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Michael Arthur Nystrom, 572442 NW Market St UNIT 150, Seattle, WA 98107

Michael Nystrom Phones & Addresses

602 87Th St, Seattle, WA 98103    206-7823622   

5468 18Th Ave SW, Seattle, WA 98106   

Somerville, MA   

Cambridge, MA   

Bellevue, WA   

Carnation, WA   

Arlington, MA   

Mentions for Michael Arthur Nystrom

Career records & work history

Medicine Doctors

Michael Nystrom Photo 1

Michael John Nystrom

Specialties:
Pathology
Anatomic Pathology & Clinical Pathology
Education:
University of California at Los Angeles (2006)

License Records

Michael A Nystrom

Address:
Somerville, MA 02143
Licenses:
License #: 9524270 - Expired
Issued Date: Jul 24, 2012
Expiration Date: May 3, 2015
Type: Salesperson

Michael H Nystrom

Licenses:
License #: FMC08288 - Expired
Category: Food Safety
Issued Date: Jun 29, 1993
Expiration Date: Jan 31, 1996
Type: Certified Food Safety Mgr

Michael H Nystrom

Licenses:
License #: FMCI00044 - Expired
Category: Food Safety
Issued Date: Jan 7, 2000
Expiration Date: Jan 7, 2006
Type: Certified Food Safety Mgr-Instructor

Michael Nystrom resumes & CV records

Resumes

Michael Nystrom Photo 33

Director, Device Process Engineering

Location:
San Francisco, CA
Industry:
Consumer Electronics
Work:
Michael Nystrom Engineering Consulting Mar 2012 - Nov 2016
Principal
Microsoft Mar 2012 - Nov 2016
Director, Device Process Engineering
Lensvector Sep 2013 - Oct 2015
Director, Product Development
Soraa Jun 2012 - Jul 2013
Principal Engineer
Lensvector Sep 1, 2010 - Mar 1, 2012
Director, Advanced Product Development
Lensvector Feb 1, 2007 - Aug 1, 2010
Director, Process Development
Tessera May 1, 2005 - Feb 1, 2007
Engineer
Agilent Technologies Aug 2000 - Sep 2002
Engineer
Candescent Technologies Jan 1, 1998 - Aug 1, 2000
Engineer
National Institute of Standards and Technology Dec 1996 - Jan 1998
Nrc-Nist Postdoctoral Fellow
Education:
Northwestern University 1991 - 1996
Doctorates, Doctor of Philosophy, Materials Science, Engineering
Carnegie Mellon University 1986 - 1990
Bachelors, Bachelor of Science, Metallurgical Engineering, Materials Science
Titusville High School 1983 - 1986
Skills:
Thin Films, Materials Science, R&D, Optics, Product Development, Engineering, Semiconductors, Optoelectronics, Manufacturing, Testing, Failure Analysis, Design of Experiments, Electronics, Sensors, Engineering Management, Characterization, Mems, Design For Manufacturing, Process Simulation, Physics, Labview, Research and Development, Electronics Packaging, Solidworks, Cvd, Photonics, Data Analysis, Test Automation, Mocvd, Php, Sql, Visual Basic, Process Development
Interests:
Flying
Michael Nystrom Photo 34

Owner

Location:
Somerville, MA
Industry:
Accounting
Work:
Yo Bean
Owner
Michael Nystrom Photo 35

Michael Nystrom

Work:
Groton Public Schools
Skills:
Microsoft Office
Michael Nystrom Photo 36

Michael Nystrom

Work:
Mason Controls
Executive
Skills:
Aerohive, Public Sector
Michael Nystrom Photo 37

Michael Nystrom

Michael Nystrom Photo 38

Michael Nystrom

Michael Nystrom Photo 39

Michael Nystrom

Michael Nystrom Photo 40

Michael Nystrom

Publications & IP owners

Us Patents

Steerable Optical Assemblies

US Patent:
2021013, May 6, 2021
Filed:
Dec 10, 2020
Appl. No.:
17/117669
Inventors:
- Redmond WA, US
Jincheng WANG - Sammamish WA, US
Kingsuk MAITRA - Milpitas CA, US
Michael James NYSTROM - Mercer Island WA, US
Assignee:
Microsoft Technology Licensing, LLC - Redmond WA
International Classification:
G02B 26/08
Abstract:
The description relates to computing devices that employ steerable optics. One example includes a steering mechanism and a base substrate positioned relative to the steering mechanism. The example also includes an optical substrate positioned over the base substrate and an adhesive complex securing the optical substrate relative to the base substrate with multiple different types of adhesives.

Anisotropic Conductive Adhesive Bond In A Piezoelectric Micro-Electro-Mechanical System Scanning Mirror System

US Patent:
2020036, Nov 19, 2020
Filed:
May 17, 2019
Appl. No.:
16/415917
Inventors:
- Redmond WA, US
Michael James NYSTROM - Mercer Island WA, US
International Classification:
G02B 26/08
H02N 2/02
H02N 2/00
G02B 26/10
Abstract:
A piezoelectric MEMS scanning mirror system is provided. In particular, the efficiency and life of the system are improved by use of new bonding methods. Mechanical and electrical connections between the actuator frame of a piezoelectric MEMS scanning mirror system and the piezoelectric actuators in the system may be created using an anisotropic conductive adhesive. An anisotropic conductive adhesive only conducts electricity across the bond line between a lower portion of the piezoelectric actuator and a top of the metal frame. One way this is done is to provide a sparse loading of conductive particles. When the piezoelectric element is compressed against the frame, the conductive particles only form a conductive path across the bond line. Grit blasting, sanding, or chemical etching may be used to roughen the metal surface prior to bonding. A surface roughness between 2 RMS and 6 RMS may be created on the metal frame.

