• Title/Summary/Keyword: 신호처리회로

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X-선 검출기의 신호처리회로 설계

  • 남욱원;최철성;문신행
    • Bulletin of the Korean Space Science Society
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    • 1993.10a
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    • pp.23-23
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    • 1993
  • 과학로케트에 탑재되는 x-선 검출기에서 검출되는 2 kev 에서 10 kev 사이의 x-선 신호를 분석하여 데이터를 얻고, 전송하기 위한 피로를 설계하고 제작하였다. 신호처리회로의 전체적인 구성은 2 - 10 key의 x-선 에너지 및 event time을 측정하는 회로 및8-선 계수율을 측정하기 위한 카운터회로를 위주로 설계하였으며, x-선 event의 에너지가 측정에너지를 벗어나거나 상승시간이 긴 신호는 anti-coincidence 회로를 통하여 제거되고, 그 계수율이 기록되도록 설계 제작되었다. 또한 신호처리회로에서 얻은 데이터는 telemetry를 통하여 serial 형태로 전송되어야 하므로 8086 microprocessor를 이용하여 데이터를 획득하고 전송하도록 하였다. 따라서 본 실험에서 제작된 신호처리회로의 기능 및 특성에 대해 논하고자 한다.

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Design of Multiple-Valued Logic Circuits on Reed-Muller Expansions Using Perfect Shuffle (Perfect Shuffle에 의한 Reed-Muller 전개식에 관한 다치 논리회로의 설계)

  • Seong, Hyeon-Gyeong
    • The KIPS Transactions:PartA
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    • v.9A no.3
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    • pp.271-280
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    • 2002
  • In this paper, the input-output interconnection method of the multiple-valued signal processing circuit using Perfect Shuffle technique and Kronecker product is discussed. Using this method, the circuit design method of the multiple-valued Reed-Muller Expansions (MRME) which can process the multiple-valued signal easily on finite fields GF$(p^m)$ is presented. The proposed input-output interconnection methods show that the matrix transform is an efficient and the structures are modular. The circuits of multiple-valued signal processing of MRME on GF$(p^m)$ design the basic cells to implement the transform and inverse transform matrix of MRME by using two basic gates on GF(3) and interconnect these cells by the input-output interconnection technique of the multiple-valued signal processing circuits. The proposed multiple-valued signal processing circuits that are simple and regular for wire routing and possess the properties of concurrency and modularity are suitable for VLSI.

Design of BiCMOS Signal Conditioning Circuitry for Piezoresistive Pressure Sensor (압저항형 압력센서를 위한 BiCMOS 신호처리회로의 설계)

  • Lee, Bo-Na;Lee, Moon-Key
    • Journal of Sensor Science and Technology
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    • v.5 no.6
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    • pp.25-34
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    • 1996
  • In this paper, we have designed signal conditioning circuitry for piezoresistive pressure sensor. Signal conditioning circuitry consists of voltage reference circuit for sensor driving voltage and instrument amplifier for sensor signal amplification. Signal conditioning circuitry is simulated using HSPICE in a single poly double metal $1.5\;{\mu}m$ BiCMOS technology. Simulation results of band-gap reference circuit showed that temperature coefficient of $21\;ppm/^{\circ}C$ at the temperature range of $0\;{\sim}\;70^{\circ}C$ and PSRR of 80 dB. Simulation results of BiCMOS amplifier showed that dc voltage gain, offset voltage, CMRR, CMR and PSRR are outperformed to CMOS and Bipolar, but power dissipation and noise voltage were more improved in CMOS than BiCMOS and Bipolar. Designed signal conditioning circuitry showed high input impedance, low offset and good CMRR, therefore, it is possible to apply sensor and instrument signal conditioning circuitry.

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A Design of a High-Speed Multilayer Printed Circuit Board though signal Verification (신호 검증을 통한 고속 다층 인쇄회로기판의 설계)

  • Choe, Cheol-Yong
    • The Transactions of the Korea Information Processing Society
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    • v.5 no.1
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    • pp.249-257
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    • 1998
  • 다층 인쇄회로기판에서 고속 신호를 정확하고 신속하게 배선 설계하려면, 물리적 설계 규칙과 신호 잡음을 고려한 전기적 설계 규칙을 정립하고, 적용할 신호 검증 도구를 사용하여 신호의 충실성을 검증하여야 한다. 본 논문은 현재 개발 제작되어 동작 중에 있는 HIPSS(High Performance Storage System)보드에 대한 전기적 설계 규칙과 고속 신호의 배선에 따른 일부 고속 신호의 신호 검증 방법을 설명한다. 또한 전기적 설계 규칙을 적용하여 인쇄회로기판을 설계하는 경우, 발생하는 신호 지연, 반사 그리고 누화 등의 신호 잡음을 검증 도구를 이용하여 시뮬레이션 하고, 분석한 결과를 보이며, 수정된 고속 신호의 배선 설계를 확인한다.

