A memory array includes a memory layer that has hysteretic domains with domain axes extending between first and second memory layer surfaces. A conductive layer on the first memory layer surface has anisotropically increased electrical conductivity in a thickness direction. A movable conductive probe has a contact area on the conductive layer and moves to access a selected hysteretic domain.
Methods, Apparatus And Systems For Enhanced Synthetic Vision And Multi-Sensor Data Fusion To Improve Operational Capabilities Of Unmanned Aerial Vehicles
Philippe Roy - North Andover MA, US Jun Yu - Winchester MA, US David S. Linden - Dexter MI, US
Assignee:
Honeywell International Inc. - Morristown NJ
International Classification:
G05D 1/00
US Classification:
701 28, 701 33, 701 36, 2441581
Abstract:
The invention provides, in some aspects, improved methods, apparatus and systems for unmanned aerial vehicle (UAV) operation that utilize multiple data links between a UAV and a control station in order to transmit control and actionable intelligence data. Such methods, apparatus and systems can be used, for example, to monitor a selected environment (e. g. , an oil field or other terrain/environment of interest). In a related aspect, such data links comprise satellite communication channels.
Large-Scale Uv-C Inactivation Devices And Simulations Of The Same
- Cheswick PA, US Andrew Veter - Pittsburgh PA, US Keith Huthmacher - Pittsburgh PA, US Peter Gilgunn - Pittsburgh PA, US James Nelson - Rillton PA, US David Malarik - Worthington PA, US Jun Yu - Pittsburgh PA, US
International Classification:
A61L 9/20
Abstract:
An UV-C device may include several UV-C light sources (e.g., UV-C LEDs) and such UV-C LEDs may have UV-C reflecting structures arranged to direct UV-C in a particular direction and at a particular size and shape. Doing so may, for example, increase the UV-C in a particular direction or working area. A UV-C generating device may be utilized in an air stream, such as an air duct, to sterilize air from that air stream. Multiple UV-C inactivation devices may be coupled in series and placed into a single housing for in order to increase the efficacy of the UV-C inactivation device. The inlet of the device may draw air using an inlet module attachment (e.g., a hood with one or more than one inlet hood) and may output air using an outlet module attachment (e.g., a duct to deliver air to an outflow air duct). Computational fluid dynamic software may be provided where UV-C inactivation devices may be positioned (e.g., manually or autonomously by an adaptive algorithm) to determine impact on airflow against various pathogens (e.g., and/or SARS-CoV-2).
Uv-C Virus Inactivation Devices And Supressing Sound And Operating The Same
- Cheswick PA, US Andrew Veter - Pittsburgh PA, US Keith Huthmacher - Pittsburgh PA, US Peter Gilgunn - Pittsburgh PA, US James Nelson - Rillton PA, US David Malarik - Worthington PA, US Jun Yu - Pittsburgh PA, US
International Classification:
A61L 2/10 F24F 13/20 F24F 8/22
Abstract:
An UV-C device may include several UV-C light sources (e.g., UV-C LEDs) and such UV-C LEDs may have UV-C reflecting structures arranged to direct UV-C in a particular direction and at a particular size and shape. Doing so may, for example, increase the UV-C in a particular direction or working area. A UV-C generating device may be utilized in an air stream, such as an air duct, to sterilize air from that air stream. Sound suppression compartments may be placed around a UV-C generating device inlet and/or a device outlet to reduce sound from the UV-C generating device. Human perceivable (e.g., audible, tactile, and/or visual) notifications may be utilized to provide notification of different modes of operation and/or different efficacy levels (e.g., percent ranges of inactivation of a particular or multiple particular viruses, bacteria, spores, etc.
Systems And Methods For Efficient Air Sterilization Without Circulation Unsanitized Air
- Cheswick PA, US Andrew Veter - Pittsburgh PA, US Keith Huthmacher - Pittsburgh PA, US Peter Gilgunn - Pittsburgh PA, US James Nelson - Rillton PA, US David Malarik - Worthington PA, US Jun Yu - Pittsburgh PA, US
International Classification:
A61L 9/20
Abstract:
An air sanitization device is provided where a UV-C generator applied UV-C to infected air for sterilization and then the sterilized air is used to cool heat sinks attached to the UV-C. One or more fans can be utilized to push and/or pull air through the device. For example, the fans may create airflow in the device above, for example 200 liters per minute or above 400 liters per minute. Accordingly, a closed air system with a fan may push air through a UV-C generation device to sanitize air and the sanitized air may be pushed over a heat sink attached to the UV-C generation device and then pushed out of the closed air system into the environment. Thus, sanitized air may be circulated by the fan while being air cooled in a manner that does not circulate contaminated air.
