Built-in current sensor for ΔI/sub DDQ/ testing of deep submicron digital CMOS ICs
J.R. Vazquez, José Pineda de Gyvez · 2004
This paper presents the implementation of a built-in current sensor that includes two recently reported new techniques for I/sub DDQ/ testing to take into account the increased background current of defect-free circuits and its increased variance due to process variations. These techniques are the correlation between speed and I/sub DDQ,/ and the /spl Delta/I/sub DDQ/ testing technique. The monitor has been manufactured in a 0.18 /spl mu/m CMOS technology and it is based on the principle of disconnecting the device under test from the power supply during the testing phase. The monitor has a resolution of 1 /spl mu/A for a background current less than 100 /spl mu/A or 1% of background currents over 100 /spl mu/A to a total of 1 mA fullscale. The sensor operates at a maximum clock speed of 250 MHz. The monitor has been verified in a test chip consisting of one "DSP like" circuit of about 250,000 transistors. Experimental results prove the usefulness of our approach as a quick and effective means for detecting defects.