Patents by Inventor Ming-Ting Wu
Ming-Ting Wu 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).
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Patent number: 11886734Abstract: A secure memory card includes a non-volatile memory device for storing data, which includes a specific address and a regular address different from the first specific address; a secure element for conducting a securing operation; and a non-volatile memory controller in communication with the non-volatile memory device and the secure element, adapted to receive a command from a host. The non-volatile memory controller interacts with the secure element to conduct the securing operation in response to the command from the host if the command from the host is secure-element control command. The secure-element control command is a single command taking a single instruction cycle and corresponds to the specific address. The non-volatile memory controller interacts with the non-volatile memory device while having no interaction with the secure element in response to the command from the host if the command from the host is a non-secure-element control command corresponding to the regular address.Type: GrantFiled: October 28, 2021Date of Patent: January 30, 2024Assignee: INFOKEYVAULT TECHNOLOGY CO., LTD.Inventors: Ming-Ting Wu, Neng-Jie Yu, Chihhung Lin
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Publication number: 20220337426Abstract: A digital key service device includes a casing, an input device, a data storage unit and a controlling unit. The input device is disposed near the casing or mounted on the casing, and configured to receive a user operation input. The data storage unit is disposed in the casing, and configured to store digital data and a digital key. The controlling unit is disposed in the casing, and configured to use the digital key to perform a digital key service or output the digital data to a host when authentication is complete. The authentication includes an operation verification procedure for verifying the user operation input. The authentication is complete when the controlling unit determines that the user operation input conforms to a preset timing-based input set.Type: ApplicationFiled: April 18, 2022Publication date: October 20, 2022Inventors: CHIA-HSIN CHENG, CHIH-PING HSIAO, MING-TING WU
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Publication number: 20220137867Abstract: A secure memory card includes a non-volatile memory device for storing data, which includes a specific address and a regular address different from the first specific address; a secure element for conducting a securing operation; and a non-volatile memory controller in communication with the non-volatile memory device and the secure element, adapted to receive a command from a host. The non-volatile memory controller interacts with the secure element to conduct the securing operation in response to the command from the host if the command from the host is secure-element control command. The secure-element control command is a single command taking a single instruction cycle and corresponds to the specific address. The non-volatile memory controller interacts with the non-volatile memory device while having no interaction with the secure element in response to the command from the host if the command from the host is a non-secure-element control command corresponding to the regular address.Type: ApplicationFiled: October 28, 2021Publication date: May 5, 2022Inventors: MING-TING WU, NENG-JIE YU, CHIHHUNG LIN
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Publication number: 20210172080Abstract: A counterfeiting deterrent device according to one implementation of the disclosure includes a plurality of layers formed by an additive process. Each of the layers may have a thickness of less than 100 microns. At least one of the layers has a series of indentations formed in an outer edge of the layer such that the indentations can be observed to verify that the device originated from a predetermined source. According to another implementation, a counterfeiting deterrent device includes at least one raised layer having outer edges in the shape of a logo. A light source is configured and arranged to shine a light through a slit in a substrate layer of the device and past an intermediate layer to light up the outer edge of the raised layer. The layers of the device are formed by an additive process and have a thickness of less than 100 microns each.Type: ApplicationFiled: October 13, 2020Publication date: June 10, 2021Applicant: Microfabrica Inc.Inventors: Gregory P. Schmitz, Michael S. Lockard, Ming-Ting Wu, Eric C. Miller, Adam L. Cohen
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Patent number: 10801119Abstract: A counterfeiting deterrent device according to one implementation of the disclosure includes a plurality of layers formed by an additive process. Each of the layers may have a thickness of less than 100 microns. At least one of the layers has a series of indentations formed in an outer edge of the layer such that the indentations can be observed to verify that the device originated from a predetermined source. According to another implementation, a counterfeiting deterrent device includes at least one raised layer having outer edges in the shape of a logo. A light source is configured and arranged to shine a light through a slit in a substrate layer of the device and past an intermediate layer to light up the outer edge of the raised layer. The layers of the device are formed by an additive process and have a thickness of less than 100 microns each.Type: GrantFiled: November 7, 2018Date of Patent: October 13, 2020Assignee: Microfabrica Inc.Inventors: Gregory P. Schmitz, Michael S. Lockard, Ming-Ting Wu, Eric C. Miller, Adam L. Cohen
