Patents Examined by Derek J Rosenau
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Patent number: 10637434Abstract: An elastic wave device includes a piezoelectric substrate, an IDT electrode on the piezoelectric substrate, a support member that is provided on the piezoelectric substrate so as to surround the IDT electrode, a cover that covers the support member, via electrodes that penetrate through the support member and the cover, and bumps that are bonded to the via electrodes. The IDT electrode is located in a hollow space that is enclosed by the piezoelectric substrate, the support member and the cover. A protruding portion extends along at least a portion of an outer peripheral edge of a surface of the cover that is on the opposite side from the piezoelectric substrate, and the protruding portion extends in a direction away from the piezoelectric substrate.Type: GrantFiled: October 4, 2017Date of Patent: April 28, 2020Assignee: MURATA MANUFACTURING CO., LTD.Inventors: Daisuke Fukuda, Shinichi Fukuda
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Patent number: 10630255Abstract: A piezoelectric resonator device having a sandwich structure is provided, which can avoid gas generation with reduced size or height. A crystal resonator includes a crystal resonator plate, a first sealing member and a second sealing member. A sealing-member-side first bonding pattern and a sealing-member-side second bonding pattern, both to be bonded to the crystal resonator plate, are formed respectively on the first and second sealing members. On the crystal resonator plate, a resonator-plate-side first bonding pattern to be bonded to the first sealing member is formed on a first main surface and a resonator-plate-side second bonding pattern to be bonded to the second sealing member is formed on a second main surface. The sealing-member-side first bonding pattern is bonded to the resonator-plate-side first bonding pattern, and the sealing-member-side second bonding pattern is bonded to the resonator-plate-side second bonding pattern, both by diffusion bonding.Type: GrantFiled: December 4, 2014Date of Patent: April 21, 2020Assignee: DAISHINKU CORPORATIONInventors: Minoru Iizuka, Takuya Kojo
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Patent number: 10622543Abstract: A bimorph disk actuator is disclosed including a substrate formed from a substrate composite material and having a first substrate surface and a second substrate surface, a first piezoceramic disk rigidly connected to the first substrate surface of the substrate, a second piezoceramic disk rigidly connected to the second substrate surface of the substrate, and a first composite ring formed from a first ring composite material, rigidly connected to the first substrate surface and surrounding the first piezoceramic disk. A second composite may be rigidly connected to the second substrate surface and surrounding the second piezoceramic disk. A method and apparatus for forming the bimorph disk actuator are also disclosed.Type: GrantFiled: January 11, 2017Date of Patent: April 14, 2020Assignee: The Boeing CompanyInventors: Dan J. Clingman, Aaron M. Sassoon
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Patent number: 10622965Abstract: A surface acoustic wave device assembly includes a collective board, first circuit portions provided on the collective board and respectively including first hot terminals and first ground terminals, a second circuit portion provided on the collective board and including second hot terminals and second ground terminals, and a power supply wiring provided on the collective board so as to surround the periphery of the first circuit portions and the second circuit portion. The first circuit portions include surface acoustic wave devices defining band pass filters. The second circuit portion defines a band pass filter. The first ground terminals and first hot terminals, and the second ground terminal are connected to the power supply wiring, the second hot terminals are not connected to the power supply wiring, and pass bands of the surface acoustic wave devices and a pass band of the band pass filter defined by the second circuit portion are the same or substantially the same.Type: GrantFiled: July 17, 2017Date of Patent: April 14, 2020Assignee: Murata Manufacturing Co., Ltd.Inventors: Toru Takeshita, Seiji Kai, Takashi Naka, Motoji Tsuda, Mitsuyoshi Hira
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Patent number: 10622539Abstract: The present invention relates to a sponge type piezoelectric element and a method of manufacturing the same, and specifically, to a piezoelectric element that is provided in a sponge form and thus can implement all of compressibility, flexibility, and durability and diversely applied to a wearable piezoelectric element, a ferroelectric element, and a sensor.Type: GrantFiled: December 29, 2016Date of Patent: April 14, 2020Assignee: UNIVERSITY-INDUSTRY FOUNDATION, YONSEI UNIVERSITYInventors: Sang Woo Lim, Eun Seok Oh
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Patent number: 10622966Abstract: Bulk acoustic wave resonators having a phononic crystal acoustic mirror are disclosed. An example integrated circuit package includes a bulk acoustic wave (BAW) resonator including a phononic crystal acoustic mirror (PCAM), the PCAM including a first arrangement of a first plurality of members in a first region, and a second arrangement of a second plurality of members in a second region, the first arrangement different from the second arrangement.Type: GrantFiled: July 26, 2017Date of Patent: April 14, 2020Assignee: TEXAS INSTRUMENTS INCORPORATEDInventors: Ting-Ta Yen, Bichoy Bahr