Increasing Efficiency Of Uv-C Inactivation Devices
- Cheswick PA, US Andrew Veter - Pittsburgh PA, US Keith Huthmacher - Pittsburgh PA, US Peter Gilgunn - Pittsburgh PA, US James Nelson - Rillton PA, US David Malarik - Worthington PA, US Jun Yu - Pittsburgh PA, US
International Classification:
A61L 9/20 A61L 2/10 A61L 2/24
Abstract:
An UV-C device may include several UV-C light sources (e.g., UV-C LEDs) and such UV-C LEDs may have UV-C reflecting structures arranged to direct UV-C in a particular direction and at a particular size and shape. Doing so may, for example, increase the UV-C in a particular direction or working area. A UV-C generating device may be utilized in an air stream, such as an air duct, to sterilize air from that air stream. Air may be pushed out of an annulus at the end of an air inactivation device and an annulus outlet cone may be provided in the middle of the annulus to assist, for example, inactivated air in moving smoothly away from the device and reduce pressure at the annulus exit. A UV-C inactivation tube may have UV-C reflective structures at each end to permit air to flow through the tube while reflecting UV-C light back into the tube.
Dynamic Magnetic Stripe Communications Device For Cards And Devices
- Cheswick PA, US Jun Yu - Pittsburgh PA, US Allen D. Bowers - Aspenwall PA, US
International Classification:
G06K 19/06
Abstract:
A device, such as a flexible card, may include a dynamic magnetic stripe emulator operable to transmit magnetic stripe information, a first magnet adjacent to a first side of the dynamic magnetic stripe emulator, and a second magnet adjacent to a second side of the dynamic magnetic stripe emulator.
Nov 2013 to 2000 Reservations ManagerHyatt Regency Irvine Irvine, CA May 2006 to Nov 2013 Reservations Manager/PBX ManagerHyatt Regency Irvine Irvine, CA Nov 2004 to May 2006 Assistant Executive HousekeeperHyatt Regency Irvine Irvine, CA Jun 2004 to Nov 2004 Corporation Management TraineeHyatt Regency Orange County Garden Grove, CA Feb 2003 to Jun 2004 Front Desk AgentHyatt Regency Waikiki Spa & Resort Honolulu, HI Jun 2000 to Jan 2003 Spa CoordinatorWangHu Hotel Hangzhou, CN Jun 1999 to Sep 1999 Housekeeping Supervisor
Education:
Hawaii Pacific University Honolulu, HI Mar 2000 Bachelor of Science in Business Administration
Feb 2008 to 2000 Research Assistant ProfessorBoston University School of Medicine
1998 to 2000 Research AssoicateBoston University School of Medicine
2009 to 2011 Research AssistantBoston University School of Medicine
Jan 2004 to Feb 2008 Postdoctoral FellowBoston University School of Medicine
1998 to 2004 Graduate ResearcherBoston University School of Medicine
1999 to 2001 Teaching assistant
Education:
Boston University School of Medicine Boston, MA 1998 to 2004 Ph.D. in BiochemistryNortheastern University School of Engineering Boston, MA 2000 to 2002 Master of Science in Information SystemsPeking Union Medical College & Chinese Academy of Medical Sciences 1998 Master of Science in BiochemistryTsinghua University 1990 to 1995 Bachelor of Science in Department of Biological Science & Biotechnology
Nov 2013 to 2000 General DentistSmall Smiles Mattapan, MA Aug 2012 to Oct 2013 General practiceEli Lilly & Co. Indianapolis, IN Jan 2008 to Apr 2010 Senior Biologistthe First Teaching Hospital, Tianjin University of Traditional Chinese Medicine,
Jun 1999 to Jun 2001 General practice in dentistryOral & Maxillofacial Surgery, School and Hospital of Stomatology, Wuhan
1996 to 1999 Master of Medicine
Education:
School of Dentistry, University of Minnesota 2010 to 2000 Doctor of Dental SurgerySchool of Medicine, Indiana University 2001 to 2005 Master of Science in AnatomySchool of Stomatology, Wuhan University 1996 to 1999 Master of Medicine in Oral & Maxillofacial SurgerySchool of Stomatology, Tianjin Medical University, Tianjin 1991 to 1996 Bachelor of Science in Dentistry
Skills:
Special interest in endodontics, pedodontics and tooth extraction.
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