Patents Assigned to Octrolix BV
  • Patent number: 9764352
    Abstract: A planar lightwave circuit that can be optically coupled with an external device with low optical loss, while also providing low-power functional control over an optical signal propagating through the PLC is disclosed. The PLC includes a high-contrast waveguide region in a stress-inducing (SI) phase shifter is formed such that it can control the phase of the optical signal. The high-contrast-waveguide region is optically coupled to a low-contrast-waveguide region via a spotsize converter, thereby enabling optical coupling to off-chip devices with low optical loss. Formation of the SI phase shifter in a high-contrast-waveguide region enables improved responsivity and phase control, reduced voltage, and smaller required chip real estate. As a result, the present invention enables lower-cost and higher-performance PLC systems.
    Type: Grant
    Filed: December 23, 2015
    Date of Patent: September 19, 2017
    Assignee: OctroliX BV
    Inventors: Rene Gerrit Heideman, Arne Leinse
  • Patent number: 9453791
    Abstract: A flow cytometry system having a flow channel defined through the thickness of a substrate is disclosed. Fluid flowing through the flow channel is illuminated by a first plurality of surface waveguides that are arranged around the flow channel in a first plane, while a second plurality of surface waveguides arranged around the flow channel in a second plane receive light after it has interacted with the fluid. The illumination pattern provided to the fluid is controlled by controlling the phase of the light in the first plurality of surface waveguides. As a result, the fluid is illuminated with light that is uniform and has a low coefficient of variation, improving the ability to distinguish and quantify characteristics of the fluid, such as cell count, DNA content, and the like.
    Type: Grant
    Filed: July 1, 2014
    Date of Patent: September 27, 2016
    Assignee: OctroliX BV
    Inventors: Frederik Schreuder, Marcel Hoekman, Ronald Dekker, Seyed Naser Hosseini
  • Patent number: 9453962
    Abstract: A beam combiner is disclosed that comprises a planar lightwave circuit that is based on undoped silicon nitride-based surface waveguides, wherein the planar lightwave circuit comprises a plurality of input ports, a mixing region, and an output port, and wherein the mixing region comprises a plurality of directional couplers that are arranged in a tree structure. Embodiments of the present invention are capable of combining a plurality of light signals characterized by disparate wavelengths on irregular spacings with low loss. Further, the present invention enables high-volume, low cost production of beam combiners capable of combining three or more light signals into a single composite output beam.
    Type: Grant
    Filed: September 19, 2014
    Date of Patent: September 27, 2016
    Assignee: OctroliX BV
    Inventors: Edwin Jan Klein, Ronald Dekker, Hindrik F. Bulthuis
  • Patent number: 9426435
    Abstract: A scanning projector suitable for projecting an image comprising a plurality of wavelength signals (i.e., light signals having different wavelengths) is disclosed. Embodiments of the present invention comprise a beam combiner comprising a planar lightwave circuit that includes a plurality of surface waveguides arranged in define a plurality of input ports, a mixing region, and an output port. Different wavelength signals received at the input ports are combined into a composite output beam that is scanned over a region. The projector (1) scans a first wavelength signal over a plurality of image points in the region, (2) detects an amount of the first wavelength signal reflected from each image point, whose reflectivity at the first wavelength is based on a measurand, and (3) projects an image onto the region using a second wavelength signal, where the image is based on the reflected first wavelength signal at each of the image points.
    Type: Grant
    Filed: March 9, 2015
    Date of Patent: August 23, 2016
    Assignee: Octrolix BV
    Inventors: Ronald Dekker, Edwin Jan Klein
  • Patent number: 9268089
    Abstract: A method for forming a non-linear thickness-profile in a first layer of a first material is disclosed. The method comprises forming an accelerator layer of a second material on the first layer and forming a mask layer disposed on the accelerator layer, wherein the mask layer enables the accelerator layer to expose the first layer to a first etchant in a first region, where the exposure time for each point along a first axis varies non-linearly as a function of distance from a first point on the first axis. Since the time for which the first layer is exposed to the first etch in the first region is non-linear, the thickness of the first layer in the first region changes non-linearly along the first axis.
    Type: Grant
    Filed: May 5, 2014
    Date of Patent: February 23, 2016
    Assignee: Octrolix BV
    Inventors: Rene Gerrit Heideman, Marcel Hoekman
  • Patent number: 9221074
    Abstract: A planar lightwave circuit that can be optically coupled with an external device with low optical loss, while also providing low-power functional control over an optical signal propagating through the PLC is disclosed. The PLC includes a high-contrast waveguide region in a stress-inducing (SI) phase shifter is formed such that it can control the phase of the optical signal. The high-contrast-waveguide region is optically coupled to a low-contrast-waveguide region via a spotsize converter, thereby enabling optical coupling to off-chip devices with low optical loss. Formation of the SI phase shifter in a high-contrast-waveguide region enables improved responsivity and phase control, reduced voltage, and smaller required chip real estate. As a result, the present invention enables lower-cost and higher-performance PLC systems.
