Title :
RX64DTH - a fully integrated 64-channel ASIC for digital X-ray imaging system with energy window selection
Author :
Grybos, P. ; Rodriguez, A. E Cabal ; Dabrowski, W. ; Idzik, M. ; Gaitan, J. Lopez ; Prino, F. ; Ramello, L. ; Swientek, K. ; Wiacek, P.
Author_Institution :
Fac. of Phys. & Appl. Comput. Sci., AGH Univ. of Sci. & Technol., Krakow, Poland
Abstract :
We report on the multichannel IC (RX64DTH) designed for position sensitive X-ray measurements with silicon strip detectors and dedicated to medical imaging applications. This integrated circuit has a binary readout architecture and possibility of selecting energy window for measured signals. The design has been realized in 0.8 μm CMOS process. The core of the RX64DTH chip consists of 64 readout channels. The single channel is built of four basic blocks: charge sensitive preamplifier, shaper, two independent discriminators and two independent 20-bit counters. Each readout channel counts pulses, which are above low discriminator threshold and independently pulses above high discriminator threshold. The energy resolution in such architecture is limited by noise of a single channel and by channel to channel threshold spread. We present noise and matching performance of a single chip and the performance of 384-channel system built of silicon strip detector and six RX64DTH chips. In the 384-channel system an equivalent noise charge of about 200 el. rms has been achieved for shaper peaking time of 0.8 μs and the strip capacitance of 3 pF. The deviation of discriminator thresholds for the whole system is only 87 el. rms. The obtained results show clearly that the energy resolution and uniformity of analog parameters (noise, gain, offsets) are sufficient for medical diagnostic applications such as dual energy mammography and angiography.
Keywords :
CMOS digital integrated circuits; X-ray detection; application specific integrated circuits; diagnostic radiography; discriminators; integrated circuit noise; mammography; nuclear electronics; position sensitive particle detectors; preamplifiers; readout electronics; silicon radiation detectors; 0.8 mum; 0.8 mus; 20 bit; 20-bit counters; 3 pF; 384-channel system; CMOS process; RX64DTH chip; analog parameters; binary readout architecture; channel-to-channel threshold spread; charge sensitive preamplifier; digital X-ray imaging system; dual energy angiography; dual energy mammography; energy resolution; energy window selection; fully integrated 64-channel ASIC; high discriminator threshold; integrated circuit; low discriminator threshold; medical diagnostic applications; medical imaging applications; multichannel IC; noise charge; position sensitive X-ray measurements; readout channels; shaper peaking time; silicon strip detectors; single channel noise; strip capacitance; Application specific integrated circuits; Energy resolution; Integrated circuit measurements; Noise shaping; Position measurement; Position sensitive particle detectors; Semiconductor device measurement; Silicon; Strips; X-ray imaging;
Conference_Titel :
Nuclear Science Symposium Conference Record, 2004 IEEE
Print_ISBN :
0-7803-8700-7
Electronic_ISBN :
1082-3654
DOI :
10.1109/NSSMIC.2004.1462170