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Designing and simulation smart multifunctional continuous logic device as a basic cell of advanced high-performance sensor systems with MIMO-structure

机译:设计和仿真智能多功能连续逻辑装置作为MIMO结构的先进高性能传感器系统的基本单元

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We have proposed a design and simulation of hardware realizations of smart multifunctional continuous logic devices (SMCLD) as advanced basic cells of the sensor systems with MIMO- structure for images processing and interconnection. The SMCLD realize function of two-valued, multi-valued and continuous logics with current inputs and current outputs. Such advanced basic cells realize function nonlinear time-pulse transformation, analog-to-digital converters and neural logic. We showed advantages of such elements. It's have a number of advantages: high speed and reliability, simplicity, small power consumption, high integration level. The conception of construction of SMCLD consists in the use of a current mirrors realized on 1.5μm technology CMOS transistors. Presence of 50÷70 transistors, 1 PD and 1 LED makes the offered circuits quite compact. The simulation results of NOT, MIN, MAX, equivalence (EQ), normalize summation, averaging and other functions, that implemented SMCLD, showed that the level of logical variables can change from 0.1 μA to 10μA for low-power consumption variants. The SMCLD have low power consumption <1mW and processing time about 1÷11μS at supply voltage 2.4÷3.3V.
机译:我们提出了智能多功能连续逻辑设备(SMCLD)的硬件实现设计和仿真,作为具有MIMO结构的传感器系统的先进基本单元,用于图像处理和互连。 SMCLD通过电流输入和电流输出实现了双值,多值和连续逻辑的函数。这种先进的基本单元实现功能非线性时间脉冲变换,模数转换器和神经逻辑。我们表现​​出这些元素的优势。它具有许多优点:高速可靠,简单,功耗小,集成电平高。 SMCLD建设的概念包括在1.5μm技术CMOS晶体管上实现的电流镜。 50÷70晶体管,1 PD和1 LED使提供的电路非常紧凑。实施SMCLD的仿真结果不是,最小,最大值,等价(EQ),正常化求和,平均和其他功能,表明,逻辑变量的级别可以从0.1μA变为低功耗变体的10μA。 SMCLD具有低功耗<1MW和电源电压下约1÷11μs的处理时间2.4÷3.3V。

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