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Eugene Ma, 4710 Irondale Rd, Greystone Park, NJ 07950

Eugene Ma Phones & Addresses

10 Irondale Rd, Morris Plains, NJ 07950    201-9275057   

Denville, NJ   

Green Brook, NJ   

Jersey City, NJ   

Allston, MA   

Poughkeepsie, NY   

Morgan, NJ   

Mentions for Eugene Ma

Career records & work history

Medicine Doctors

Eugene Ma Photo 1

Eugene Victor Beresin MA, Boston MA

Specialties:
Psychiatry
Child & Adolescent Psychiatry
Child Psychiatry
Work:
Massachusetts General Hospital
55 Fruit St, Boston, MA 02114Wac 528
15 Parkman St, Boston, MA 02114
Education:
University of Pennsylvania(1977)

Eugene Ma resumes & CV records

Resumes

Eugene Ma Photo 35

Business And Technology Architect

Position:
Business Architect at ProSight Specialty Insurance
Location:
Greater New York City Area
Industry:
Information Technology and Services
Work:
ProSight Specialty Insurance since Jan 2013
Business Architect
MetLife May 2012 - Jan 2013
Lead Application Solutions & Middleware Engineer
Chartis Insurance Jul 2003 - May 2012
Global IT Architect
BusinessEdge Solutions Dec 2000 - Jul 2003
Consultant
Breakaway Solutions Jul 1998 - Nov 2000
Consultant
Education:
Vassar College 1994 - 1998
AB, Economics, Geology
Skills:
Enterprise Architecture, TOGAF, Application Portfolio Management, Application Lifecycle Management, Reference Architecture, Pegasystems PRPC, Mobile Applications, Mobile Devices, Web Content Management, Enterprise Portals, Document Management, HTML 5, JavaScript, jQuery, CSS, JSP, SQL, ETL, Web Application Design, User Experience, Wireframes
Eugene Ma Photo 36

Lead Solutions Architect

Location:
412 Mount Kemble Ave, Morristown, NJ 07960
Industry:
Information Technology And Services
Work:
Prosight Specialty Insurance Jul 1, 2015 - May 2017
Enterprise Architect
Qbe North America Jul 1, 2015 - May 2017
Lead Solutions Architect
Prosight Specialty Insurance Jan 2013 - Jul 2015
Business Architect
Metlife May 2012 - Jan 2013
Lead Application Solutions and Middleware Engineer
Chartis Jul 2003 - May 2012
Global It Architect
Businessedge Solutions Dec 2000 - Jul 2003
Consultant
Breakaway Solutions Jul 1998 - Nov 2000
Consultant
Education:
Vassar College 1994 - 1998
Bachelors, Bachelor of Arts, Economics, Geology
Skills:
Enterprise Architecture, Sql, Mobile Applications, Etl, User Experience, Javascript, Sdlc, Integration, Requirements Analysis, Business Intelligence, Business Analysis, Databases, Vendor Management, It Strategy, Business Process Improvement, Togaf, Reference Architecture, Pegasystems Prpc, Software Development Life Cycle, Web Application Design, Requirements Gathering, Html 5, Jquery, Jsp, Property and Casualty Insurance, Consulting, Process Improvement, Software Project Management, Project Management, Css, Wireframes, Long Distance Running
Eugene Ma Photo 37

Eugene Ma

Industry:
Mechanical Or Industrial Engineering
Work:
Happy Cool Air Control
Technician
Skills:
Serving Hvacr Industries
Eugene Ma Photo 38

Eugene Ma

Publications & IP owners

Us Patents

Semitransparent Optical Detector Including A Polycrystalline Layer And Method Of Making

US Patent:
6879014, Apr 12, 2005
Filed:
Mar 20, 2001
Appl. No.:
09/813454
Inventors:
Sigurd Wagner - Princeton NJ, US
Matthias Wagner - Boston MA, US
Eugene Y. Ma - Brookline MA, US
Adam M. Payne - Princeton NJ, US
Assignee:
Aegis Semiconductor, Inc. - Woburn MA
International Classification:
H01L031/075
US Classification:
257458, 257434, 257449, 257452, 257457, 257459
Abstract:
Materials suitable for fabricating optical monitors include amorphous, polycrystalline and microcrystalline materials. Semitransparent photodetector materials may be based on silicon or silicon and germanium alloys. Conductors for connecting to and contacting the photodetector may be made from various transparent oxides, including zinc oxide, tin oxide and indium tin oxide. Optical monitor structures based on PIN diodes take advantage of the materials disclosed. Various contact, lineout, substrate and interconnect structures optimize the monitors for integration with various light sources, including vertical cavity surface emitting laser (VCSEL) arrays. Complete integrated structures include a light source, optical monitor and either a package or waveguide into which light is directed.

