• Title/Summary/Keyword: Switch circuit

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Broadband Microwave SPDT Switch Using CPW Impedance Transform Network (CPW 임피던스 변환회로를 이용한 광대역 마이크로파 SPDT 스위치)

  • Lee Kang Ho;Park Hyung Moo;Rhee Jin Koo;Koo Kyung Heon
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.42 no.7 s.337
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    • pp.57-62
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    • 2005
  • This paper describes the design of a high performance microwave single pole double throw (SPDT) monolithic microwave integrated circuit switch using GaAs pHEMT process. The switch design proposes a novel coplanar waveguide (CPW) impedance transform network which results in the low insertion loss and high isolation by compensating for the FET parasitics to get the low on-resistance and low off-capacitance. The proposed switch has the measured isolation of better than 24 dB and insertion loss of less than 2.6 dB from 53 to 61 GHz. The chip is fabricated with the size of 2.2mm $\times$ 1.6 mm.

A Low Insertion-Loss, High-Isolation Switch Based on Single Pole Double Throw for 2.4GHz BLE Applications

  • Truong, Thi Kim Nga;Lee, Dong-Soo;Lee, Kang-Yoon
    • IEIE Transactions on Smart Processing and Computing
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    • v.5 no.3
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    • pp.164-168
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    • 2016
  • A low insertion-loss, high-isolation switch based on single pole double throw (SPDT) for a 2.4GHz Bluetooth low-energy transceiver is presented in this paper. In order to increase isolation, the body floating technique is implemented. Based on characteristics whereby the ratio of the sizes of the shunt and the series transistors significantly affect the performance of the switches, the device sizes are optimized. A simple matching network is also designed to enhance the insertion loss. Thus, the SPDT switch has high isolation and low insertion loss without increasing the complexity of the circuit. The proposed SPDT is designed and simulated in a complementary metal-oxide semiconductor 65nm process. The switch has a $530{\mu}m{\times}270{\mu}m$ area and achieves 0.9dB, 1.78dB insertion loss and 40dB, 41dB isolation of transmission, reception modes, respectively.

Design of Low-Power and Low-Latency 256-Radix Crossbar Switch Using Hyper-X Network Topology

  • Baek, Seung-Heon;Jung, Sung-Youb;Kim, Jaeha
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.15 no.1
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    • pp.77-84
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    • 2015
  • This paper presents the design of a low-power, low area 256-radix 16-bit crossbar switch employing a 2D Hyper-X network topology. The Hyper-X crossbar switch realizes the high radix of 256 by hierarchically combining a set of 4-radix sub-switches and applies three modifications to the basic Hyper-X topology in order to mitigate the adverse scaling of power consumption and propagation delay with the increasing radix. For instance, by restricting the directions in which signals can be routed, by restricting the ports to which signals can be connected, and by replacing the column-wise routes with diagonal routes, the fanout of each circuit node can be substantially reduced from 256 to 4~8. The proposed 256-radix, 16-bit crossbar switch is designed in a 65 nm CMOS and occupies the total area of $0.93{\times}1.25mm^2$. The simulated worst-case delay and power dissipation are 641 ps and 13.01 W when operating at a 1.2 V supply and 1 GHz frequency. In comparison with the state-of-the-art designs, the proposed crossbar switch design achieves the best energy-delay efficiency of $2.203cycle/ns{\cdot}fJ{\cdot}{\lambda}2$.

Cell Balancing Method in Flyback Converter without Cell Selection Switch of Multi-Winding Transformer

  • Kim, Jin-Woong;Ha, Jung-Ik
    • Journal of Electrical Engineering and Technology
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    • v.11 no.2
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    • pp.367-376
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    • 2016
  • This paper presents a cell balancing method for a single switch flyback converter with a multi-winding transformer. The conventional method using a flyback converter with a multi-winding transformer is simple and easy to control, but the voltage of each secondary winding coil might be non-uniform because of the unequal effective turn-ratio. In particular, it is difficult to control the non-uniform effect using turn-ratios because secondary coil has a limited number of turns. The non-uniform secondary voltages disturb the cell balancing procedure and induce an unbalance in cell voltages. Individual cell control by adding a switch for each cell can reduce the undesirable effect. However, the circuit becomes bulky, resulting in additional loss. The proposed method here uses the conventional flyback converter with an adjustment made to the output filters of the cells, instead of the additional switch. The magnitude of voltage applied to a particular cell can be reduced or increased according to the adjusted filter and the selected switching frequency. An analysis of the conventional converter configuration and the filter design method reveals the possibility of adequate cell balancing control without any additional switch on the secondary side.

