A test architecture for system-on-a-chip

Author(s):  
Wang Yong-sheng ◽  
Xiao Li-yi ◽  
Yu Ming-yan ◽  
Wang Jin-xiang ◽  
Ye Yi-zheng
Author(s):  
Rudolf Schlangen ◽  
Jon Colburn ◽  
Joe Sarmiento ◽  
Bala Tarun Nelapatla ◽  
Puneet Gupta

Abstract Driven by the need for higher test-compression, increasingly many chip-makers are adopting new DFT architectures such as “Extreme-Compression” (XTR, supported by Synopsys) with on-chip pattern generation and MISR based compression of chain output data. This paper discusses test-loop requirements in general and gives Advantest 93k specific guidelines on test-pattern release and ATE setup necessary to enable the most established EFA techniques such as LVP and SDL (aka DLS, LADA) within the XTR test architecture.


Author(s):  
Kai Wang ◽  
Rhys Weaver ◽  
David Johnson

Abstract A systemic analysis was chosen to evaluate a real case Bluetooth (BT) radio failure in the aspects of RF communication, digital design, firmware, application software, semiconductor device physics and processing, and failure analysis. This paper explores the range of testing, including customer application testing, required to confirm and localize a BT RF communication failure. It shows that the radio communication failure was not, as expected, caused by faulty radio hardware; it was rather linked to problematic encryption hardware at the assistance of the Synergy BT to mobile application. The paper also explores that the digital fault can only be detected by the timing sensitive transition fault scan patterns and how to obtain the physical failure location. Thus, the combination of ATPG and application testing provides a consistency between electrical diagnostics which yields a higher success rate at subsequent physical failure analysis of complex modern RF System on a Chip.


2010 ◽  
Vol 24 (1) ◽  
pp. 23-28
Author(s):  
Yiming Ouyang ◽  
Baosheng Zou ◽  
Huaguo Liang ◽  
Xi’e Huang

IEEE Access ◽  
2021 ◽  
pp. 1-1
Author(s):  
Umair Saeed Solangi ◽  
Muhammad Ibtesam ◽  
Muhammad Adil Ansari ◽  
Jinuk Kim ◽  
Sungju Park

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