Abstract: A document processing method comprising: outputting information for displaying a search keyword input field for searching for, based on an input search keyword, document information stored in a storage unit, a type display region for selectably displaying a type decided based on content of the document information, and a search keyword display region for displaying a search keyword based on a search history of the document information in past together with a number of search results of the document information searched for by the search keyword.
Abstract: A passive motion isolation system for motion-sensitive equipment is disclosed. The passive motion isolation system has a three-axis free motion platform mounted on a base subject to ambient motions. A vibration isolation subsystem is coupled between the motion-sensitive equipment and the three-axis free motion platform.
Type:
Application
Filed:
July 28, 2023
Publication date:
November 16, 2023
Applicant:
CALIENT TECHNOLOGIES, INC.
Inventors:
Shifu YUAN, Norm GARDNER, Ernest M. LEOS, Augie RAMIREZ, Nan LUO, Sajanish BALAGOPAL, Mike HOPKINS
Abstract: Disclosed are means and methods useful in selecting osteoarthritis patients most likely to respond to regenerative medicine therapy. One means of practicing the invention is to determine quantity and quality of inflammatory exosomes generated from the tissue adjacent to the injured cartilage. In another embodiment the invention provides detection of exosomes produced by inflammatory processes local or systemic to the body. In some embodiments therapies are tailored to the extent of inflammatory exosomes.
Type:
Application
Filed:
May 10, 2023
Publication date:
November 16, 2023
Applicant:
CREATIVE MEDICAL TECHNOLOGIES, INC.
Inventors:
Thomas ICHIM, Amit PATEL, Courtney BARTLETT
Abstract: Disclosed are methods, protocols and compositions of matter using for treatment of ovarian failure through administration of cells expressing FoxP3 as a monotherapy or as a facilitator to enhance therapeutic efficacy of cells and/or cytokines. In one embodiment FoxP3 expressing cells are concentrated from allogeneic umbilical cord blood, activated ex vivo with anti-CD3 and anti-CD28 antibodies and administered into the ovary alone or with regenerative cells such as stem cells. In one embodiment stem cells administered are of the CD105 expressing lineage.
Type:
Application
Filed:
May 3, 2023
Publication date:
November 16, 2023
Applicant:
CREATIVE MEDICAL TECHNOLOGIES, INC.
Inventors:
Thomas ICHIM, Amit PATEL, Courtney BARTLETT
Abstract: Various embodiments are disclosed for predicting true demand of network services that impose usage constraints. A computing environment may be configured to provide a network service for a user account, where a usage constraint for the network service is imposed on the user account. A truncated usage distribution of the network service may be generated based on usage history data. A demand curve of the network service may be generated for the user account, where the demand curve comprises at least a portion of the truncated usage distribution and a predicted usage of the at least one network service beyond the usage constraint. One or more actions may be performed based on the demand curve, such as increasing the usage constraint.
Abstract: A circuit for transmitting data includes a mode register data processing module, an external data transmission module, and an internal data transmission module provided in a memory array; the mode register data processing module is configured to write initial data into a reserved mode register in a mode register in response to a write enable command; and the external data transmission module is electrically connected to both the reserved mode register and the internal data transmission module, and is configured to write, in response to an enable signal, target data into the memory array via the internal data transmission module according to the initial data and a preset encoding rule, wherein a number of bytes of the target data is greater than a number of bytes of the initial data.
Abstract: A system and kit for capturing a 3D image of a body a user includes a plurality of pillar segments being configurable between an assembled configuration and a disassembled configuration. In the assembled configuration, the pillar segments are joined to form one or more upstanding sensing pillars. A plurality of sensors operable to capture image data are distributed along the one or more sensing pillars. The plurality of sensors have fields of view that are overlapping when supported on the sensing pillars. In the disassembled configuration, transportation of the pillar segments is facilitated. The system and kit may be suitable for use at a remote location. Additional functionalities may include a power storage unit, solar charging panels, climate control subsystem, and wireless communication submodule. In operation, the sensing pillars may be enclosed within an enclosure.
Abstract: A memory includes: an input circuit, configured to: receive an outside clock signal, and output a first test clock signal; a test path selection circuit, connected to the input circuit, and configured to output a second test clock signal according to a read clock command; and an output circuit, connected to the test path selection circuit, and configured to convert the second test clock signal into a third test clock signal and output the third test clock signal to outside of the memory. In the embodiments of the disclosure, a time delay of inputting a clock signal into each chip under test is quantified, to acquire an actual output delay of the chip, thereby improving the accuracy of parallel tests of a plurality of chips.
