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Schottky rectifiers for low-voltage outputs

1986 IEEE Applied Power Electronics Conference and Exposition, 1986
Schottky rectifier device designs are reviewed with the aim of obtaining minimum power loss for output rectifier applications operating in the 2 to 3 volt range. The performance of a new low VF Schottky design is described.
P. L. Hower, C. E. Weaver
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Design of an Inverter with Optimum Output Voltage Waveform

IFAC Proceedings Volumes, 1977
Abstract Harmonic distortion at a static inverter output has been the topic of research of many workers. Improvements in and control of harmonic distortion have been achieved by employing sampling and modulation techniques. On the other hand, there are practical difficulties in realizing the optimum inverter output Toltage steps and/or control ...
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A voltage divider circuit with digital output

International Journal of Electronics, 1982
(1982). A voltage divider circuit with digital output. International Journal of Electronics: Vol. 53, No. 3, pp. 293-296.
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Sine Wave Voltage Output versus DC Voltage Capability

1994
Figure 105 shows values of dc voltage capability along the abscissa and rms values of voltage for a sine wave signal that can be accommodated by the plus and minus dc voltages. Rms voltage is shown on the left ordinate; average sine wave power into both 4- and 8-ohm loads is shown along the right ordinate.
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A Dual-channel Converter with a Positive Output and a Negative Voltage Output

2023 Sixth International Symposium on Computer, Consumer and Control (IS3C), 2023
Yau Yeu-Torng, Luu Thanh-Phu
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