Patents by Inventor Zebinah P. Masse

Zebinah P. Masse 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: 12622493
    Abstract: A band includes a latch body that is movable by pulling a tab. The latch body extends through an opening of the band and secures with a pin located on a head-mountable device. The band can detach from the head-mountable device by pulling the tab, which actuates the latch body and removes the latch body from the pin. A spring (or springs) can bias the latch body toward the opening, causing the latch body to enter the pin. An applied force to the tab can overcome the biasing force provided by the spring(s), and move the latch body away from, and out of, the pin.
    Type: Grant
    Filed: August 10, 2023
    Date of Patent: May 12, 2026
    Assignee: Apple Inc.
    Inventors: Yiwei Tao, Aiden D. Mossop, Benjamin A. Shaffer, Lauren D. Gerardi, Nicolas Lylyk, Paul J. Thompson, Richard P. Howarth, Robert V. Tang, Toria F. Yan, Wei-Ling Chang, Zebinah P. Masse
  • Patent number: 12399372
    Abstract: A support band for a wearable electronic device includes a first band portion, a second band portion, and an adjustment assembly. A cable is connected to the second band portion extends through a first passage and a second passage of a cable lock that is connected to the first band portion. The locking features allow movement of the cable in a tightening direction and restrain movement of the cable in a loosening direction. A cable pull engages a first portion of the cable between the first passage and the second passage. The cable pull moves away from the cable lock during an extension stroke, and the cable pull moves toward the cable lock during a return stroke.
    Type: Grant
    Filed: April 21, 2021
    Date of Patent: August 26, 2025
    Assignee: APPLE INC.
    Inventors: Zebinah P. Masse, Benjamin A. Stevenson, Ryan M. David, Evan A. Cernokus, Timon A. Wright, Heidi Williamson
  • Patent number: 11998091
    Abstract: A stretchable watch band can include braided strands that provide a comfortable fit around the wrist of the user. The watch band can stretch and conform to the user based on the elasticity within each strand and based on the ability of the strands to move relative to each other. End sections of the watch band can include attachment elements that securely connect the watch band to a housing of the watch. The end sections can be configured to releasable connect to the housing in a manner that is reliable and easy for a user. Additionally, the watch band can provide a smooth transition from the size and/or shape of the housing to a size and/or shape of a continuous section of the watch band. Additionally, the watch band can conceal portions thereof other than the braided strands when connected to the housing of the watch.
    Type: Grant
    Filed: May 4, 2023
    Date of Patent: June 4, 2024
    Assignee: Apple Inc.
    Inventors: Timothy S. Lui, Osamu Yabe, Zebinah P. Masse, Clayton J. McCoy, Benjamin A. Stevenson, Hsiang Hung Chen
  • Publication number: 20240081489
    Abstract: A band includes a latch body that is movable by pulling a tab. The latch body extends through an opening of the band and secures with a pin located on a head-mountable device. The band can detach from the head-mountable device by pulling the tab, which actuates the latch body and removes the latch body from the pin. A spring (or springs) can bias the latch body toward the opening, causing the latch body to enter the pin. An applied force to the tab can overcome the biasing force provided by the spring(s), and move the latch body away from, and out of, the pin.
    Type: Application
    Filed: August 10, 2023
    Publication date: March 14, 2024
    Inventors: Yiwei TAO, Aiden D. MOSSOP, Benjamin A. SHAFFER, Lauren D. GERARDI, Nicolas LYLYK, Paul J. THOMPSON, Richard P. HOWARTH, Robert V. TANG, Toria F. YAN, Wei-Ling CHANG, Zebinah P. MASSE
  • Patent number: 11769616
    Abstract: Cables are magnetically attracted to magnets in straps and other items such as electronic devices. The cables may contain signal lines to convey power and/or data. Magnetic material that is attracted to magnetic fields may be incorporated into the signal lines and/or other structures in the cables. The straps may have flexible magnets and/or other magnets extending along their lengths. The magnets of the straps create magnetic fields that attract the cables. Electronic devices may also have housings that contain magnets to attract the cables. Using magnetic attraction, cables can be removably attached to straps and other items during operation of an electronic device, thereby helping to prevent tangling of the cables.
    Type: Grant
    Filed: March 23, 2021
    Date of Patent: September 26, 2023
    Assignee: Apple Inc.
    Inventors: Toria F. Yan, Liam R. Martinez, Yi H. Hsieh, Yunhe Huang, Zebinah P. Masse
  • Publication number: 20230270215
    Abstract: A stretchable watch band can include braided strands that provide a comfortable fit around the wrist of the user. The watch band can stretch and conform to the user based on the elasticity within each strand and based on the ability of the strands to move relative to each other. End sections of the watch band can include attachment elements that securely connect the watch band to a housing of the watch. The end sections can be configured to releasable connect to the housing in a manner that is reliable and easy for a user. Additionally, the watch band can provide a smooth transition from the size and/or shape of the housing to a size and/or shape of a continuous section of the watch band. Additionally, the watch band can conceal portions thereof other than the braided strands when connected to the housing of the watch.
