World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
32
Citations
3738
World Ranking
9599
National Ranking
2724

Overview

What is he best known for?

The fields of study he is best known for:

  • Mechanical engineering
  • Optical fiber
  • Electrical engineering

His scientific interests lie mostly in Optical fiber, Structural engineering, Optical fiber cable, Cable gland and Electronic engineering. His biological study spans a wide range of topics, including Optoelectronics, Receptacle, Computer hardware and Composite material. The study incorporates disciplines such as Drop and Electrical engineering in addition to Receptacle.

The concepts of his Optical fiber cable study are interwoven with issues in Acoustics, Enclosure, A fibers and Spark plug. As a part of the same scientific family, Terry L. Cooke mostly works in the field of Acoustics, focusing on Engineering drawing and, on occasion, Fiber optic splitter and Fiber cable termination. His work on Tray expands to the thematically related Cable gland.

His most cited work include:

  • Fiber optic cable assembly for interconnecting optical fibers within a receptacle mounted within the wall of an enclosure (159 citations)
  • Connector housing having a sliding tray with a hingeable portion (109 citations)
  • Furcation tubing and fanout furcation kit (107 citations)

What are the main themes of his work throughout his whole career to date?

The scientist’s investigation covers issues in Optical fiber, Optical fiber cable, Structural engineering, A fibers and Electronic engineering. His study in Optical fiber is interdisciplinary in nature, drawing from both Optoelectronics, Composite material and Cable gland. His Optical fiber cable study combines topics in areas such as Acoustics, Buffer and Spark plug.

His Structural engineering research is multidisciplinary, incorporating elements of Mechanical engineering, Electrical conduit and Rack. The various areas that Terry L. Cooke examines in his A fibers study include Chassis and Rotation. His Fiber optic splitter study combines topics from a wide range of disciplines, such as Computer hardware and Optical cross-connect.

He most often published in these fields:

  • Optical fiber (87.88%)
  • Optical fiber cable (36.36%)
  • Structural engineering (34.85%)

What were the highlights of his more recent work (between 2012-2015)?

  • Optical fiber (87.88%)
  • Fiber optic splitter (21.21%)
  • Optical fiber cable (36.36%)

In recent papers he was focusing on the following fields of study:

Terry L. Cooke mainly focuses on Optical fiber, Fiber optic splitter, Optical fiber cable, Electronic engineering and Optical cross-connect. Terry L. Cooke has included themes like Optoelectronics and A fibers in his Optical fiber study. His Optoelectronics research is multidisciplinary, relying on both Tube, Pigtail, Engineering drawing and Strain relief.

His Fiber optic splitter study frequently intersects with other fields, such as Computer hardware. Within one scientific family, Terry L. Cooke focuses on topics pertaining to Fiber under Optical fiber cable, and may sometimes address concerns connected to Epoxy and Structural engineering. In his study, Electrical engineering and Fanout cable is strongly linked to Fiber-optic communication, which falls under the umbrella field of Optical cross-connect.

Between 2012 and 2015, his most popular works were:

  • Port tap fiber optic modules, and related systems and methods for monitoring optical networks (29 citations)
  • High-density port tap fiber optic modules, and related systems and methods for monitoring optical networks (16 citations)
  • Strain relief for pigtail module (11 citations)

In his most recent research, the most cited papers focused on:

  • Mechanical engineering
  • Electrical engineering
  • Optical fiber

His main research concerns Optical fiber, Communication bandwidth, Network tap, Fiber optic splitter and Electronic engineering. Optical fiber is connected with High density and Related strain in his research. His Related strain studies intersect with other disciplines such as Engineering drawing, Strain relief, Pigtail, Tube and Optoelectronics.

His Engineering drawing research integrates issues from Fiber cable termination and A fibers. Terry L. Cooke undertakes interdisciplinary study in the fields of Communication bandwidth and Computer hardware through his research.

Best Publications

  • Fiber optic cable assembly for interconnecting optical fibers within a receptacle mounted within the wall of an enclosure

    Markus A. Giebel;Terry L. Cooke;Thomas Theuerkorn;Douglas E. Wolfe

  • Connector housing having a sliding tray with a hingeable portion

    William J M Giraud;Andrew G. Stanush;Terry L. Cooke;John B. Johnson

  • Furcation tubing and fanout furcation kit

    Charles A. Yow;Daniel Leyva;Terry Lee Cooke;John Bradley Johnson

  • Independently translatable modules and fiber optic equipment trays in fiber optic equipment

    Terry L. Cooke;Tory A. Klavuhn;David L. Dean;Juan Garcia

  • Pre-connectorized fiber optic distribution cable having multifiber connector

    Terry L. Cooke;II Robert B. Elkins;John B. Johnson;Dennis M. Knecht

  • Fiber optic drop cable slack storage receptacle

    Stephen G. Bloodworth;Brad N. Grunwald;John A. Keenum;John J. Napiorkowski

  • Optical receiver stub fitting

    Markus A. Giebel;Terry L. Cooke

  • Fiber optic universal bracket apparatus and methods

    Terry Lee Cooke;John Bradley Johnson;James Phillip Luther;Alan William Ugolini

  • Distribution frame for an optical communication network

    William Jm Giraud;Hubert B. Beamon;Andrew G. Stanush;Terry L. Cooke

  • Fiber optic communications network comprising pre-connectorized fiber optic distribution cable

    B. Elkins Ii Robert;Terry L. Cooke;John B. Johnson;Dennis M. Knecht

  • Pulling grip for installing pre-connectorized fiber optic cable

    Terry L. Cooke;John B. Johnson

  • Telescoping fiber optic module and related devices

    Cooke Terry L;Dean Jr David L;Gonzalez Jose Arturo Urdiales;Klavuhn Tory A

  • High density and bandwidth fiber optic apparatuses and related equipment and methods

    Terry Lee Cooke;David Lee Dean;Harley Joseph Staber;Kevin Lee Strause

  • Mounting of fiber optic cable assemblies within fiber optic shelf assemblies

    Terry L. Cooke;David L. Dean;Tory A. Klavuhn;Harley J. Staber

  • Fiber optic connection for applying axial biasing force to multifiber ferrule

    James P. Luther;Terry L. Cooke;Michael deJong;II Robert B. Elkins

  • Rear-installable fiber optic modules and equipment

    Terry Lee Cooke;Tory A. Klavuhn;Jr. David L. Dean;Juan Garcia

  • Preterminated fiber optic distribution cable

    Terry L. Cooke;John B. Johnson;Dennis M. Knecht;James P. Luther

  • High capacity fiber optic connection infrastructure apparatus

    Terry L. Cooke;Jr. David L. Dean;Harley J. Staber;Kevin L. Strause

  • Fiber Optic Equipment Supporting Moveable Fiber Optic Equipment Tray(s) and Module(s), and Related Equipment and Methods

    Terry L. Cooke;Mark R. Dagley;David L. Dean;Tory A. Klavuhn

  • Fan-out kit for a furcation system

    Alma Delia Cabanne Lopez;Terry L. Cooke;Christopher S. Houser;Diego Maldonalo Jimenez

Frequent Co-Authors

James P. Luther
James P. Luther Corning (United States)
Lars Nielsen
Lars Nielsen Linköping University

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