A wide swing charge sensitive amplifier for a prototype Si-W EM calorimeter
Sourav Mukhopadhyay, Vinay B. Chandratre, Sanjib Muhuri, Rama N., Singaraju, Jogender Saini, Tapan K Nayak

TL;DR
This paper presents a novel wide swing charge sensitive amplifier designed in 0.35 μm CMOS technology for a silicon tungsten electromagnetic calorimeter, achieving high dynamic range, low noise, and wide linear input charge range suitable for particle detection.
Contribution
The paper introduces a wide swing CSA with a folded cascode input stage and high output swing capability, optimized for silicon tungsten calorimeter readout ASICs, with improved linearity and noise performance.
Findings
Achieved 820 e^- ENC at 0 pF with 25 e^- / pF noise slope.
Provided a dynamic range of 79 dB for 2.6 pC input charge.
Designed in 0.35 μm CMOS technology with 2.3 mW power dissipation.
Abstract
A wide swing charge sensitive amplifier (CSA) has been developed, as a part of a front-end electronics (FEE) readout ASIC, for a prototype silicon tungsten (Si-W) based electromagnetic (EM) calorimeter. The CSA, designed in 0.35 m N-well CMOS technology using 5V MOS transistors, has a wide linear operating range of 2.6 pC w.r.t the input charge with a power dissipation of 2.3 mW. A noise figure (ENC) of 820 e at 0 pF of detector capacitance with a noise slope of 25 e/pF has been achieved (when followed by a CR-RC filter of 1.2 s peaking time). This design of CSA provides a dynamic range (ratio of maximum detectable signal to noise floor) of 79 dB for the maximum input charge of 2.6 pC when connected to a silicon detector with a capacitance of 40 pF. Using folded cascode architecture-based input stage and low voltage high swing current mirrors as the load, the CSA…
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