• 제목/요약/키워드: internal antenna

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3 Dimensional Mobile Phone Internal Antenna Using the Helix Element (헤릭스를 이용한 3차원 구조의 휴대폰 내장형 안테나)

  • Hong, Min-Gi;Son, Tae-Ho
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.19 no.8
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    • pp.906-912
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    • 2008
  • We designed and implemented a 3-dimensional structure internal antenna which has volume less than 1.5 cc for mobile phone to improve efficiency and gain. Multiple bending for the resonance of small internal antenna derives reduction of gain due to cancellation of antenna current. In this study, the current cancelation was reduced by the minimization of antenna bending. And the helix element was applied for the purpose both compensation of short antenna length and action of radiation element. For the verification of this study, a 1.5 cc volume 3D antenna which was fabricated by the press method applied to the dual band mobile phone. Measurement showed that efficiencies and gains under the slide down and up were 27.73 %, 0.29 dBi for the GSM band and 46.84 %, 2.27 dBi for the USPCS band, and had good performance under the small antenna volume. H-plane radiation pattern showed omnidirectional for the both band.

A Study on Folded Monopole Antenna with Spiral Shape for Wireless DVI Dongle Applications (무선 DVI 동글장치를 위한 스파이럴 구조를 갖는 폴디드 모노폴 안테나에 관한 연구)

  • Lee, Jae-Choon;Lee, Yun-Min
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.65 no.1
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    • pp.72-75
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    • 2016
  • In this paper, we proposes a internal antenna for wireless DVI dongle device using the folded monopole structure. The proposed antenna uses a basic structure of spiral and monopole. The antenna optimized for parameters length, gap, width, and rectangle of folded monopole antenna using the spiral structure. To confirm the characteristics of the antenna parameters, HFSS from ANSYS Inc. was used for the analysis. We used an FR4 dielectric substrate with a dielectric constant of 4.4. The DVI dongle size of the proposed antenna is $50{\times}40{\times}1.6mm$, and the size of the antenna area is $10{\times}40mm$. There is a value of return loss less then -10dB in 2.4GHz and 5.8GHz, band and the maximum antenna gain is -4.13dBi. The utilization possibility of the wireless DVI Dongle antenna have a folded monopole with spiral shape could be confirmed according to compare and analyze the simulation and measurement data.

Multi-band Folded Monopole Internal Antenna for Mobile Handset Applications (이동통신 단말기용 다중대역 폴디드 모노폴 내장형 안테나)

  • Kang, Yoon-Ho;Rhyu, Han-Phil;Kong, Ki-Hyun;Park, Myun-Joo;Cheong, Young-Seek;Lee, Byung-Je
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.6 no.2
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    • pp.119-125
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    • 2007
  • In this paper, a multi-band folded planar monopole internal antenna for mobile handset applications is proposed. The proposed antenna has multi-resonances, which is different from a conventional folded monopole antenna, and it provides a wide bandwidth at high frequency bands. The measured impedance bandwidth (VSWR < 3) is 180 MHz and 1880 MHz in lower and higher frequency bands, respectively. The proposed antenna can effectively cover most wireless communication bands including CDMA, GSM, GPS, DCS, PCS, and W-CDMA, WiBro and S-DMB.

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Design of the IPI-IFA using the Inverted PI Feeder (역 파이 급전 방식을 적용한 IPI-IFA)

  • Oh, Kyu-Jong;Son, Tae-Ho
    • Journal of Advanced Navigation Technology
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    • v.13 no.5
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    • pp.662-668
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    • 2009
  • Design of IPI(Inverted PI) feeding internal antenna for the gain improvement of mobile phone was proposed. IPI feeding structure affects on both low radiation resistance of antenna and increase current for the internal antenna such as IFA(Inverted F Antenna). By these facts, antenna fed by IPI can get the gain improvement with increasing radiation efficiency. For the verification, we applied IPI feeding structure to conventional quad band IFA. Measurement shows that IPI-IFA has 0.3~2.0[dB] higher gain than conventional IFA on GSM/DCS/USPCS/WCDMA band.

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Design and Implementation of Multiband Internal Antenna for LTE Mobile Handset

  • Cho, Young Min;Jung, Pil Hyun;Yang, Woon Geun
    • Journal of IKEEE
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    • v.19 no.2
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    • pp.124-132
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    • 2015
  • In this paper, we proposed a multiband internal antenna for LTE mobile handset that could be used for mobile devices. The proposed antenna has a volume of $50mm(W){\times}21mm(L){\times}5mm(H)$, ground plane size is $60mm(W){\times}100mm(L)$, and covers 9 service frequency bands including LTE(Long Term Evolution) band with VSWR(Vlotage Standing Wave Ratio) less than 3. With rapid change of technologies, people wants to include more function into one device. In addition, each country uses different frequency band for traffic service, it is necessary to design multiband antenna for mobile phone since traveling foreign country needs roaming. And if we can cover several services with one antenna, cost and volume needed for antennas are minimized. A HFSS (High Frequency Structure Simulator) of the Ansoft Corporation based on a finite element method is employed to analyze the proposed antenna in the design process and to compare the simulation and experimental results.

