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Dive into the research topics where Dong-Il Kim is active.

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Featured researches published by Dong-Il Kim.


Journal of Korean navigation and port research | 2011

A Study on Smart Heat Radiating Sheet for Protecting Electronic Equipments on the Ship

Dong-Soo Choi; Dong-Il Kim; Doh-Yeol Kim; Dong-Han Choi; Gyung-Suk Kil; Jae-Hwan Kim

In this paper, we developed a Smart Heat Radiating Sheet(SHRS) having the absorption ability of more than 15 dB, and thermal conduction rate more than 20 W/mk for port logistics RFID(Radio Frequency IDentification) system by using AMP(Amorphous Metal Powder) and shielding sheet. Firstly, the EM(Electro_Magnetic) wave absorber samples were fabricated by using AMP and CPE (Chlorinated Polyethylene) with different composition ratios of 80 : 20 wt.% and 85 : 15 wt.%, respectively. Secondly, we fabricated the Smart Heat Radiating Sheet using the shielding sheet to attach EM Wave Absorber. As a result, the Smart Heat Radiating Sheet with absorption ability of 16 dB at 433 MHz and thermal conduction rate is 24 W/mk has been developed with the composition ratio of Amorphous Metal Powder : CPE = 85 : 15 wt.% and thickness of 5.5 mm.


Journal of Korean navigation and port research | 2010

A Study on EM Wave Absorber for Electromagnetic Wave Environment of Wireless LAN at 5.2 GHz

Gun-Suk Yoo; Dong-Soo Choi; Dong-Il Kim

Recently, the wireless LAN system is rapidly growing because of its convenience of high speed communication. However, the wireless LAN systems at indoor places occur multi-propagation path by reflected waves from walls, ceilings, floors, and desks. Multipath problems cause transmission errors and degradation of communication speed. These problems can be solved by using EM wave absorbers. In this paper, we analyzed property of Graphite and derived the optimum ratio of Graphite: CPE to develop EM wave absorber for the wireless LAN system. First, we fabricated several samples in different composition ratios of Graphite and CPE, and then measured the reflection coefficient of each samples. Material constants of permittivity and permeability were calculated using the measured data and designed EM wave absorber. Secondly, the EM wave absorber was fabricated and tested on the base of the simulation data. As a result, it showed that the EM wave absorber in 1.7 mm thickness with the ratio of Graphite: CPE


The Journal of Korean Institute of Electromagnetic Engineering and Science | 2007

A Study on the EM Wave Absorber for the Electromagnetic Environment of Indoor Wireless LAN

Sang-Gil Yoon; Dong-Il Kim; Dae-Hee Lee; Chang-Mook Choi

Recently, wireless LAN are often applied in home or office because of its various of convenience. Frequency rage of wireless LAN specified by IEEE 802.11a is at 5.2 GHz and IEEE 802.11b is 2.4 GHz. But in offices with wireless LAN devices, reflection of waves against walls, ceilings, floors and desks made of metal creates multipath problems that reduce communication speed and lose data. These problems can be solved by using EM wave absorber. In this paper, we designed and fabricated EM wave absorbers using MnZn-ferrite, sendust, carbon and CPE(Chlorinated Polyethylene). The EM wave absorber with the ratio of MnZn-Ferrite : sendust : CPE


Journal of Korean navigation and port research | 2011

Development of EM Wave Absorber for Hi-pass System Using Amorphous Metal Powder

Dong-Il Kim; Gun-Suk Yoo; Dong-Soo Choi

In this paper, we designed and fabricated the Electromagnetic(EM) wave absorber for an Electronic Toll Collection(ETC or Hi-pass) system by using Amorphous metal powder and CPE. The material properties and the absorption properties of the samples containing 50 wt.%, 60 wt.%, 70 wt.%, and 80 wt.% of Amorphous. Moreover, the EM wave absorption abilities were simulated for the different thicknesses of the EM absorbers by adopting the measured permittivity and permeability, and then the EM wave absorber was fabricated based on the simulated design values. As a result, the EM wave absorber with the composition of Amorphous metal powder : CPE = 50 : 50 wt.% with the thickness of 2.6 mm has excellent absorption ability more than 40 dB at 5.8 GHz.


Journal of Korean navigation and port research | 2010

Development of EMC filter for electronic equipments mounted on ships

Dong-Il Kim; Eun-Mi Kim; Mi-Hwa Jeon

It is very important to prevent the electromagnetic interference and to prevent malfunction of electronic equipments mounted on ships. To solve these problems, in this paper, the EMC filter was designed, fabricated, and tested. The Ni-Zn ferrite beads with high permeability were used to make large inductance as the inductor and the feed-through capacitors without any resonance points. As a result, excellent attenuation characteristics of 25~70 dB were obtained from the 0 kHz~1.5 GHz band. In addition, when the Electric Fast Transient (EFT) of 4 kV in the level 4 of IEC 61000-4-4 was induced the EFT reduced to 600 V. Therefore, it was clearly shown that the developed EMC felter can be used for suppressing the electromagnetic interference on-board electronic devices and equipments.


