• Title/Summary/Keyword: CPW probe

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High-speed Performance of Single Flux Quantum Circuits Test Probe (단자속 양자 회로 측정용 고속 프로브의 성능 시험)

  • 김상문;최종현;김영환;강준희;윤기현;최인훈
    • Progress in Superconductivity
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    • v.4 no.1
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    • pp.74-79
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    • 2002
  • High-speed probe made to test single flux quantum(SFQ) circuits was comprised of semi-rigid coaxial cables and microstrip lines. The impedance was set at 50 $\Omega$to carry high-speed signals without much loss. To do performance test of high-speed probe, we have attempted to fabricate a test chip which has a coplanar waveguide(CPW) structure. Electromagnetic simulation was done to optimize the dimension of CPW so that the CPW structure has an impedance of 50$\Omega$, matching in impedance with the probe. We also used the simulation to investigate the effect of the width of signal line and the gap between signal line and ground plane to the characteristics of CPW structure. We fabricated the CPW structure with a gold film deposited on Si wafer whose resistivity was above $1.5\times$10$_4$$\Omega$.cm. The magnitudes of S/sub 21/ of CPW at 6 ㎓ in simulations and in the actual measurements done with a network analyzer were: -0.1 ㏈ and -0.33 ㏈ (type A),-0.2 ㏈ and -0.48 ㏈ (type B), respectively. Using the test chip, we have successfully tested the performance of high-speed probe made for SFQ circuits. The probe showed the good performance overthe bandwidth of 10 ㎓.

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Electrical Characteristics of Copper Circuit using Inkjet Printing (잉크젯 프린팅 방식으로 형성된 구리 배선의 전기적 특성 평가)

  • Kim, Kwang-Seok;Koo, Ja-Myeong;Joung, Jae-Woo;Kim, Byung-Sung;Jung, Seung-Boo
    • Journal of the Microelectronics and Packaging Society
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    • v.17 no.3
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    • pp.43-49
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    • 2010
  • Direct printing technology is an attractive metallization method, which has become immerging as "Green technology" to the conventional photolithography, on account of low cost, simple process and environment-friendliness. In order to commercialize the printed electronics in industry, it is essential to evaluate the electrical properties of conductive circuits using direct printing technology. In this contribution, we focused on the electrical characteristics of inkjet-printed circuits. A Cu nanoink was inkjet-printed onto a Bisaleimide triazine(BT) substrate with parallel transmission line(PTL) and coplanar waveguide(CPW) type, then was sintered at $250^{\circ}C$ for 30 min. We calculated the resistivity of printed circuits through direct current resistance by the measurement of I-V curve: the resistivity was approximately 0.558 ${\mu}{\Omega}{\cdot}cm$ which is about 3.3 times that of bulk Cu. Cascade's probe system in the frequency range from 0 to 30 GHz were employed to measure the Scattering parameter(S-parameter) with or without a gap between the substrate and the probe station chuck. The result of measured S-parameter showed that all printed circuits had over 5 dB of return loss in the entire frequency range. In the curve of insertion loss, $S_{21}$, showed that the PTL type circuits had better transmission of radio frequency (RF) than CPW type.

Design of Wideband Small Antenna for UWB Communication (UWB 통신용 광대역 소형 안테나 설계)

  • Ko Ji-Whan;Shin In-Ho;Lee Young-Soon;Cho Young-Ki
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.16 no.11 s.102
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    • pp.1086-1098
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    • 2005
  • Two types of small wideband antennas are proposed for UWB application. One type is small biconical structure fed by coaxial probe, which is easy to be installed on the circuit board. The other type is of planar bow-tie type fed by coplanar transmission line. Generally, the bandwidth of the latter type is significantly narrower than that of the former type. It is shown, however that the bandwidth of the latter type can be made to be comparable to that of the former, if some series inductive component is introduced in the center conductor line in the CPW transmission line by replacing some part of center line with narrower line of higher characteristic impedance. The series inductance component play an important role of neutralizing the capacitive component of the small bow-tie antenna, thereby making broadband impedance matching possible. The small planar bow-tie antenna was fabricated and experimented. The experimental results for return loss are observed to be in good agreement with simulated results. The radiation pattern is also investigated experimentally.

Microwave Dielectric Properties of $BaTi_4O_9$ Thin Film ($BaTi_4O_9$ 박막의 고주파 유전특성)

  • Lee, Suk-Jin;Jang, Bo-Yun;Jung, Young-Hun;Nahm, Sahn
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.07a
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    • pp.105-109
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    • 2004
  • [ $BaTi_4O_9$ ]계 유전체 박막을 Si 기판위에 RF Sputtering으로 성장시켜 유전체 박막의 두께 변화에 따른 마이크로파 대역에서 유전체 박막의 유전율 및 유전손실을 측정하였다. 유전체 박막의 두께가 증가함에 따라 유전율은 약간 증가하였으며 마이크로파 대역에서 벌크 유전체와 같은 38의 유전율 값을 얻을 수 있었다. 또한 probe와 상두 전극사이의 접촉 저항을 고려한 값들을 보정함으로서 6GHz의 주파수 대역까지 $BaTi_4O_9$ 박막의 유전손실 값을 안정적으로 측정한 수 있었으며 유전체 박막의 두께가 증가함에 따라 최대 0.0001의 양호한 유전손실 값을 얻을 수 있었다.

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A 2 GHz Compact Analog Phase Shifter with a Linear Phase-Tune Characteristic (2 GHz 선형 위상 천이 특성을 갖는 소형 아날로그 위상천이기)

  • Oh, Hyun-Seok;Choi, Jae-Hong;Jeong, Hae-Chang;Heo, Yun-Seong;Yeom, Kyung-Whan
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.22 no.1
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    • pp.114-124
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    • 2011
  • In this paper, we present a 2 GHz compact analog phase shifter with linear phase-tune characteristic. The compact phase shifter was designed base on a lumped all pass network and implemented using a ceramic substrate fabricated with thin-film technique. For a linear phase-tune characteristic, a capacitance of the varactor diode for a tuning voltage was linearized by connecting series capacitor and subsequently produced an almost linear capacitance change. The inductor and bias circuit in the all pass network was implemented using a spiral inductors for small size, which results in the size reduction to $4\;mm{\times}4\;mm$. In order to measure the phase shifter using the probe station, two CPW pads are included at the input and output. The fabricated phase shifter showed an insertion loss of about 4.2~4.7 dB at 2 GHz band and a total $79^{\circ}$ phase change for DC control voltage from 0 to 5 V, and showed linear phase-tune characteristic as expected in the design.