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Design of novel multiplexer based thermometer to binary code encoder for 4 bit flash ADC

机译:基于新型多路复用器的4位闪光ADC的二进制编码器设计

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In this paper, a novel multiplexer based thermometer to binary Code Encoder For 4 Bit Flash ADC is proposed. The proposed encoder design uses 2:1 multiplexes (MUX) and 2 input XOR gates for converting thermometer code to binary code. Initially 2:1 MUX are used to convert the thermometer code to equivalent gray code. The resulting gray code is then converted to the binary code using XOR gates. Low power consumption is achieved in the proposed design with the grounding concept and avoiding the additional inverters compared to the conventional encoder design. The proposed encoder is implemented in 180 nm CMOS, N-well technology with 1.8 V supply voltage and was simulated using Cadence Spectre simulator. Simulation results shows reduction in power up to 60% when compared with conventional encoder architectures. The proposed design has a figure-of-merit (FOM) of 13.28 fJ with the propagation delay of 0.5180 ns.
机译:在本文中,提出了一种新的基于多路复用器的4位闪光ADC的二进制编码器的温度计。所提出的编码器设计使用2:1多路复用(MUX)和2个输入XOR门,用于将温度计码转换为二进制代码。最初2:1个Mux用于将温度计代码转换为等效的灰色码。然后使用XOR门将生成的格雷码转换为二进制代码。利用接地概念,在提出的设计中实现了低功耗,并避免了与传统编码器设计相比附加逆变器。所提出的编码器以180nm CMOS,N-Well技术实现,具有1.8 V电源电压,并使用Cadence Specter Simulator进行模拟。与传统编码器架构相比,仿真结果显示高达60 %的电量。所提出的设计具有13.28 FJ的数字(FOM),传播延迟为0.5180 ns。

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