2013
DOI: 10.1109/tii.2012.2226184
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FPGA-Based Test-Bench for Resonant Inverter Load Characterization

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Cited by 49 publications
(24 citation statements)
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“…Consequently, a discrete power inductor and resistor have been used to avoid non-idealities of induction heating loads and provide an accurate verification of the model. The equivalent load resistance value is 2.85 Ω and the equivalent series inductance is 19.5 µH [33,34]. These parameters accounts for both the coil and the induction load effect.…”
Section: Simulation and Experimental Resultsmentioning
confidence: 99%
“…Consequently, a discrete power inductor and resistor have been used to avoid non-idealities of induction heating loads and provide an accurate verification of the model. The equivalent load resistance value is 2.85 Ω and the equivalent series inductance is 19.5 µH [33,34]. These parameters accounts for both the coil and the induction load effect.…”
Section: Simulation and Experimental Resultsmentioning
confidence: 99%
“…The Special Section closes with the paper entitled "FPGABased Test-Bench for Resonant Inverter Load Characterization" [12], by Ó. Jiménez et al It addresses the application of an FPGA-based system to an industrial induction heating system. The FPGA platform was used for rapid prototyping purposes, the development of an ASIC implementation being the ultimate goal of the work.…”
Section: Guest Editorial Special Section On Embedded Andmentioning
confidence: 99%
“…Fig. 6 (a) shows the digital control architecture block diagram [26,27]. A Xilinx Spartan 6 FPGA is used to generate the driving signals for the resonant power converter as well as to measure the resonant capacitor voltage.…”
Section: Converter and Monitoring Technique Implementationmentioning
confidence: 99%