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Using Arduino and on-chip serial-to-parallel register to test widely-programmable ADCs

机译:使用Arduino和片上串行到并行寄存器测试广泛可编程的ADC

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This paper presents an experimental set-up that combines on-chip digital techniques with off-chip Arduino-based hardware to simplify the test of widely-programmable analog-to-digital converters. The presented methodology is specially intended for analog and mixed-signal circuits which require a large number of digital signals to reconfigure their performance to different electrical specifications, environment signal conditions, battery status, etc. To this end, a serial-to-parallel register is implemented on chip in order to generate the required number of digital control signals from an input serial data provided offchip. Such serial data can be generated by using an Arduino-based hardware set-up, which can be easily programmed in MATLAB, with no additional test instruments required. As an application, the proposed method is applied to the experimental characterization of a fourth-order band-pass continuous-time ΣΔ modulator, integrated in a 65-nm CMOS technology, which can digitize signals placed at programmable carrier frequencies for software defined radio1.
机译:本文介绍了一种实验设置,该实验设置将片上数字技术与片外基于Arduino的硬件相结合,以简化对广泛可编程模数转换器的测试。提出的方法特别适用于模拟和混合信号电路,这些电路需要大量的数字信号才能将其性能重新配置为不同的电气规格,环境信号条件,电池状态等。为此,需要使用串行到并行寄存器为了在芯片外提供输入的串行数据来生成所需数量的数字控制信号,该芯片是在芯片上实现的。可以使用基于Arduino的硬件设置生成此类串行数据,可以在MATLAB中轻松对其进行编程,而无需其他测试仪器。作为一种应用,所提出的方法适用于集成在65纳米CMOS技术中的四阶带通连续时间ΣΔ调制器的实验表征,该调制器可以数字化以软件定义的radio1的可编程载波频率放置的信号。

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