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Patent number: 10615329Abstract: A piezoelectric actuator includes a suspension plate, a piezoelectric ceramic plate, an outer frame and a bracket. The suspension plate is permitted to undergo a curvy vibration from a middle portion to a periphery portion. The piezoelectric ceramic plate is attached on the suspension plate. When a voltage is applied to the piezoelectric ceramic plate, the suspension plate is driven to undergo the curvy vibration. The outer frame is arranged around the suspension plate. The bracket is connected between the suspension plate and the outer frame for elastically supporting the suspension plate, and includes an intermediate part formed in a vacant space between the suspension plate and the outer frame and in parallel with the outer frame and the suspension plate, a first connecting part arranged between the intermediate part and the suspension plate, and a second connecting part arranged between the intermediate part and the outer frame.Type: GrantFiled: January 19, 2017Date of Patent: April 7, 2020Assignee: MICROJET TECHNOLOGY CO., LTD.Inventors: Shih-Chang Chen, Chi-Feng Huang, Yung-Lung Han, Jia-Yu Liao, Shou-Hung Chen, Che-Wei Huang, Hung-Hsin Liao, Chao-Chih Chen, Jheng-Wei Chen, Ying-Lun Chang, Chia-Hao Chang, Wei-Ming Lee
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Patent number: 10615720Abstract: The present disclosure provides a power generator, its manufacturing method, and an electronic device utilizing the power generator as its power source. The power generator includes a deformation unit and a piezoelectric unit. The deformation unit is coupled to the piezoelectric unit; and the deformation unit comprises a conductive polymer, which is configured to deform upon contacting moisture to thereby apply a mechanical force to the piezoelectric unit to thereby generate electricity.Type: GrantFiled: July 1, 2016Date of Patent: April 7, 2020Assignee: BOE TECHNOLOGY GROUP CO., LTD.Inventors: Jiuxia Yang, Feng Bai
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Patent number: 10615331Abstract: A crystal vibrator includes an AT-cut crystal substrate with a vibration portion having a principal surface and a peripheral portion surrounding and thinner than the vibration portion. An excitation electrode is formed on the principal surface and an extension electrode is electrically connected to the excitation electrode. The vibration portion has a first short-edge side lateral surface that abuts the peripheral portion at an acute angle and a tapered lateral surface adjacent to the first short-edge side lateral surface and inclined with respect to the X axis in the XZ? plane. The tapered lateral surface abuts the peripheral portion at an angle that is greater than the angle defined by the first short-edge side lateral surface. The extension electrode extends from the excitation electrode through the tapered lateral surface to a first short-edge side in a longitudinal direction parallel to the Z? axis.Type: GrantFiled: July 26, 2017Date of Patent: April 7, 2020Assignee: MURATA MANUFACTURING CO., LTD.Inventors: Hiroaki Kaida, Keiichi Kami, Kazuyuki Noto
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Stacked film, electronic device substrate, electronic device, and method of fabricating stacked film
Patent number: 10608162Abstract: A stacked film includes an oxide film including a ZrO2 film, a metal oxide film provided on the oxide film, and a predetermined metal film provided on the metal oxide film and having a single orientation, and the metal oxide film is a PtO film or a PdO film. In the case of this structure, the predetermined metal film has a single orientation, and characteristics of the piezoelectric film such as PZT formed on the predetermined metal film are improved. Therefore, excellent characteristics such as an increase in the driving force due to the piezoelectric film or a reduction in leakage current can be exhibited.Type: GrantFiled: May 19, 2017Date of Patent: March 31, 2020Assignee: TDK CORPORATIONInventor: Takao Noguchi -
Patent number: 10589317Abstract: Micromachined ultrasonic transducer (MUT) arrays capable of multiple resonant modes and techniques for operating them are described, for example to achieve both high frequency and low frequency operation in a same device. In embodiments, various sizes of piezoelectric membranes are fabricated for tuning resonance frequency across the membranes. The variously sized piezoelectric membranes are gradually transitioned across a length of the substrate to mitigate destructive interference between membranes oscillating in different modes and frequencies.Type: GrantFiled: April 12, 2017Date of Patent: March 17, 2020Assignee: FUJIFILM DIMATIX, INC.Inventor: Arman Hajati
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Patent number: 10586913Abstract: An electroactive actuator includes a polymer electrolyte and an electrode configured to apply an electric field to the polymer electrolyte, the polymer electrolyte includes a self-assembled block copolymer including a conductive block and a non-conductive block, a compound to form a single ion conductor with the self-assembled block copolymer, and a zwitterion. A mechanical device including the electroactive actuator and a polymer electrolyte are also disclosed.Type: GrantFiled: August 1, 2017Date of Patent: March 10, 2020Assignee: POSTECH ACADEMY-INDUSTRY FOUNDATIONInventors: Moon Jeong Park, Onnuri Kim
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Patent number: 10581346Abstract: A motor capable of holding a vibrator without increasing a dimension thereof in a traveling direction (driving direction) and without having looseness. The motor includes a vibrator and a holding unit that holds the vibrator, and moves the vibrator and a sliding member in frictional contact with the vibrator relative to each other by vibrating the vibrator. A pressurizing unit pressurizes the vibrator against the friction member, and holding springs generate a holding force for causing the holding unit to hold the vibrator. The holding unit is not disposed between the pressurizing unit and the vibrator. A holding direction of the holding force generated by the holding springs and a pressurizing direction of a pressurizing force generated by the pressurizing unit are substantially parallel to each other.Type: GrantFiled: October 5, 2017Date of Patent: March 3, 2020Assignee: CANON KABUSHIKI KAISHAInventors: Yasufumi Yamamoto, Toshiyuki Uehara
