• Title/Summary/Keyword: 반가산기

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Multi-layer Structure Based QCA Half Adder Design Using XOR Gate (XOR 게이트를 이용한 다층구조의 QCA 반가산기 설계)

  • Nam, Ji-hyun;Jeon, Jun-Cheol
    • Asia-pacific Journal of Multimedia Services Convergent with Art, Humanities, and Sociology
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    • v.7 no.3
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    • pp.291-300
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    • 2017
  • Quantum-dot cellular automata(QCA) is a computing model designed to be similar to cellular automata, and an alternative technology for next generation using high performance and low power consumption. QCA is undergoing various studies with recent experimental results, and it is one of the paradigms of transistors that can solve device density and interconnection problems as nano-unit materials. An XOR gate is a gate that operates so that the result is true when either one of the logic is true. The proposed XOR gate consists of five layers. The first layer consists of OR gates, the third and fifth layers consist of AND gates, and the second and fourth layers are designed as passages in the middle. The half adder consists of an XOR gate and an AND gate. The proposed half adder is designed by adding two cells to the proposed XOR gate. The proposed half adder consists of fewer cells, total area, and clock than the conventional half adder.

Design Of Minimized Wiring XOR gate based QCA Half Adder (배선을 최소화한 XOR 게이트 기반의 QCA 반가산기 설계)

  • Nam, Ji-hyun;Jeon, Jun-Cheol
    • Asia-pacific Journal of Multimedia Services Convergent with Art, Humanities, and Sociology
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    • v.7 no.10
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    • pp.895-903
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    • 2017
  • Quantum Cellular Automata(QCA) is one of the proposed techniques as an alternative solution to the fundamental limitations of CMOS. QCA has recently been extensively studied along with experimental results, and is attracting attention as a nano-scale size and low power consumption. Although the XOR gates proposed in the previous paper can be designed using the minimum area and the number of cells, there is a disadvantage that the number of added cells is increased due to the stability and the accuracy of the result. In this paper, we propose a gate that supplement for the drawbacks of existing XOR gates. The XOR gate of this paper reduces the number of cells by arranging AND gate and OR gate with square structure and propose a half-adder by adding two cells that serve as simple inverters using the proposed XOR gate. Also This paper use QCADesginer for input and result accuracy. Therefore, the proposed half-adder is composed of fewer cells and total area compared to the conventional half-adder, which is effective when used in a large circuit or when a half - adder is needed in a small area.

10 Gb/s All-optical half adder by using semiconductor optical amplifier based devices (반도체 광증폭기에 기반을 둔 10 Gb/s 전광 반가산기)

  • Kim, Jae-Hun;Jhon, Young-Min;Byun, Young-Tae;Lee, Seok;Woo, Deok-Ha;Kim, Sun-Ho
    • Korean Journal of Optics and Photonics
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    • v.13 no.5
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    • pp.421-424
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    • 2002
  • By using SOA (Semiconductor Optical Amplifier) based devices, an all-optical half adder has been successfully demonstrated at 10 Gb/s. All-optical XOR and AND gates are utilized to realize SUM and CARRY. Since SUM and CARRY have been simultaneously realized to form the all-optical half adder, complex calculation and signal processing can be achieved.

Construction of a Ternary Full-Adder (삼치전가산기의 구성)

  • 임인칠;조원경
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.11 no.1
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    • pp.15-22
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    • 1974
  • A new ternary full adder using the current controlled negative-resistance circuit is described. The full adder is constructed from the modified-half-adder which was devised by making use of a negative resistance circuit. This full adder makes the number of its gates decrease and makes its own speed increase in comparison with the full adders which had been introduced previously. It is convenient to construct to the integrated circuit because transistor, SBD(Schottky Barrier Diode) and resistors were used as the circuit elements.

