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Reza Saeidpourazar Phones & Addresses

  • Boston, MA
  • Nashua, NH
  • Champaign, IL
  • 802 Creekside Dr, Clemson, SC 29631 (864) 654-8487

Resumes

Resumes

Reza Saeidpourazar Photo 1

Applied Scientist Manager

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Location:
110 Stuart St, Boston, MA 02116
Industry:
Industrial Automation
Work:
Boeing Aug 2018 - Nov 2018
Staff Scientist Robotics

Amazon Aug 2018 - Nov 2018
Applied Scientist Manager

Rethink Robotics Jun 2016 - Aug 2018
Principal Mechatronics Scientist

Brooks Automation Jul 1, 2015 - Jun 2016
Chief Scientist

Brooks Automation Sep 2011 - Jul 2015
Principal Scientist
Education:
Georgia Tech 2018 - 2021
Master of Science, Masters
Babson College 2012 - 2015
Master of Business Administration, Masters, Entrepreneurship
University of Illinois at Urbana - Champaign 2009 - 2011
Clemson University 2005 - 2009
Doctorates, Doctor of Philosophy, Philosophy, Mechanical Engineering
Sharif University of Technology 2003 - 2005
Masters, Mechanical Engineering
K. N. Toosi University of Technology 1999 - 2003
Bachelors, Mechanical Engineering
Skills:
Robotics
Semiconductors
Product Development
R&D
Sensors
Nanotechnology
Simulations
Automation
Engineering Management
Engineering
Design of Experiments
Scanning Electron Microscopy
Mechanical Engineering
Process Improvement
Cross Functional Team Leadership
Process Engineering
Product Management
Program Management
Semiconductor Industry
Lean Manufacturing
Research
Electronics
Testing
Team Building
Six Sigma
Start Ups
Finite Element Analysis
Design For Manufacturing
Failure Analysis
Motion Control
Thin Films
Root Cause Analysis
Systems Engineering
Mems
Instrumentation
Integration
Research and Development
Embedded Systems
Hardware Engineering
Test Automation
Test Equipment
Electrical Controls Design
Control Theory
Vibration Control
Actuators
Encoders
Motors
Matlab
Modeling
Interests:
Education
Reza Saeidpourazar Photo 2

Reza Saeidpourazar

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Location:
Boston, MA
Industry:
Semiconductors

Publications

Us Patents

Non-Contact Transfer Printing

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US Patent:
20130036928, Feb 14, 2013
Filed:
Jul 13, 2012
Appl. No.:
13/549291
Inventors:
John A. ROGERS - Champaign IL, US
Placid M. FERREIRA - Champaign IL, US
Reza SAEIDPOURAZAR - Nashua NH, US
International Classification:
B41F 33/00
US Classification:
101483
Abstract:
A transfer printing process that exploits the mismatch in mechanical or thermo-mechanical response at the interface of a printable micro- or nano-device and a transfer stamp to drive the release of the device from the stamp and its non-contact transfer to a receiving substrate are provided. The resulting facile, pick-and-place process is demonstrated with the assembling of 3-D microdevices and the printing of GAN light-emitting diodes onto silicon and glass substrates. High speed photography is used to provide experimental evidence of thermo-mechanically driven release.

Position Feedback For Sealed Environments

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US Patent:
20220385142, Dec 1, 2022
Filed:
Aug 2, 2022
Appl. No.:
17/816876
Inventors:
- Chelmsford MA, US
Reza SAEIDPOURAZAR - Nashua NH, US
Branden Gunn - Reading MA, US
Matthew W. Coady - Hollis NH, US
Ulysses Gilchrist - Reading MA, US
International Classification:
H02K 11/215
H01L 21/67
H01L 21/677
H02K 1/14
H02K 1/24
H02K 5/128
H01L 21/687
Abstract:
A transport apparatus comprising a housing, a variable reluctance drive mounted to the housing, and at least one transport arm connected to the variable reluctance drive where the drive includes at least one rotor having salient poles of magnetic permeable material and disposed in an isolated environment, at least one stator having salient pole structures each defining a salient pole with corresponding coil units coiled around the respective salient pole structure and disposed outside the isolated environment where the at least one salient pole of the at least one stator and the at least one salient pole of the rotor form a closed magnetic flux circuit between the at least one rotor and the at least one stator, at least one seal partition configured to isolate the isolated environment; and at least one sensor including a magnetic sensor member connected to the housing, at least one sensor track connected to the at least one rotor, where the at least one seal partition is disposed between and separates the magnetic sensor member and the at least one sensor track so that the at least one sensor track is disposed in the isolated environment and the magnetic sensor member is disposed outside the isolated environment.

Tool Auto-Teach Method And Apparatus

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US Patent:
20210098276, Apr 1, 2021
Filed:
Sep 8, 2020
Appl. No.:
17/014575
Inventors:
- Chelmsford MA, US
Aaron Gawlik - Burlington MA, US
Reza Saeidpourazar - Boston MA, US
International Classification:
H01L 21/677
H01L 21/67
H01L 21/68
H01L 21/687
Abstract:
A substrate transport apparatus auto-teach system for auto-teaching a substrate station location, the system including a frame, a substrate transport connected to the frame, the substrate transport having an end effector configured to support a substrate, and a controller configured to move the substrate transport so that the substrate transport biases the substrate supported on the end effector against a substrate station feature causing a change in eccentricity between the substrate and the end effector, determine the change in eccentricity, and determine the substrate station location based on at least the change in eccentricity between the substrate and the end effector.

