The valid signal indicators may be digitized and stored and/or used to pause the measurement system.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: July 5, 2016
    Assignee: INSIGHT PHOTONIC SOLUTIONS, INC.
    Inventors: Michael Minneman, Michael Crawford, Jason Ensher
  • Patent number: 9279742
    Abstract: A system and method including a semiconductor laser source configured to output radiation over a range of wavelengths at a prescribed rate to a device under test. The prescribed rate is sufficiently above environmental frequency bands. A detector is configured to detect output radiation from the device under test to obtain a detected signal associated with at least one physical property associated with the incident radiation over the range of wavelengths at the prescribed rate. The detected signal includes environmental signal and target signal from the device under test. A processor isolates the environmental signal from the detected signal; and processes the target signal to obtain dispersion information of the device under test. A system output is configured to output the dispersion information of the device under test.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: March 8, 2016
    Assignee: Insight Photonic Solutions, Inc.
    Inventors: Michael Minneman, Michael Crawford, Jason Ensher
  • Publication number: 20160049768
    Abstract: Embodiments of systems and methods are provided for a tunable laser device. The tunable laser device may include a diffraction grating connected to a pivot arm that pivots the diffraction grating about a pivot point to tune the laser device. In pivoting the diffraction grating about the pivot point, both the wavelength to which the diffraction grating is tuned and the length of the optical cavity may be changed. The length of the pivot arm may be selected to reduce the number of mode hops of the tunable laser device when tuning the laser device over its tuning range.
    Type: Application
    Filed: August 3, 2015
    Publication date: February 18, 2016
    Inventors: Susan Hunter, Vladimir Krneta, Jason Ensher, Aaron Wegner
  • Patent number: 9190803
    Abstract: Embodiments of systems and methods are provided for a tunable laser device. The tunable laser device may include a diffraction grating connected to a pivot arm that pivots the diffraction grating about a pivot point to tune the laser device. In pivoting the diffraction grating about the pivot point, both the wavelength to which the diffraction grating is tuned and the length of the optical cavity may be changed. The length of the pivot arm may be selected to reduce the number of mode hops of the tunable laser device when tuning the laser device over its tuning range.
    Type: Grant
    Filed: August 6, 2014
    Date of Patent: November 17, 2015
    Assignee: Akonia Holographics, LLC
    Inventors: Susan Hunter, Vladimir Krneta, Jason Ensher, Aaron Wegner