Title :
A 1.8-V CMOS direct-conversion tuner for mobile DTV applications
Author :
Song, Fei ; Liao, Huailin ; Chen, Jiang ; Ye, Le ; Yang, Huaizhou ; Liu, Junhua ; Zhao, Jinshu ; Huang, Ru
Author_Institution :
Inst. of Microelectron., Peking Univ., Beijing
Abstract :
A 1.8-V 0.18..m CMOS direct-conversion Tuner for UHF band mobile digital TV applications is presented. To meet the stringent requirements of Noise Figure (NF) and IIP3, a capacitor cross-coupled (CCC) common-gate LNA and a novel high-linearity, low-flicker noise Gilbert Mixer are adopted. The LNA achieves 26 dB variable gain by using digital controlled current-steering technique and a resistive attenuator. To overcome the gain roll-off at the high frequency channels, a current reuse self-biased post-LNA buffer is proposed as the interface between the VGLNA and Mixer. In addition, a fully integrated DC Offset Correction (DCOC) circuit with switchable high-pass corner frequency, is introduced to realize both low high-pass cutoff frequency and short settling time. A wideband integer-N synthesizer using an adaptive frequency calibration (AFC) of dichotomizing technique, settles less than 200 mus for LO generation. The tuner achieves 3.8 dB NF, 0dBm IIP3@20dB LNA gain attenuation, 92 dB gain dynamic range and occupies 3.45 mm times 3.4 mm silicon area, while drawing 59 mA from 1.8-V voltage supply.
Keywords :
CMOS integrated circuits; UHF frequency convertors; UHF mixers; circuit tuning; flicker noise; low noise amplifiers; mobile television; silicon; CMOS direct-conversion tuner; LNA gain attenuation; LO generation; Si; UHF band mobile digital TV applications; adaptive frequency calibration; capacitor cross-coupled common-gate LNA; current 59 mA; dichotomizing technique; digital controlled current-steering technique; high-linearity-low-flicker noise Gilbert mixer; high-pass cutoff frequency; integrated DC offset correction circuit; noise figure; resistive attenuator; settling time; size 0.18 mum; size 3.4 mm; size 3.45 mm; switchable high-pass corner frequency; voltage 1.8 V; wideband integer-N synthesizer; Attenuators; Capacitors; Circuits; Cutoff frequency; Digital TV; Digital control; Gain; Noise figure; Noise measurement; Tuners;
Conference_Titel :
Solid-State Circuits Conference, 2008. A-SSCC '08. IEEE Asian
Conference_Location :
Fukuoka
Print_ISBN :
978-1-4244-2604-1
Electronic_ISBN :
978-1-4244-2605-8
DOI :
10.1109/ASSCC.2008.4708800