减法器
计算机科学
加法器
逻辑门
电子线路
可编程逻辑阵列
逻辑族
逻辑综合
逻辑优化
时序逻辑
领域(数学)
可编程逻辑器件
计算机体系结构
计算机硬件
算法
电气工程
工程类
数学
电信
延迟(音频)
纯数学
作者
Yizhou Liu,Yuxuan Zhai,Hao Hu,Yuheng Liao,Huan Liu,Xiao Liu,Jiachen He,Limei Wang,Hongxun Wang,Longjie Li,Xiaoyu Zhou,Xianjin Xiao
标识
DOI:10.1002/advs.202400011
摘要
Abstract DNA is commonly employed as a substrate for the building of artificial logic networks due to its excellent biocompatibility and programmability. Till now, DNA logic circuits are rapidly evolving to accomplish advanced operations. Nonetheless, nowadays, most DNA circuits remain to be disposable and lack of field programmability and thereby limits their practicability. Herein, inspired by the Configurable Logic Block (CLB), the CLB‐based erasable field‐programmable DNA circuit that uses clip strands as its operation‐controlling signals is presented. It enables users to realize diverse functions with limited hardware. CLB‐based basic logic gates (OR and AND) are first constructed and demonstrated their erasability and field programmability. Furthermore, by adding the appropriate operation‐controlling strands, multiple rounds of programming are achieved among five different logic operations on a two‐layer circuit. Subsequently, a circuit is successfully built to implement two fundamental binary calculators: half‐adder and half‐subtractor, proving that the design can imitate silicon‐based binary circuits. Finally, a comprehensive CLB‐based circuit is built that enables multiple rounds of switch among seven different logic operations including half‐adding and half‐subtracting. Overall, the CLB‐based erasable field‐programmable circuit immensely enhances their practicability. It is believed that design can be widely used in DNA logic networks due to its efficiency and convenience.
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