Title :
Digitally-Assisted Compensation Technique for Timing Skew in ATE Systems
Author :
Asami, Koji ; Tateiwa, Takenori ; Kurosawa, Tsuyoshi ; Miyajima, Hiroyuki ; Kobayashi, Haruo
Author_Institution :
Advantest Corp., Meiwa, Japan
Abstract :
This paper describes timing skew adjustment techniques in ATE systems (such as for timing skew compensation in an interleaved ADC system and an SSB signal generation system) using a digital filter with novel linear phase condition proposed in our ITC2010 paper. A conventional linear phase digital filter is an FIR filter with coefficients of odd- or even -symmetry and whose group delay NTs/2 where N is the number of the Fir filter taps and Ts is the sampling period, its group delay time resolution is Ts/2. We have generalized the linear phase condition, and with our novel linear phase condition, the group delay time resolution can be arbitrary small, and the coefficients are not necessarily odd- or even-symmetric. In this paper we discuss several practical issues for applying our digital filter to timing skew compensation in ATE systems, such as truncation of the infinite number of taps, techniques of using window and DC gain adjustment. We also compare our digital filter with the fractional delay digital filter.
Keywords :
FIR filters; analogue-digital conversion; signal generators; ADC system; ATE system; DC gain adjustment; FIR filter tap; ITC2010 paper; SSB signal generation system; digitally-assisted compensation technique; group delay NTs-2; group delay time resolution; linear phase condition; linear phase digital filter; novel linear phase condition; timing skew adjustment technique; timing skew compensation; Band pass filters; Delay; Finite impulse response filter; Gain; Oscillators; ATE; Digital Filter; Digitally-Assisted Analog Technology; Fractional Delay Digital Filter; Linear Phase; Timing Skew;
Conference_Titel :
Mixed-Signals, Sensors and Systems Test Workshop (IMS3TW), 2011 IEEE 17th International
Conference_Location :
Santa Barbara, CA
Print_ISBN :
978-1-4577-1144-2
DOI :
10.1109/IMS3TW.2011.16