Intellex Acquires Expert by Big Village

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Expert Details

Piezoelectric Ultrasonic Transducers and Sensors: Design, Prototyping and Measurement

ID: 733452 New Jersey, USA

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He is expert in the design of ultrasonic transducers (MHz range medical/industrial, acoustic or vibration sensor/actuators). Typical applications are, medical ultrasound imaging probes, medical diagnostic sensors, medical ablation tools by high energy focused ultrasound, eye surgery sensors, eye motion sensors, dental imaging, human skin stress sensors, air ultrasound for distance measurement, liquid flow meters, accelerometers etc.
He has particular expertise in the use of theoretical models and experiments to develop new design principle for design of transducers and sensors. These include new impedance matching layers for ultrasonic probes, including unique mass-spring matching layers (invented) using polymer/metal -- much thinner than conventional quarter wavelength -- providing wide bandwidth with feasibility of mass production.

He is also an expert in the new design of ultrasonic probe by use of backing absorbers using polymer metal multilayer (invented) replacing conventional metal powder/binder combination, with feature of theoretical design, reproducible and mass production feasible. His expertise areas include the design of complex multilayer transducers with simulation programs for which he wrote 700 programs from his own theoretical derivation -- not borrowing a published model. Therefore he understands acoustic transducers from deep physics. He can modify or simplify acoustic transducers with great freedom, potentially leading to many creative ideas.

He is an expert in pioneered device applications of piezoelectric polymer PVDF film. He has worked in this field for over 40 years. These device applications include cylindrical film air ultrasonic transducers in the 40-80 kHz range, which are commercially being sold as input devices of hand written patterns.
Expert's inventions also include a large area corrugated PVDF ultrasonic air transducer providing very large acoustic pressure, used as ultrasonic range finder.
Another field is multilayer sensor/actuator for stress-strain detection or vibrator or acoustic radiator. He wrote theoretical models/programs of multilayer sensor/actuator and is a design expert of arbitrarily complicated layer structure. He has also pioneered theories and experiments of air flow generation from PVDF bimorph vibrator fan.

Expert's specialty areas include the design of electrical matching networks for ultrasonic transducer enhancing sensitivity (x10) and widening or tailoring bandwidth. Generally it is known that matching network improves performance. However, when a single transducer is used as transmitter and receiver for reflection echo detection, usually a single matching network is added to the transducer and TR switch is used for switching from transmitter to receiver.
The expert's unique, novel method is (1) measurement of electrical impedance of the transducer, (2) Design of two separated networks with most suitable performance for transmitter and receiver respectively, (3) These networks are combined by TR switch for single transducer without reduction or interference of performance of both networks, so that frequency response can be synthesized. All these networks and transducer performance are designed by simulation programs. The simulation programs include connection cable effect (transmission line), all of which were derived from theoretical analysis.

The expert's special design capabilities include application of lithium niobate (LiNbO3 ) vibrator for online detection of density and viscosity, important field of automobile sensors, which include theoretical analysis of density/viscosity effect to vibrator. Almost all designers of this field use equivalent circuit model for liquid parameter measurement but transducer design is not included. The expert's design uses physics based theory and material and structural parameters of transducer, with transducer design, such as feature of crystal cut directions, temperature coefficient of elasticity leading to temperature dependence of resonance, device length/width effect, etc.

The expert's specialties includes analysis of acoustic beam forming for ultrasonic wave. When multiple radiation sources are used, the beam direction and intensity distribution are controlled by phase of each radiation source. The expert have simulation program predicting distribution of near-field region and far filed, which was build by himself from theoretical principle of acoustic radiation. Therefore, complicated near field patterns can be predicted and combined with design of ultrasonic transducers to predict system performance of imaging equipment.

The expert has many measurement equipment and components, which can be used for measurement of acoustic velocity of materials, input impedance of ultrasonic transducer, flow velocity from time of flight, observation of deflection or displacement with microscope or video camera, determination of acoustic parameters of thin film from influence to transducer performance from parameter fitting combined with simulation program.
He has great numbers of piezoelectric materials and components, various thickness/size of PZT, PVDF, LiNbO3, other polymer films and finished devices, semiconductor lasers / LED and optical detectors, which can be used for measurement of various parameters depends on specific need.

The expert has 50 years experience of material processing experienced at several laboratories. He is proficient for manipulation of microns to submillimeter scale devices and fabrication under microscope, which include layer to layer epoxying, lead wire attachment by conductive paint/epoxy, microscope inspection of connection failure or shorting or observation of surface condition. He does poling of piezoelectric materials. He also does machine work for building his own experimental set up, device fabrication or device holder and he has table top lathe, grinder, drill, high speed rotation tools, all for small devices fabrication.

The expert builds interface circuits necessary for measurement of the devices under test or unique device operation combined with the specific circuit. This capability makes it possible to enhance measurement range or accuracy or better signal to noise ratio, or some unique operation of special devices combine with unique circuit.

If problems, requirements or specifications on new product development are provided, the solution may be by new ideas, and theoretical prediction will be proposed and experimental confirmation work will be done. Great number of measurement equipment/materials/tools/transducer/sensors are readily available for investigations, all of which were used during his 30 years research/development efforts, and therefore experimental investigations can be efficient and quickly or effectively done.

