Patent classifications
G01H11/08
Combined corrugated piezoelectric microphone and corrugated piezoelectric vibration sensor
A MicroElectroMechanical Structure (MEMS) accelerometer includes a piezoelectric membrane including at least one electrode and an inertial mass, the piezoelectric membrane being affixed to a holder; and a circuit for evaluating sums and differences of signals associated with the at least one electrode to determine a three-dimensional acceleration direction, wherein the at least one electrode includes a segmented electrode, and wherein the segmented electrode includes four segmentation zones.
Combined corrugated piezoelectric microphone and corrugated piezoelectric vibration sensor
A MicroElectroMechanical Structure (MEMS) accelerometer includes a piezoelectric membrane including at least one electrode and an inertial mass, the piezoelectric membrane being affixed to a holder; and a circuit for evaluating sums and differences of signals associated with the at least one electrode to determine a three-dimensional acceleration direction, wherein the at least one electrode includes a segmented electrode, and wherein the segmented electrode includes four segmentation zones.
Transparent ultrasound transducer with light beam shaping and the method for assembling the same
A transparent ultrasound transducer device for multi-mode optical imaging on a target is provided. The device includes a transparent piezoelectric transducer, one or more wires, and an optical lens. The transparent piezoelectric transducer of a first acoustic impedance is configured to receive acoustic waves from the target. The transparent piezoelectric transducer has a first surface and a second surface. The first surface and the second surface are coated with transparent electrically conductive coatings. The optical lens is contacted with and optically coupled to the first surface of the transparent piezoelectric transducer. The optical lens is made of a material with a second acoustic impedance, and the first and second acoustic impedances are substantially similar to minimize an acoustic impedance mismatch such that sensitivity of the device is improved.
Artificial Cochlea for Mechanical Processing of Sound
Described herein are bio-inspired acoustic bandpass sensors with a user-defined range of frequencies mimicking the geometric structure of a human's basilar membrane to capture infrasonic, sonic or ultrasonic waves per design with a target frequency range for a specific application and methods of making same.
CANTILEVER ARRAY
According to one embodiment, a cantilever array includes a plurality of cantilever pairs. Each of the cantilever pairs includes a first cantilever and a second cantilever facing the first cantilever while having a gap, and which are arrayed in a direction orthogonal to a facing direction. Positions of the gaps of the cantilever pairs shift from each other when viewing in an array direction.
CANTILEVER ARRAY
According to one embodiment, a cantilever array includes a plurality of cantilever pairs. Each of the cantilever pairs includes a first cantilever and a second cantilever facing the first cantilever while having a gap, and which are arrayed in a direction orthogonal to a facing direction. Positions of the gaps of the cantilever pairs shift from each other when viewing in an array direction.
APPARATUS AND METHOD FOR DESIGNING AMPLIFIER
An apparatus and method for designing an amplifier are proposed. The method may include measuring a frequency of an object by coming into contact with the object wherein the object generates vibration energy, and calculating a natural frequency of the object. The method may also include, in correspondence to a selection of one vibration energy amplifier from among a plurality of vibration energy amplifiers that are preset, loading specification information about the selected vibration energy amplifier. The method may further include specifying at least one parameter in the specification information of the vibration energy amplifier so as to coincide with the natural frequency of the object.
DATA CLASSIFICATION APPARATUS AND METHOD
A data classification apparatus and method for providing expanded information are proposed. The method may include collecting time-series sensor data from an Internet-of-Things (IoT) sensor provided in or installable in a machine, and generating first processed data in which the time-series sensor data is highlighted. The method may also include generating, based on the first processed data, second processed data for determining a state of the machine, and classifying the state of the machine, based on the second processed data. The state of the machine may include one or more of a first state in which the machine is active and the first processed data is included in a non-pattern section in which no pattern is visualized, and a second state in which the machine is active and the first processed data is included in a pattern section in which an arbitrary pattern is visualized.
ULTRASONIC PROBE AND ULTRASONIC INSPECTION DEVICE
According to one embodiment, an ultrasonic probe includes a first member and a first vibrating element. The first member includes at least one selected from the group consisting of metal and ceramic. The first vibrating element includes a first electrode, a piezoelectric layer provided between the first electrode and the first member, and a second electrode provided between the piezoelectric layer and the first member and being in contact with the first member.
Sensor module
According to one embodiment, a sensor module includes a sensor and a diagnosis circuit. The sensor includes piezoelectric transducers and switches. The piezoelectric transducers have different resonance frequencies. The switches are provided to correspond to the piezoelectric transducers, respectively. Each of the switches outputs an output signal corresponding to a voltage generated by an inverse piezoelectric effect of a corresponding piezoelectric transducer of the piezoelectric transducers. The diagnosis circuit diagnoses, based on a difference in pattern of the output signal, whether vibration has newly occurred in the sensor, and switch an output destination of the output signal of the sensor according to a result of the diagnosis.