A Study on the Planar Sleeve Monopole Antenna for Digital TV Reception (디지털 TV 수신을 위한 평면 슬리브 모노폴 안테나에 관한 연구)

  • Lee, Yun Min;Lee, Sin Hee;Kang, Sang Won
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.10 no.2
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    • pp.21-27
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    • 2014
  • In this paper, a planar sleeve monopole antenna for indoor digital TV reception is presented. The antenna has broadband property with the planar monopole and ground of sleeve. Sleeve monopole and ground conductors of the antenna are on the same plane, and exited through CPW feeding. Sleeve monopole and ground of proposed antenna exist on coplanar plane, and excite as CPW. It used FR4 epoxy dielectric substrate of ${\varepsilon}r=4.4$, and the size is $20[mm]{\times}170[mm]{\times}1.6[mm]$ dimension. So the internal antenna is suitable. The measurement results of the fabricated antenna, return loss is larger than -10 [dB] in 470~806 [MHz]. Maximum gain is 0.59 [dBi] on E-plane at 810 MHz and 1.70 [dBi] on H-plane at 640 [MHz]. Radiation pattern is about the same that of dipole antenna at all frequency.

Internal GPS Antenna for Mobile Phone (휴대단말기 내장형 GPS 안테나)

  • Hwang, Jae-Ho
    • Journal of Advanced Navigation Technology
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    • v.6 no.2
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    • pp.113-118
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    • 2002
  • In this paper, an internal GPS antenna for mobile phones is designed and fabricated. For the miniaturization of the antenna, high permittivity dielectric substrate((${\varepsilon}_r$=90) and small ground plane ($13mm{\times}13mm$) are used. To increase the receive gain, the antenna is composed with LNA(Low Noise Amplifier). Results of the manufactured antenna($13mm{\times}13mm{\times}8mm$) show that the maximum antenna gain is about 12 dBi, the axial ratio is less than 3 dB, and the current consumption of LNA is less than 4 mA.

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Vlade Hybrid Antenna for the Mobile Phone Handset Terminal (휴대용 단말기를 위한 블레이드 하이브리드 안테나)

  • Oh, Kyu-Jong;Son, Tae-Ho
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.11 no.4
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    • pp.165-169
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    • 2011
  • In recent years mobile phone handset terminal has tended to have additional various functions and slim and light weight, and its internal space is getting smaller and narrower. According to complex parts, small and narrow inner space is caused not sufficient bandwidth and lower impedance. Moreover, additional polarization loss by the surrounding parts produces is lower effectiveness and increases difficulties for getting the antenna gain. For IFA is low profile structure based on the ILA(Inverted L Antenna) which is transformed from the monopole antenna. While this antenna has lots of advantages in internal antenna of mobile phone, it has some disadvantage of reduced bandwidth and gains compared with monopole antenna. In this paper, propose vlade hybrid antenna use for the coupling structure.

Design and Implementation of Internal Multiband Loop Embedded Monopole Antenna for Mobile Handset

  • Jung, Pil Hyun;Yang, Cheol Yong;Lee, Seong Ha;Yang, Woon Geun
    • Journal of IKEEE
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    • v.17 no.4
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    • pp.484-491
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    • 2013
  • In this paper, we proposed an internal multiband loop embedded monopole antenna for mobile handset that could be used for smart phones. The proposed antenna has a volume of 40 mm(W) ${\times}$ 15 mm(L) ${\times}$ 5 mm(H), ground plane size is 40 mm(W) ${\times}$ 80 mm(L), and covers the GSM900 (Global System for Mobile communications : 880-960 MHz), K-PCS (Korea-Personal Communications Service : 1750-1870 MHz), US-PCS (US Personal Communications Service : 1850-1990 MHz), WCDMA (Wideband Code Division Multiple Access : 1920-2170 MHz), Wibro (2300-2390 MHz), Bluetooth (2400-2483 MHz) and WLAN (Wireless Local Area Network : 2400-2483.5 MHz) bands for VSWR (voltage standing wave ration) less than 3. The proposed loop adding design at middle section of longest branch showed wide impedance bandwidth for the lowest resonance frequency band. The proposed antenna have a lowest resonance frequency band from 738 MHz to 1075 MHz for S11 value of -6dB. A HFSS (High Frequency Structure Simulator) of the Ansys Corporation based on a finite element method is employed to analyze the proposed antenna in the design process and to compare the simulation and experimental results.

Average Internal Loop-back Antenna Calibration Method for Array Antenna Systems (배열안테나 시스템의 평균 내부순환 안테나 교정 방법)

  • Lee, Il-Shin;Kim, Hyun-Su;Lee, Hong-Won;Chung, Jae-Hak
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.34 no.2A
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    • pp.139-146
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    • 2009
  • This paper presents an average internal loop-back antenna calibration method for array antenna in TDD(Time Division Duplex) systems. The proposed method calibrates the amplitude and the phase of RF systems using into mal coupler and switches without aids of external calibration systems. The average calibration scheme of the proposed method also increases reliability of calibration performance. Computer simulation demonstrates that the proposed method corrects beamforming angles of DOA estimation algorithm and BER performance in transmit power allocation scheme.