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[Author] Tsukasa YONEYAMA(25hit)

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  • NRD-Guide Passive Components and Devices for Millimeter Wave Wireless Applications

    Tsukasa YONEYAMA  Hirokazu SAWADA  Takashi SHIMIZU  

     
    INVITED PAPER

      Vol:
    E90-C No:12
      Page(s):
    2170-2177

    Owing to simple structure, low cost and high performance, NRD-guide millimeter wave circuits have attracted much attention in recent years. In this paper, a variety of NRD-guide passive components are reviewed with emphasis on design techniques and performance estimation in the 60 GHz frequency band where the license-free advantage is available. The passive components to be discussed here include compact bends, wideband hybrid couplers, practical three-port junctions, versatile E-plane filters, and effective feeding structures for lens antennas. Some of them are employed to construct millimeter wave transceivers. Eye patterns observed at 1.5 Gbps confirm the potential ability of the fabricated NRD-guide transceivers for high bit-rate, wireless applications.

  • FOREWORD

    Tsukasa YONEYAMA  Masayuki IZUTSU  

     
    FOREWORD

      Vol:
    E79-C No:1
      Page(s):
    1-2
  • Flexible Transmission Line Using High Permittivity LSE-NRD Guide at 60 GHz

    Futoshi KUROKI  Akira MIYAMAE  Tsukasa YONEYAMA  

     
    LETTER-Microwaves, Millimeter-Waves

      Vol:
    E87-C No:12
      Page(s):
    2195-2197

    A flexible transmission line, consisting of a thin ceramic-compounding Teflon strip, was devised by using a high permittivity LSE-NRD guide. This transmission line has the advantage of changeable shape. Low-loss performance was confirmed by measuring the transmission loss of the 180 degree bend and the S-shaped curve in the 60 GHz frequency band.

  • FOREWORD

    Tsukasa YONEYAMA  Hiroyo OGAWA  

     
    FOREWORD

      Vol:
    E76-C No:2
      Page(s):
    173-174
  • Millimeter Waves and Beyond

    Tsukasa YONEYAMA  

     
    INVITED PAPER

      Vol:
    E78-C No:8
      Page(s):
    893-901
  • Low-Loss and Small-Sized NRD Guide Ring Resonators and Their Application to Channel Dropping Filter at 60 GHz

    Futoshi KUROKI  Kengo WADA  Tsukasa YONEYAMA  

     
    PAPER

      Vol:
    E86-C No:8
      Page(s):
    1601-1606

    A technique for the design of circular- and racetrack-shaped NRD guide ring resonators was developed based on the mode coupling theory. Besides the operating mode, a parasitic mode is generated at curved sections of the resonator as a result of the mode conversion. Resonance of the NRD guide ring resonator is derived by characteristic equations of the coupled modes and then employed in making the design diagrams, which are useful for determining the dimensions of the ring resonators. It is shown that the discrepancy between the experimental results and previous theory can be resolved by using the present theory. Low loss, small-sized ring resonators with curvature radii of less than 5.3 mm were fabricated at 60 GHz and a band rejection performance of more than 30 dB was observed. Moreover, a procedure for the design of the channel dropping filter was developed and a 2-pole filter, which has great advantages such as a low insertion loss of 1.2 dB and a compact size smaller than that of a golf ball, was successfully developed by using two racetrack-shaped ring resonators.

  • A Transition between NRD Guide and Microstrip Line at 60 GHz

    Futoshi KUROKI  Makoto KIMURA  Tsukasa YONEYAMA  

     
    PAPER

      Vol:
    E88-C No:10
      Page(s):
    1968-1972

    A transition between an NRD guide, suitable for construction of high performance millimeter-wave integrated circuits, and a microstrip line, being used to mount semiconductor devices such as HEMT, HBT, and MMIC, was developed at 60 GHz. The main emphasis was placed on the manner of field matching between the NRD guide and the microstrip line. We propose adoption of this a new transition structure employing a vertical strip line, which can be easily coupled to the NRD guide, and a coaxial line connected to the microstrip line. Moreover, we applied a packaging structure with a choke circuit for the microstrip line to prevent undesired leakage between the NRD guide and the microstrip line. The insertion loss of the fabricated transition was measured to be less than 0.5 dB in the bandwidth of 3 GHz at a center frequency of 60.5 GHz. The transition was applied to MMIC amplifier integration in the NRD guide at 60 GHz. The forward and reverse gains were measured to be 15 dB and -20 dB, respectively, at 60 GHz.