Package For Optical Components

US Patent:
6985281, Jan 10, 2006
Filed:
Nov 27, 2002
Appl. No.:
10/306056
Inventors:
Matthias Wagner - Cambridge MA, US
Robert Murano - Malden MA, US
Eugene Y. Ma - Chestnut Hill MA, US
Steven Sherman - Boston MA, US
Lawrence H. Domash - Conway MA, US
Assignee:
Aegis Semiconductor, Inc. - Woburn MA
International Classification:
G02F 1/29
US Classification:
359315, 359578
Abstract:
An optoelectronic device including a header having an upper surface and including a plurality of conducting pins extending up through the upper surface; an optical device; a tunable optical filter, wherein the optical device and the tunable optical filter are arranged in a vertical stack mounted on and extending above the upper surface of the header and wherein the tunable optical filter is electrically connected to the plurality of conducting pins; and a cap affixed to the header and along with the header defining a sealed interior containing the optical device and the tunable optical filter, wherein the cap has a top surface with a window formed therein, and wherein the window is aligned with the tunable optical filter and the optical device.

Index Tunable Thin Film Interference Coatings

US Patent:
7049004, May 23, 2006
Filed:
Sep 19, 2003
Appl. No.:
10/666974
Inventors:
Lawrence H. Domash - Conway MA, US
Eugene Ma - Chestnut Hill MA, US
Robert Murano - Melrose MA, US
Nikolay Nemchuk - North Andover MA, US
Adam Payne - Atlanta GA, US
Steven Sherman - Boston MA, US
Matthias Wagner - Cambridge MA, US
Ming Wu - Arlington MA, US
Assignee:
Aegis Semiconductor, Inc. - Woburn MA
International Classification:
B32B 9/04
G02B 1/00
US Classification:
428446, 428641, 428622, 428687, 428620, 4289122, 359788, 359582, 359584, 359586
Abstract:
According to various embodiments and aspects of the present invention, there is provided a dynamically tunable thin film interference coating including one or more layers with thermo-optically tunable refractive index. Tunable layers within thin film interference coatings enable a new family of thin film active devices for the filtering, control, modulation of light. Active thin film structures can be used directly or integrated into a variety of photonic subsystems to make tunable lasers, tunable add-drop filters for fiber optic telecommunications, tunable polarizers, tunable dispersion compensation filters, and many other devices.

Tunable Optical Filter With Heater On A Cte-Matched Transparent Substrate

US Patent:
7304799, Dec 4, 2007
Filed:
Oct 7, 2004
Appl. No.:
10/960764
Inventors:
Eugene Yi-Shan Ma - Chestnut Hill MA, US
Mitchell S. Cohen - Bedford MA, US
Assignee:
Aegis Lightwave, Inc. - Woburn MA
International Classification:
G02B 27/00
US Classification:
359578, 359579, 359577
Abstract:
An optical device including: a glass substrate; a crystalline silicon layer bonded to the glass substrate; and a thermally tunable thin-film optical filter fabricated on top of the crystalline silicon layer.

Pixel Architecture For Thermal Imaging System

US Patent:
7402803, Jul 22, 2008
Filed:
Jun 7, 2006
Appl. No.:
11/448450
Inventors:
Matthias Wagner - Cambridge MA, US
Shuyun Wu - Acton MA, US
Eugene Y. Ma - Newton MA, US
Assignee:
Redshift Systems Corporation - Burlington MA
International Classification:
G01J 5/00
US Classification:
2503383
Abstract:
A thermally tunable pixel element includes a substrate; a thermally tunable filter island; a thermal absorption structure in direct thermal contact with and extending beyond the thermally tunable filter island; and a thermal isolation structure providing a thermally isolating path between the thermal absorption structure and the substrate.

