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"Compensation"

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"Compensation"

Dielectric Characteristics of (BaCaSr)(TixZr1-x)O3 Dielectric Ceramic with Temperature Compensation Capacitor Characteristics
Yoo Jung Choi, Hong Sun Lee, Jung Rag Yoon
J Electr Electron Mater 2025;38(4):376-382.   Published online July 1, 2025
DOI: https://doi.org/10.4313/JKEM.2025.38.4.4
This study developed a dielectric composition for high-capacitance MLCCs with C0G and U2J temperature compensation characteristics (Class I) under reducing conditions. The potential application of this composition in highpermittivity class I MLCCs was examined. Using (Ba₀.₂₄Ca₀.₁₆Sr₀.₆)(TiₓZr₁₋ₓ)O₃. XRD analysis showed that secondary phases like Sr₂TiO₄ and TiO₂ formed at higher Ti content, affecting the stoichiometric balance. Adjusting the Ti/Zr molar ratio resulted in a dielectric constant of 41.2 ~ 105, a dielectric loss of 0.082 ~ 0.174%, and insulation resistance above 1.6 × 1013 ohms at 25℃. The TCC shifted from C0G to U2J as the Ti/Zr ratio increased, but the composition enabled the design of high-capacitance and high-voltage MLCCs with favorable dielectric and electrical properties.
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Regular Paper : Optical Compensation of IPS-LCD for Symmetric-High-Contrast at Off-Axis Oblique View
Tae Hyeon Kim, Bong Sik Kim, Woo Sang Park
J Electr Electron Mater 2016;29(3):175-180.   Published online March 1, 2016
In this study, we proposed an optical compensation method to improve the symmetricity of contrast ratio for wide viewing angle IPS (in-plane switching) LCD. First, the phase retardation depending on the thickness of compensation film is calculated, and then the phase change is presented at the Poincare sphere. The phase retardation and the polarization state of the light passing through the optical elements are caculated by using the EJMM (extended Jones matrix method). In addition, the transmittance and the contrast countour are also calculated by using the Berremann``s 4x4 matrix method. The simulation is carried out for a IPS LC cell with positive A/C/A compensation film. From the standard deviation of the contrast ratio, we confirmed the symmetricity at each viewing angle is inversely proportional to the standard deviation and calculated the optimum design condition of the uniaxial compensation film for the IPS LCD.
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Theoretical Analysis of Biaxial Films for the Optical Compensation of TN-LCDs
Bong Sik Kim, Choon Ky Kang, Woo Sang Park
J Electr Electron Mater 2012;25(3):209-212.   Published online March 1, 2012
In this paper, we have studied on the optimal design of the optical compensation film for the TN-LCDs. To have wide viewing angle panels, several methods such as multi-domain method, optical path method, and phase compensation method have been proposed. Among these methods, this paper focused on the phase compensation method. In the phase compensation method, the phase retardation generated from the optical birefringence for the off-axis incident is compensated by using optical films with refractive anisotropy. To compensate the phase retardation of the TN-LCDs, we have proposed design concept for the biaxial optical films and analyzed the optical performance for the proposed structures. The calculation of the dynamic motion of the liquid crystals was based on the Ericksen-Leslie theory and the optical performance of the TN-LCD was calculated from the Extended Jones Matrix Method. From the results, we have confirmed that the optical characteristics of the TN-LCDs with the biaxial films have been improved considerably compared with the TN-LCDs compensated by the combination of the uniaxial films.
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A Study on Double Sampling Design of CMOS ROIC for Uncooled Bolometer Infrared Sensor using Reference Signal Compensation Circuit
Young Seok Bae, Eun Sik Jung, Ju Hyun Oh, Man Young Sung
J Electr Electron Mater 2010;23(2):89-92.   Published online February 1, 2010
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Study on Improving Viewing Angle of Homogeneous Aligned Liquid Crystal Display using an Compensation Film
Young Jin Lim, Seong Su Kim, Mi Hyung Chin, Eun Jeong Jeon, Yu Jinn Choi, Seung Hee Lee
J Electr Electron Mater 2008;21(12):1101-1104.   Published online December 1, 2008
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Improved Defect Control Problem using Scaled Down Silicon Oxide Stamps for Nanoimprint Lithography
J Electr Electron Mater 2006;19(2):130-138.   Published online February 1, 2006
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Frequency-temperature Characteristics of AT-cut Crystal Resonator Compensated by Bi0.5(Na0.84K0. 16)0.5TiO3 Ceramics
J Electr Electron Mater 2005;18(7):610-614.   Published online July 1, 2005
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Display : A Novel LC Device Associated with Optically Compensated Splay Structure
Jae Seung Kim, Jong Mun Lee, Seung Hui Lee
J Electr Electron Mater 2004;17(5):536-540.   Published online May 1, 2004
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Display,Optical Deyiees : Electro-Optic Characteristics of the Fringe-Field driven Reflective Hybrid Aligned Nematic Liquid Crystal Display
Tae Bong Jeong, Ji Hyeog Park, Jeong Seog Son, Je Hun Song, Seung Hui Lee
J Electr Electron Mater 2004;17(2):201-206.   Published online February 1, 2004
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Display : Electro-optic Characteristics of the Fringe-field Driven-reflective Liquid Crystal Display with One Polarizer
Tae Bong Jung, Chi Hyuck Park, John Moon Rhee, Yong Bai Kim, Seung Hee Lee
J Electr Electron Mater 2003;16(2):131-137.   Published online February 1, 2003
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