HPD with external readout

Slides:



Advertisements
Similar presentations
Electronics for large LAr TPC’s F. Pietropaolo (ICARUS Collaboration) CRYODET Workshop LNGS, March 2006.
Advertisements

E. Atkin, E. Malankin, V. Shumikhin NRNU MEPhI, Moscow 1.
TI Information – Selective Disclosure 1 Characterizing Bias Current Spikes A wideband transimpedance amplifier was used to directly view the input current.
RSH Front End Electronic R. Beaujean, S. Böttcher Kiel Nov 07, 2005.
5ns Peaking Time Transimpedance Front End Amplifier for the Silicon Pixel Detector in the NA62 Gigatracker E. Martin a,b J. Kaplon b, A. Ceccucci b, P.
NA62 front end Layout in DM option Jan Kaplon/Pierre Jarron.
NA62 front end architecture and performance Jan Kaplon/Pierre Jarron.
1 SciFi electronics meeting – CERN– June 20 th 2011 Some ideas about a FE for a SciFi tracker based on SiPM A. Comerma, D. Gascón Universitat de Barcelona.
Calorimeter upgrade meeting – CERN – October 5 th 2010 Analog FE ASIC: first prototype Upgrade of the front end electronics of the LHCb calorimeter E.
14-5 January 2006 Luciano Musa / CERN – PH / ED General Purpose Charge Readout Chip Nikhef, 4-5 January 2006 Outline  Motivations and specifications 
AMY Meeting. 24 Mar 2011 status Auger Lecce Meeting,
Tubingen, 9 November 2005C.Cattadori INFN Milano & LNGS GERDA meeting TG3 Status Report On behalf of TG3 working group.
Development of a Low Noise Preamplifier for the LEM read-out
Differential Preamp Stephen Kaye New Preamp Design Motivation Move preamplifier from controller to the Vacuum Interface Board (VIB) Amplifies.
Readout ASIC for SiPM detector of the CTA new generation camera (ALPS) N.Fouque, R. Hermel, F. Mehrez, Sylvie Rosier-Lees LAPP (Laboratoire d’Annecy le.
Instrumentation (AMME2700) 1 Instrumentation Dr. Xiaofeng Wu.
Progress on STS CSA chip development E. Atkin Department of Electronics, MEPhI A.Voronin SINP, MSU.
Design & Development of an Integrated Readout System for Triple-GEM Detectors Alessandro PEZZOTTA III Year PhD Seminar, Cycle XXVIII 22 September 2015.
Peter, Wieczorek - EE Low Noise Charge Sensitive Preamplifier Development for the PANDA Calorimeter Design and Measurements of the APFEL - Chip.
1 Development of the input circuit for GOSSIP vertex detector in 0.13 μm CMOS technology. Vladimir Gromov, Ruud Kluit, Harry van der Graaf. NIKHEF, Amsterdam,
25th June, 2003CMS Ecal MGPA first results1 MGPA first results testing begun 29 th May on bare die (packaging still underway) two chips looked at so far.
Analog Building Blocks for P326 Gigatracker Front-End Electronics
Penn ESE370 Fall DeHon 1 ESE370: Circuit-Level Modeling, Design, and Optimization for Digital Systems Day 8: September 15, 2014 Delay and RC Response.
1 G.Pessina, RICH Elec Upg, 11 April 2010 Analog Channels per chip4 to 8 Digital channel per chip4 to 8 Wire-bond pitch (input channels) Input capacitance.
1 VFE/MGPA considerations for EE/VPT EB/EE electrical spec. differences: full-scale signal noise input capacitance dominated by: APD capacitance (x2) for.
March 9, 2005 HBD CDR Review 1 HBD Electronics Preamp/cable driver on the detector. –Specification –Schematics –Test result Rest of the electronics chain.
9-11 july 2003C. de La Taille Electronics CERN Summer School Introduction to Electronics for High Energy Physics C. de LA TAILLE LAL Orsay
65 nm CMOS analog front-end for pixel detectors at the HL-LHC
AIDA design review Davide Braga Steve Thomas ASIC Design Group 11 February 2009.
SIAM M. Despeisse / 29 th January Toward a Gigatracker Front-end - Performance of the NINO LCO and HCO Matthieu Despeisse F. Osmic, S. Tiuraniemi,
Status of integrated preamplifiers for GERDA GERDA meeting – MPI Heidelberg, Feb 20-22, 2006 F. Zocca, A. Pullia, S.Riboldi, C. Cattadori.
ASIC Activities for the PANDA GSI Peter Wieczorek.
Investigation of crosstalk in the readout structure of the Beamcal K.Afanaciev.
MuTr Chamber properties K.Shoji Kyoto Univ.. Measurement of MuTr raw signal Use oscilloscope & LabView Read 1 strip HV 1850V Gas mixture Ar:CO 2 :CF 4.
CERN PH MIC group P. Jarron 07 November 06 GIGATRACKER Meeting Gigatracker Front end based on ultra fast NINO circuit P. Jarron, G. Anelli, F. Anghinolfi,
H.Mathez– VLSI-FPGA-PCB Lyon– June , 2012 CSA avec reset pour s-CMS, bruit en temporel (Up-Grade TRACKER) (Asic R&D Version 1)
Politecnico di Milano & INFN 1 SVT FE 04/11/2011 Update on analog design for L4-L5 B.Nasri, P.Trigilio, L.Bombelli, C.Fiorini SVT FE confcall – 04/11/11.
Analog Front End For outer Layers of SVT (L.4 & L.5) Team:Luca BombelliPost Doc. Bayan NasriPh.D. Student Paolo TrigilioMaster student Carlo FioriniProfessor.
Barrel EM Calorimeter Preamp / Shaper Update Mitch Newcomer, Andrew Townley Prepared for Munich Liquid Argon Week 2011.
Penn ESE370 Fall DeHon 1 ESE370: Circuit-Level Modeling, Design, and Optimization for Digital Systems Day 8: September 21, 2012 Delay and RC Response.
The design of fast analog channels for the readout of strip detectors in the inner layers of the SuperB SVT 1 INFN Sezione di Pavia I Pavia, Italy.
Preamplifier R&D at University of Montreal for the drift chamber J.P. Martin, Paul Taras.
PADME Front-End Electronics
observed instabilities in Rf opamps R. Abbott, 30 July 2010
M. Manghisoni, L. Ratti Università degli Studi di Pavia INFN Pavia
Valerio Re Università di Bergamo and INFN, Pavia, Italy
Pixel front-end development
L. Ratti Università degli Studi di Pavia INFN Pavia
A General Purpose Charge Readout Chip for TPC Applications
Charge sensitive amplifier
"Fast reset" ASIC Preamplifier
Input Stages for Radio Systems (Low Noise Amplifiers) (LNAs)
Results achieved so far to improve the RPC rate capability
CTA-LST meeting February 2015
INFN Pavia and University of Bergamo
Jean-Francois Genat LPNHE Universite Pierre et Marie Curie CNRS/IN2P3
DCH preamplifier developments In Montreal
Activity on the TO ASIC project
Calibration On pixel calibration capacitor; 20fF
CALICE COLLABORATION LPC Clermont LAL Orsay Samuel MANEN Julien FLEURY
A Low Power Readout ASIC for Time Projection Chambers in 65nm CMOS
LHCb calorimeter main features
Characterizing Bias Current Spikes
BESIII EMC electronics
MCP Electronics Time resolution, costs
Status of the CARIOCA project
Day 8: September 23, 2011 Delay and RC Response
Readout Electronics for Pixel Sensors
Stefano Zucca, Lodovico Ratti
Readout Electronics for Pixel Sensors
Presentation transcript:

HPD with external readout INFN Milano Bicocca April 2010 HPD with external readout Claudio Gotti

HPD with external readout A monolithic charge sensitive preamplifier was designed in our labs, exploiting a 90-nm CMOS technology from TSMC. The preamplifier was tailored for the characterization with nanosecond resolution of a diamond detector, giving signals of about 10 kel, with detector capacitance of 1 pF to 5 pF. → Similar to the requirements of an external readout for the upgrade of HPDs

HPD with external readout The approach is the classic opamp-based charge sensitive preamplifier: → the feedback capacitor Cf is 50 fF → the feedback resistor Rf is 250 kOhm

HPD with external readout The opamp has 3 gain stages and is undercompensated for ~ 500 MHz bandwidth at → Cd = 20 Cf = 1 pF → Cd = 100 Cf = 5 pF A control pin allows to choose between the two possibilities. The opamp input capacitance is Ca = 250 fF

HPD with external readout Simulated 10 kel to 50 kel charge response with Cd = 1pF:

HPD with external readout The output can drive 50 ohm terminated cable (although with a slower risetime): Power dissipation Rise Time Without load With 50+50 W load 7 mW 350 ps 700 ps 5 mW 500 ps 800 ps 4 mW 650 ps 1 ns 3 mW 1.1 ns

HPD with external readout Opamp input series noise is less than 1 nV / sqrt(Hz) at high frequency:

HPD with external readout The Equivalent Noise Charge (ENC) is given by: The feedback resistor gives the parallel noise contribution. With a 10 ns shaping time, we expect Source (detector) Capacitance ENC ( t = 10 ns ) ( t = 5 ns ) 0 pF 160 el 116 el 1 pF 180 el 2pF 215 el 230 el 5 pF 350 el 480 el

HPD with external readout Chip layout: (300 um x 250 um – can be reduced)