    Type: Application
    Filed: May 4, 2023
    Publication date: August 31, 2023
    Inventors: Timothy S. LUI, Osamu Yabe, Zebinah P. Masse, Clayton J. McCoy, Benjamin A. Stevenson, Hsiang Hung Chen
  • Patent number: 11666124
    Abstract: A stretchable watch band can include braided strands that provide a comfortable fit around the wrist of the user. The watch band can stretch and conform to the user based on the elasticity within each strand and based on the ability of the strands to move relative to each other. End sections of the watch band can include attachment elements that securely connect the watch band to a housing of the watch. The end sections can be configured to releasable connect to the housing in a manner that is reliable and easy for a user. Additionally, the watch band can provide a smooth transition from the size and/or shape of the housing to a size and/or shape of a continuous section of the watch band. Additionally, the watch band can conceal portions thereof other than the braided strands when connected to the housing of the watch.
    Type: Grant
    Filed: April 9, 2020
    Date of Patent: June 6, 2023
    Assignee: APPLE INC.
    Inventors: Timothy S. Lui, Osamu Yabe, Zebinah P. Masse, Clayton J. McCoy, Benjamin A. Stevenson, Hsiang Hung Chen
  • Patent number: 11241068
    Abstract: A stretchable watch band can include braided strands that provide a comfortable fit around the wrist of the user. The watch band can stretch and conform to the user based on the elasticity within each strand and based on the ability of the strands to move relative to each other. End sections of the watch band can include attachment elements that securely connect the watch band to a housing of the watch. The end sections can be configured to releasable connect to the housing in a manner that is reliable and easy for a user. Additionally, the watch band can provide a smooth transition from the size and/or shape of the housing to a size and/or shape of a continuous section of the watch band. Additionally, the watch band can conceal portions thereof other than the braided strands when connected to the housing of the watch.
    Type: Grant
    Filed: April 9, 2020
    Date of Patent: February 8, 2022
    Assignee: Apple Inc.
    Inventors: Timothy S. Lui, Osamu Yabe, Zebinah P. Masse, Clayton J. McCoy, Benjamin A. Stevenson, Hsiang Hung Chen
  • Publication number: 20210350963
    Abstract: Cables are magnetically attracted to magnets in straps and other items such as electronic devices. The cables may contain signal lines to convey power and/or data. Magnetic material that is attracted to magnetic fields may be incorporated into the signal lines and/or other structures in the cables. The straps may have flexible magnets and/or other magnets extending along their lengths. The magnets of the straps create magnetic fields that attract the cables. Electronic devices may also have housings that contain magnets to attract the cables. Using magnetic attraction, cables can be removably attached to straps and other items during operation of an electronic device, thereby helping to prevent tangling of the cables.
    Type: Application
    Filed: March 23, 2021
    Publication date: November 11, 2021
    Inventors: Toria F. Yan, Liam R. Martinez, Yi H. Hsieh, Yunhe Huang, Zebinah P. Masse
  • Patent number: 10877557
    Abstract: This disclosure relates to a VR glove capable of measuring the movement of individual finger and thumb bones. The VR glove can include a plurality of inertial measurement units (IMUs) to track the movement of one or more finger and/or hand sections. The IMUs can include one or more motion sensors, such as a gyroscope and an accelerometer, for measuring the orientation, position, and velocity of objects (e.g., finger bones) that the IMU can be attached. An IMU can be located proximate to a finger (or thumb) bone and can measure the inertial motion of the corresponding bone. In some examples, the VR glove may include magnetometers to determine the direction of the geo-magnetic field. The VR glove can also include one or more other electronic components, such as a plurality of electrodes for sensing the heading, enabling capacitive touch, and/or contact sensing between finger tips.
    Type: Grant
    Filed: August 28, 2018
    Date of Patent: December 29, 2020
    Assignee: Apple Inc.
    Inventors: John Greer Elias, Andrew D. Sterian, Anuranjini Pragada, Daniel D. Sunshine, Jean Hsiang-Chun Lu, Lia Mieko Uesato, Storrs Townsend Hoen, Zebinah P. Masse
  • Publication number: 20200323315
    Abstract: A stretchable watch band can include braided strands that provide a comfortable fit around the wrist of the user. The watch band can stretch and conform to the user based on the elasticity within each strand and based on the ability of the strands to move relative to each other. End sections of the watch band can include attachment elements that securely connect the watch band to a housing of the watch. The end sections can be configured to releasable connect to the housing in a manner that is reliable and easy for a user. Additionally, the watch band can provide a smooth transition from the size and/or shape of the housing to a size and/or shape of a continuous section of the watch band. Additionally, the watch band can conceal portions thereof other than the braided strands when connected to the housing of the watch.
