Title :
AF-Test: Adaptive-Frequency Scan Test Methodology for Small-Delay Defects
Author :
Li, Tsung-Yeh ; Huang, Shi-Yu ; Hsu, Hsuan-Jung ; Tzeng, Chao-Wen ; Huang, Chih-Tsun ; Liou, Jing-Jia ; Ma, Hsi-Pin ; Huang, Po-Chiun ; Bor, Jenn-Chyou ; Wu, Cheng-Wen ; Tien, Ching-Cheng ; Wang, Mike
Author_Institution :
Electr. Eng. Dept., Nat. Tsing Hua Univ., Hsinchu, Taiwan
Abstract :
Small delay defects, when escaping from traditional delay testing, could cause a device to malfunction in the field. To address this issue, we propose an adaptive-frequency test method, abbreviated as AF-test. In this method, versatile test clocks can be generated on the chip by embedding an All-Digital Phase-Locked Loop (ADPLL) into the circuit under test (CUT). Instead of measuring the exact propagation delay associated with each test pattern like previous time-consuming failing frequency signature based analysis, we test only up to three different test clock frequencies for each test pattern to provide the benefit of fast characterization, and thereby making it suitable for volume production test. We have successfully demonstrated the AF-test on an in-house wireless test platform called HOY system using fabricated chips. This method can not only detect small delay defects effectively but also provide a grading scheme for those marginal chips that might have the reliability problem.
Keywords :
VLSI; clocks; delay circuits; digital phase locked loops; integrated circuit testing; AF-test; HOY system; VLSI testing; adaptive-frequency scan test methodology; all-digital phase-locked loop; circuit under test; delay testing; fabricated chip; in-house wireless test; small delay defect; test clock frequency; test pattern; time-consuming failing frequency signature based analysis; Circuit faults; Clocks; Delay; Phase locked loops; Testing; Time frequency analysis; Wireless communication; AC-Scan; ADPLL; Adapative Frequency Test; Delay Testing; Small Delay Defect; VLSI Testing;
Conference_Titel :
Defect and Fault Tolerance in VLSI Systems (DFT), 2010 IEEE 25th International Symposium on
Conference_Location :
Kyoto
Print_ISBN :
978-1-4244-8447-8
DOI :
10.1109/DFT.2010.48