• Title/Summary/Keyword: 출력 파워

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A 3-5GHz frequency band Programmable Impulse Radio UWB Transmitter (3-5 GHz 대역 중심 주파수 변환이 가능한 프로그래머블 임펄스 래디오 송신기)

  • Han, Hong-Gul;Kim, Tae-Wook
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.49 no.6
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    • pp.35-40
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    • 2012
  • This paper has proposed a 3~5 GHz IR-UWB low power transmitter for range detection application. Proposed transmitter which has been implemented in a $0.13{\mu}m$ CMOS technology is all digital circuit that consist of simple digital logic. this feature insure low complexity and low power consumption. In addition, center frequency can be changed by adopting voltage controlled delay cell for avoiding existing another radio frequency in UWB low band. Proposed circuit consume only 10pJ/b from 1.2 V supply voltage. The simulation results show 3.3~4.3 GHz center frequency controllability, -51 dBm/MHz maximum output power and is satisfied with FCC regulation.

Design of a Waveguide Broad-wall Longitudinal Slot Array Antenna of X-type Monopulse Axes (X-형 모노펄스 축구조를 가지는 도파관 광벽 종방향 슬롯 배열 안테나의 설계)

  • 나형기;박창현
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.13 no.2
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    • pp.208-216
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    • 2002
  • In this paper, the design method of a waveguide broad-wall longitudinal slot array monopulse antenna of X-type monopulse axes is presented, and the method is verified through manufacture and measurement. In the antenna design of this paper, the antenna size is small and the monopulse axes are X-type. Thus, the common continuous aperture distribution fuction is not suitable and the power balance among antenna quadrants should be considered. Also, since the waveguide height is reduced into 0.1 wavelength, the modelling of the slot characteristics is not simple. Thus, in this paper, the aperture distribution is optimized by using random number, and the balance among the quadrants is achieved by applying the quadrant weighting factor during the aperture optimization process. Also, the moment method procedure is accelerated by applying the interpolation technique to some part of the moment matrix, and the moment method procedure is added to the array synthesis program as a subroutine so that the slot characteristics can be calculated directly when it is required. Based on this method, a antenna of 28dBi is designed and manufactured. It is found that the antenna characteristics is similar to design data.

DCM DC-DC Converter for Mobile Devices (모바일 기기용 DCM DC-DC Converter)

  • Jung, Jiteck;Yun, Beomsu;Choi, Joongho
    • Journal of IKEEE
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    • v.24 no.1
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    • pp.319-325
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    • 2020
  • In this paper, a discontinuous-conduction mode (DCM) DC-DC buck converter is presented for mobile device applications. The buck converter consists of compensator for stable operations, pulse-width modulation (PWM) logic, and power switches. In order to achieve small hardware form-factor, the number of off-chip components should be kept to be minimum, which can be realized with simple and efficient frequency compensation and digital soft start-up circuits. Burst-mode operation is included for preventing the efficiency from degrading under very light load condition. The DCM DC-DC buck converter is fabricated with 0.18-um BCDMOS process. Programmable output with external resistors is typically set to be 1.8V for the input voltage between 2.8 and 5.0V. With a switching frequency of 1MHz, measured maximum efficiency is 92.6% for a load current of 100mA.

A Soft-Switching Totem-pole Bridgeless Boost Power Factor Correction Rectifier Having Minimized Conduction Losses (소프트 스위칭이 가능한 토템폴 브리지리스 역률보상회로)

