Author/Authors :
Fessler، نويسنده , , P and Coffin، نويسنده , , J and Eberlé، نويسنده , , P. and de Raad Iseli، نويسنده , , C and Hilt، نويسنده , , B and Huss، نويسنده , , D and Krummenacher، نويسنده , , F and Lutz، نويسنده , , J.R and Prévot، نويسنده , , G and Renouprez، نويسنده , , A and Sigward، نويسنده , , M.H and Schwaller، نويسنده , , B and Voltolini، نويسنده , , C، نويسنده ,
Abstract :
Characterization results are given for an original ASIC allowing continuous acquisition of ionising radiation images in spectroscopic mode. Ionising radiation imaging in general and spectroscopic imaging in particular must primarily be guided by the attempt to decrease statistical noise, which requires detection systems designed to allow very high counting rates. Any source of dead time must therefore be avoided. Thus, the use of on-line corrections of the inevitable dispersion of characteristics between the large number of electronic channels of the detection system, shall be precluded. Without claiming to achieve ultimate noise levels, the work described is focused on how to prevent good individual acquisition channel noise performance from being totally destroyed by the dispersion between channels without introducing dead times. With this goal, we developed an automatic charge amplifier output voltage offset compensation system which operates regardless of the cause of the offset (detector or electronic). The main performances of the system are the following: the input equivalent noise charge is 190 e rms (input non connected, peaking time 500 ns), the highest gain is 255 mV/fC, the peaking time is adjustable between 200 ns and 2 μs and the power consumption is 10 mW per channel. The agreement between experimental data and theoretical simulation results is excellent.