A New Hybrid Control Scheme with Active-Clamped Class-E Inverter system of Induction Heating Jar for High Power Applications (고 전력 응용을 위한 유도가열 Jar용 Active-Clamped Class-E 인버터 시스템의 새로운 Hybrid 제어 기법)

  • Lee, Dong-Yun;Lee, Min-Kwang;Hyun, Dong-Seok;Kim, Jung-Chul;Choi, Ick
    • Proceedings of the KIEE Conference
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    • 2001.07b
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    • pp.1009-1011
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    • 2001
  • This paper presents a new hybrid control scheme using Active-Clamped Class-E (ACCE) inverter of induction heating(IH) jar for high power applications. The proposed hybrid control scheme has characteristics, which act as class-E inverter at lower switch voltage and ACCE inverter at higher switch voltage than reference voltage of the main switch by feeding back voltage one as well as advantages of conventional ACCE inverter such as zero-voltage switching(ZVS) of the main switch and the reduced switch voltage due to the clamping circuit. Moreover, the proposed control method makes higher output power than conventional ACCE inverter control one since ACCE inverter is operated like class-E inverter at low voltage condition. The principle of the proposed control are explained in detail and the validity of the proposed control scheme is verified through the several interesting simulated and experimental results.

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A Study on the Diplexer Switch of High Isolation Using Varactor Diode (바랙터 다이오드를 이용한 높은 격리도를 갖는 DIPLEXER 스위치에 관한 연구)

  • Kang Myung-Soo;Park Jun-Seok
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.54 no.4
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    • pp.178-184
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    • 2005
  • In this paper, using diplexer structure and varactor diode controlled by reverse bias voltage for diplexer switch gives possibilities to improve isolation and current characteristics. 1 have newly designed switch with high isolation by application varactor diode corresponding to capacitor of diplexer. The low-pass filter for proposed tunable diplexer passes the microwave signal in the bandwidth for wireless cellular network systems and high-pass filter passes it in the bandwidth for wireless personal communication services (PCS) network systems. As the capacitance of the low-pass filter increases, the cut-off frequency can be moved to low frequency, so that the switch is on state in cellular bandwidth and off state in the PCS bandwidth, in contrast to, as the capacitance for attenuation characteristic of high-pass filter increases, it can be moved to high frequency, so that the switch is off state and on state in the cellular bandwidth. it is possible to improve isolation and current consumption characteristics by application diplexer design methods and varactor diode. 1 expect that the tunable diplexer circuit and design methods should be able to find applications on MMIC and low temperature copired ceramic (LTCC).

Development of a High Voltage Semiconductor Switch for the Command Charging o (모듈레이터의 지령충전을 위한 고전압 반도체 스위치 개발)

  • Park, S.S.;Lee, K.T.;Kim, S.H.;Cho, M.H.
    • Proceedings of the KIEE Conference
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    • 1998.07f
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    • pp.2067-2069
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    • 1998
  • A prototype semiconductor switch for the command resonant charging system has been developed for a line type modulator, which charges parallel pulse forming network(PFN) up to voltage of 5 kV at repetition rates of 60 Hz. A phase controlled power supply provides charging of the 4.7 ${\mu}s$ filter capacitor bank to voltage up to 5 kV. A solid state module of series stack array of sixe matched SCRs(1.6 kV, 50 A) is used as a command charging switch to initiate the resonant charging cycle. Both resistive and RC snubber network are used across each stage of the switch assembly in order to ensure proper voltage division during both steady state and transient condition. A master trigger signal is generated to trigger circuits which are transmitted through pulse transformer to each of the 6 series switch stages. A pulse transformer is required for high voltage trigger or power isolation. This paper will discuss trigger method, protection scheme, circuit simulation, and test result.

