Title :
Design of a K-band wideband controlled variable attenuator for microwave Built-In-Self-Test applications
Author :
Lahbib, Imene ; Descamps, Philippe ; Doukkali, Mohamed-Aziz ; Kelma, Christophe ; Tesson, Olivier
Author_Institution :
NXP Semicond. PCC RF Small Signal, Caen, France
Abstract :
This paper presents a new microwave wideband controlled variable attenuator designed in a BiCMOS process. This variable attenuator is implanted as part of a microwave Built-In-Self-Test (BIST) circuit. The proposed BIST cell is dedicated for direct low cost measurement of the gain and the input 1dB compression point (CP1) of a K-band satellite reception chain (18.2 GHz-22 GHz). The simulation of the controlled variable attenuator with RLCk parasitic extraction shows that it can operate up to 100 GHz with a consumption of 4 mA, an area less than 0.009 mm2 excluding pads and a gain range of 36 dB when the attenuator is alone and 17 dB when it is concatenated to the other blocks. This result was confirmed with the performed measurement on the BIST device. This BIST circuit gives new perspectives in term of test strategy, cost reduction and measurement accuracy for mm-wave integrated circuits.
Keywords :
BiCMOS integrated circuits; Ge-Si alloys; attenuators; built-in self test; circuit simulation; cost reduction; field effect MMIC; integrated circuit measurement; integrated circuit testing; BIST; BiCMOS process; CP1; K-band microwave wideband controlled variable attenuator; K-band satellite reception chain; RLCk parasitic extraction; SiGe; compression point; cost reduction; current 4 mA; frequency 18.2 GHz to 22 GHz; gain 1 dB; gain 17 dB; gain 36 dB; gain measurement; microwave built-in-self-test circuit application; mmwave integrated circuit; Attenuators; Built-in self-test; Gain; Microwave amplifiers; Microwave circuits; Oscillators; Radio frequency; BIST; K-band circuit; Microwave; controlled variable attenuator; test; variable gain amplifier;
Conference_Titel :
Microwave Symposium (MMS), 2013 13th Mediterranean
Conference_Location :
Saida
DOI :
10.1109/MMS.2013.6663137