  • A HEMT Amplifier for Nonradiative Dielectric Waveguide Integrated Circuits

    Wilson A. ARTUZI,Jr.  Tsukasa YONEYAMA  

     
    PAPER-Active Devices and Circuits

      Vol:
    E74-C No:5
      Page(s):
    1185-1190

    A HEMT amplifier for millimeter-wave applications has been designed and fabricated using the nonradiative dielectric waveguide technique. The amplifier circuit has been built on a coplanar waveguide structure which includes matching sections and bias chokes implemented with short-circuited slot line stubs. Stability resistors are installed within the bias chokes in order to suppress unwanted oscillation at lower frequencies. The characteristics of the NRD guide-coplanar waveguide transitions are measured and included in the amplifier design. A computer-aided program is used to optimize the matching section parameters for obtaining a gain higher than 4 dB in the frequency range from 34 GHz to 36 GHz. The fabricated amplifier exhibits the expected gain performance, and input and output VSWRs lower than 2.5 and 2.7, respectively, in the frequency range from 33.5 GHz to 35 GHz, which is slightly lower than the specified one. The predicted noise figure is about 4 dB at 35 GHz.

  • A NRD Guide Fed Dielectric Lens Antenna with High Gain and Low Sidelobe Characteristics

    Takashi SHIMIZU  Tsukasa YONEYAMA  

     
    LETTER-Active Circuits & Antenna

      Vol:
    E88-C No:7
      Page(s):
    1385-1386

    A NRD guide fed dielectric lens antenna with high gain and low sidelobe characteristics is proposed for millimeter wave applications. The measured results showed very good performance at 60 GHz. It exhibited a gain of 24.9 dBi, 27 dB sidelobe level suppression.

  • NRD Guide Integrated Circuit-Compatible Folded Planar Antenna Fed by High Permittivity LSE-NRD Guide Radiator at 60 GHz

    Futoshi KUROKI  Motofumi YAMAGUCHI  Yoshihiko WAGATSUMA  Tsukasa YONEYAMA  

     
    PAPER-Antennas, Circuits and Receivers

      Vol:
    E87-C No:9
      Page(s):
    1412-1417

    A high permittivity LSE-NRD guide was applied to a planar antenna at 60 GHz. Emphasis was placed on compatibility between the high permittivity LSE-NRD guide and the conventionally used low permittivity LSM-NRD guide. Performance of the transition between two such types of NRD guides was optimized by using an electromagnetic simulator and the validity was experimentally demonstrated. A simple radiator, consisting of a tapered high permittivity LSE-NRD guide was fabricated and evaluated as to radiation characteristics. Since the radiator has a broad radiation pattern, it was employed in a primary radiator of a two-dimensional parabolic reflector to develop a new type of folded planar antenna at 60 GHz. This planar antenna has a double-layered structure. In the upper layer, a metalized dielectric substrate with a slotted array is excited by a rectangular-shaped oversized waveguide, and in the lower layer, an offset parabolic reflector is fed by the radiator. Measurement showed the half-power beam width of the fabricated antenna to be 2.5 degrees in the E and H planes, respectively, and the gain to be 35.3 dBi, thus indicating that a good pencil beam antenna was successfully developed in this manner.

  • Recent Advance of Millimeter Wave Technology in Japan

    Tsukasa YONEYAMA  Kazuhiko HONJO  

     
    INVITED PAPER

      Vol:
    E79-B No:12
      Page(s):
    1729-1740

    In order to highlight a rapid progress attained in the field of millimeter waves in Japan, this paper describes several key topics including transistors, integrated circuits, planar antennas, millimeter wave photonics, and others.

  • Band-Widening of Ceramic Resonator Loaded NRD Guide Band-Pass Filter at 60 GHz

    Futoshi KUROKI  Satoru SHINKE  Tsukasa YONEYAMA  Hiroya SATO  

     
    PAPER

      Vol:
    E84-C No:10
      Page(s):
    1569-1574

    Although TE0nδ mode ceramic resonators are usually used at centimeter frequencies, they have difficulty in making wide-band band-pass filters in the millimeter-wave region due to the weak coupling factors between TE0nδ mode resonators and input/output waveguides. In order to overcome such difficulty, a band-widening technique of the ceramic resonator loaded band-pass filter has been proposed. The EHnmδ modes were regarded as spurious modes so far, but it is clear that the coupling factors are larger than those of the TE0nδ modes from the results of experimental considerations in this paper. By using the EH11δ mode ceramic resonators, 5-pole, 1 dB Chebyshev ripple NRD guide band-pass filter has been fabricated for the applications to broad-band millimeter-wave communication systems at 60 GHz. The filter has great advantages such as the wide pass-band beyond 2 GHz and low excess insertion loss of less than 0.3 dB.