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All-optical Binary Half Adder Using SLALOM (SLALOM을 이용한 전광 반 가산기)

  • 김선호;이성철;박진우
    • Proceedings of the Optical Society of Korea Conference
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    • 2001.02a
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    • pp.74-75
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    • 2001
  • 현재의 통신망에서는 clock recovery, regeneration 등을 전기적으로 처리하고 있으나 처리속도의 한계가 있고, 미래의 초고속 네트웍은 이러한 전기적 신호처리의 속도한계를 극복하는 기술이 필요하다. 그러므로, 고속의 광교환과 광신호처리 등 광신호를 전기적으로 바꾸거나 제어하지 않고 전광으로 처리하는 기술에 대한 연구가 진행되고 있으며 이러한 전광신호 처리에 고속의 전광 논리소자가 요구된다. 초기의 전광 논리소자 연구에서는 AND, OR, NOR, XOR 등의 기본 논리 기능이 주로 구현되었으며 이를 활용하여 Shift Register, Binary counter, 전광 반가산기, 직/병렬 데이터 변환기와 같은 복합기능 논리소자의 구현 연구가 이루어지고 있다. (중략)

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반도체 광 증폭기의 이득 비선형 특성을 이용해 구현한 전광 반가산기

  • Kim, Gyeong-Pil;Son, Chang-Wan;Kim, Geun-Cheol;Kim, Sang-Heon;Kim, Jae-Heon;Byeon, Yeong-Tae;Jeon, Yeong-Min;Lee, Seok;U, Deok-Ha;Kim, Seon-Ho
    • Proceedings of the Optical Society of Korea Conference
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    • 2006.07a
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    • pp.159-160
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    • 2006
  • By using 2 signals without additional input signal, an all-optical binary half adder at 10 Gbps is demonstrated. The half adder operates in single mechanism, which is XGM. By achieving this experiment, we also explored the possibilities for the enhanced complex logic operation and higher chances for multiple logic integration.

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Implementation of RSA Exponentiator Based on Radix-$2^k$ Modular Multiplication Algorithm (Radix-$2^k$ 모듈라 곱셈 알고리즘 기반의 RSA 지수승 연산기 설계)

  • 권택원;최준림
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.12 no.2
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    • pp.35-44
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    • 2002
  • In this paper, an implementation method of RSA exponentiator based on Radix-$2^k$ modular multiplication algorithm is presented and verified. We use Booth receding algorithm to implement Radix-$2^k$ modular multiplication and implement radix-16 modular multiplier using 2K-byte memory and CSA(carry-save adder) array - with two full adder and three half adder delays. For high speed final addition we use a reduced carry generation and propagation scheme called pseudo carry look-ahead adder. Furthermore, the optimum value of the radix is presented through the trade-off between the operating frequency and the throughput for given Silicon technology. We have verified 1,024-bit RSA processor using Altera FPGA EP2K1500E device and Samsung 0.3$\mu\textrm{m}$ technology. In case of the radix-16 modular multiplication algorithm, (n+4+1)/4 clock cycles are needed and the 1,024-bit modular exponentiation is performed in 5.38ms at 50MHz.

A Dual band CMOS Voltage Controlled Oscillator of an arithmetic functionality with a 50% duty cycle buffer (50%듀티 싸이클 버퍼를 가진 산술 연산 구조의 이중 대역 CMOS 전압 제어 발진기)

  • 한윤철;김광일;이상철;변기영;윤광섭
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.41 no.10
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    • pp.79-86
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    • 2004
  • This paper proposes a dual band Voltage Controlled Oscillator(VCO) with a standard 0.3${\mu}{\textrm}{m}$ CMOS process to generate 1.07GHz and 2.07GHz. The proposed VCO architecture with 50% duty cycle circuit and a half adder(HA) was capable of producing a frequency two times higher than that of the conventional VCOs. The measurement results demonstrate that the gain of VCO and power dissipation are 561MHz/V and 14.6mW, respectively. The phase noises of the dual band VCO are measured to be -102.55dBc/Hz and -95.88dBc/Hz at 2MHz offset from 1.07GHz and 2.07GHz, respectively.