• Title/Summary/Keyword: D-래치

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Analysis of Metastability for the Synchronizer of NoC (NoC 동기회로 설계를 위한 불안정상태 분석)

  • Chong, Jiang;Kim, Kang-Chul
    • The Journal of the Korea institute of electronic communication sciences
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    • v.9 no.12
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    • pp.1345-1352
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    • 2014
  • Bus architecture of SoC has been replaced by NoC in recent years. Noc uses the multi-clock domains to transmit and receive data between neighbor network interfaces and they have same frequency, but a phase difference because of clock skew. So a synchronizer is used for a mesochronous frequency in interconnection between network interfaces. In this paper the metastability is defined and analyzed in a D latch and a D flip-flop to search the possibilities that data can be lost in the process of sending and receiving data between interconnects when a local frequency and a transmitted frequency have a phase difference. 180nm CMOS model parameter and 1GHz are used to simulate them in HSpice. The simulation results show that the metastability happens in a latch and a flip-flop when input data change near the clock edges and there are intermediate states for a longer time as input data change closer at the clock edge. And the next stage can lose input data depending on environmental conditions such as temperature, processing variations, power supply, etc. The simulation results are very useful to design a mescochronous synchronizer for NoC.

Design of a Low Power 3V 6-bit 100MSPS CMOS ADC for DBS Receiver (위성방송 수신기용 저전력 3V 6-bit 100MSPS COMS ADC의 설계)

  • Moon, Jae-Jun;Song, Min-Kyu
    • Journal of the Korean Institute of Telematics and Electronics C
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    • v.36C no.12
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    • pp.20-26
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    • 1999
  • A CMOS 6-bit 100MSPS ADC for DBS receiver is designed. The proposed ADC is composed of folding block, latch block, and digital block. The cascode interpolating block and kickback reduced latch are proposed with a high speed architecture. To verify the performance of ADC, simulations are carried out by HSPICE. The ADC achieves a clock frequency of 100MHz with a power dissipation of 40mW for 3 V supply voltage. The active chip area is $1500{\mu}m{\times}1000{\mu}m$with $0.65{\mu}m$ 2-poly 2-metal CMOS process. Further, INL and DNL are within ${\pm}0.6LSB$, ${\pm}0.5LSB$, respectively. SNDR is about 33dB at 10MHz input frequency.

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Quaternary D Flip-Flop with Advanced Performance (개선된 성능을 갖는 4치 D-플립플롭)

  • Na, Gi-Soo;Choi, Young-Hee
    • 전자공학회논문지 IE
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    • v.44 no.2
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    • pp.14-20
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    • 2007
  • This paper presents quaternary D flip-flop with advanced performance. Quaternary D flip-flop is composed of the components such as thermometer code output circuit, EX-OR gate, bias inverter, transmission gate and binary D flip-flop circuit. The designed circuit is simulated by HSPICE in $0.35{\mu}m$ one-poly six-metal CMOS process parameters with a single +3.3V supply voltage. In the simulations, sampling frequencies is measured around 100MHz. The PDP parameters and FOM we estimated to be 59.3fJ, 33.7 respectively.

A 0.16㎟ 12b 30MS/s 0.18um CMOS SAR ADC Based on Low-Power Composite Switching (저전력 복합 스위칭 기반의 0.16㎟ 12b 30MS/s 0.18um CMOS SAR ADC)

  • Shin, Hee-Wook;Jeong, Jong-Min;An, Tai-Ji;Park, Jun-Sang;Lee, Seung-Hoon
    • Journal of the Institute of Electronics and Information Engineers
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    • v.53 no.7
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    • pp.27-38
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    • 2016
  • This work proposes a 12b 30MS/s 0.18um CMOS SAR ADC based on low-power composite switching with an active die area of $0.16mm^2$. The proposed composite switching employs the conventional $V_{CM}$-based switching and monotonic switching sequences while minimizing the switching power consumption of a DAC and the dynamic offset to constrain a linearity of the SAR ADC. Two equally-divided capacitors topology and the reference scaling are employed to implement the $V_{CM}$-based switching effectively and match an input signal range with a reference voltage range in the proposed C-R hybrid DAC. The techniques also simplify the overall circuits and reduce the total number of unit capacitors up to 64 in the fully differential version of the prototype 12b ADC. Meanwhile, the SAR logic block of the proposed SAR ADC employs a simple latch-type register rather than a D flip-flop-based register not only to improve the speed and stability of the SAR operation but also to reduce the area and power consumption by driving reference switches in the DAC directly without any decoder. The measured DNL and INL of the prototype ADC in a 0.18um CMOS are within 0.85LSB and 2.53LSB, respectively. The ADC shows a maximum SNDR of a 59.33dB and a maximum SFDR of 69.83dB at 30MS/s. The ADC consumes 2.25mW at a 1.8V supply voltage.

Improvement of Power Consumption of Automatic Quiescent Power Cut-off Receptacle by Developing Latch Relay (래치릴레이 개발 및 적용을 통한 대기전력 자동 차단 콘센트의 효율 개선방안 고찰)

  • Kim, Ju-Chul;Lee, Joon-Ho;Kim, Jin-Tai;Kim, Sun-Gu;Lee, Sang-Joong
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.27 no.10
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    • pp.75-79
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    • 2013
  • The automatic quiescent power cut-off receptacles(QPCR from now on) have achieved a noticeable energy saving so far. The government is preparing a new code for wider promotion of the QPCRs. This paper presents a new QPCR that adopts the latch relay instead of the conventional coil-operated relay. Measurement results of the prototype have shown up to 0.22W improvement of quiescent power compared with existing products.

