The electronics of the Time of Flight telescope and trigger of PAMELA experiment are described. The time resolution requested by the ToF system must be less than 120 ps. The contribution of the digitization electronics is negligible if the TDC resolution is < 50 ps. The peculiarity of the developed electronics arises from the need to obtain such a time resolution associated to a wide dynamic range for charge measurements, operating in satellite environment, which implies low power consumption, radiation hardness, redundancy and high reliabilit
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...
The PAMELA satellite-borne experiment, scheduled to be launched in 2004, is designed to provide a be...
The electronics of the Time of Flight telescope and trigger of PAMELA experiment are described. The ...
The PAMELA experiment is a space-borne apparatus devoted to the study of the antiparticle component ...
The PAMELA experiment is a space-borne apparatus devoted to the study of the antiparticle component ...
The PAMELA experiment is a space-borne apparatus devoted to the study of the antiparticle component ...
Abstract The PAMELA (Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics) sate...
The PAMELA satellite-borne experiment, scheduled to be launched in 2004, is designed to provide a be...
The PAMELA experiment is a satellite-borne telescope primarily thought to explore the antimatter com...
The PAMELA experiment is a satellite-borne telescope primarily thought to explore the antimatter com...
PAMELA is a space telescope orbiting around the Earth since June 2006. The scientific objectives add...
Abstract: A time-of-flight scintillator system (ToF) has been developed for the PAMELA satellite-bor...
Abstract—A Time of Flight scintillator system has been developed for the Pamela satellite-borne cosm...
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...
The PAMELA satellite-borne experiment, scheduled to be launched in 2004, is designed to provide a be...
The electronics of the Time of Flight telescope and trigger of PAMELA experiment are described. The ...
The PAMELA experiment is a space-borne apparatus devoted to the study of the antiparticle component ...
The PAMELA experiment is a space-borne apparatus devoted to the study of the antiparticle component ...
The PAMELA experiment is a space-borne apparatus devoted to the study of the antiparticle component ...
Abstract The PAMELA (Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics) sate...
The PAMELA satellite-borne experiment, scheduled to be launched in 2004, is designed to provide a be...
The PAMELA experiment is a satellite-borne telescope primarily thought to explore the antimatter com...
The PAMELA experiment is a satellite-borne telescope primarily thought to explore the antimatter com...
PAMELA is a space telescope orbiting around the Earth since June 2006. The scientific objectives add...
Abstract: A time-of-flight scintillator system (ToF) has been developed for the PAMELA satellite-bor...
Abstract—A Time of Flight scintillator system has been developed for the Pamela satellite-borne cosm...
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...
The Time-of-Flight (ToF) system is one of the key elements of the a Payload for Antimatter Matter Ex...