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Janaki R Potukuchi

from Rancho Palos Verdes, CA
Age ~84

Janaki Potukuchi Phones & Addresses

  • 28503 Hazelridge Dr, Rancho Palos Verdes, CA 90275 (310) 541-0426
  • Rch Palos Vrd, CA
  • 1402 Mackay Ln, Redondo Beach, CA 90278 (310) 376-5616
  • North Potomac, MD
  • Torrance, CA
  • El Segundo, CA
  • Glendale, AZ
  • Rch Palos Vrd, CA
  • Los Angeles, CA

Work

Company: Gps/se&i/tasc Oct 2015 to May 2017 Position: Consultant

Education

School / High School: Georgetown University 1991 to 1992 Specialities: International Business

Skills

Radar • Avionics • Military • Systems Engineering • Simulations • Satellite Communications • Spacecraft • Satellite • Earned Value Management • Space Systems • Rf • Pcb Design • Defense • Signal Processing • Information Assurance • C • Requirements Management • Testing • Embedded Systems • Microwave • Government Contracting • C4Isr • Program Management • Antennas • Electronic Warfare • Dodaf • Sensors • Cmmi • Digital Signal Processors • Systems Design • Integration • Aerospace • Engineering Management • Dod • Security Clearance • System Architecture • Proposal Writing • U.s. Department of Defense • Requirements Analysis • Configuration Management • Engineering • Project Management • Management • Air Force

Industries

Defense & Space

Resumes

Resumes

Janaki Potukuchi Photo 1

Rancho Palos Verdes, California

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Location:
1402 Mackay Ln, Redondo Beach, CA 90278
Industry:
Defense & Space
Work:
Gps/Se&I/Tasc Oct 2015 - May 2017
Consultant

Leidos Aug 2008 - Sep 2015
Chief Engineer

Hughes Space and Com./Boeing Nov 1996 - Aug 2008
Chief Scientist and Manager

Lockheed Martin 1976 - 1996
Principal Scientist and Associate Executive Director

1976 - 1996
Rancho Palos Verdes, California
Education:
Georgetown University 1991 - 1992
Loyola University Maryland 1985 - 1987
Master of Business Administration, Masters, Business Administration, Management, Business Administration and Management
North Carolina State University 1970 - 1973
Indian Institute of Technology, Delhi 1963 - 1965
Masters, Master of Technology, Engineering
Skills:
Radar
Avionics
Military
Systems Engineering
Simulations
Satellite Communications
Spacecraft
Satellite
Earned Value Management
Space Systems
Rf
Pcb Design
Defense
Signal Processing
Information Assurance
C
Requirements Management
Testing
Embedded Systems
Microwave
Government Contracting
C4Isr
Program Management
Antennas
Electronic Warfare
Dodaf
Sensors
Cmmi
Digital Signal Processors
Systems Design
Integration
Aerospace
Engineering Management
Dod
Security Clearance
System Architecture
Proposal Writing
U.s. Department of Defense
Requirements Analysis
Configuration Management
Engineering
Project Management
Management
Air Force

Publications

Us Patents

Subharmonic Carrier-Canceling Baseband/K Upconverter System

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US Patent:
20030060160, Mar 27, 2003
Filed:
Sep 21, 2001
Appl. No.:
09/960013
Inventors:
Adrian Gilbert - Buena Park CA, US
Shih-Chang Wu - Rancho Palos Verdes CA, US
Christopher Whiteside - Torrance CA, US
Janaki Potukuchi - Rancho Palos Verdes CA, US
International Classification:
H04B007/185
US Classification:
455/012100, 455/043000
Abstract:
A subharmonic carrier-canceling baseband/K upconverter system uses a first splitter to separate an incoming RF signal into two equal components: in-phase () and quadrature (Q, 180 degrees delayed). A second splitter is used to separate a local oscillator signal into two equal components: in-phase (I) and quadrature (Q, 90 degrees delayed). A first subharmonic mixer is used to mix both I components, while a second subharmonic mixer is used to mix both Q components. The outputs of both mixers are then combined to produce an output RF signal having reduced second order harmonics close to said local oscillator frequency.

Monitoring Of Input Backoff In Time Division Multiple Access Communication Satellites

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US Patent:
46370170, Jan 13, 1987
Filed:
May 21, 1984
Appl. No.:
6/612496
Inventors:
Francois T. Assal - Bethesda MD
Arnold L. Berman - Kensington MD
Janaki R. Potukuchi - Kensington MD
Assignee:
Communications Satellite Corporation - Washington DC
International Classification:
H04J 306
H04J 1500
H04J 116
H04J 314
US Classification:
370104
Abstract:
A method of measuring input-backoff to an amplifier in a time-division multiple access (TDMA) communication system having a carrier recovery segment and a clock recovery segment prior to a data segment in a traffic burst. A monitoring station transmits a CW pilot signal within the amplifier's bandwidth. In the guard time between bursts, the monitoring station measures the unsuppressed pilot level output by the amplifier. While a ground station is transmitting an unmodulated carrier during carrier recovery or a carrier modulated at the clock frequency during clock recovery, the monitoring station measures the suppressed pilot level, suppressed by the non-linear interaction of pilot and carrier. The amount of pilot suppression is related to the input power back-off of the carrier by a previously measured or a theoretically derived relationship. The carrier-to-suppressed noise ratio is determined by measuring the carrier level during the carrier recovery and by measuring the suppressed noise during carrier or clock recovery through a noise filter centered away from any transmitted signals or their intermodulation products.
Janaki R Potukuchi from Rancho Palos Verdes, CA, age ~84 Get Report