    Type: Application
    Filed: April 9, 2020
    Publication date: October 15, 2020
    Inventors: Timothy S. LUI, Osamu YABE, Zebinah P. MASSE, Clayton J. MCCOY, Benjamin A. STEVENSON, Hsiang Hung CHEN
  • Publication number: 20200323316
    Abstract: A stretchable watch band can include braided strands that provide a comfortable fit around the wrist of the user. The watch band can stretch and conform to the user based on the elasticity within each strand and based on the ability of the strands to move relative to each other. End sections of the watch band can include attachment elements that securely connect the watch band to a housing of the watch. The end sections can be configured to releasable connect to the housing in a manner that is reliable and easy for a user. Additionally, the watch band can provide a smooth transition from the size and/or shape of the housing to a size and/or shape of a continuous section of the watch band. Additionally, the watch band can conceal portions thereof other than the braided strands when connected to the housing of the watch.
    Type: Application
    Filed: April 9, 2020
    Publication date: October 15, 2020
    Inventors: Timothy S. LUI, Osamu YABE, Zebinah P. MASSE, Clayton J. MCCOY, Benjamin A. STEVENSON, Hsiang Hung CHEN
  • Patent number: 10427374
    Abstract: Electronic equipment may include seamless spacer fabric. Seamless spacer fabric may be used as a protective case or cosmetic cover for an electronic device such as a speaker. A seamless spacer fabric may include a seamless fabric outer layer, a spacer fabric inner layer, and an adhesive layer that bonds the seamless outer layer to the spacer fabric inner layer. The spacer fabric layer may have a seam region where one portion of the spacer fabric layer is joined with another portion of the fabric layer. The seamless fabric outer layer may cover the seam region to hide it from view. One or more additional seam hiding layers or strips may be formed on opposing sides of the spacer fabric layer to cover the seam. The seamless spacer fabric may have an array of openings that extends uniformly around the perimeter of the seamless spacer fabric.
    Type: Grant
    Filed: March 13, 2018
    Date of Patent: October 1, 2019
    Assignee: Apple Inc.
    Inventors: Yohji Hamada, Siddhartha Hegde, Zebinah P. Masse, Rimple Bhatia, Peter F. Coxeter, Amit S. Barve, Donald L. Olmstead, Javier Mendez
  • Publication number: 20190101981
    Abstract: This disclosure relates to a VR glove capable of measuring the movement of individual finger and thumb bones. The VR glove can include a plurality of inertial measurement units (IMUs) to track the movement of one or more finger and/or hand sections. The IMUs can include one or more motion sensors, such as a gyroscope and an accelerometer, for measuring the orientation, position, and velocity of objects (e.g., finger bones) that the IMU can be attached. An IMU can be located proximate to a finger (or thumb) bone and can measure the inertial motion of the corresponding bone. In some examples, the VR glove may include magnetometers to determine the direction of the geo-magnetic field. The VR glove can also include one or more other electronic components, such as a plurality of electrodes for sensing the heading, enabling capacitive touch, and/or contact sensing between finger tips.
    Type: Application
    Filed: August 28, 2018
    Publication date: April 4, 2019
    Inventors: John Greer ELIAS, Andrew D. STERIAN, Anuranjini PRAGADA, Daniel D. SUNSHINE, Jean Hsiang-Chun LU, Lia Mieko UESATO, Storrs Townsend HOEN, Zebinah P. MASSE
  • Publication number: 20180272644
    Abstract: Electronic equipment may include seamless spacer fabric. Seamless spacer fabric may be used as a protective case or cosmetic cover for an electronic device such as a speaker. A seamless spacer fabric may include a seamless fabric outer layer, a spacer fabric inner layer, and an adhesive layer that bonds the seamless outer layer to the spacer fabric inner layer. The spacer fabric layer may have a seam region where one portion of the spacer fabric layer is joined with another portion of the fabric layer. The seamless fabric outer layer may cover the seam region to hide it from view. One or more additional seam hiding layers or strips may be formed on opposing sides of the spacer fabric layer to cover the seam. The seamless spacer fabric may have an array of openings that extends uniformly around the perimeter of the seamless spacer fabric.
    Type: Application
    Filed: March 13, 2018
    Publication date: September 27, 2018
    Inventors: Yohji Hamada, Siddhartha Hegde, Zebinah P. Masse, Rimple Bhatia, Peter F. Coxeter, Amit S. Barve, Donald L. Olmstead, Javier Mendez