Design of a 3.3V 8-bit 200MSPS CMOS folding/interpolation ADC (3.3V 8-bit 200MSPS CMOS folding/interpolation ADC의 설계)

  • Song, Min Gyu
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.38 no.3
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    • pp.44-44
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    • 2001
  • 본 논문에서는 CMOS로 구현된 3.3V 8-bit 200MSPS의 Folding / Interpolation 구조의 A/D 변환기를 제안한다. 회로에 사용된 구조는 FR(Folding Rate)이 8, NFB(Number of Folding Block)가 4, Interpolation rate 이 8이며, 분산 Track and Hold 구조를 회로를 사용하여 Sampling시 입력주파수를 Hold하여 높은 SNDR을 얻을 수 있었다. 고속동작과 저 전력 기능을 위하여 향상된 래치와 디지털 Encoder를 제안하였고 지연시간 보정을 위한 회로도 제안하였다. 제안된 ADC는 0.35㎛, 2-Poly, 3-Metal, n-well CMOS 공정을 사용하여 제작되었으며, 유효 칩 면적은 1070㎛×650㎛ 이고, 3.3V전압에서 230mW의 전력소모를 나타내었다. 입력 주파수 10MHz, 샘플링 주파수 200MHz에서의 INL과 DNL은 ±1LSB 이내로 측정되었으며, SNDR은 43㏈로 측정되었다.

Design of 3V a Low-Power CMOS Analog-to-Digital Converter (3V 저전력 CMOS 아날로그-디지털 변환기 설계)

  • 조성익;최경진;신홍규
    • Journal of the Korean Institute of Telematics and Electronics C
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    • v.36C no.11
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    • pp.10-17
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    • 1999
  • In this paper, CMOS IADC(Current-mode Analog-to-Digital Converter) which consists of only CMOS transistors is proposed. Each stages is made up 1.5-bit bit cells composed of CSH(Current-mode Sample-and-Hold) and CCMP(Current Comparator). The differential CSH which designed to eliminate CFT(Clock Feedthrough), to meet at least 9-bit resolution, is placed at the front-end of each bit cells, and each stages of bit cell ADSC (Analog-to-Digital Subconverter) is made up two latch CCMPs. With the HYUNDAI TEX>$0.65\mu\textrm{m}$ CMOS parameter, the ACAD simulation results show that the proposed IADC can be operated with 47 dB of SINAD(Signal to Noise- Plus-Distortion), 50dB(8-bit) of SNR(Signal-to-Noise) and 37.7 mW of power consumption for input signal of 100 KHz at 20 Ms/s.

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A study on the change of die roll size by the shape of die chamfer in fine blanking die for automobile door latch (자동차 도어 래치 성형용 파인 블랭킹 금형의 다이 챔퍼 형상에 따른 다이 롤 크기 변화에 대한 연구)

  • Kim, Jong-Deok;Kim, Heung-Kyu
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.2
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    • pp.565-570
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    • 2011
  • There is always die roll in fine blanking parts which is able to have 100% clean shear surface. In this paper the change of die roll size was studied by fine blanking tryout in order to minimize die roll size. Various die inserts with different die chamfer were machined, fine blanking die was manufactured and tested. The die roll sizes of fine blanking samples were measured and the tendency of thickness directional die roll size was comprehended. This result will be used on the design of die chamfer in order to minimize thickness directional die roll size of fine blanking parts

Design of High-Speed Parallel Multiplier with All Coefficients 1's of Primitive Polynomial over Finite Fields GF(2m) (유한체 GF(2m)상의 기약다항식의 모든 계수가 1을 갖는 고속 병렬 승산기의 설계)

  • Seong, Hyeon-Kyeong
    • Journal of the Korea Society of Computer and Information
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    • v.18 no.2
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    • pp.9-17
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    • 2013
  • In this paper, we propose a new multiplication algorithm for two polynomials using primitive polynomial with all 1 of coefficient on finite fields GF($2^m$), and design the multiplier with high-speed parallel input-output module structure using the presented multiplication algorithm. The proposed multiplier is designed $m^2$ same basic cells that have a 2-input XOR gate and a 2-input AND gate. Since the basic cell have no a latch circuit, the multiplicative circuit is very simple and is short the delay time $D_A+D_X$ per cell unit. The proposed multiplier is easy to extend the circuit with large m having regularity and modularity by cell array, and is suitable to the implementation of VLSI circuit.

Design and Implementation of a Main-memory Storage System for Real-time Retrievals (실시간 검색을 위한 다중 사용자용 주기억장치 자료저장 시스템 개발)

  • Kwon, Oh-Su;Hong, Dong-Kweon
    • The KIPS Transactions:PartD
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    • v.10D no.2
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    • pp.187-194
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    • 2003
  • Main Memory storage system can increase the performance of the system by assigning enough slack time to real-time transactions. Due to its high response time of main memory devices, main memory resident data management systems have been used for location management of personal mobile clients to cope with urgent location related operations. In this paper we have developed a multi-threaded main memory storage system as a core component of real-time retrieval system to handle a huge amount of readers and writers of main memory resident data. The storage system is implemented as an embedded component which is working with the help of a disk resident database system. It uses multi-threaded executions and utilizes latches for its concurrency control rather than complex locking method. It only saves most recent data on main memory and data synchronization is done only when disk resident database asks for update transactions. The system controls the number of read threads and update threads to guarantee the minimum requirements of real-time retrievals.