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Patent number: 10573800Abstract: The various embodiments described herein include methods, devices, and systems for fabricating and operating superconducting switch devices. In one aspect, an electrical circuit includes: (1) a switch device configured to switch between an on state and an off state in response to a first voltage, the switch device comprising: (a) a superconductor layer adapted to transition from a superconducting state to an insulating state in response to a first strain; and (b) a piezoelectric layer positioned adjacent to the superconductor layer, the piezoelectric layer configured to apply the first strain to the superconductor layer in response to the first voltage; (2) a voltage source electrically coupled to the piezoelectric layer of the switch device and configured to supply the first voltage; and (3) an output component coupled to the superconductor layer of the switch device.Type: GrantFiled: August 21, 2018Date of Patent: February 25, 2020Assignee: PSIQUANTUM CORP.Inventor: Faraz Najafi
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Patent number: 10574207Abstract: An improved electroacoustic transducer with an improved mode profile is provided. The transducer comprises a transversal velocity profile with a periodic structure and an edge structure flanking the periodic structure. The velocity profile also allows to suppress the SH wave mode. A dielectric material with a periodic structure contributes to the formation of the periodic structure of the velocity profile.Type: GrantFiled: December 16, 2014Date of Patent: February 25, 2020Assignee: SnapTrack, Inc.Inventors: Jiman Yoon, Philipp Michael Jäger
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Patent number: 10569303Abstract: An ultrasonic transducer includes a housing and a piezo element. The piezo element is inserted into a cavity of the housing and the housing has a covering which covers the cavity. A spring element is disposed between the covering and the piezo element. The spring element applies a spring force onto the piezo element and the covering has a plurality of conductor tracks or paths which contact through or plate through the covering. An assembly for insertion into the housing and a method for assembling an ultrasonic transducer are also provided.Type: GrantFiled: September 3, 2013Date of Patent: February 25, 2020Assignee: Systec Controls Mess- ung Regeltechnik GmbHInventor: Oliver Betz
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Patent number: 10574156Abstract: A vibration type actuator includes a first member that has a vibrator; a second member that extends in a predetermined direction and has a friction sliding surface where the vibrator is press-contacted; a third member that rotatably holds the second member with respect to an axis parallel to the predetermined direction; and a pressing unit that generates a first force for rotating the second member with respect to the axis relative to the third member. The first member is sandwiched between the second member and the third member by the first force. The first member is driven in a driving direction parallel to the predetermined direction relative to the second member by the vibration of the vibrator.Type: GrantFiled: June 10, 2016Date of Patent: February 25, 2020Assignee: Canon Kabushiki KaishaInventor: Kazuharu Osawa
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Patent number: 10567884Abstract: An electroacoustic transduction film including a polymer composite piezoelectric body in which piezoelectric body particles are dispersed in a viscoelastic matrix formed of a polymer material having viscoelasticity at a normal temperature, and thin film electrodes respectively laminated on both surfaces of the polymer composite piezoelectric body is included, and two or more of the electroacoustic transduction films are laminated, and a gap between the adjacent electroacoustic transduction films is less than or equal to 3 cm.Type: GrantFiled: April 20, 2018Date of Patent: February 18, 2020Assignee: FUJIFILM CorporationInventor: Tetsu Miyoshi
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Patent number: 10554192Abstract: An acoustic wave device and an electronic component are disclosed. The acoustic wave device includes a substrate, excitation electrodes on the substrate and a cover. The cover comprises a frame member on the substrate, and a lid member. The frame member surrounds the excitation electrodes and includes an inner wall, top surface and an outer wall. The lid member is disposed on the top surface, and includes first and second surfaces opposite to each other, and a descending part on the second surface. The second surface faces the substrate. The descending part extends downward from the second surface, and covers at least a part of the inner wall or at least a part of the outer wall. The electronic component includes the acoustic wave device on a mounting substrate via an electrically conductive bonding member, and molding resin covering the device.Type: GrantFiled: January 13, 2017Date of Patent: February 4, 2020Assignee: KYOCERA CORPORATIONInventors: Yasutaka Ohashi, Satoshi Asai, Masaru Nagata
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Patent number: 10536133Abstract: A surface acoustic wave (SAW) device includes: a base substrate; a piezo-electric material layer; at least one interdigitated electrode pair disposed on the piezo-electric material layer; and an acoustic wave suppression layer disposed between the piezo-electric material layer and the base substrate, the acoustic wave suppression layer being configured to suppress an acoustic wave propagating in a direction from the piezo-electric material layer to the base substrate.Type: GrantFiled: April 22, 2016Date of Patent: January 14, 2020Assignee: Avago Technologies International Sales Pte. LimitedInventors: Dariusz Burak, Suresh Sridaran, Stephen Roy Gilbert, Richard C. Ruby