Journal of Korean navigation and port research | 2010

Development of EM Wave Absorber for Port Logistics RFID System by Using Amorphous Metal Powder

Dong-Soo Choi; Gun-Suk Yoo; Dong-Il Kim

In this paper, we developed an EM wave absorber having the absorption ability of more than 15 dB for port logistics RFID system by using AMP. Firstly, we fabricated EM wave absorber by using AMP and CPE(Chlorinated Polyethylene) with different composition ratios 80:20 wt.% and 85:15 wt.%. Secondly, we designed the optimum EM wave absorber using the calculated material constants obtained from measured input impedance of the samples. Therefore, EM wave absorber with absorption ability of 17.5 dB at 433 MHz when composition ratio of AMP:CPE


Journal of Korean navigation and port research | 2010

A Study on the EM Wave Absorber for Improving Electromagnetic Environment of Wireless LAN at 2.4 GHz

Gun-Suk Yoo; Dong-Il Kim; Dong-Soo Choi; Dong-Han Choi

In this paper, we designed and fabricated the Electro-Magnetic (EM) wave absorber for wireless LAN by using Amorphous and CPE. The material constants and the absorption properties were measured for the samples containing 50 %, 60 %, and 70 % weight fraction of Amorphous. Moreover, the EM wave absorption abilities were simulated for the EM absorbers in different thicknesses by adopting the measured permittivity and permeability, and then the EM wave absorber was fabricated based on the simulated design values. As a result, the EM wave absorber with the composition ratio in Amorphous : CPE = 60 : 40 wt.% with the thickness of 4 mm has the absorption ability more than 35 dB at 2.4 GHz. Thus, it is expected the wireless LAN environment can be improved by using the developed absorber.


Journal of Korean navigation and port research | 2010

A Study on FDTD Analysis and Fabrication of the Sheet-type Millimeter EM wave Absorber

Dae-Hun Kim; Dong-Soo Soo; Dong-Il Kim

In this paper, the EM wave absorber was developed for the 94-GHz detecting radar system. To analysis an EM wave absorber in millimeter wave band, we fabricated three absorber samples using carbon black and titanium dioxide and permalloy with chlorinated polyethylene. After measuring the complex relative permittivity, the absorption characteristics are simulated by 1D FDTD according to different thicknesses of less than 1.0 mm. Then, the EM wave absorber was fabricated based on the FDTD simulation. As a result, the measured results agreed well with the simulated ones, and the developed EM wave absorber with a thickness of 0.7 mm had the desired absorption characteristics of more than 14 dB in the frequency range of the 94-GHz band.


The Journal of Korean Institute of Electromagnetic Engineering and Science | 2009

Development of the EM Wave Absorber for the Hi-pass Using Amorphous Powder

Gun-Suk Yoo; Dong-Il Kim; Dong-Soo Choi

Recently, Hi-pass system(non-stop electric toll collection) using DSRC is working. However, it has various problems such as system errors by EM wave interference or multi-path reflection. The EM wave absorber is able to solve these problems. In this paper, we designed and fabricated EM wave absorber using amorphous substance. As a result EM wave absorber with composition of amorphous metal powder:CPE


The Journal of Korean Institute of Electromagnetic Engineering and Science | 2009

A Study on the Evaluating Characteristics of EM Wave Absorber for Noise Suppression from PCB

Dong-Il Kim; Dong-Soo Choi; Sang-Gil Yoon; Gun-Suk Yoo

In this paper, we analyzed and evaluated noise suppression characteristic of EM wave absorber. We fabricated several absorber samples in different ratios of Sendust and Amorphous with CPE(Chlorinated Ploy-ethylene) as binder and calculated material constants by measured S-parameter. Then, we confirmed that the noise suppression characteristic of EM wave absorbers using microstrip line. A microstrip line with EM wave absorber placed on its top was used to evaluate the conduction noise suppression. As a result, noise suppression effect show different charateristic by changing relative permeability. Therefore, EM wave absorber using Sendust show excellent characteristic. In particular the maximum power absorption over 90 % in 1.7 GHz to over 6 GHz has obtained when composition of Sendust:CPE

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Chang-Mook Choi

Korea Maritime and Ocean University

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Dong-Soo Choi

Korea Maritime and Ocean University

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Ki-Man Kim

Korea Maritime and Ocean University

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Dae-Hee Lee

Korea Maritime and Ocean University

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Rui Li

Korea Maritime and Ocean University

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Ji-Won Jung

Korea Maritime and Ocean University

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Seok-Jeong Lee

Korea Maritime and Ocean University

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