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Patent number: 10686454Abstract: A clock generator circuit includes a charge pump unit, a low-pass filter unit, a current-controlled clock generator and a voltage-to-current converter unit. The charge pump unit provides a pump current at an output terminal thereof. The low-pass filter unit is coupled to the output terminal of the charge pump unit, and develops a control voltage at an output terminal thereof based on the pump current. The voltage-to-current converter unit is coupled to the output terminal of the low-pass filter unit, the current-controlled clock generator and the charge pump unit, and provides a control current to the current-controlled clock generator. Each of the low-pass filter unit and the voltage-to-current converter unit includes a resistive element.Type: GrantFiled: February 6, 2019Date of Patent: June 16, 2020Assignee: M31 TECHNOLOGY CORPORATIONInventor: Ming-Ting Wu
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Publication number: 20190372575Abstract: A clock generator circuit includes a charge pump unit, a low-pass filter unit, a current-controlled clock generator and a voltage-to-current converter unit. The charge pump unit provides a pump current at an output terminal thereof. The low-pass filter unit is coupled to the output terminal of the charge pump unit, and develops a control voltage at an output terminal thereof based on the pump current. The voltage-to-current converter unit is coupled to the output terminal of the low-pass filter unit, the current-controlled clock generator and the charge pump unit, and provides a control current to the current-controlled clock generator. Each of the low-pass filter unit and the voltage-to-current converter unit includes a resistive element.Type: ApplicationFiled: February 6, 2019Publication date: December 5, 2019Inventor: Ming-Ting WU
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Patent number: 10492822Abstract: Various embodiments of a tissue cutting device are described, such as a device with an elongate tube having a proximal end and a distal end and a central axis extending from the proximal end to the distal end; a first annular element at the distal end of the elongate tube, the first annular element having a flat portion at its distal end perpendicular to the central axis; and a second annular element at the distal end of the elongate tube and concentric with the first annular element, the second annular element having a flat portion at its distal end perpendicular to the central axis, at least one of the first or second annular elements rotatable about the central axis, the rotation causing the first annular element and the second annular element to pass each other to shear tissue.Type: GrantFiled: February 14, 2014Date of Patent: December 3, 2019Assignee: Microfabrica Inc.Inventors: Richard T. Chen, Ming-Ting Wu, Arun Veeramani, Vacit Arat, Gregory P. Schmitz
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Patent number: 10396806Abstract: A filter circuit includes an amplifier circuit, a resistor-capacitor (RC) network and a first voltage follower. The amplifier circuit has a first input terminal, a second input terminal and an output terminal. The amplifier circuit is configured to output a first output signal from the output terminal according to a first voltage signal at the first input terminal and a second voltage signal at the second input terminal. The RC network, coupled to the first input terminal, is configured to produce the first voltage signal at least in response to a first current signal applied to the first input terminal. The first voltage follower, coupled to the output terminal, is configured to receive the first output signal, and generate a first filtered signal in response to the first output signal.Type: GrantFiled: August 16, 2018Date of Patent: August 27, 2019Assignee: M31 TECHNOLOGY CORPORATIONInventors: Ching-Hsiang Chang, Ming-Ting Wu
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Publication number: 20190218680Abstract: A counterfeiting deterrent device according to one implementation of the disclosure includes a plurality of layers formed by an additive process. Each of the layers may have a thickness of less than 100 microns. At least one of the layers has a series of indentations formed in an outer edge of the layer such that the indentations can be observed to verify that the device originated from a predetermined source. According to another implementation, a counterfeiting deterrent device includes at least one raised layer having outer edges in the shape of a logo. A light source is configured and arranged to shine a light through a slit in a substrate layer of the device and past an intermediate layer to light up the outer edge of the raised layer. The layers of the device are formed by an additive process and have a thickness of less than 100 microns each.Type: ApplicationFiled: November 7, 2018Publication date: July 18, 2019Applicant: Microfabrica Inc.Inventors: Gregory P. Schmitz, Michael S. Lockard, Ming-Ting Wu, Eric C. Miller, Adam L. Cohen
