A 6-Channel Fast Wave as long as m Sampling ASIC in 0.13µm CMOS technology Eric Oberla &

A 6-Channel Fast Wave as long as m Sampling ASIC in 0.13µm CMOS technology Eric Oberla  & www.phwiki.com

A 6-Channel Fast Wave as long as m Sampling ASIC in 0.13µm CMOS technology Eric Oberla &

Brode, Matt, Meteorologist has reference to this Academic Journal, PHwiki organized this Journal A 6-Channel Fast Wave as long as m Sampling ASIC in 0.13µm CMOS technologyEric Oberla & Hervé Grabas on behalf of the Large-Area Picosecond Photo-Detectors (LAPPD) Collaboration(http://psec.uchicago.edu)University of ChicagoCEA Saclay AbstractWe describe here the design characterization of PSEC-4: a custom analog in addition to digital integrated circuit designed in the IBM-8RF 0.13 µm process intended as long as fast (>10 GSa/s), low-power wave as long as m digitizing. As part of the Large-Area Picosecond Photo-Detector (LAPPD) collaboration, this ASIC has been designed as long as the front-end transmission line readout of large area micro-channel plates (MCP), among other potential applications. With 6 channels, PSEC-4 has a buffer depth of 256 analog samples on each channel, a chip-parallel 1.5 GHz Wilkinson ADC, in addition to a serial data readout that includes the capability as long as region-of-interest windowing to reduce dead time. A switched-capacitor array architecture was implemented in addition to sampling lock is possible with an on-chip delay locked loop (DLL) with a measured jitter of better than 15 ps. Chip per as long as mance results, including sampling rates up to 17 GSa/s, RMS noise less than 1 mV, in addition to an analog b in addition to width (ABW) of 1.6 GHz, are presented. PSEC-4 ASICPSEC-4 die & Evaluation Board6-channel “oscilloscope on a chip” (1.6 GHz,10-15 GS/s)Evaluation board uses USB 2.0 interface + PC data acquisition softwarePSEC-4 ResultsNoiseSampling Ratef3dB = 1.6 GHzFrequency ResponseLinearitySampling rate : 10 GSa/sDigitized Wave as long as msSampling rate : 13.3 GSa/s

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