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Due to a symmetrical construction, the voltage between the conductive surfaces of the Möbius resistor in the point equidistant to the feed point is exactly zero. This means that a short circuit placed at this point doesn't influence the characteristics of the device. Thus, the Möbius resistor can be
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Hyypia, Jorma (November 1969), "At Ultra-High
Frequencies Electronic Components Take On Weird Shapes!",
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segments, connected in parallel at the resistor's feed point.
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152:"Moebius Resistor is Noninductive & Nonreactive",
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43:material, twisted 180° and connected to form a
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68:thought of as two shorted lossy (resistive)
183:, collection of articles at rexresearch.com
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94:, Non-inductive electrical resistor
223:. You can help Knowledge (XXG) by
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126:"Making Resistors with Math"
23:Current in a Möbius resistor
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156:, no. 68–10267, 1968
39:surfaces separated by a
164:Electronics Illustrated
140:US patent 3,267,406
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181:Noninductive Resistor
99:U.S. patent 6,611,412
91:U.S. patent 3,267,406
83:U.S. patent 4,599,586
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270:Resistive components
154:AEC-NASA Tech. Brief
113:Ayrton–Perry winding
33:electrical component
16:Electrical component
198:Electronics portal
86:, Möbius capacitor
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