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Farshad Forouhar Phones & Addresses

  • 15849 33Rd St, Seattle, WA 98155 (206) 367-6341
  • 336 75Th St, Seattle, WA 98117 (206) 781-8576
  • Lake Forest Park, WA
  • Edmonds, WA
  • 10705 E Migratory Pl, Tucson, AZ 85748 (520) 546-9227
  • 6655 Canyon Crest Dr, Tucson, AZ 85750
  • 7887 La Cholla Blvd, Tucson, AZ 85741
  • Birmingham, AL

Work

Position: Production Occupations

Education

Degree: Graduate or professional degree

Resumes

Resumes

Farshad Forouhar Photo 1

Engineer/Scientist At Boeing Commercial Airplanes

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Position:
Engineer/Scientist at Boeing Commercial Airplanes
Location:
Greater Seattle Area
Industry:
Aviation & Aerospace
Work:
Boeing Commercial Airplanes - Everett, WA since Jul 2004
Engineer/Scientist

Raytheon Jun 1999 - Dec 2003
Tucson, Arizona
Education:
University of Wisconsin-Madison 2011 - 2013
MEng, Professional Development
University of Arizona 2001 - 2003
MS, Optical Engineer
University of Washington 1996 - 1999
BS, Aeronautics and Astronautics
Interests:
Sport, traveling around the world learning about divers cultures, cooking, reading, etc.
Languages:
Farsi
Farshad Forouhar Photo 2

Farshad Forouhar

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Publications

Us Patents

Inspection System For Alignment In Restricted Volumes

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US Patent:
20180252519, Sep 6, 2018
Filed:
Mar 3, 2017
Appl. No.:
15/449303
Inventors:
- Chicago IL, US
Farshad Forouhar - Lake Forest Park WA, US
Kevin M. Uhl - Mukilteo WA, US
Gary Mark Buckus - Snohomish WA, US
Eric Sean Kamila - Edmonds WA, US
Joshua Charles Modrzynski - Edmonds WA, US
John B. Winn - Arlington WA, US
International Classification:
G01B 11/27
G01M 5/00
Abstract:
An inspection system is presented. The inspection system comprises a remotely controllable imaging assembly and a scale reticle. The remotely controllable imaging assembly includes a camera and a lens system. The lens system includes a tunable-focus lens and a magnifying lens between the camera and the tunable-focus lens. The scale reticle is positioned within a sight line of the camera of the imaging assembly such that the scale reticle is between the imaging assembly and a target.

Collision Avoidance System For Scissor Lift

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US Patent:
20170233232, Aug 17, 2017
Filed:
May 1, 2017
Appl. No.:
15/583598
Inventors:
- Chicago IL, US
Gary M. Buckus - Bothell WA, US
William W. Cleary - Pasadena CA, US
Farshad Forouhar - Lake Forest Park WA, US
Vincent E. Engdahl - Everett WA, US
Curtis N. Sovereen - Everett WA, US
International Classification:
B66F 11/04
B66F 17/00
Abstract:
Disclosed herein is a scissor lift comprising a passenger basket. The scissor lift also comprises a base that comprises wheels. The scissor lift further comprises a scissor extension mechanism between the passenger basket and the base. The scissor extension mechanism is configured to raise the passenger basket in a first direction relative to the base and lower the passenger basket in a second direction, opposite the first direction, relative to the base. The scissor lift additionally comprises a through-beam sensor system co-movably coupled to the scissor extension mechanism. The through-beam sensor system moves in a third direction, perpendicular to the first direction and the second direction, when the scissor extension mechanism raises the passenger basket and moves in a fourth direction, opposite the third direction, when the scissor extension mechanism lowers the passenger basket.

Automated Dynamic Manufacturing Systems And Related Methods

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US Patent:
20160288331, Oct 6, 2016
Filed:
Mar 30, 2015
Appl. No.:
14/673433
Inventors:
- Huntington Beach CA, US
Thomas K. Williams - Federal Way WA, US
Jim E. Gardiner - Everett WA, US
Farshad Forouhar - Lake Forest Park WA, US
Assignee:
The Boeing Company - Huntington Beach CA
International Classification:
B25J 9/16
B64F 5/00
Abstract:
Automated dynamic manufacturing systems may provide for alignment of multiple components with respect to one another, such as an apparatus, a robot, and a supply of parts. The alignment may initially be performed roughly, using a global metrology device configured to track the apparatus, robot, and supply of parts, each of which may be movable with respect to the others, such as by being positioned on a respective automated guided vehicle. Alignment may then be performed to closer tolerances using a local metrology device coupled to the robot and configured to accurately position an end effector, such that the end effector may perform a manufacturing task on the apparatus, such as a pick-and-place process involving transporting an individual part from the supply of parts, transferring it to the apparatus, and coupling it thereto. Such systems and methods may be used to perform manufacturing processes on large apparatus, such as aircraft.

Collision Avoidance System For Scissor Lift

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US Patent:
20150368082, Dec 24, 2015
Filed:
Jun 23, 2014
Appl. No.:
14/312607
Inventors:
- Chicago IL, US
Gary M. Buckus - Bothell WA, US
Farshad Forouhar - Lake Forest Park WA, US
Vincent E. Engdahl - Everett WA, US
Curtis N. Sovereen - Everett WA, US
International Classification:
B66F 17/00
B66F 11/04
Abstract:
Disclosed is a collision avoidance method, controller, and system for a scissor lift. The scissor lift includes a passenger basket, a scissor extension mechanism, and a base with wheels. The collision avoidance system includes at least one of a basket proximity sensor sub-system that has proximity sensor elements disposed on the passenger basket. The collision avoidance system also includes a basket contact sensor sub-system that has impact sensor elements disposed within padded bumpers coupled to the passenger basket and a through-beam sensor sub-system mounted to the scissor extension mechanism. Still further, the collision avoidance system includes a wheel position transducer that is coupled to at least one of the wheels of the base.
Farshad Forouhar from Seattle, WA, age ~64 Get Report