一种高效自校准芯片内部时钟的设计与研究

Longlong He, Yanxin Zhang, Lixin Yang, Meng Li, Zhenhai Ning, Lang Tan, Bin Niu, Bo Zhang
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引用次数: 0

摘要

时钟是芯片中最重要的信号之一。但是,由于材料、封装、工艺、温度等制造工艺的变化,在芯片制造完成后,芯片内部时钟频率可能会出现偏差,从而影响芯片的功能和性能。本文提出了一种芯片内部时钟自校准模块的设计方法。该方法通过数字电路设计和软件编程实现芯片内部时钟频率的自校准,使芯片内部时钟频率稳定在预设范围内,减少误差,在芯片工艺恶化、环境温度变化等情况下仍能保持高精度时钟,这种自校准模块设计方法可广泛应用于各种芯片设计中。提高芯片的性能和稳定性。本文通过数字电路设计了CLKTRIM模块,实现了对芯片内部时钟的精确采集。通过编写自校准软件程序,配合芯片内部的模拟时钟模块,对芯片内部时钟进行校准,达到内部时钟准确稳定的效果。这种设计方法已经应用到实际的芯片应用中,对芯片内部时钟的使用有重要的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Research on an Efficient Self Calibration of Chip Internal Clock
Clock is one of the most important signals in a chip. However, due to changes in materials, packaging, process, temperature, and other manufacturing processes, there may be deviations in the internal clock frequency of the chip after the completion of chip manufacturing, which can affect the functionality and performance of the chip. This article proposes a design method for a self calibration module of the internal clock of a chip. This method uses digital circuit design and software programming to achieve self calibration of the internal clock frequency of the chip, which stabilizes the internal clock frequency of the chip within the preset range, reduces errors, and can maintain high-precision clocks in situations such as chip process deterioration and environmental temperature changes, This self calibration module design method can be widely applied in various chip designs, improving the performance and stability of chips. In this paper, a CLKTRIM module was designed through digital circuits to accurately collect the internal clock of the chip. By writing a self calibration software program and cooperating with the analog clock module inside the chip, the internal clock of the chip was calibrated, achieving the effect of accurate and stable internal clock. This design method has been applied to practical chip applications, and has significant effects on the use of chip internal clocks.
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