Title :
A direct digital synthesis based chirp radar transmitter in 0.13 µm SiGe technology
Author :
Jianjun Yu ; Cali, Joseph ; Feng Zhao ; Dai, Fa Foster ; Xin Jin ; Pukish, Michael ; Yuehai Jin ; Hubbard, Zachary ; Irwin, J. David ; Jaeger, Richard C. ; Aklian, Andre
Author_Institution :
Dept. of Electr. & Comput. Eng., Auburn Univ., Auburn, AL, USA
fDate :
Sept. 30 2013-Oct. 3 2013
Abstract :
This paper presents an X-band direct digital synthesis (DDS) based chirp radar transmitter implemented in 0.13μm SiGe BiCMOS technology. The transmitter contains a quadrature DDS, two low-pass filters, an IF IQ modulator, a programmable gain amplifier (PGA), a RF mixer and a pre-amplifier. The DDSs, built with two digital-to-analog converters (DACs), generate two-channel IQ baseband chirp signals from 62MHz to 77MHz. The IQ chirp signals are filtered by two programmable 5th-order Butterworth filters before up-converted to the IF frequency with IQ modulators. The filtered IF signal is further up-converted to the desired radio frequency by an RF mixer. The proposed transmitter thus generates a chirp signal at 8.6GHz, consuming a total power of 333 mW from 2.2V and 1.5V power supplies.
Keywords :
BiCMOS digital integrated circuits; Butterworth filters; Ge-Si alloys; digital-analogue conversion; direct digital synthesis; low-pass filters; preamplifiers; radar transmitters; BiCMOS technology; DAC; IF IQ modulator; IF frequency; IF signal; IQ baseband chirp signals; IQ modulators; PGA; RF mixer; SiGe; X-band direct digital synthesis; chirp radar transmitter; digital-to-analog converters; frequency 62 MHz to 77 MHz; frequency 8.6 GHz; low-pass filters; power 333 mW; preamplifier; programmable 5th-order Butterworth filters; programmable gain amplifier; quadrature DDS; size 0.13 mum; voltage 1.5 V; voltage 2.2 V; Band-pass filters; Chirp; Frequency modulation; Mixers; Power harmonic filters; Radar; Radio frequency; Chirp; Direct digital synthesis (DDS); FMCW; Radar; Transmitter;
Conference_Titel :
Bipolar/BiCMOS Circuits and Technology Meeting (BCTM), 2013 IEEE
Conference_Location :
Bordeaux
Print_ISBN :
978-1-4799-0126-5
DOI :
10.1109/BCTM.2013.6798140