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  • Class-F and Inverse Class-F Power Amplifier Loading Networks Design Based upon Transmission Zeros
    at the harmonic frequencies of interest. A two-section impedance matching network is transformed to either a class-F2,3 or inverse class-F2,3 loading network. The manipulation of transistor parasitics is described using network transformations. The resultant loading networks serve as fundamental-frequency
  • When Ethernet Rotates: Ethernet and Slip Rings
    or CAT 6 network environment. Slip ring designers are able to meet the challenge of more exacting performance parameters with innovative methods of matching impedance, controlling crosstalk, and managing losses.
  • MICRO: Tool/Fab Support Strategies
    to make up for time lost because of tool downtime. For some time, Agilent's RF subsystems were malfunctioning: either they were causing the plasma sporadically to not ignite or the matching network was unable to match the plasma impedance correctly

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