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References

1 
M.-W. Ha, T. Kim, J.-Y. Lee, M. K. Kim, O. Seok, 2020, Effects of test fixtures on electrical characteristics of X7R 630 V multilayer ceramic capacitors, Tans. KIEE, Vol. 69, No. 12, pp. 1886-1889Google Search
2 
J.-R. Kim, M. K. Yoonㅡ, 2020, Electrical characteristics of multilayered ceramic capacitors depending on BaTiO$_{3}$ particle size, Vol. 15, pp. 2685-2690DOI
3 
M.-W. Ha, J.-Y. Lee, M. K. Kim, J.-R. Yun, 2021, Understanding MLCC for novice electrical engineers, KIEE Magazine, Vol. 70, No. 5, pp. 27-33Google Search
4 
S. Lee, H. Kang, J.-Y. Lee, M.-W. Ha, 2022, A study on temperature-dependent electrical characteristics of X8G 1 kV multilayer ceramic capacitors, KIEE Soc. Electrophys. Appl., pp. 138-139Google Search
5 
C. H. Lee, J. R. Yoon, 2022, The effect of ag-epoxy electrodes on the thermal and mechanical properties of multilayer ceramic capacitor, J. Ceram. Process. Res., Vol. 23, No. 2, pp. 181-187DOI
6 
C. H. Lee, J. R. Yoon, 2022, Reliability characteristics of high-capacity multilayer ceramic capacitors according to highly accelerated life test, J. Ceram. Process. Res., Vol. 23, No. 6, pp. 794-798DOI
7 
K. Hong, T. H. Lee, J. M. Suh, S.-H. Yoon, H. W. Jang, 2019, Perspectives and challenges in multilayer ceramic capacitors for next generation electronics, J. Mater. Chem. C, Vol. 7, pp. 9782-9802DOI
8 
M.-W. Ha, 2021, Temperature capacitance coefficient of X8R 100 V multilayer ceramic capacitor, KIEE Summer Conf., pp. 1413-1414Google Search
9 
M.-W. Ha, J.-Y. Lee, 2022, Frequency-dependent impedance and equivalent series resistance of X8R 470 nF MLCC, KIEE Soc. Electrophys. Appl., pp. 61-62Google Search
10 
S.-J. Kong, J.-H. Kwon, D.-Y. Hong, M.-W. Ha, J.-Y. Lee, 2022, Proposal of the energy recovery circuit for testing high-voltage MLCC, Trans. Korean Inst. Power Electron., Vol. 27, No. 3, pp. 214-220DOI
11 
Y.-S. Yoon, C. Lee, 2018, Material Science and Engineering, 1st Edition, Hantee MediaGoogle Search
12 
R. W. Franklin, 1996, Analysis of solid tantalum capacitor leakage current, Kyocera AVX Technical InformationGoogle Search
13 
C. Iorga, 2000, Compartmental analysis of dielectric absorption in capacitors, IEEE Trans. Dielectr. Electr. Insul., Vol. 7, No. 2, pp. 187-192DOI
14 
A. Teverovsky, 2014, Insulation resistance and absorption voltages in low-voltage ceramic capacitors with cracks, IEEE Trans. Compon. Packag. Manuf. Technol., Vol. 4, No. 7, pp. 1169-1176Google Search
15 
T. Tsurumi, 2021, History and dream of ceramics capacitor, Proc. ICAEGoogle Search
16 
T. Tsurumi, T. Hoshina, H. Takeda, Y. Mizuno, H. Chazono, 2009, Size effect of barium titanate and computer-aided design of multilayered ceramic capacitors, IEEE Trans. Ultrason. Ferroelectr. Freq. Control, Vol. 56, No. 8, pp. 1513-1520DOI
17 
CS3225X7R226K250NRL, Samhwa Capacitor, Co. Ltd.Google Search
18 
Y.-K. Sung, 1997, Microdevice Electronic Insulation and Physical Properties, 1st Edition, Vol. Seoul: Korea University PressGoogle Search
19 
L. E. Wojewoda, M. J. Hill, K. Radhakrishnan, N. Goyal, 2009, Use condition characterization of MLCCs, IEEE Trans. Adv. Packag., Vol. 32, No. 1, pp. 109-115DOI
20 
CS5750X7R474K631NRK, Samhwa Capacitor, Co. Ltd.Google Search
21 
CQ5750X7R224K631CRL, Samhwa Capacitor, Co. Ltd.Google Search
22 
T. Tsurumi, H. Adachi, H. Kakemoto, S. Wada, Y. Mizuno, H. Chazono, H. Kishi, 2002, Dielectric properties of BaTiO$_{3}$- based ceramics under high electric field, Jpn. J. Appl. Phys., Vol. 41, No. 11B, pp. 6929-6933DOI
23 
D. W. Hahn, Y. H. Han, 2009, Capacitance aging behavior of acceptor-doped BaTiO$_{3}$ under DC electrical field, J. Korean Ceram. Soc., Vol. 46, No. 2, pp. 219-223DOI
24 
D. W. Hahn, J. O. Hong, Y. H. Han, 2008, Effects of MgO doping on DC bias aging behavior of Mn-doped BaTiO$_{3}$, Jpn. J. Appl. Phys., Vol. 47, No. 7R, pp. 5526-5529DOI
25 
Y. Saito, T. Nakamura, K. Nada, H. Sano, 2018, Insulation resistance degradation mechanisms of multilayer ceramic capacitors during highly accelerated temperature and humidity stress tests, Jpn. J. Appl. Phys., Vol. 57, No. 11S, pp. 11UC04DOI
26 
T. Teranish, S. Azuma, A. Kishimoto, 2019, Domain contribution to the aging characteristics in BaTiO$_{3}$ ceramics, Jpn. J. Appl. Phys., Vol. 58, No. SL, pp. SLLC03DOI