    Type: Grant
    Filed: December 23, 2014
    Date of Patent: December 29, 2015
    Assignee: Octrolix BV
    Inventors: Rene Gerrit Heideman, Arne Leinse
  • Patent number: 9025911
    Abstract: A scanning projector for projecting an image comprising a plurality of wavelength signals (i.e., light signals having different wavelengths) is disclosed. Embodiments of the present invention comprise a beam combiner comprising a planar lightwave circuit that includes a plurality of surface waveguides arranged to define a plurality of input ports, a mixing region, and an output port. Different wavelength signals received at the input ports are combined into a composite output beam that is scanned over a region. The projector (1) scans a first wavelength signal over a plurality of image points in the region, (2) detects an amount of the first wavelength signal reflected from each image point, whose reflectivity at the first wavelength is based on a measure and, and (3) projects an image onto the region using a second wavelength signal, where the image is based on the reflected first wavelength signal at each of the image points.
    Type: Grant
    Filed: September 8, 2014
    Date of Patent: May 5, 2015
    Assignee: Octrolix BV
    Inventors: Ronald Dekker, Edwin Jan Klein
  • Patent number: 9020317
    Abstract: A method for forming a waveguide having a thin-core region, a thick-core region, and a transition region of tapered thickness between them is disclosed. The method comprises forming a lower core layer of a first material on a lower cladding, forming a thin central core layer of a second material on the first core layer, forming an upper core layer of the first material on the central core layer, and etching the upper core layer in an etchant such that it is removed from the thin-core region and its thickness monotonically changes from its as-deposited thickness to extinction across the transition region, where the central core layer protects the lower core layer from exposure to the etchant.
    Type: Grant
    Filed: October 11, 2013
    Date of Patent: April 28, 2015
    Assignee: Octrolix BV
    Inventors: Rene Gerrit Heideman, Arne Leinse
  • Patent number: 8974650
    Abstract: A method for forming a microfluidic channel with improved flow characteristics for one or more analytes is disclosed. A microfluidic channel having modified surfaces is formed in a glass layer or glass substrate. The glass surfaces of the microfluidic channel are modified by the addition of a layer of borophosphosilicate glass. The addition of the borophosphosilicate glass results in an improved flow velocity profile of the analyte. As a result, control over the position and movement of analytes within the solution is improved.
    Type: Grant
    Filed: May 28, 2013
    Date of Patent: March 10, 2015
    Assignee: Octrolix BV
    Inventor: Rene Gerrit Heideman
  • Patent number: 8965156
    Abstract: A beam combiner is disclosed that comprises a planar lightwave circuit that is based on undoped silicon nitride-based surface waveguides, wherein the planar lightwave circuit comprises a plurality of input ports, a mixing region, and an output port, and wherein the mixing region comprises a plurality of directional couplers that are arranged in a tree structure. Embodiments of the present invention are capable of combining a plurality of light signals characterized by disparate wavelengths on irregular spacings with low loss. Further, the present invention enables high-volume, low cost production of beam combiners capable of combining three or more light signals into a single composite output beam.
    Type: Grant
    Filed: August 12, 2011
    Date of Patent: February 24, 2015
    Assignee: Octrolix BV
    Inventors: Edwin Jan Klein, Ronald Dekker, Hindrik F. Bulthuis
  • Patent number: 8855447
    Abstract: A scanning projector suitable for projecting an image comprising a plurality of light signals of different wavelengths is disclosed. Embodiments of the present invention comprise a beam combiner comprising a planar lightwave circuit that includes a plurality of surface waveguides arranged in define a plurality of input ports, a mixing region, and an output port. Each input port receives a different light signal and provides it to the mixing region. The mixing region combines the plurality of into a single composite output beam that is scanned over a region to create an image in a region.
    Type: Grant
    Filed: November 4, 2011
    Date of Patent: October 7, 2014
    Assignee: Octrolix BV
    Inventors: Ronald Dekker, Edwin Jan Klein
  • Patent number: 8718432
    Abstract: A method for forming a tapered region in a first layer of a first material is disclosed. The method comprises forming an accelerator layer of a second material on the first layer and forming a mask layer disposed on the accelerator layer. The accelerator layer is exposed to a first etch that removes the second material in a first region and laterally etches the accelerator layer along a second region to expose the first layer in the second region to the first etch. Since the time for which the first layer is exposed to the first etch in the second region is based on the progress of the lateral etch of the accelerator layer, the first etch tapers the first layer in the second region.
    Type: Grant
    Filed: April 20, 2012
    Date of Patent: May 6, 2014
    Assignee: Octrolix BV
    Inventors: Rene Gerrit Heideman, Marcel Hoekman
  • Publication number: 20140105556
    Abstract: A method for forming a waveguide having a thin-core region, a thick-core region, and a transition region of tapered thickness between them is disclosed. The method comprises forming a lower core layer of a first material on a lower cladding, forming a thin central core layer of a second material on the first core layer, forming an upper core layer of the first material on the central core layer, and etching the upper core layer in an etchant such that it is removed from the thin-core region and its thickness monotonically changes from its as-deposited thickness to extinction across the transition region, where the central core layer protects the lower core layer from exposure to the etchant.