  • High Permittivity LSE-NRD Guide and Its Application to a New Type of Millimeter Wave Antenna

    Futoshi KUROKI  Motofumi YAMAGUCHI  Yasujirou MINAMITANI  Tsukasa YONEYAMA  

     
    PAPER-Guided Wave & Antenna

      Vol:
    E86-C No:2
      Page(s):
    169-175

    Transmission characteristics of a high permittivity NRD guide were investigated. A preferable operating mode of the high permittivity NRD guide was newly identified and the wide bandwidth and low loss nature of the millimeter-wave region were observed. Moreover, a technique for construction of a millimeter-wave antenna was developed based on the high permittivity NRD guide. The novelty of the present technique lies in the use of a simple radiator, which consists of a tapered dielectric strip of simple structure which has good compatibility with millimeter wave integrated circuits. Since this radiator has a broad radiation pattern, a new type of antenna compatible with millimeter-wave integrated circuits for marine radar use was fabricated by locating the radiator at the focal point of a cylindrical parabolic reflector. Suitable beam patterns with half-power beam widths of 4in the azimuth plane and 38in the elevation plane can be obtained at 35 GHz.

  • NRD Guide P-I-N Diode Devices for Automotive Radar at 77 GHz

    Futoshi KUROKI  Shouzou NAKAMURA  Toshihide FUKUCHI  Tsukasa YONEYAMA  

     
    PAPER-Active (Switch)

      Vol:
    E86-C No:2
      Page(s):
    199-205

    Two types of p-i-n diode devices, namely an amplitude shift keying switch and a phase shift keying switch, were developed by using an NRD guide at 77 GHz. In order to apply these devices to radar systems, an SPDT switch with a low insertion loss of less than 2.5 dB and a high isolation of more than 25 dB was fabricated by using the former switch. Moreover, a BPSK modulator, composed of the latter switch together with a circulator and a ceramic resonator loaded band-pass filter, was designed and evaluated for use in spread spectrum radar systems in this frequency range.

  • Band Widening of NRD Guide Schottky Barrier Diode Devices and Its Application to a Wireless Multi-Channel TV-Signal Distribution System at 60 GHz

    Futoshi KUROKI  Satoru SHINKE  Tomoyuki MUKAI  Eiji SUEMATSU  Hiroya SATO  Tsukasa YONEYAMA  

     
    PAPER-Active(Switch)

      Vol:
    E86-C No:12
      Page(s):
    2422-2428

    An NRD guide transmitter and a receiver were developed for a wireless multi-channel TV-signal distribution system at 60 GHz. The main emphasis was placed on a band-widening technique of the NRD guide beam-lead diode mount based on an electromagnetic field simulator, where each dimension of the beam lead diode mount was optimized. The agreement between the simulation and measurement is quite satisfactory. The up-converter fabricated by assembling a band-pass filter and a Schottky barrier diode mount has a good linearity as well as a flat output power of 2 dBm on the average over a bandwidth of at least 2 GHz. Moreover, the down-converter has a flat conversion loss performance of less than 7 dB in the same bandwidth. An NRD guide transmitter and a receiver characterized by small size and high performance were fabricated and successfully employed for the wireless distribution of TV signals for more than 100 channels.

  • A Waveguide Compatible NRD Guide E-Plane Bandpass Filter for 55 GHz Band OFDM Applications

    Takashi SHIMIZU  Yuki KAWAHARA  Takayuki NAKAGAWA  Tsukasa YONEYAMA  

     
    PAPER-Passive Devices/Circuits

      Vol:
    E90-C No:9
      Page(s):
    1729-1735

    A rectangular waveguide compatible NRD guide E-plane bandpass filter is proposed for 55 GHz band OFDM applications. The NRD guide E-plane bandpass filter is constructed by inserting a metal foil array in the E-plane of NRD guide. Simulation, fabrication, and handling of the filter are not difficult because each resonator is constructed by a couple of metal foils of a simple shape. A Chebyshev response 5-pole bandpass filter with a very narrow bandwidth of 550 MHz is designed and fabricated at 55 GHz band. Simulated and measured filter performances agree well with the design specifications. Insertion loss of the fabricated filter is found to be around 2.0 dB. Although temperature stability of the fabricated filter are found to be within manageable level, the adoption of cyclo olefin polymer can be one of solution for the temperature stability improvement.

