Title :
Circuit design and simulation of a transmit beamforming ASIC for high-frequency ultrasonic imaging systems
Author :
Athanasopoulos, Georgios I. ; Carey, Stephen J. ; Hatfield, John V.
Author_Institution :
Dept. of Mech. & Manuf. Eng., Univ. of Cyprus, Nicosia, Cyprus
fDate :
7/1/2011 12:00:00 AM
Abstract :
This paper describes the design of a programmable transmit beamformer application-specific integrated circuit (ASIC) with 8 channels for ultrasound imaging systems. The system uses a 20-MHz reference clock. A digital delay-locked loop (DLL) was designed with 50 variable delay elements, each of which provides a clock with different phase from a single reference. Two phase detectors compare the phase difference of the reference clock with the feedback clock, adjusting the delay of the delay elements to bring the feedback clock signal in phase with the reference clock signal. Two independent control voltages for the delay elements ensure that the mark space ratio of the pulses remain at 50%. By combining a 10- bit asynchronous counter with the delays from the DLL, each channel can be programmed to give a maximum time delay of 51 μs with 1 ns resolution. It can also give bursts of up to 64 pulses. Finally, for a single pulse, it can adjust the pulse width between 9 ns and 100 ns by controlling the current flowing through a capacitor in a one-shot circuit, for use with 40-MHz and 5-MHz transducers, respectively.
Keywords :
application specific integrated circuits; array signal processing; delays; integrated circuit design; network synthesis; phase detectors; ultrasonic imaging; DLL; application specific integrated circuit; asynchronous counter; capacitor; circuit design; digital delay locked loop; feedback clock; frequency 20 MHz; frequency 40 MHz; frequency 5 MHz; high-frequency ultrasonic imaging system; phase detector; time 51 mus; transmit beamforming ASIC; Clocks; Delay; Detectors; Image edge detection; Transducers; Transistors; Voltage control; Equipment Design; Feedback; Signal Processing, Computer-Assisted; Ultrasonography;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2011.1952