• Title/Summary/Keyword: Microwave ferrite

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The Study of Magnetic Properties of Ni-Zn-Cu Ferrite by variation of Low Temperature Sintered (저온소결 온도변화에 따른 Ni-Zn-Cu 페라이트의 자기적 특성 연구)

  • Koh, Jae-Gui
    • Journal of the Korean Magnetics Society
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    • v.17 no.6
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    • pp.232-237
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    • 2007
  • We have synthesized the low temperature sintered of Ni-Zn-Cu ferrite with nonstoichiometric composition a little deficient in $Fe_2O_3$ from $(Ni_{0.2}Cu_{0.2}Zn_{0.6})_{1+x}(Fe_2O_3)_{1-x}$. For low loss and acceleration of grain growth $TiO_2$ and $Li_2CO_3$ was added from 0.25 mol% to 1.0 mol%. The mixture of the law materials was calcinated and milled. The compacts of toroidal type were sintered at different temperature $(875^{\circ}C,\;900^{\circ}C,\;925^{\circ}C\;950^{\circ}C)$ for 2 hours in air followed by an air cooling. Then, effects of composition and sintering temperatures on the physical properties such as density, resistivity, magnetic induction, coercive force, initial permeability, and quality factor of the Ni-Zn-Cu ferrite were investigated. The density of the Ni-Zn-Cu ferrite was $4.85\sim5.32g/cm^3$, resistivity revealed $10^8\sim10^{12}\Omega-cm$. The magnetic properties obtained from the aforementioned Ni-Zn-Cu ferrite specimens were 1,300 gauss for the maximum induction, 4.5 oersted for the coercive force, 275 for the initial permeability, and 83 for the quality factor. The physical properties indicated that the specimens could be utilized as the core of high frequency range (involved microwave range) communication and deflection yoke of T.V.

A Study on Physical Properties Of Co3O4-added Ni- Zn Ferrite at High Frequency (Co3O4첨가에 따른 고주파용 Ni-Zn계 ferrite의 물리적 특성 연구)

  • Koh, Jae-Gui
    • Korean Journal of Materials Research
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    • v.12 no.10
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    • pp.791-795
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    • 2002
  • We studied the physical properties of $Co_3$$O_4$-added Ni-Zn ferrite which were sintered at 1050~110$0^{\circ}C$ for 2 hours. X-ray diffraction showed a spinel structure, and optical microscopy showed grain sizes of 5 to 10 $\mu\textrm{m}$. As the sintering temperature was increased from $1050^{\circ}C$ to $1070^{\circ}C$, the initial permeability and magnetic induction increased, and both of the loss factor and the coercive force decreased. The Curie temperatures were about $^234~245{\circ}C$ with added $Co_3$$O_4$. The initial permeability was 350 to 420 and maximum magnetic induction density and coercive force 4870G to 4980G and 0.15 Oe to 0.21 Oe, respectively which were similar to those of Ni-Zn ferrite synthesized in the conventional process. The frequency of specimen was in the range of 1MHz to 300MHz. In the plot of initial permeability vs. frequencies, a $180^{\circ}C$ rotation of the magnetic domain could be perceived in a broad band of microwave before and after the resonance frequency.

Sintering and Microwave Properties of Ba Hexagonal Ferrite (Ba 육방정 페라이트의 소결 특성 및 마이크로파 특성)

  • Kim, Jae-Sik;Ryu, Ki-Won;Bae, Seon-Gi;Lee, Young-Hie
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.1293_1294
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    • 2009
  • The sintering and high frequency electro-magnetic properties of Ba-hexagonal ferrite were investigated. All samples of the Ba-hexagonal ferrite were prepared by the conventional mixed oxide method and sintered at $1150^{\circ}C$~$1400^{\circ}C$. From the X-ray diffraction patterns of sintered Ba-hexagonal ferrite, the $Ba_3Co_2Fe_{24}O_{41}$ phase was represented as main phase in the almost sintering conditions. The bulk densities with sintering temperature and decreased at $1400^{\circ}C$. The permittivity ($\varepsilon$') and loss tangent of permittivity ($\varepsilon$"/$\varepsilon$') of $Ba_3Co_2Fe_{24}O_{41}$ ceramics increased and decreased with sintering temperature, respectively. The permeability of $Ba_3Co_2Fe_{24}O_{41}$ ceramics decreased with sinteirng temperature. The loss tangent of permeability was not changed compared each other with sintering temperature. The bulk density of $Ba_3Co_2Fe_{24}O_{41}$ ceramics sintered at $1300^{\circ}C$ was 4.79 g/$cm^3$. The permittivity, loss tangent of permittivity and permeability, loss tangent of permeability were 19.896, 0.1718 and 14.218, 0.2046 at 210 MHz, respectively.