  • Lee, Young-Dal;Kim, Chong-Eun;Baek, Jae-Il;Kim, Dong-Kwan;Moon, Gun-Woo
    • Proceedings of the KIPE Conference
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    • 2018.07a
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    • pp.213-215
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    • 2018
  • 본 논문에서는, 경부하 조건에서 저감된 스위칭 손실과 중부하 이상 조건에서 영전압 스위칭을 통해 높은 효율을 가지는 토템폴 브리지리스 역률보상회로를 제안한다. 토템폴 브리지리스 역률보상회로는 기존 브리지 다이오드를 포함한 역률보상회로의 단점인 도통패스 구간의 비교적 많은 소자 수를 통한 도통손실이 다소 큰 단점을 보완한 회로이다. 하지만, 토템폴 브리지리스 역률보상회로는 여전히 하드 스위칭을 통한 손실과 주 파워링 다이오드의 역회복 손실로 인한 단점을 지니고 있게 되며, 그로 인해 현재로써는 높은 효율과 안정적인 동작을 위해서는 부득이 GaN FET를 적용한 개발이 대부분이다. Full 부하 조건의 전류 용량을 고려하여 높은 전류 정격을 가지는 GaN FET를 주 스위치로 활용할 경우, 전류용량과 비례하여 기생 커패시턴스에 의한 손실이 커지기 때문에 경부하 조건에서 높은 효율을 확보하기가 다소 어렵다. 또한 구조상 물리적으로 여전히 하드 스위칭 동작을 할 수 밖에 없기 때문에 서버용 전원장치에서 요구하는 높은 효율을 달성하는데 한계를 지니며 높은 비용이 요구되는 단점을 지니게 된다. 이를 해결하기 위해, 제안하는 회로는 간단한 회로를 통해 경부하 조건에서 저감된 스위칭 손실과 중부하 이상 조건에서 소프트 스위칭을 만족하여 전체 부하 조건에서 기존의 GaN FET을 활용한 토템폴 구조 대비 높은 효율을 가지게 된다. 또한, 토템폴 구조임에도 불구하고 중부하 이상 영역에서 소프트 스위칭 동작을 통해 주 스위치를 비교적 저렴하고 신뢰성이 검증된 Si-MOSFET을 적용할 수 있다는 장점을 지닌다. 제안하는 회로의 효용성을 증명하기 위해, 하이라인 입력 전압과 750W 출력 조건에서 실험을 진행하였다.

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Left right discrimination performance improvement for the line array sonar system (선 배열 소나 시스템을 위한 좌 우 구분 성능 개선 기법)

  • Lee, Ho-Jun;Ahn, Jong-Min;Seo, Jong-Pill;Ahn, Jae-Kyun;Kim, Seong-Il;Chung, Jae-Hak
    • The Journal of the Acoustical Society of Korea
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    • v.36 no.1
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    • pp.49-56
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    • 2017
  • This paper proposes a method to improve the left right discrimination performance by eliminating the imaginary target based on the frequency features of the beam pattern for bow array. The beamwidth of the imaginary target is wider than that of the real target. If an azimuth axis is considered as a time axis, the real and the imaginary targets can be assumed as high and low frequencies, respectively. To eliminate the imaginary target which has a low frequency component, we design a cut-off frequency of the High Pass Filter (HPF) using the back-lobe imaginary beamwidth. The real target is estimated by eliminating the imaginary target by applying HPF to the entire power of the beamformer output. Computer simulations show that the proposed method can increase the left right discrimination performance above 8 dB on average.

DC-DC Buck converter Using an Adjustable Dead-time Control Method (적응형 사구간제어기법을 이용한 DC-DC 벅 변환기)

  • Lim, Dong-Kuyn;Yoo, Tai-Kyung;Lee, Gun;Yoon, Kwang-Sub
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.48 no.6
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    • pp.25-32
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    • 2011
  • This paper proposes high efficiency current-mode DC-DC buck converter that are suitable for portable devices. The current-mode DC-DC buck converter using adjustable Dead-time control method improves the power efficiency 2~5%. The buck converter has been implemented with a standard 0.35${\mu}m$ CMOS process. The size of this chip is 0.97$mm^2$. The input range of the fabricated DC-DC buck converter is 2.5V~3.3V, and the output is 1.8V. The maximum loading current of the converter is 500mA and the peak efficiency is 93% at 200mA loads.

Design and fabrication of SSPA module in X-band for Radar (X-대역 레이더용 SSPA 모듈 설계 및 제작)

  • Yang, Seong-Soo
    • The Journal of the Korea institute of electronic communication sciences
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    • v.13 no.5
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    • pp.943-948
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    • 2018
  • In this paper, SSPA Module for X-band radar was designed and fabricated by using GaN MMIC. For the purpose of configuring the high power SSPA module, the drive steamers are composed of 2-layers of GaN MMIC with considering Gain Loss. In addition, the power divider and power combiner used a 4way approach by designing a 4-stage power amplifier. The power divider has a loss of -3.0dB or more, and the I/O has a loss of -0.2dB in the power combiner and the phase difference between the ports are good at $2^{\circ}$ on average. The fabricated SSPA module got the measurement results that satisfy a Gain 48dB, P(sat)=88.3W(49.46 dBm), PAE=30.3% or more efficiency in condition of frequency range 9~10GHz. The fabricated X-Band SSPA module can be applied in RF performance improvement for SSPA module whit improvement of power divider/combiner.