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High Performance Circuit Design of a Capacitive Type Fingerprint Sensor Signal Processing (고성능 용량 형 지문센서 신호처리 회로 설계)

  • 정승민;이문기
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.41 no.3
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    • pp.109-114
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    • 2004
  • This paper proposes an advanced circuit for the fingerprint sensor signal processing. We increased the voltage between ridge and valley by modifying the parasitic capacitance eliminating circuit of sensor plate. The analog comparator was designed for comparing the sensor signal voltage with the reference signal voltage. We also propose an effective isolation strategy for removing noise and signal coupling of each sensor pixel. The fingerprint sensor circuit was designed and simulated, and the layout was performed.

A Study on Implementation for Signal Integrity Simulator of the PCB Circuits (PCB 회로의 신호통합 시뮬레이터 구현에 관한 연구)

  • Kim, Hyeon-Ho;Yi, Cheon-Hee
    • Proceedings of the Korea Information Processing Society Conference
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    • 2001.04b
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    • pp.1209-1212
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    • 2001
  • 본 논문에서는 PCB(Printed Circuit Board)회로에서 고속 신호들을 전달하는 배선의 특성 및 배선의 요구사항에 의한 설계 규칙과 이론화된 공식은 이용하여 PCB상에 배치되는 부품들간의 배선경로를 추적하여 해당 배선의 특성을 분석하고, 흐르는 신호의 특성 및 해당 신호의 전기/전자적인 시뮬레이션을 수행할 수 있도록 하는 PCB회로의 신호통합 시뮬레이터에 대하여 언급하고 실험을 통하여 시뮬레이션의 타당성을 검증하였다.

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Development of High Speed Peak-hold Circuit for Gamma-ray (감마선용 고속 피크홀드회로의 개발)

  • Choi, Ki-seong;Che, Gyu-shik
    • Journal of Advanced Navigation Technology
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    • v.20 no.6
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    • pp.612-616
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    • 2016
  • Gamma-ray must be detected and processed immedietely after generation of it in the circumstances where it exists. Software methology may be used to process randomly generated signals, but its memory size and processing time become large. By the way, the hardware circuit to detect randomly generated signals is generalized in industrial site, while those circuits are not able to answer to the cases whose amplitude are very small and also speed high. We researched and developed hardware based peak-hold circuit that is able to detect peaks of gamma-ray signals through direct reading out their values by ADC at the time of maximum reaching for the small amplitude and high speed signals, and proposed and estimated its results in this paper. This peak-hold circuit is adequate to use in the radiation circumstances in which the gamma-rays are heavy because its circuit can catch high speed signals efficiently without software signal processing supports.

A Circuit Design of Fingerprint Authentication Sensor (지문인식센서용 회로설계)

  • 남진문;정승민;이문기
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.29 no.4A
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    • pp.466-471
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    • 2004
  • This paper proposes an advanced circuit for fingerprint sensor signal processing. We increased the voltage between ridge and valley by modifying the parasitic capacitance eliminating circuit of sensor plate. The analog comparator was designed for comparing the sensor signal voltage with the reference signal voltage. 1-Pixel Fingerprint sensor circuit was designed and simulated, and the layout was performed.

English Digital Signal Processing Circuit in HD Monitor using Synchronization Signal Optimization (동기신호 최적화 기법을 통한 고품위급 모니터의 디지털 신호처리회로 구현)

  • 천성렬;김익환;이호근;하영호
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.11C
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    • pp.1152-1160
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    • 2003
  • Start The current paper proposes an improved HD(High Definition) monitor that can support a signal input with various resolutions. Due to the inadequate performance of the built-in digital PLL(Phase-locked Loop) of an ADC(Analog to Digital Converter) and poor tolerance of ADC ICs, there are problems in the stable processing of synchronization signals with various input signals. Accordingly, the proposed synchronization signal optimization technique regenerates the horizontal synchronization signal in the vertical blanking interval based on the regularity of the synchronization signal, i.e. the timing of the falling edge signal remains constant, thereby solving the above problem and minimizing the interference of the system. As a result, the proposed system can stabilize various synchronization signals with different resolution modes.

CMOS Circuits for Multi-Sensor Interface Custom IC (멀티센서신호 인터페이스용 Custom IC를 위한 CMOS 회로 설계)

  • Jo, Young-Chang;Choi, Pyung;Sohn, Byung-Ki
    • Journal of Sensor Science and Technology
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    • v.3 no.1
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    • pp.54-60
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    • 1994
  • In this paper, the multi-sensor signal processing IC is designed. It consists of an analog multiplexer for selection of multi-sensor signals, active filters for noise rejection and signal amplification, and a sample and hold circuit for interface with digital signal processing. By implementing these circuits with CMOS transistors, integration, low power dissipation and miniaturization of the total signal processing system have been made possible.

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