Thermally Controlled Spatial Light Modulator Using Phase Modulation

US Patent:
7522328, Apr 21, 2009
Filed:
May 11, 2007
Appl. No.:
11/803044
Inventors:
Matthias Wagner - Cambridge MA, US
Shuyun Wu - Acton MA, US
Charles M. Marshall - North Andover MA, US
Eugene Y. Ma - Newton MA, US
John F. Heanue - Manchester MA, US
Assignee:
Redshift Systems Corporation - Burlington MA
International Classification:
G02B 26/00
G02B 27/00
US Classification:
359237, 359578
Abstract:
An apparatus includes a thin-film interference filter structure having a generally wavelength-dependent resonant response to incident optical energy in a predetermined range of wavelengths. The thin-film interference filter structure includes a thermally tunable layer having a thermally tunable optical characteristic such that a range of wavelength-dependent resonant optical responses of the thermally tunable layer are induced by a corresponding range of thermal conditions of the thermally tunable layer. The thin-film interference filter structure is configured to (1) receive a spatially varying pattern of thermal energy at the thermally tunable layer to impart a corresponding spatially varying pattern to the thermally tunable characteristic of the thermally tunable layer, and (2) receive the incident optical energy into the thermally tunable layer and output optical energy having spatial modulation corresponding to the spatially varying pattern of the thermally tunable characteristic.

Method Of Spatially Separating Wavelengths Of Multi-Wavelength Signal Using Electronically Controlled Thermal Structure

US Patent:
7697192, Apr 13, 2010
Filed:
Apr 2, 2009
Appl. No.:
12/417430
Inventors:
Matthias Wagner - Cambridge MA, US
Shuyun Wu - Acton MA, US
Charles M. Marshall - North Andover MA, US
Eugene Y. Ma - Newton MA, US
John F. Heanue - Manchester MA, US
Assignee:
Redshift Systems Corporation - Burlington MA
International Classification:
G02F 1/01
G02B 27/00
US Classification:
359288, 359240, 359578
Abstract:
A thin-film interference filter structure has a generally wavelength-dependent resonant response to incident optical energy in a predetermined range of wavelengths. The thin-film interference filter structure includes a thermally tunable layer having a thermally tunable optical characteristic such that a range of wavelength-dependent resonant optical responses of the thermally tunable layer are induced by a corresponding range of thermal conditions of the thermally tunable layer. The thin-film interference filter structure is configured to (1) receive a spatially varying pattern of thermal energy at the thermally tunable layer to impart a corresponding spatially varying pattern to the thermally tunable characteristic of the thermally tunable layer, and (2) receive the incident optical energy into the thermally tunable layer and output optical energy having spatial modulation corresponding to the spatially varying pattern of the thermally tunable characteristic.

Pixel Architecture For Thermal Imaging System

US Patent:
7829854, Nov 9, 2010
Filed:
Jul 21, 2008
Appl. No.:
12/176931
Inventors:
Matthias Wagner - Cambridge MA, US
Shuyun Wu - Acton MA, US
Eugene Y. Ma - Newton MA, US
Assignee:
RedShift Systems Corporation - Waltham MA
International Classification:
G01J 5/62
G01J 5/00
US Classification:
2503161, 2503381, 2503361, 359288
Abstract:
A thermal imaging device including: a substrate; and an array of thermally tunable pixel elements for generating a thermal image, each thermally tunable pixel element including: a plurality of thermally tunable filter islands, each of which has a thermally tunable optical filter, wherein each of the plurality of tunable filter islands within that pixel element is thermally isolated from the other tunable filter islands within that tunable pixel element; an absorption structure for absorbing incident optical thermal energy; and a mechanical structure supporting the plurality of tunable filter islands and the absorption structure on the substrate.

Public records

Vehicle Records

Eugene Ma

Address:
10 Irondale Rd, Morris Plains, NJ 07950
Phone:
973-5321934
VIN:
5TDYK3DCXCS181449
Make:
TOYOTA
Model:
SIENNA
Year:
2012

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