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Patent number: 10064644Abstract: The present disclosure relates generally to the field of tissue removal and more particularly to methods and devices for use in medical applications involving selective tissue removal. One exemplary method includes the steps of providing a tissue cutting instrument capable of distinguishing between target tissue to be removed and non-target tissue, urging the instrument against the target tissue and the non-target tissue, and allowing the instrument to cut the target tissue while automatically avoiding cutting of non-target tissue. Various tools for carrying out this method are also described.Type: GrantFiled: August 5, 2014Date of Patent: September 4, 2018Assignee: Microfabrica Inc.Inventors: Gregory P. Schmitz, Eric C. Miller, Richard T. Chen, Ming-Ting Wu
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Publication number: 20180230614Abstract: A counterfeiting deterrent device according to one implementation of the disclosure includes a plurality of layers formed by an additive process. Each of the layers may have a thickness of less than 100 microns. At least one of the layers has a series of indentations formed in an outer edge of the layer such that the indentations can be observed to verify that the device originated from a predetermined source. According to another implementation, a counterfeiting deterrent device includes at least one raised layer having outer edges in the shape of a logo. A light source is configured and arranged to shine a light through a slit in a substrate layer of the device and past an intermediate layer to light up the outer edge of the raised layer. The layers of the device are formed by an additive process and have a thickness of less than 100 microns each.Type: ApplicationFiled: February 12, 2018Publication date: August 16, 2018Applicant: Microfabrica Inc.Inventors: Gregory P. Schmitz, Michael S. Lockard, Ming-Ting Wu, Eric C. Miller, Adam L. Cohen
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Publication number: 20170260636Abstract: A counterfeiting deterrent device according to one implementation of the disclosure includes a plurality of layers formed by an additive process. Each of the layers may have a thickness of less than 100 microns. At least one of the layers has a series of indentations formed in an outer edge of the layer such that the indentations can be observed to verify that the device originated from a predetermined source. According to another implementation, a counterfeiting deterrent device includes at least one raised layer having outer edges in the shape of a logo. A light source is configured and arranged to shine a light through a slit in a substrate layer of the device and past an intermediate layer to light up the outer edge of the raised layer. The layers of the device are formed by an additive process and have a thickness of less than 100 microns each.Type: ApplicationFiled: December 22, 2016Publication date: September 14, 2017Applicant: Microfabrica Inc.Inventors: Gregory P. Schmitz, Michael S. Lockard, Ming-Ting Wu, Eric C. Miller, Adam L. Cohen
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Publication number: 20170095264Abstract: Methods and devices are provided for use in medical applications involving tissue removal. One exemplary powered scissors device includes a distal housing having a fixed cutting arm located thereon, an elongate member coupled to the distal housing and configured to introduce the distal housing to a target tissue site of the subject, a rotatable blade rotatably mounted to the distal housing, the rotatable blade having at least one cutting element configured to cooperate with the fixed arm to shear tissue therebetween, a crown gear located at a distal end of an inner drive tube, and a first spur gear configured to inter-engage with the crown gear and coupled with the rotatable blade to allow the crown gear to drive the rotatable blade.Type: ApplicationFiled: October 12, 2016Publication date: April 6, 2017Inventors: Gregory P. SCHMITZ, Ming-Ting WU, Eric C. Miller, Juan Diego PEREA
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Patent number: 9567682Abstract: A counterfeiting deterrent device according to one implementation of the disclosure includes a plurality of layers formed by an additive process. Each of the layers may have a thickness of less than 100 microns. At least one of the layers has a series of indentations formed in an outer edge of the layer such that the indentations can be observed to verify that the device originated from a predetermined source. According to another implementation, a counterfeiting deterrent device includes at least one raised layer having outer edges in the shape of a logo. A light source is configured and arranged to shine a light through a slit in a substrate layer of the device and past an intermediate layer to light up the outer edge of the raised layer. The layers of the device are formed by an additive process and have a thickness of less than 100 microns each.Type: GrantFiled: March 21, 2016Date of Patent: February 14, 2017Assignee: Microfabrica Inc.Inventors: Gregory P. Schmitz, Michael S. Lockard, Ming-Ting Wu, Eric C. Miller, Adam L. Cohen