    Type: Application
    Filed: October 11, 2013
    Publication date: April 17, 2014
    Applicant: Octrolix BV
    Inventors: Rene Gerrit Heideman, Arne Leinse
  • Patent number: 8602561
    Abstract: An image projection system having a laser projector that projects two differently polarized images on a display region is disclosed. The laser projector enables viewing the two differently polarized images as a three-dimensional image. The image projection system includes a planar lightwave circuit-based beam combiner that enables multiple colors of laser light having different polarization modes to be combined in a single output beam that is scanned over the display region at video rates to produce the two polarized images.
    Type: Grant
    Filed: September 9, 2011
    Date of Patent: December 10, 2013
    Assignee: Octrolix BV
    Inventors: Edwin Jan Klein, Ronald Dekker
  • Publication number: 20130256138
    Abstract: A method for forming a microfluidic channel with improved flow characteristics for one or more analytes is disclosed. A microfluidic channel having modified surfaces is formed in a glass layer or glass substrate. The glass surfaces of the microfluidic channel are modified by the addition of a layer of borophosphosilicate glass. The addition of the borophosphosilicate glass results in an improved flow velocity profile of the analyte. As a result, control over the position and movement of analytes within the solution is improved.
    Type: Application
    Filed: May 28, 2013
    Publication date: October 3, 2013
    Applicant: Octrolix BV
    Inventor: Rene Gerrit Heideman
  • Patent number: 8494323
    Abstract: A system having an optical-coupling region for evanescently coupling light between first and second optical-waveguiding structures is disclosed. Within the optical-coupling region, the first and second optical-waveguiding structures exhibit mirror symmetry with respect to each other across or about at least one of a plane and an axis and include a segment that is not straight.
    Type: Grant
    Filed: November 29, 2010
    Date of Patent: July 23, 2013
    Assignee: Octrolix BV
    Inventors: Marcel Hoekman, Rene Gerrit Heideman, Albert Prak
  • Patent number: 8454811
    Abstract: A method for forming a microfluidic channel with improved flow characteristics for one or more analytes is disclosed. A microfluidic channel having modified surfaces is formed in fused silica. The fused silica surfaces are modified by the addition of a layer of borophosphosilicate glass. The addition of the borophosphosilicate glass results in an improved flow velocity profile of the analyte. As a result, control over the position and movement of analytes within the solution is improved.
    Type: Grant
    Filed: July 14, 2008
    Date of Patent: June 4, 2013
    Assignee: Octrolix BV
    Inventor: Rene Gerrit Heideman
  • Patent number: 8354077
    Abstract: An integrated capillary electrophoresis system comprising a universal interface is disclosed. The universal interface includes one or more of the following structural elements: a chip assembly that receives a capillary electrophoresis CE chip; a fluidic interface for coupling fluids between the chip assembly and external sources or destinations; a first electrical interface for coupling power from an external source to the chip assembly; a second electrical interface for coupling electrical signals from the chip assembly to external analysis electronics; an optical interface for coupling optical signals between the chip assembly and external sources or destinations; and a docking station for uniting and spatially locating the various other structural elements.
    Type: Grant
    Filed: July 22, 2009
    Date of Patent: January 15, 2013
    Assignee: Octrolix BV
    Inventors: Albert Prak, Hendrik Harmen van den Vlekkert
  • Publication number: 20120257130
    Abstract: A wavelength filter based on a symmetric PLC circuit comprising an MZ filter-based demultiplexer, a waveguide resonator, and an MZ filter-based multiplexer is presented. The wavelength filter is tuned using pulse width modulated drive signals that enable fine wavelength control resolution. Embodiments in accordance with the present invention attain narrow spectral filtering capability over a wide wavelength tuning range. Further, embodiments in accordance with the present invention mitigate chromatic dispersion.
    Type: Application
    Filed: April 7, 2011
    Publication date: October 11, 2012
    Applicant: OCTROLIX BV
    Inventors: Edwin Jan Klein, Rene Gerrit Heideman
  • Publication number: 20120181451
    Abstract: A sensor for sensing a target chemical with high signal-to-noise ratio is disclosed. In some embodiments, the sensor comprises a sensing region that is optically coupled with an attenuation region. The sensing region receives optical stimulation that comprises light characterized by an excitation wavelength. In response to exposure to the target chemical, the sensing region fluoresces at a fluorescence wavelength. The attenuation region receives light from the fluorescing sensing region that includes light characterized by the fluorescence wavelength (i.e., signal) and light characterized by the excitation wavelength (i.e., noise). The attenuation region conveys the light to a detector that provides an electrical output signal based on the target chemical. While conveying the light, however, the attenuation region improves the signal-to-noise ratio by attenuating light characterized by the excitation wavelength more than light characterized by the fluorescence region.
    Type: Application
    Filed: January 31, 2012
    Publication date: July 19, 2012
    Applicant: OCTROLIX BV
    Inventor: Rene Gerrit Heideman