Education

Year Degree Subject Institution
Year: 1968 Degree: Ph.D Subject: Physics: High frequency phenomena in semiconductors Institution: Dept. Physics Tokyo University Japan
Year: 1962 Degree: Research Associate Subject: Microwave oscillation and detection Institution: Dept Engineering Shizuoka Univ. Japan
Year: 1960 Degree: B.S Electrical engineering Subject: Electromagnetics, electronic materials, circuit Institution: Dept Engineering Shizuoka Univ. Japan

Work History

Years Employer Title Department
Years: 2019 to 2020 Employer: Transonic Systems Title: Consultant Department: Automatic ultrasonic transducer production
Responsibilities:
Design of front matching layers of ultrasonic transducers using polymer and metal layers (mass-spring resonance which is his invention)
Years Employer Title Department
Years: 2015 to 2016 Employer: TE Connectivity Title: Consultant Department: Piezoelectric Transducer
Responsibilities:
Expert taught the design and basic concept of ultrasonic transducers to engineers. He also developed new products using PZT and its composite for phased array ultrasonic transducers.
Years Employer Title Department
Years: 2008 to 2015 Employer: Measurement Specialties Title: Principal Innovator Department: Piezoelectric Transducers
Responsibilities:
Expert developed new product of ultrasonic transducers with new concepts of front matching layer using mass-spring principle. He taught basic theories of acoustics to engineers.
Years Employer Title Department
Years: 1992 to 2008 Employer: Elf Atochem-AMP Sensors Title: Senior Research Scientist Department: Piezo-film Sensors
Responsibilities:
He designed and developed customer-oriented products. He also researched new applications of PVDF film devices.
Years Employer Title Department
Years: 1990 to 1992 Employer: Atochem Sensors Title: Consultant Department: Piezo-film Sensors
Responsibilities:
Expert designed and developed customer-oriented products of PVDF film devices.
Years Employer Title Department
Years: 1982 to 1990 Employer: RCA David Sernov Research Center (later SRI) Title: Technical Staff Member Department: Ultrasonic Devices and Optoelectronic Devices
Responsibilities:
Expert conducted R&D into new ultrasonic video disk recording methods, as well as new concepts of laser diodes and quantum well memory.
Years Employer Title Department
Years: 1962 to 1982 Employer: RCA Laboratories, Tokyo, Japan Title: Technical Staff Member Department: Basic Research Division
Responsibilities:
Expert pioneered applications of polymer piezoelectric film PVDF, variable delay surface acoustic devices, temperature effect compensated surface acoustic wave devices, ultrasonic variable delay devices, semiconductor physics (microwave plasma effect), and magnetic microwave devices.

International Experience

Years Country / Region Summary
Years: 1956 to 1962 Country / Region: Japan Summary: Expert was educated in Shizuoka University (Japan).
Years: 1962 to 1982 Country / Region: Japan Summary: Expert worked as a researcher in RCA Labs (Tokyo, Japan).

Career Accomplishments

Associations / Societies
Member of IECE of Japan (1966- 1982)
Member of Physical society of Japan (1966 - 1982)
Member of acoustic society of Japan (1975 - 1982)
Member of IEEE (1982 - 2014)
Life member of IEEE (2014 - 2016)
Awards / Recognition
RCA Laboratories' Outstanding Achievement Awards in four subjects:
1 First PVDF bimorph actuator
2. Novel surface acoustic wave device
3. Observation of new electromagnetic waves in magnetized semiconductors
4. Semiconductor physics in solid state plasma
Publications and Patents Summary
Expert has published about 50 peer reviewed journal papers and has 57 US patents.

Language Skills

Language Proficiency
Japanese Native

Fields of Expertise

wave plate, acoustic imaging, transfer impedance, acoustic detection, acoustic sensor, quarter-wave plate, acoustic insulation, characteristic impedance, piezoelectric transducer, piezoelectric ceramic, ultrasonic device, ultrasonic rangefinder, electroacoustics, acoustoelectronic device, bimorph cell, piezoelectric sensor, piezoelectric film, acoustic material, acoustic measurement, piezoelectric polymer film, broadband network, transmission cable, ultrasonic transducer circuit, electric network analysis, electrical impedance, lithium niobate, automotive sensor, viscous liquid, density sensor, ultrasonic wave, imaging, near-field region, acoustic analysis, phased array, binocular microscope, depth perception, displacement (quantity), thin film, speed of sound, flow rate, electric impedance measurement, electronic equipment, pressure-sensitive tape, acrylic adhesive material, epoxy bonding, stereo microscope, material processing, transmission-line circuit, radio frequency circuit, circuit analysis, electric circuit, amplifier circuit, analog circuit, geometric optics, acoustical instrumentation, microwave waveguide, vibration sensor, force sensor, position sensor, microwave cable, acoustics, laser optics, microwave transmission, liquid level sensor, engineering acoustics, sound wave, ultrasonic transducer, touch sensor, surface acoustic wave, optoelectronics science, magnetic sensor, PZT and its composite, PVDF-TrFE copolymer, piezo-film ultrasonic transducers, PZT composite transducer, PZT composite analysis, piezo copolymer transducers

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