2019
DOI: 10.1541/ieejjia.8.803
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New Induction Heating Coils with Reduced Iron-Loss in the Cores for Small-Foreign-Metal Particle Detector Using an SiC-MOSFETs High-Frequency Inverter

Abstract: This paper presents iron loss reduction in the cores of induction heating (IH) coils for a small-foreign-metal particle (SFMP) detector with a 400-kHz SiC-MOSFETs high-frequency inverter. A new core shape for IH coils, which can reduce iron loss, is designed for the stable and continuous operation of the SFMP detector. Magnetic field analysis results using JSOL JMAG software, a 3D full-wave electromagnetic field simulation software, demonstrate that the iron loss caused by the new core shape for IH coils is de… Show more

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“…7). For analysis purpose, the ratio η est between the estimated eddy current loss Peddy and hysteresis loss P hys is computed by (10), and its values are represented in Table 2.…”
Section: Steinmetz-based Estimation Of Iron Loss Per Weight and Discussion On Measured Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…7). For analysis purpose, the ratio η est between the estimated eddy current loss Peddy and hysteresis loss P hys is computed by (10), and its values are represented in Table 2.…”
Section: Steinmetz-based Estimation Of Iron Loss Per Weight and Discussion On Measured Resultsmentioning
confidence: 99%
“…Furthermore, a play model was designed to analyze the iron loss of reactor core utilized in DC-DC converter with detailed considerations of the hysteresis B-H curve (9) . A novel design for the cores of induction heating coils with the significant decrease of iron loss, which was applied for a small-foreign-metal particle detector using a high-frequency SiC-MOSFET inverter with the carrier frequency of 400 kHz, was also introduced and evaluated (10) . Besides, the characteristics and parasitic capacitance of small-size toroidal reactors at high frequencies were analyzed and assessed to be noticeably affected by the wire guides and resin materials (11) .…”
Section: Introductionmentioning
confidence: 99%