  • Characterization of Inverted Slot Line for Travelling Wave Optical Modulator

    Tsukasa YONEYAMA  Tohru IWASAKI  

     
    PAPER-Optical/Microwave Devices

      Vol:
    E76-C No:2
      Page(s):
    229-237

    The inverted slot line (ISL) has been propoaed for millimeter-wave LiNbO3 optical modulator. It is simple in structure, and capable of achieving the perfect velocity matching between carrier and modulating waves. The excellent performance of the ISL optical modulator has been demonstrated at 100 GHz, and the extension into the 50 GHz range is being expected. This paper addresses the analysis of the ISL based on the spectral domain approach. The major results obtained here are the demonstration of the perfect velocity matching not only at 10 GHz but also at 50 GHz, and the characterization of the ISL in terms of effective refractive index, characteristic impedance, overlap integral factor and transmission loss. The depth of optical phase modulation is also estimated at 50 GHz to show a promising performance in the millimeter-wave frequency range. The effective refractive index and the characteristic impedance are found to be theoretically predictable, but the field profile, the overlap integral factor and the transmission loss are not necessarily in good agreement with measurements. As a result of analysis, it can be concluded that the Y-cut substrate is superior to the Z-cut substrate in the following respects: 1. Coupling with the surface wave mode hardly occurs near the operating frequency range. 2. The perfect velocity matching can be attained with a larger spacing between the electrode and the ground plane. 3. The transmission loss is smaller. 4. The field intensity and the voerlap integral factor do not seem to be much deteriorated in the actual ISL.

  • NRD Guide Digital Transceivers for Millimeter Wave LAN System

    Futoshi KUROKI  Tsukasa YONEYAMA  

     
    PAPER

      Vol:
    E79-B No:12
      Page(s):
    1759-1764

    Because 60 GHz frequency band has been allotted for the research and development purpose of millimeter wave systems in Japan, various circuit components and systems have been fabricated by using printed transmission lines. The NRD guide (nonradiative dielectric waveguide) is another candidate as a transmission medium for millimeter wave integrated circuit applications since its performance has been shown to be excellent in this frequency band. This paper is concerned with the development of a 60 GHz digital transceiver for millimeter wave LAN use based on NRD guide technologies. The trans-ceiver consists of frequency stabilized Gunn oscillator, circulator, PIN diode modulator, balanced mixer, directional coupler and transmitting and receiving pyramidal horn antennas. The notable advantages of the circuit components are the high reliability of the Gunn oscillator, the wide bandwidth of the circulator, and the high frequency operation of the PIN diode modulator beyond 100 Mbps. Interference between transmitted and received signals, which must be caused by coupling between transmitting and receiving antennas, is eliminated by simple techniques such as introducing filters in the base band and IF circuits. By using NRD guide digital transceivers, both-way data transmission between two computers can be achieved simultaneously and a 60 GHz wireless LAN system has been developed successfully.

  • Recent Advances in Millimeter-Wave NRD-Guide Circuits Open Access

    Tsukasa YONEYAMA  

     
    INVITED PAPER

      Vol:
    E92-C No:9
      Page(s):
    1106-1110

    Though millimeter wave applications have attracted much attention in recent years, they have not yet been put to practical use. The major reason for the failure may be a large transmission loss peculiar to the short wavelength. In order to overcome the inconvenience, it may be promising to introduce the technology of millimeter-wave NRD-guide circuits. In this technology, not only NRD-guide but also Gunn diodes and Schottky diodes play the important role in high bit-rate millimeter-wave applications. A variety of practical millimeter wave wireless systems have been proposed and fabricated. Performances and applications of them are discussed in detail as well.

  • Fully CAD-Based Design of a Mode Transformer between NRD Guide and Vertical Strip Line and Its Applications to Junction Circuits at 60 GHz

    Futoshi KUROKI  Makoto KIMURA  Tsukasa YONEYAMA  

     
    PAPER

      Vol:
    E88-C No:1
      Page(s):
    105-109

    A mode transformer between the NRD guide and the vertical strip line was developed and applied to the right angle corner, T-junction, and 3-port junction at 60 GHz. Emphasis was placed on a fully CAD-based design procedure by using an electromagnetic field simulator. Agreement between the simulated and measured performances of the junction circuit was obtained, and thus the validity of the design procedure was confirmed. A well-balanced transmission coefficient of the 3-port junction, found to be 4 0.5 dB, was observed in the bandwidth of 2 GHz around a center frequency of 60 GHz.

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