TARGET 5 is a new application-specific integrated circuit (ASIC) of the TARGET family, designed for the readout of signals from photosensors in the cameras of imaging atmospheric Cherenkov telescopes (IACTs) for ground-based gamma-ray astronomy. TARGET 5 combines sampling and digitization on 16 signal channels with the formation of trigger signals based on the analog sum of groups of four channels. We describe the ASIC architecture and performance. TARGET 5 improves over the performance of the first-generation TARGET ASIC, achieving: tunable sampling frequency from <0.4 GSa/s to >1 GSa/s; a dynamic range on the data path of 1.2 V with effective dynamic range of 11 bits and DC noise of similar to 0.6 mV; 3-dB bandwidth of 500 MHz; crosstalk ...
International audienceFor measuring gamma rays from low energy to high energy and cover the gap betw...
The interaction of very-high-energy astrophysical gamma rays with the Earthâs atmosphere produces ex...
International audienceA versatile and reconfigurable ASIC is presented, which implements two differe...
TARGET 5 is a new application-specific integrated circuit (ASIC) of the TARGET family, designed for ...
The next-generation very-high-energy (VHE) gamma-ray observatory, the Cherenkov Telescope Array, wil...
The future ground-based gamma-ray observatory Cherenkov Telescope Array (CTA) will feature multiple ...
The European astroparticle physics community aims to design and build the next generation array of I...
Gamma-ray astronomy promises to elucidate the highest-energy particle accelerators in the Universe, ...
A versatile and reconfigurable ASIC is presented, which implements two different con-cepts of low le...
The next generation VHE gamma-ray observatory, the Cherenkov Telescope Array (CTA), will feature ten...
International audienceCTA is the next-generation Cherenkov Telescope Array currently under developme...
Abstract: We have developed an application-specific integrated circui (ASIC) for photomultipler tube...
We discuss the concept and the performance of a powerful future ground-based astronomical instrument...
Very high energy gamma-ray astronomy is now bringing an invaluable contribution to the understanding...
International audienceFor measuring gamma rays from low energy to high energy and cover the gap betw...
The interaction of very-high-energy astrophysical gamma rays with the Earthâs atmosphere produces ex...
International audienceA versatile and reconfigurable ASIC is presented, which implements two differe...
TARGET 5 is a new application-specific integrated circuit (ASIC) of the TARGET family, designed for ...
The next-generation very-high-energy (VHE) gamma-ray observatory, the Cherenkov Telescope Array, wil...
The future ground-based gamma-ray observatory Cherenkov Telescope Array (CTA) will feature multiple ...
The European astroparticle physics community aims to design and build the next generation array of I...
Gamma-ray astronomy promises to elucidate the highest-energy particle accelerators in the Universe, ...
A versatile and reconfigurable ASIC is presented, which implements two different con-cepts of low le...
The next generation VHE gamma-ray observatory, the Cherenkov Telescope Array (CTA), will feature ten...
International audienceCTA is the next-generation Cherenkov Telescope Array currently under developme...
Abstract: We have developed an application-specific integrated circui (ASIC) for photomultipler tube...
We discuss the concept and the performance of a powerful future ground-based astronomical instrument...
Very high energy gamma-ray astronomy is now bringing an invaluable contribution to the understanding...
International audienceFor measuring gamma rays from low energy to high energy and cover the gap betw...
The interaction of very-high-energy astrophysical gamma rays with the Earthâs atmosphere produces ex...
International audienceA versatile and reconfigurable ASIC is presented, which implements two differe...