Inverter type High Efficency Neon Transformers for Neon Tubes (인버터식 고효율 네온관용 변압기)

  • 변재영;김윤호
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.16 no.6
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    • pp.22-29
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    • 2002
  • The conventional neon transformer systems are very bulky and heavy because it consist of leakage type transformers made of silicon steel plates. In addition, it has problems in noise by a neon transformer and in possibilities of fire and electrical shock when neon tubes are destroyed. A protection circuit is designed for all types of neon transformer loaded with one or more neon tubes. Whenever the neon tube fails to be started up, comes to the life end, encounters faults with open-circuits at the output terminals of the neon transformer, the protection circuit will be initiated to avoid more critical hazards. The input of the transformer is automatically cut off when the abnormal condition occurs, preventing waste of no-load power. To improve such problems, in this paper, a new type of neon power supply systems for neon tube is designed and implemented using inverter type circuits and a newly designed lightweight transformer. In the developed neon transformer system, a 60[Hz]power input is converted to 20[KHz]high frequency using half-wave inverters, thereby the transformer reduces its size by 1/5 in volume and 1/10 in weight.

Development of Digital Transceiver Unit for 5G Optical Repeater (5G 광중계기 구동을 위한 디지털 송수신 유닛 설계)

  • Min, Kyoung-Ok;Lee, Seung-Ho
    • Journal of IKEEE
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    • v.25 no.1
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    • pp.156-167
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    • 2021
  • In this paper, we propose a digital transceiver unit design for in-building of 5G optical repeaters that extends the coverage of 5G mobile communication network services and connects to a stable wireless network in a building. The digital transceiver unit for driving the proposed 5G optical repeater is composed of 4 blocks: a signal processing unit, an RF transceiver unit, an optical input/output unit, and a clock generation unit. The signal processing unit plays an important role, such as a combination of a basic operation of the CPRI interface, a 4-channel antenna signal, and response to external control commands. It also transmits and receives high-quality IQ data through the JESD204B interface. CFR and DPD blocks operate to protect the power amplifier. The RF transmitter/receiver converts the RF signal received from the antenna to AD, is transmitted to the signal processing unit through the JESD204B interface, and DA converts the digital signal transmitted from the signal processing unit to the JESD204B interface and transmits the RF signal to the antenna. The optical input/output unit converts an electric signal into an optical signal and transmits it, and converts the optical signal into an electric signal and receives it. The clock generator suppresses jitter of the synchronous clock supplied from the CPRI interface of the optical input/output unit, and supplies a stable synchronous clock to the signal processing unit and the RF transceiver. Before CPRI connection, a local clock is supplied to operate in a CPRI connection ready state. XCZU9CG-2FFVC900I of Xilinx's MPSoC series was used to evaluate the accuracy of the digital transceiver unit for driving the 5G optical repeater proposed in this paper, and Vivado 2018.3 was used as the design tool. The 5G optical repeater digital transceiver unit proposed in this paper converts the 5G RF signal input to the ADC into digital and transmits it to the JIG through CPRI and outputs the downlink data signal received from the JIG through the CPRI to the DAC. And evaluated the performance. The experimental results showed that flatness, Return Loss, Channel Power, ACLR, EVM, Frequency Error, etc. exceeded the target set value.

Design of the self-oscillation UV flash lamp power supply and the characteristic of its operation using self-resonance of the transformer (트랜스포머의 자가 공진(Self-Resonance)특성을 이용한 자가 발진(Self-Oscillation) UV(Ultra Violet) 발생 플래시램프 전원장치설계 및 그 동작 특성)

  • Kim, Shin-Hyo;Cho, Dae-Kweon
    • Journal of Advanced Marine Engineering and Technology
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    • v.38 no.1
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    • pp.48-55
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    • 2014
  • These Xenon flashlamp power supply for Ultra Violet has converter with high voltage conversion ratio. General model is composed of transformer with high voltage conversion ratio and voltage doubler rectifier circuit. Purpose of power supply leads dielectric breakdown of Xenon flashlamp and passes current rapidly. When passing current, it has to limit current to avoid over-heat, damage of electrode and acceleration of gas oxidation which are cause of performance degradation of lamps. Generally, inductors and resistors, which are called as "Ballast," are used to limit currents. Generally, Transformer has high turn ratio to make high voltages. But we can get high voltages using the transformer with low turn ratio which is driven with self resonance. Also, an advantage of self resonance is to make a circuit simply through impedance of transformer in resonance frequency which filters output voltage. As using an unique impedance of transformer, the circuit does not need other impedance elements like the ballast. So the power supply assures high efficiency of the arc discharge.