Abstract: Disclosed are gaming systems, methods and machines for a gaming cabinet configuration. In particular, the gaming systems, methods and machines may incorporate gaming cabinets that include one or more curved or arcuate screens, one or more candles integrated into the gaming cabinet, and/or one or more diffuse lighting elements to provide lighting features or effects.
Type:
Grant
Filed:
October 8, 2021
Date of Patent:
November 14, 2023
Assignee:
ARISTOCRAT TECHNOLOGIES, INC. (ATI)
Inventors:
Bruce Urban, Dominic DeMarco, Rajendrasinh Jadeja, James Stair, Joseph Kaminkow, Michael Bristol, Daniel Harden, Ariel Turgel, Cheng-Fu Hsieh, Mark Hearn, Elliot Ortiz, Jon Hanlin
Abstract: A signal generation circuit includes: a clock circuit configured to receive a flag signal and generate a clock signal; a control circuit configured to generate a control circuit; and a generation circuit connected to both the clock circuit and control circuit and configured to receive the clock signal, the control signal, and the flag signal and generate a target signal, wherein when the flag signal changes from a first level to a second level, the target signal changes from a third level to a fourth level, and after the target signal is maintained at the fourth level for a target duration, the target signal changes from the fourth level to the third level; and the generation circuit is further configured to determine the target duration according to the clock signal and control signal.
Abstract: A closed leveling system for a vehicle includes a suspension system having a number of corners, and each corner includes at least one strut to be coupled to at least one wheel of the vehicle. The closed leveling system also includes a sensor and a master controller in communication with the sensor. The master controller includes a memory device including computer-readable instructions, and a processor in communication with the memory device. The leveling system also includes a power module assembly including a reservoir containing compressible liquid, a pump configured to withdraw the compressible liquid from the reservoir, a dump valve configured to transfer the compressible liquid into the reservoir, and isolation valves. Each isolation valve is associated with at least one corner. The leveling system further includes secondary volumes in selective fluid communication with the reservoir. Each secondary volume is associated with one isolation valve and at least one corner.
Abstract: A circuit for detecting a state of an anti-fuse storage unit includes a first current module, a second current module, and a comparator. The first current module has a first end connected to an anti-fuse storage unit array through a first node and a second end connected to a second node. The first current module is configured to output a detection current through the second node. The second current module has a first end connected to a first end of a reference resistor through a third node and a second end connected to a fourth node. A second end of the reference resistor is grounded. The second current module is configured to output a reference current through the fourth node. The comparator has a first input end connected to the second node and a second input end connected to the fourth node.
Abstract: Operation of a device may be influenced based on whether the device is being tilted or has been picked up. Accelerometers gather accelerometer data that is processed to determine a reference pose. The reference pose is determined by analyzing the accelerometer data to determine “quiet” periods of accelerometer data. A moving average of the quiet periods is used to determine the reference pose. One or more override techniques may be used to compensate for noise in the accelerometer data, such as produced by the device playing music. The accelerometer data may be processed to compensate for other influences, such as intended movement of the device by one or more actuators. This processed data is compared to the reference pose. Responsive to the processed data exceeding a threshold value, the device may stop moving the one or more actuators, present output on a user interface, and so forth.
Abstract: A rapid thermal processing method and a rapid thermal processing device are provided. The rapid thermal processing method includes the following operations. A wafer is provided. A first heating operation is performed on the wafer to heat the wafer to a first temperature. The wafer is controlled to start rotating. The first temperature is maintained for a first predetermined time. A second heating operation is performed on the wafer to heat the wafer from the first temperature to a second temperature, and the second temperature is maintained for a second predetermined time. A third heating operation is performed on the wafer to heat the wafer from the second temperature to a third temperature, and the third temperature is maintained for a third predetermined time.
Abstract: A bandgap reference circuit includes a feedback transistor, a reference setting circuit, an amplification circuit and an output transistor. A source of the feedback transistor is configured to connect to a first power supply, and a drain of the feedback transistor is configured to connect to a first node. The reference setting circuit includes a first bridge arm and a second bridge arm which are connected in parallel. An inverting input terminal of the amplification circuit is connected to the first bridge arm, and a non-inverting input terminal of the amplification circuit is connected to the second bridge arm. A gate of the output transistor is connected to an output terminal of the amplification circuit, and a source of the output transistor is connected to the first power supply.