A digitally adjustable resistor for path delay characterization in high-frequency microprocessors
Martin Saint-Laurent, Madhavan Swaminathan · 2002
Most high-frequency microprocessors have a clock distribution network allowing the manipulation of the clock edges to facilitate silicon debug and path delay characterization. Typically, a particular edge of the clock is skewed using a variable-delay element until a failure occurs. This paper describes a digitally adjustable resistor applied to the construction of such a variable-delay element. The operation of the digitally adjustable resistor is explained. A strategy to choose the control bits for the resistor is also discussed. The proposed variable-delay element can achieve a 1-ps resolution over a 50-ps range in a 180-nm fabrication technology.