Position Feedback For Sealed Environments

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US Patent:
20200389075, Dec 10, 2020
Filed:
Apr 2, 2020
Appl. No.:
16/838785
Inventors:
- Chelmsford MA, US
Reza SAEIDPOURAZAR - Nashua NH, US
Branden Gunn - Reading MA, US
Matthew W. Coady - Hollis NH, US
Ulysses Gilchrist - Reading MA, US
International Classification:
H02K 11/215
H01L 21/67
H01L 21/677
H01L 21/687
H02K 1/14
H02K 1/24
H02K 5/128
Abstract:
A transport apparatus comprising a housing, a variable reluctance drive mounted to the housing, and at least one transport arm connected to the variable reluctance drive where the drive includes at least one rotor having salient poles of magnetic permeable material and disposed in an isolated environment, at least one stator having salient pole structures each defining a salient pole with corresponding coil units coiled around the respective salient pole structure and disposed outside the isolated environment where the at least one salient pole of the at least one stator and the at least one salient pole of the rotor form a closed magnetic flux circuit between the at least one rotor and the at least one stator, at least one seal partition configured to isolate the isolated environment; and at least one sensor including a magnetic sensor member connected to the housing, at least one sensor track connected to the at least one rotor, where the at least one seal partition is disposed between and separates the magnetic sensor member and the at least one sensor track so that the at least one sensor track is disposed in the isolated environment and the magnetic sensor member is disposed outside the isolated environment.

Tool Auto-Teach Method And Apparatus

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US Patent:
20190371641, Dec 5, 2019
Filed:
Aug 13, 2019
Appl. No.:
16/539819
Inventors:
- Chelmsford MA, US
Aaron GAWLIK - Burlington MA, US
Reza SAEIDPOURAZAR - Boston MA, US
International Classification:
H01L 21/677
H01L 21/687
H01L 21/68
H01L 21/67
Abstract:
A substrate transport apparatus auto-teach system for auto-teaching a substrate station location, the system including a frame, a substrate transport connected to the frame, the substrate transport having an end effector configured to support a substrate, and a controller configured to move the substrate transport so that the substrate transport biases the substrate supported on the end effector against a substrate station feature causing a change in eccentricity between the substrate and the end effector, determine the change in eccentricity, and determine the substrate station location based on at least the change in eccentricity between the substrate and the end effector.

Tool Auto-Teach Method And Apparatus

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US Patent:
20190027389, Jan 24, 2019
Filed:
Jun 19, 2018
Appl. No.:
16/011978
Inventors:
- Chelmsford MA, US
Aaron GAWLIK - Burlington MA, US
Reza SAEIDPOURAZAR - Boston MA, US
International Classification:
H01L 21/677
H01L 21/687
H01L 21/68
H01L 21/67
Abstract:
A substrate transport apparatus auto-teach system for auto-teaching a substrate station location, the system including a frame, a substrate transport connected to the frame, the substrate transport having an end effector configured to support a substrate, and a controller configured to move the substrate transport so that the substrate transport biases the substrate supported on the end effector against a substrate station feature causing a change in eccentricity between the substrate and the end effector, determine the change in eccentricity, and determine the substrate station location based on at least the change in eccentricity between the substrate and the end effector.

Non-Contact Transfer Printing

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US Patent:
20170210117, Jul 27, 2017
Filed:
Dec 9, 2016
Appl. No.:
15/374926
Inventors:
- Urbana IL, US
Placid M. FERREIRA - Champaign IL, US
Reza SAEIDPOURAZAR - Nashua NH, US
International Classification:
B41F 16/00
Abstract:
A transfer printing process that exploits the mismatch in mechanical or thermo-mechanical response at the interface of a printable micro- or nano-device and a transfer stamp to drive the release of the device from the stamp and its non-contact transfer to a receiving substrate are provided. The resulting facile, pick-and-place process is demonstrated with the assembling of 3-D microdevices and the printing of GAN light-emitting diodes onto silicon and glass substrates. High speed photography is used to provide experimental evidence of thermo-mechanically driven release.

Position Feedback For Sealed Environments

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US Patent:
20160164382, Jun 9, 2016
Filed:
Nov 13, 2014
Appl. No.:
14/540058
Inventors:
- Chelmsford MA, US
Reza SAEIDPOURAZAR - Nashua NH, US
Branden Gunn - Reading MA, US
Matthew W. Coady - Hollis NH, US
Ulysses Gilchrist - Reading MA, US
International Classification:
H02K 11/215
H01L 21/687
H02K 1/14
H01L 21/677
H02K 5/128
H02K 1/24
Abstract:
A transport apparatus including a housing, a drive mounted to the housing, and at least one transport arm connected to the drive, where the drive includes at least one rotor having at least one salient pole of magnetic permeable material and disposed in an isolated environment, at least one stator having at least one salient pole with corresponding coil units and disposed outside the isolated environment where the at least one salient pole of the at least one stator and the at least one salient pole of the rotor form a closed magnetic flux circuit between the at least one rotor and the at least one stator, at least one seal partition configured to isolate the isolated environment, and at least one sensor including a magnetic sensor member connected to the housing, at least one sensor track connected to the at least one rotor where the at least one seal partition is disposed between and separates the magnetic sensor member and the at least one sensor track so that the at least one sensor track is disposed in the isolated environment and the magnetic sensor member is disposed outside the isolated environment.
Reza Saeidpourazar from Boston, MA, age ~44 Get Report