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Complex Permittivity and Linewidth Measurements of Microwave Ferrites Using the Cavity Perturbation Method (공진기 섭동방법을 이용한 마이크로파 페라이트의 복소 유전율과 선폭 측정)

  • 엄동진;오호석;박동철;윤상원
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.30A no.4
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    • pp.11-19
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    • 1993
  • The complex permittivity and the linewidth of microwave ferrites are measured using the well known cavity perturbation method. The cavity perturbation method has been widely used for the measurement of complex permittivity and conductivity of low loss magnetic and dielectric materials at microwave frequencies. TT1-2000, TT73-2200, and G-113 samples ordered from Trans-Tech Inc, are tested. TE$_{103}$ and TE$_{106}$ rectangular waveguide cavities are fabricated and the ferrite sample of cylidrical rod and sphere shapes are prepared. The error between the measurement values and the supplier's data is less than 1 percent in case of $\varepsilon$’ and about 10 percent in case of linewidth ($\Delta$H). Worst case error analysis shows that our measured results are well within the error bound calculated from the accuracy specification of the measuring instruments.

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Microwave Absorbing Characteristics of Ferrite-silicon carbide surface Films Produced (플라즈마 용사방식에 의해 형성된 페라이트-탄화규소 표면층의 마이크로파 흡수 특성(II))

  • Shin, Dong-Chan;Son, Hyon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.18 no.8
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    • pp.1169-1175
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    • 1993
  • Plasma spraying method was used to fabricated the microwave absorbing ferrite-silicon carbide on the aluminum-alloy of the fuselage of an aircraft to protect it from RADAR detection. In this paper 15[rm] instead of 34[rm], the mean size of SIC-powder for ferrite-silicon carbide surface films(I) was used. 50(Kg/h) Instead of 70(Kg/h), the powder feed and 100[mm] Instead of 80(mm), spray distance of spray parameters was used. This M/W absorbers were designed experimentally and fabricated trially, as a result of which the relative frequency bandwidth of 2.8% were obtained under the tolerance limits of the reflection coefficients lower than-10[dB], and the maximum absorption thickness becomes 0.5[mm], which is much thinner than that of the conventional ones.

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Microwave Absorbing Characteristics of Silicon carbide-ferrite surface Films Produced by Plasma-spraying(I) (플라즈마 용사방식에 의해 형성된 탄화규소-페라이트 표면층의 마이크로파 흡수특성(I))

  • Shin, Dong-Chan;Son, Hyon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.17 no.6
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    • pp.580-588
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    • 1992
  • Plasma-spraying was conducted to produced the microwave absorbing surface films on the alumi-num-alloy used for the fuselage to protect the aircraft against the RADAR detction. The surface films were produced by plasma-splaying the mecharucally mixed composite powders of the silicon carblde and Ni-Zn ferrite. This M /W absorbers were designed experimentally and fabricated trialty, as a result of which the rolative frequency bandwidth of 7.6 to 8.4% were obtained under the tolerance limits of the re-flection coefficients lower than -6dB(absorption ratio 75%), and the maximum absorption thickness becomes 0.5 to 0.5.imm, which Is much thinner than that of the conventional ones.

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A Study on Broad-Band Design of Electromagnetic Wave Absorber in Ferrite Cylinder Insertion Type (페라이트 기둥 삽입형 전파흡수체의 광대역 설계에 관한 연구)

  • 이창우;김동일
    • Journal of the Korean Institute of Navigation
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    • v.23 no.1
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    • pp.23-28
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    • 1999
  • With a rapid progress in electronic industry we enjoy various conveniences of life. As many kinds of information equipments are supplied even to most of individuals as to be called an information society, we are exchanging much information with one another surprisingly. Consequently the occupation density of microwave frequency band is highly increased, and electromagnetic environment is getting more seriously bad. It often gives fatal blow to even human life and thus becomes serious social problems. Electromagnetic wave absorbers for anechoic chamber are needed to broaden the effective frequency bandwidth, reduce the thickness, and decrease the weight. There are various absorbers proposed for the above conditions, but they could not decisively solve it the alone requirements. The Electromagnetic wave absorber made by a conventional ferrite tile has, for example, broadened the useful frequency bandwidth by the way of forming air layer(practically use urethane foam, etc.) on the ferrite tile. Therefore, an air layer is formed between a reflection plate and a sintered Ni-Zn ferrite tile of 7 mm in thickness, which has reflectivity less than -20 dB from 30 MHz to 400 MHz in bandwidth. Accordingly, in this paper, a broadened electromagnetic wave absorber are designed, which has the reflection characteristics less than -20 dB from 30 MHz to 6,000 MHz in the bandwidth. Then we achieved the goal by design the inserting square Ferrite Cylinders with the thickness less than 17.5 mm on existing grid type Ferrite absorber. The purpose of this research is on the development of very wide-band electromagnetic absorber for a universal anechoic chamber for measuring radiated electromagnetic wave or immunity of electronic equipments, GTEM-cell, wall material for preventing TV ghost, etc.

