Patents by Inventor Kaspar Ko

Kaspar Ko 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: 9613643
    Abstract: Alignment of a near field transducer (NFT) optical input coupler and a light emitting device involves providing excitation radiation from an excitation light source through an optical input coupler to the NFT and filtering output radiation from the NFT using a short wavelength pass optical filter. The optical input coupler is scanned through multiple positions while the photoluminescent radiation is detected. A first alignment position between the NFT input coupler and the excitation light source is identified based on the detected photoluminescent radiation. A light emitting device is scanned through multiple positions the light output is detected by a detector. A second alignment position between the light emitting device and the detector is identified. The first and second alignment positions are used to align the light emitting device with the optical input coupler.
    Type: Grant
    Filed: August 5, 2013
    Date of Patent: April 4, 2017
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Chubing Peng, Amit Sharma, Kaspar Ko
  • Patent number: 9396748
    Abstract: A method is provided for characterizing the peg region of a near-field transducer incorporated into a write head of a HAMR magnetic recorder. The method includes providing excitation radiation to one or more near-field transducers. The near-field transducers include an enlarged disk region and a peg region at least partially in contact with the enlarged disk region. The method further includes filtering output radiation from the near-field transducers by passing a portion of photoluminescent radiation emitted by the near-field transducers in response to the excitation radiation and substantially blocking the excitation radiation transmitted by the near-field transducers. The method also includes detecting the portion of photoluminescent radiation and characterizing the peg region of at least one of the plurality of near-field transducers.
    Type: Grant
    Filed: February 17, 2015
    Date of Patent: July 19, 2016
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Chubing Peng, Nils Gokemeijer, Yuhang Cheng, Kaspar Ko, Amit Sharma
  • Publication number: 20150187378
    Abstract: A method is provided for characterizing the peg region of a near-field transducer incorporated into a write head of a HAMR magnetic recorder. The method includes providing excitation radiation to one or more near-field transducers. The near-field transducers include an enlarged disk region and a peg region at least partially in contact with the enlarged disk region. The method further includes filtering output radiation from the near-field transducers by passing a portion of photoluminescent radiation emitted by the near-field transducers in response to the excitation radiation and substantially blocking the excitation radiation transmitted by the near-field transducers. The method also includes detecting the portion of photoluminescent radiation and characterizing the peg region of at least one of the plurality of near-field transducers.
    Type: Application
    Filed: February 17, 2015
    Publication date: July 2, 2015
    Inventors: Chubing Peng, Nils Gokemeijer, Yuhang Cheng, Kaspar Ko, Amit Sharma
  • Publication number: 20150063087
    Abstract: A method is provided for characterizing the peg region of a near-field transducer incorporated into a write head of a HAMR magnetic recorder. The method includes providing excitation radiation to one or more near-field transducers. The near-field transducers include an enlarged disk region and a peg region at least partially in contact with the enlarged disk region. The method further includes filtering output radiation from the near-field transducers by passing a portion of photoluminescent radiation emitted by the near-field transducers in response to the excitation radiation and substantially blocking the excitation radiation transmitted by the near-field transducers. The method also includes detecting the portion of photoluminescent radiation and characterizing the peg region of at least one of the plurality of near-field transducers.
    Type: Application
    Filed: September 3, 2013
    Publication date: March 5, 2015
    Applicant: Seagate Technology LLC
    Inventors: Chubing Peng, Nils Gokemeijer, Yuhang Cheng, Kaspar Ko, Amit Sharma
  • Patent number: 8958271
    Abstract: A method is provided for characterizing the peg region of a near-field transducer incorporated into a write head of a HAMR magnetic recorder. The method includes providing excitation radiation to one or more near-field transducers. The near-field transducers include an enlarged disk region and a peg region at least partially in contact with the enlarged disk region. The method further includes filtering output radiation from the near-field transducers by passing a portion of photoluminescent radiation emitted by the near-field transducers in response to the excitation radiation and substantially blocking the excitation radiation transmitted by the near-field transducers. The method also includes detecting the portion of photoluminescent radiation and characterizing the peg region of at least one of the plurality of near-field transducers.
    Type: Grant
    Filed: September 3, 2013
    Date of Patent: February 17, 2015
    Assignee: Seagate Technology LLC
    Inventors: Chubing Peng, Nils Gokemeijer, Yuhang Cheng, Kaspar Ko, Amit Sharma
  • Publication number: 20150036137
    Abstract: Alignment of a near field transducer (NFT) optical input coupler and a light emitting device involves providing excitation radiation from an excitation light source through an optical input coupler to the NFT and filtering output radiation from the NFT using a short wavelength pass optical filter. The optical input coupler is scanned through multiple positions while the photoluminescent radiation is detected. A first alignment position between the NFT input coupler and the excitation light source is identified based on the detected photoluminescent radiation. A light emitting device is scanned through multiple positions the light output is detected by a detector. A second alignment position between the light emitting device and the detector is identified. The first and second alignment positions are used to align the light emitting device with the optical input coupler.
    Type: Application
    Filed: August 5, 2013
    Publication date: February 5, 2015
    Applicant: Seagate Technology LLC
    Inventors: Chubing Peng, Amit Sharma, Kaspar Ko