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Erik L. Kollberg

Researcher at Chalmers University of Technology

Publications -  130
Citations -  3832

Erik L. Kollberg is an academic researcher from Chalmers University of Technology. The author has contributed to research in topics: Heterostructure barrier varactor & Frequency multiplier. The author has an hindex of 24, co-authored 130 publications receiving 3735 citations. Previous affiliations of Erik L. Kollberg include Ericsson.

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The Herschel-Heterodyne Instrument for the Far-Infrared (HIFI)

Th. de Graauw, +179 more
TL;DR: The Heterodyne Instrument for the Far-Infrared (HIFI) was launched onboard ESA's Herschel Space Observatory in May 2009 as mentioned in this paper, which is a set of 7 heterodyne receivers that are electronically tuneable, covering 480-1250 GHz with SIS mixers and the 1410-1910 GHz range with hot electron bolometer mixers.
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CAD models for multilayered substrate interdigital capacitors

TL;DR: In this article, conformal mapping-based models for interdigital capacitors on substrates with a thin superstrate and/or covering dielectric film are given for ICs with finger numbers n/spl ges/2.
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The tapered slot antenna-a new integrated element for millimeter-wave applications

TL;DR: Tapered slot antennas (TSAs) with a number of potential applications as single elements and focal plane arrays are discussed in this paper, where the circuit and radiation properties of TSAs are reviewed.
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Do we really need ferroelectrics in paraelectric phase only in electrically controlled microwave devices

TL;DR: In this article, the possibilities and benefits of using ferroelectrics in polar phase in electrically controllable microwave devices are considered explicitly for the first time, and the authors consider the use of ceramic (bulk and thick film) ferro-electrics for industrial applications.
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Quantum-Barrier-Varactor Diodes for High-Efficiency Millimetre-Wave Multipliers

TL;DR: In this article, the quantum-barrier-varactor diode (QBV diode) was proposed for use in multipliers for millimetre waves, where the capacitance/voltage characteristic is symmetric and only odd harmonics are obtained.