Using active components to perform voltage division in digital-to-analog conversion

C. P. Chong, K. C. Smith, Z. Vranesic
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引用次数: 4

Abstract

The design of a voltage-mode digital-to-analog (D/A) converter using only fabrication steps required by MOSFETs is described. The converter is implemented using a basic-circuit-building block called the three-input amplifier (TIAMP), which can perform voltage addition and voltage division by 2 without using any passive component. The technique has been used to implement a 12 bit D/A converter for which five samples were tested with accuracies ranging from 6 to 10 bits. Accuracy is limited in the present design by the relatively small sizes chosen for the input transistors. The maximum conversion rate of the present prototypes has been measured to be approximately 1 MHz with a static power dissipation of 50 mW. >
在数模转换中使用有源元件进行分压
描述了一种仅使用mosfet所需的制造步骤的电压型数模(D/ a)转换器的设计。该转换器使用称为三输入放大器(TIAMP)的基本电路构建块来实现,它可以执行电压相加和电压除以2,而不使用任何无源元件。该技术已用于实现一个12位的D/ a转换器,其中五个样本的测试精度范围为6到10位。在目前的设计中,由于输入晶体管的尺寸相对较小,精度受到限制。目前原型的最大转换率已被测量为大约1 MHz,静态功耗为50 mW。>
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