Recent generations of Field Programmable Gate Arrays (FPGAs) have become indispensible tools for complex state machine control and signal processing, and now routinely incorporate CPU cores to allow execution of user software code. At the same time, their exceptional performance permits low-power implementation of functionality previously the exclusive domain of dedicated analog electronics. Specific examples presented here use FPGAs as discriminator, time-to-digital (TDC) and analog-to-digital converter (ADC). All three cases are examples of instrumentation for current or future astroparticle experiments
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Innovation Partners proposed and successfully demonstrated in this SBIR Phase I grant a software/har...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Several tests of FPGA devices programmed as analog waveform digitizers are discussed. The ADC uses t...
In this chapter, we describe the design of a field programmable gate array (FPGA) board capable of a...
The purpose of this investigation is to discover critical experimental factors that could lead to th...
When High Energy Physics meets high speed electronics, and state of the art methods fail to deliver ...
For the precise measurement of the time difference between the arrival of different signals coming f...
In this paper, we present a proposed field programmable gate array (FPGA)-based time-to-digital conv...
Analog interfacing is the only way to communicate with a quantum processor, whether it is applying q...
Modern physical experiments often demand advanced instrumentation based on advances in technology. ...
Field-Programmable Gate Array (FPGA) technology is becoming more advanced and commercially accessibl...
Researchers at Birkeland center of space science have initiated a project where the precipitating fl...
AbstractThe GANDALF 6U-VME64x/VXS module has been designed to cope with a variety of readout tasks i...
Signal processing is an important part of computer science, which is used in but not limited to auto...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Innovation Partners proposed and successfully demonstrated in this SBIR Phase I grant a software/har...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Several tests of FPGA devices programmed as analog waveform digitizers are discussed. The ADC uses t...
In this chapter, we describe the design of a field programmable gate array (FPGA) board capable of a...
The purpose of this investigation is to discover critical experimental factors that could lead to th...
When High Energy Physics meets high speed electronics, and state of the art methods fail to deliver ...
For the precise measurement of the time difference between the arrival of different signals coming f...
In this paper, we present a proposed field programmable gate array (FPGA)-based time-to-digital conv...
Analog interfacing is the only way to communicate with a quantum processor, whether it is applying q...
Modern physical experiments often demand advanced instrumentation based on advances in technology. ...
Field-Programmable Gate Array (FPGA) technology is becoming more advanced and commercially accessibl...
Researchers at Birkeland center of space science have initiated a project where the precipitating fl...
AbstractThe GANDALF 6U-VME64x/VXS module has been designed to cope with a variety of readout tasks i...
Signal processing is an important part of computer science, which is used in but not limited to auto...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Innovation Partners proposed and successfully demonstrated in this SBIR Phase I grant a software/har...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...