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Development of the EM Wave Absorber Using MnZn-Ferrite and Sendust for Wireless LAN at 2.4 GHz (MnZn-Ferrite와 Sendust를 이용한 2.4 GHz 무선LAN용 전파흡수체 개발)

  • Lee, Dae-Hee;Choi, Chang-Mook;Choi, Dong-Han;Kim, Dong-Il
    • Journal of Navigation and Port Research
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    • v.31 no.10
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    • pp.865-868
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    • 2007
  • Recently, wireless LANs are often applied in home or office because of its various of convenience. Frequency range of wireless LANs specified by IEEE 802.11b is at 2.4 GHz. The bluetooth, the microwave oven, and the PDA(Personal Digital Assistants) uses, however, the same frequency band. So problems will be produced in these environments, such as multi-pass interference and system-to-system interference. These problems can be eliminated by using EM wave absorber. In this paper, we designed and fabricated EM wave absorber using MnZn-Ferrite, Sendust, and CPE( Chlorinated Polyethylene). The EM wave absorber with the ratio of material (MnZn-Ferrite : Sendust : CPE = 64 : 16 : 20 wt.%) has thickness of 3.7 mm and absorption ability more than 17 dB at 2.4 GHz.

The Study on the Fabrication Process and the Microwave Characteristics of YIG ferrites by Using Wet Processing (습식합성법을 이용한 YIG-ferrites의 제조공정과 마이크로파 특성 연구)

  • 양승진;윤종남;김정식
    • Proceedings of the International Microelectronics And Packaging Society Conference
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    • 2002.11a
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    • pp.181-184
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    • 2002
  • 본 연구에서는 아이솔레이터(Isolator)의 핵심소재로 사용되는 YIG-ferrites를 수열합성법에 의해 초미세 분말로 합성하고, 합성된 분말을 원료로 사용하여 제조 공정된 YIG-ferrites 소결체의 미세구조와 전자기적 특성에 관하여 고찰하였다. 수열합성법(Hydrothermal synthesis method)으로 YIG[ $Y_3$F $e_{5}$ $O_{12}$]분말을 먼저 합성하고 Ca, V, In, Al 등을 첨가시킴으로서 $Y_{2.1}$C $a_{0.9}$ $Y_{4.4}$ $V_{0.5}$I $n_{0.05}$ $O_{12}$의 조성을 지닌 시편을 제조하였다. 초기열처리는 30$0^{\circ}C$에서 90$0^{\circ}C$의 온도 범위에서 15$0^{\circ}C$간격으로 진행하였다.. 그 결과 75$0^{\circ}C$로 초기열처리 하였을 경우 단일 YIG peak가 나타남을 알 수 있었다. 수열합성법으로 제조된 YIG 소결시편의 전자기적 특성은 일반 시약급원료를 사용하여 제조된 소결시편과 비교하여 마이크로파 특성을 평가하였다. 그밖에 YIG-ferrites의 결정성, 미세구조, 자기적 특성, 마이크로파 특성을 XRD, SEM, VSM, Network Analyzer를 이용하여 고찰하였다.여 고찰하였다.다.다.다.다.

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A Comparative Study on Measuring Methods of Absorption Characteristics for Electromagnetic Wave Using Standing Wave Measurement Method and Time Domain Method. (정재파측정법과 Time Domain법에 의한 전파흡수능측정법의 비교 연구)

  • 김동일;김상태;박지용;정세모
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 1994.10a
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    • pp.79-90
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    • 1994
  • The goal of this research is to get a measuring system for absorption characteristics of electromagnetic wave absorbers in ferrite type which are lat grid-type special type etc. It is however very difficult to measure the absorption characteristics as in low frequency as in 30 MHz, To solve the problem therefore we propose a standing wave method and a measurement method in time domain using parallel striplines construct the measuring system and measure the characteristics of ferrite microwave absorbers in grid type using the proposed measuring system.

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