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Publication number: 20170014148Abstract: Medical devices for shearing tissue into small pieces are provided. One exemplary device includes oppositely rotating first and second rotatable members, each located at least partially within a distal housing. The device also includes first and second circular axle portions, and first and second blades that are directly adjacent to one another and positioned to partially overlap such that tissue may be sheared between the first and second blades, between the first blade and the second axle portion and between the second blade and the first axle portion. The rotatable members are configured to engage tissue from a target tissue site with teeth of the first and second blades, rotate towards one another and inwardly to direct tissue from the target tissue site through a tissue engaging opening and into an interior portion of the distal housing. Methods of fabricating and using the above device are also disclosed.Type: ApplicationFiled: September 27, 2016Publication date: January 19, 2017Inventors: Gregory P. SCHMITZ, Ming-Ting WU, Richard T. CHEN, Arun VEERAMANI
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Patent number: 9451977Abstract: Medical devices for shearing tissue into small pieces are provided. One exemplary device includes oppositely rotating first and second rotatable members, each located at least partially within a distal housing. The device also includes first and second circular axle portions, and first and second blades that are directly adjacent to one another and positioned to partially overlap such that tissue may be sheared between the first and second blades, between the first blade and the second axle portion and between the second blade and the first axle portion. The rotatable members are configured to engage tissue from a target tissue site with teeth of the first and second blades, rotate towards one another and inwardly to direct tissue from the target tissue site through a tissue engaging opening and into an interior portion of the distal housing. Methods of fabricating and using the above device are also disclosed.Type: GrantFiled: June 27, 2012Date of Patent: September 27, 2016Assignee: Microfabrica Inc.Inventors: Gregory P. Schmitz, Ming-Ting Wu, Richard T. Chen, Arun Veeramani
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Publication number: 20160200073Abstract: A counterfeiting deterrent device according to one implementation of the disclosure includes a plurality of layers formed by an additive process. Each of the layers may have a thickness of less than 100 microns. At least one of the layers has a series of indentations formed in an outer edge of the layer such that the indentations can be observed to verify that the device originated from a predetermined source. According to another implementation, a counterfeiting deterrent device includes at least one raised layer having outer edges in the shape of a logo. A light source is configured and arranged to shine a light through a slit in a substrate layer of the device and past an intermediate layer to light up the outer edge of the raised layer. The layers of the device are formed by an additive process and have a thickness of less than 100 microns each.Type: ApplicationFiled: March 21, 2016Publication date: July 14, 2016Inventors: Gregory P. Schmitz, Michael S. Lockard, Ming-Ting Wu, Eric C. Miller, Adam L. Cohen
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Publication number: 20160135831Abstract: A medical device for removing tissue from a subject is provided with a distal housing, an elongate member, a first rotatable member and first and second tissue shearing edges. The distal housing is configured with at least one tissue engaging opening. The elongate member is coupled to the distal housing and configured to introduce the distal housing to a target tissue site. The first rotatable member is located at least partially within the distal housing. The first and second tissue shearing edges are configured to cooperate to shear tissue therebetween. The first rotatable member is configured to engage tissue from the target tissue site, rotate towards the second tissue shearing edge. A first axis of the first rotatable member is offset from the longitudinal axis of the elongate member, lies in a common plane and forms an angle therewith of between 0 and 90 degrees. Methods are also disclosed.Type: ApplicationFiled: January 25, 2016Publication date: May 19, 2016Inventors: Gregory P. SCHMITZ, Juan Diego PEREA, Ming-Ting WU, Richard T. CHEN, Arun VEERAMANI
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Patent number: 9290854Abstract: A counterfeiting deterrent device according to one implementation of the disclosure includes a plurality of layers formed by an additive process. Each of the layers may have a thickness of less than 100 microns. At least one of the layers has a series of indentations formed in an outer edge of the layer such that the indentations can be observed to verify that the device originated from a predetermined source. According to another implementation, a counterfeiting deterrent device includes at least one raised layer having outer edges in the shape of a logo. A light source is configured and arranged to shine a light through a slit in a substrate layer of the device and past an intermediate layer to light up the outer edge of the raised layer. The layers of the device are formed by an additive process and have a thickness of less than 100 microns each.Type: GrantFiled: July 16, 2014Date of Patent: March 22, 2016Assignee: Microfabrica Inc.Inventors: Gregory P. Schmitz, Michael S. Lockard, Ming-Ting Wu, Eric C. Miller, Adam L. Cohen