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ZVS single switch inverter for Reducing switch voltage stress of Induction Heating driving circuit (Induction Heating 구동회로의 스위치 내압 저감을 위한 ZVS 단일 스위치 인버터)

  • Kang, Kyung-soo;Kong, Sung-jae;Yang, Tae-cheol;Roh, Chung-Wook
    • Proceedings of the KIPE Conference
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    • 2017.07a
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    • pp.128-129
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    • 2017
  • 기존 Induction Heating용 인버터의 경우, 일반적인 Half-Bridge 인버터를 사용하여 낮은 효율이 발생하기 때문에 고효율 구동이 어렵고, Single Switch 인버터를 사용할 경우 높은 전압 스트레스로 인해 고효율 및 고출력 IH 인버터 구동이 어려운 문제점이 있다. 본 논문은 Induction Heating용 인버터의 원가를 감소시키고 고효율/고출력을 낼 수 있는 스위치 내압 저감용 ZVS Signle Switch 인버터를 제안한다. 기존의 IH 구동용 인버터를 사용할 경우에는 낮은 효율 및 높은 스위치의 전압 스트레스 때문에, 회로의 전체적인 부피가 커지고 제작단가가 증가하는 단점이 있다. 반면 제안된 회로는 IH 구동용 스위치 내압 저감이 가능한 ZVS Single Switch 인버터로써, 단일 스위치 회로 구현과 영전압 스위칭을 통해 높은 효율로 인버터 구동이 가능하고, 스위치 내압을 감소하였기 때문에 회로의 부피 및 원가를 감소시킬 수 있는 장점을 갖는다. 본 논문에서는 제안된 회로의 이론적이 특성을 분석하고 모의실험을 통해 확인하였으며, 2.6kW급 IH 구동 인버터 회로에 적용하여 실험을 통해 우수성을 검증하였다.

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Direct Power Control without Current Sensors for Nine-Switch Inverters

  • Pan, Lei;Zhang, Junru;Wang, Kai;Wang, Beibei;Pang, Yi;Zhu, Lin
    • Journal of Power Electronics
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    • v.18 no.1
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    • pp.1-10
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    • 2018
  • Recently, the nine-switch inverter has been proposed as a dual output inverter. To date, studies on the control strategies for NSIs have been mostly combined with their application. However, in this paper, a mathematical model and control strategy for nine-switch inverters has been proposed in view of the topology. A switching function model and equivalent circuit model of a nine-switch inverter have been built in ${\alpha}{\beta}$ coordinates. Then, a novel current observer with an improved integrator is proposed based on the switching function model, and a direct power control strategy is proposed. No current sensors are used in the proposed strategy, and only two voltage sensors are employed. The performance of the proposed control method is verified by simulation and experimental results.

Fabrication and Small scale Short Circuit Tests of Hybrid Fault Current Limiter Employing Asymmetric Non-Inductive Coil and Fast Switch (이종초전도 코일을 이용한 하이브리드형 한류기의 제작 및 단락실험)

  • Jang, Jae-Young;Kim, Young-Jae;Na, Jin-Bae;Choi, Suk-Jin;Lee, Woo-Seung;Lee, Chang-Young;Park, Dong-Keun;Ko, Tae-Kuk
    • Progress in Superconductivity and Cryogenics
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    • v.13 no.1
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    • pp.41-45
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    • 2011
  • Hybrid fault current limiters (FCL) have been researched at Yonsei University. The hybrid FCL has advantages such as having a rapid response to a sudden fault situation and a fast recovery time from a quench. It consists of an asymmetric HTS coil, a switching module, and a bypass reactor. The asymmetric HTS coil is wound with two different types of HTS wires in an opposite direction so that it has nearly zero inductance at the superconducting state. When the quench occurs at the fault state, a strong magnetic field is generated from the asymmetric coil because of different quench characteristics of two HTS wires, and then a repulsive force is induced in the switching module. The force opens the switch and the fault current is pushed into the bypass reactor. In this research, we analyzed the cause of the repulsive force and confirmed, experimentally and computationally, that the magnitude of a repulsive force is varied by changing the gap distance between the asymmetric coil and the switching module. By using the FEM simulation, we calculated the repulsive force with respect to the gap distance and verified that the effect of the gap distance. Then, short circuit test was carried out to confirm the correct operation of the fast switch.