Bonding Of Resonant Oscillating Mirror To Frame

US Patent:
2020034, Oct 29, 2020
Filed:
Apr 26, 2019
Appl. No.:
16/396290
Inventors:
- Redmond WA, US
Michael James NYSTROM - Mercer Island WA, US
Assignee:
Microsoft Technology Licensing, LLC - Redmond WA
International Classification:
G02B 7/182
H04N 1/113
G02B 26/12
Abstract:
Examples are disclosed that relate to a resonant scanning mirror system comprising a mirror structure mounted to a frame via an adhesive. One example provides a resonant scanning mirror system comprising a frame defining a perimeter around a space, the frame including a mirror mounting portion having an opening. The mirror system also comprises a mirror structure spanning the space, the mirror structure having an oscillating mirror portion and a foot, the foot being attached to the mirror mounting portion with an adhesive and being positioned such that a location of the opening in the mirror mounting portion at least partially defines a location of an edge of a fillet of the adhesive where the adhesive meets the foot of the mirror structure.

Wire Bonded Common Electrical Connection In A Piezoelectric Micro-Electro-Mechanical System Scanning Mirror Assembly

US Patent:
2020032, Oct 15, 2020
Filed:
Apr 12, 2019
Appl. No.:
16/382876
Inventors:
- Redmond WA, US
Michael James NYSTROM - Mercer Island WA, US
International Classification:
G02B 26/08
G02B 26/10
H02N 2/00
H02N 2/02
Abstract:
Electrical connections are created between the actuator frame of a piezoelectric MEMS scanning mirror system and the substrate separate from the structural adhesive creating the mechanical bond between the actuator frame and the substrate. A structural bond (with no conducive properties) is formed between the actuator frame and the substrate. After the bond is fully formed, separate electric connections can be created by one or both of: 1) coating the actuator frame with a coating that enables a surface of the actuator frame to be wire bondable and creating a wire bond between the actuator frame and the substrate; or 2) depositing a trace of conductive material on the outside edge of the mechanical bond between the actuator frame and the substrate and a final protection layer may be applied over the conductive trace to protect the trace from mechanical or environmental damage.

Adhesive Bonded Micro Electro Mechanical System

US Patent:
2020021, Jul 9, 2020
Filed:
Jan 3, 2019
Appl. No.:
16/239418
Inventors:
- Redmond WA, US
Seungwoo LEE - Bothell WA, US
Utku BARAN - Seattle WA, US
Michael James NYSTROM - Mercer Island WA, US
Robert J. DYER - Everett WA, US
Assignee:
Microsoft Technology Licensing, LLC - Redmond WA
International Classification:
G02B 26/08
G02B 26/10
G02B 27/01
B81C 3/00
Abstract:
A micro electro mechanical system is provided. The micro electro mechanical system includes a first part bonded to a second part by a structural adhesive interface. The structural adhesive interface includes a conductive structural adhesive portion, and a non-conductive structural adhesive portion at least partially surrounding the conductive structural adhesive portion. The conductive structural adhesive portion and the non-conductive structural adhesive portion have a thixotropy index greater than one.

Actuator Frame For Scanning Mirror

US Patent:
2020012, Apr 23, 2020
Filed:
Oct 18, 2018
Appl. No.:
16/164526
Inventors:
- Redmond WA, US
Wyatt Owen DAVIS - Bothell WA, US
Michael James NYSTROM - Mercer Island WA, US
Joshua Owen MILLER - Woodinville WA, US
Richard Allen JAMES - Woodinville WA, US
Assignee:
Microsoft Technology Licensing, LLC - Redmond WA
International Classification:
G02B 7/182
G02B 26/10
Abstract:
Examples are disclosed that relate to actuator frames for scanning mirror systems. In one example an actuator frame for a scanning mirror assembly comprises a mounting member comprising a first side and an opposite second side. A first moveable member comprises a first interior side that defines a first gap and a second gap with the first side of the mounting member. A second moveable member comprises a second interior side that defines a third gap and a fourth gap with the second side of the mounting member. A first hinge connects a central portion of the mounting member with the first moveable member, and a second hinge connects the central portion of the mounting member with the second moveable member.

Micromirror Actuator Assembly

US Patent:
2020007, Mar 5, 2020
Filed:
Aug 31, 2018
Appl. No.:
16/119781
Inventors:
- Redmond WA, US
Michael James NYSTROM - Mercer Island WA, US
Assignee:
Microsoft Technology Licensing, LLC - Redmond WA
International Classification:
G02B 26/08
G02B 26/10
H05K 1/14
Abstract:
A micromirror actuator assembly includes a lower printed circuit board (PCB), an upper PCB, and a frame spaced away from the lower PCB and spaced away from the upper PCB between the lower PCB and the upper PCB. A micromirror is rotatably attached to the frame. A plurality of piezoelectric actuators are affixed to the frame and configured to selectively deform the frame to scan the micromirror.

Steerable Optical Assemblies

US Patent:
2019036, Dec 5, 2019
Filed:
May 30, 2018
Appl. No.:
15/993435
Inventors:
- Redmond WA, US
Jincheng WANG - Sammamish WA, US
Kingsuk MAITRA - Milpitas CA, US
Michael James NYSTROM - Mercer Island WA, US
Assignee:
Microsoft Technology Licensing, LLC - Redmond WA
International Classification:
G02B 26/08
Abstract:
The description relates to computing devices that employ steerable optics. One example includes a steering mechanism and a base substrate positioned relative to the steering mechanism. The example also includes an optical substrate positioned over the base substrate and an adhesive complex securing the optical substrate relative to the base substrate with multiple different types of adhesives.

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