Title :
Built in self test architecture for testing SRAM using transient current testing
Author :
Anumol, K.A. ; Mangai, N. M. Siva ; Kumar, Puli Kishore
Author_Institution :
Sch. of Electr. Sci., Karunya Univ., Coimbatore, India
Abstract :
Semiconductor memories most specifically Static Random Access Memories (SRAMs) are becoming very popular in today´s System-On-Chip (SOCs). Memories become more susceptible to faults when the complexity of these memories increase as the technology shrinks. In order to detect these faults, March algorithm has been widely used. This detection of faults in SRAM has been a time consuming process. Hence transient current testing (IDDT) methods are used. This paper implements a transient current testing method to detect faults in Complementary Mosfet (CMOS) SRAM cells. By monitoring a transient current pulse during a write operation or a read operation, faults can be detected. In order to detect the fault a Built in self test (BIST) circuit is developed. Simulations are carried out on a 6T SRAM circuit, to detect the difference in amplitude of the IDDT waveform. Simulations are also carried out on a 4 *4 SRAM array to detect the occurrence of fault .The SRAM circuit, array circuit and the sensor circuits are designed in I8Onm CMOS technology.
Keywords :
MOSFET; SRAM chips; built-in self test; fault diagnosis; semiconductor storage; system-on-chip; transient analysis; waveform analysis; BIST circuit; CMOS SRAM cells; CMOS technology; IDDT methods; IDDT waveform; March algorithm; SOC; SRAM array; SRAM circuit; SRAM testing; array circuit; built in self test architecture; built in self test circuit; complementary Mosfet SRAM cells; fault detection; read operation; semiconductor memory; sensor circuits; static random access memory; system-on-chip; technology shrinks; time consuming process; transient current pulse; transient current testing methods; write operation; Circuit faults; Computer architecture; Microprocessors; SRAM cells; Testing; Transient analysis; Current sensor circuit, BIST; IDDT; March algorithm; Memory testing; SRAM;
Conference_Titel :
Information & Communication Technologies (ICT), 2013 IEEE Conference on
Conference_Location :
JeJu Island
Print_ISBN :
978-1-4673-5759-3
DOI :
10.1109/CICT.2013.6558115