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Source: The Open Library

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1Advances in Body-Centric Wireless Communication

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“Advances in Body-Centric Wireless Communication” Metadata:

  • Title: ➤  Advances in Body-Centric Wireless Communication
  • Authors:
  • Language: English
  • Number of Pages: Median: 456
  • Publisher: ➤  Institution of Engineering & Technology - The Institution of Engineering and Technology
  • Publish Date:

“Advances in Body-Centric Wireless Communication” Subjects and Themes:

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Access and General Info:

  • First Year Published: 2016
  • Is Full Text Available: No
  • Is The Book Public: No
  • Access Status: No_ebook

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Substrate-integrated waveguide

substrate-integrated waveguide (SIW) (also known as post-wall waveguide or laminated waveguide) is a synthetic rectangular electromagnetic waveguide formed

Planar transmission line

transmit along a strip of dielectric, and substrate-integrated waveguide forms a dielectric waveguide within the substrate with rows of posts. These types cannot

Waveguide (radio frequency)

dielectric waveguides and the Goubau line, use both metal walls and dielectric surfaces to confine the wave. Depending on the frequency, waveguides can be

Waveguide filter

A waveguide filter is an electronic filter constructed with waveguide technology. Waveguides are hollow metal conduits inside which an electromagnetic

Integrated quantum photonics

producing waveguides). This method has the benefit of not needing a clean room and is the most common method now for making silica waveguides. It's also

Coplanar waveguide

scale, coplanar waveguide transmission lines are also built into monolithic microwave integrated circuits. Conventional coplanar waveguide (CPW) consists

Erbium-doped waveguide amplifier

channel waveguide in a rare-earth doped phosphate glass. Resulting waveguides were typically single-mode waveguides, which could be easily integrated with

Printed circuit board

development of integrated circuit technology, as not only wiring but also passive components were fabricated on the ceramic substrate. In 1948, the US

Fiber-optic splitter

splitter, also known as a beam splitter, is based on a quartz substrate of an integrated waveguide optical power distribution device, similar to a coaxial cable

Circulator

resonator. A waveguide junction circulator contains a magnetized ferrite resonator, which is located at the junction of three waveguides. In contrast