AN ANALOG FRONT-END BIPOLAR-TRANSISTOR INTEGRATED-CIRCUIT FOR THE SDC SILICON TRACKER

被引:19
作者
KIPNIS, I
SPIELER, H
COLLINS, T
机构
[1] Lawrence Berkeley Laboratory University of California, Berkeley, CA
关键词
D O I
10.1109/23.322865
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A low-noise, low-power, high-bandwidth, radiation hard, silicon bipolar-transistor full-custom integrated circuit (IC) containing 64 channels of analog signal processing has been developed for the SDC silicon tracker. The IC was designed and tested at LBL and was fabricated using AT&T's CBIC-U2, 4 GHz f(T) complementary bipolar technology. Each channel contains the following functions: low-noise preamplification, pulse shaping and threshold discrimination. This is the first iteration of the production analog IC for the SDC silicon tracker. The IC is laid out to directly match the 50 mum pitch double-sided silicon strip detector. The chip measures 6.8 mm x 3.1 mm and contains 3,600 transistors. Three stages of amplification provide 180 mV/fC of gain with a 35 nsec peaking time at the comparator input. For a 14 pF detector capacitance, the equivalent noise charge is 1300 el. rms at a power consumption of 1 mW/channel from a single 3.5 V supply. With the discriminator threshold set to 4 times the noise level, a 16 nsec time-walk for 1.25 to 10 fC signals is achieved using a time-walk compensation network. Irradiation tests at TRIUMF to a PHI=10(14) protons/cm2 have been performed on the IC, demonstrating the radiation hardness of the complementary bipolar process.
引用
收藏
页码:1095 / 1103
页数:9
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