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Ganesh Rajagopalan, 54Naperville, IL

Ganesh Rajagopalan Phones & Addresses

Naperville, IL   

3939 Windmills Blvd, Chandler, AZ 85226   

San Ramon, CA   

1118 Benrich Ct, Gilbert, AZ 85233    480-7266831   

Frederick, MD   

Social networks

Ganesh Rajagopalan

Linkedin

Work

Company: Trw May 2018 to Apr 2020 Position: Director of aftermarket operations, operational responsibility for joint ventures in asean

Education

Degree: Master of Science, Masters School / High School: Arizona State University 1993 to 1995 Specialities: Chemical Engineering

Skills

Semiconductor Equipment • Semiconductors • Semiconductor Manufacturing • Silicon • Cross Functional Team Leadership • Engineering Management • Spc • Management • Electronics • Manufacturing • Product Management • R&D • Sales • Business Development • Sales Operations • Product Development • Lean Manufacturing • Product Marketing • Semiconductor Industry • Process Engineering • Competitive Analysis

Industries

Automotive

Mentions for Ganesh Rajagopalan

Ganesh Rajagopalan resumes & CV records

Resumes

Ganesh Rajagopalan Photo 30

Ganesh Rajagopalan

Location:
6282 west Kent Dr, Chandler, AZ 85226
Industry:
Automotive
Work:
Trw May 2018 - Apr 2020
Director of Aftermarket Operations, Operational Responsibility For Joint Ventures In Asean
Te Connectivity Apr 2015 - Dec 2015
Director of Global Ems Sales, Data and Devices Business Unit
Te Connectivity Jan 2013 - Mar 2015
Director of Sales and Sales Operations, Consumer Devices Business Unit
Laird Jan 2012 - Dec 2012
Global Engineering Director
Laird Technologies India Oct 2010 - Dec 2011
Managing Director
Laird Mar 2009 - Sep 2010
Territory Sales Manager - California
Axcelis Technologies Oct 2001 - Feb 2009
Business Development
Motorola 2000 - 2001
Dsp Product Engineer
Motorola 1997 - 2000
Process Engineer
Motorola 1994 - 1997
Reliability Engineer
Education:
Arizona State University 1993 - 1995
Master of Science, Masters, Chemical Engineering
Birla Institute of Technology and Science, Pilani 1987 - 1992
Master of Science, Masters, Mathematics
Skills:
Semiconductor Equipment, Semiconductors, Semiconductor Manufacturing, Silicon, Cross Functional Team Leadership, Engineering Management, Spc, Management, Electronics, Manufacturing, Product Management, R&D, Sales, Business Development, Sales Operations, Product Development, Lean Manufacturing, Product Marketing, Semiconductor Industry, Process Engineering, Competitive Analysis

Publications & IP owners

Us Patents

Processes For Curing Silicon Based Low-K Dielectric Materials

US Patent:
8338315, Dec 25, 2012
Filed:
Feb 26, 2008
Appl. No.:
12/037222
Inventors:
Darren L. Moore - Somerville MA, US
Carlo Waldfried - Middleton MA, US
Ganesh Rajagopalan - Gilbert AZ, US
Assignee:
Axcelis Technologies, Inc. - Beverly MA
International Classification:
H01L 21/00
US Classification:
438795, 438789, 438790, 257E21347, 257E21277
Abstract:
Processes for curing silicon based low k dielectric materials generally includes exposing the silicon based low k dielectric material to ultraviolet radiation in an inert atmosphere having an oxidant in an amount of about 10 to about 500 parts per million for a period of time and intensity effective to cure the silicon based low k dielectric material so to change a selected one of chemical, physical, mechanical, and electrical properties and combinations thereof relative to the silicon based low k dielectric material prior to the ultraviolet radiation exposure. Also disclosed herein are silicon base low k dielectric materials substantially free of sub-oxidized SiO species.

Method For Controlling Electromigration And Electrically Conductive Interconnect Structure Therefor

US Patent:
5472911, Dec 5, 1995
Filed:
Sep 2, 1994
Appl. No.:
8/300818
Inventors:
Michael L. Dreyer - Scottsdale AZ
Charles J. Varker - Scottsdale AZ
Ganesh Rajagopalan - Tempe AZ
Assignee:
Motorola, Inc. - Schaumburg IL
International Classification:
H01L 21441
US Classification:
437187
Abstract:
A method and an electrically conductive interconnect structure (30) for controlling electromigration. The electrically conductive interconnect structure (30) comprises a groove (33) adjacent an electrically conductive interconnect (39). The electrically conductive interconnect (39) is patterned from a deposited layer of conductive material which contains global grain microstructures. Moreover, the electrically conductive interconnect (39) is patterned to have polycrystalline and single-grain segment lengths that are less than a length at which an electromigration flux fails to overcome a gradient-driven counter flux in a line segment. The groove (33) controls the polycrystalline and single-grain segment lengths to be less than the critical length, thereby reducing electromigration.

Streaming Database Cloning Using Cluster Live Mounts

US Patent:
2021003, Feb 4, 2021
Filed:
Jul 31, 2019
Appl. No.:
16/527902
Inventors:
- Palo Alto CA, US
Udbhav Prasad - Mountain View CA, US
Ganesh Karuppur Rajagopalan - Los Gatos CA, US
Yongbing Eric Guo - Saratoga CA, US
International Classification:
G06F 9/455
G06F 11/14
H04L 29/08
Abstract:
A database can be instantly cloned from a source device to a target device by a cluster mapped to a database to be cloned. Nodes of the cluster are mapped over channels to directories of the database. Scripts are generated from one or more templates that specify the order and values to be executed to perform a database job, such as cloning the database to the target device using the mappings. To clone the database, a template can be executed that generates and populates scripts, which can be executed on the target device to provide a functioning cloned database using the mapped cluster.

Streaming Database Backup Using Cluster Live Mounts

US Patent:
2021003, Feb 4, 2021
Filed:
Jul 31, 2019
Appl. No.:
16/527864
Inventors:
- Palo Alto CA, US
Udbhav Prasad - Mountain View CA, US
Ganesh Karuppur Rajagopalan - Los Gatos CA, US
Yongbing Eric Guo - Saratoga CA, US
International Classification:
G06F 11/14
G06F 16/182
G06F 16/28
Abstract:
A database can be backed up and recovered by a cluster mapped to the database. Nodes of the cluster are mapped over channels to directories of the database. Scripts are generated. from one or more templates that specify the order and values to be executed to perform a database job, such as database backup or recovery. To initiate a given database job, a template can be executed that generates and populates scripts, which are processed on the host of the database to perform the database job in a nearly instant manner using the mapped nodes of the cluster.

Streaming Database Recovery Using Cluster Live Mounts

US Patent:
2021003, Feb 4, 2021
Filed:
Jul 31, 2019
Appl. No.:
16/527825
Inventors:
- Palo Alto CA, US
Udbhav Prasad - Mountain View CA, US
Ganesh Karuppur Rajagopalan - Los Gatos CA, US
Yongbing Eric Guo - Saratoga CA, US
International Classification:
G06F 11/14
G06F 16/182
G06F 16/28
Abstract:
A database can be instantly recovered by a cluster mapped to the database. Nodes of the cluster are mapped over channels to directories of the database. Scripts are generated from one or more templates that specify the order and values to be executed to perform a database job, such as database recovery. To recover the database, a template is executed that generates and populates scripts, which are processed on the host of the database to recover the database in a nearly instant manner without transferring data files.

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