Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have largely increased in the last decade. Nowadays we can find one million or more logic blocks (slices) as well as several thousand arithmetic units (ALUs/DSP) available on a single FPGA chip. We can also commercially procure ADC chips reaching 10 GSPS, with 8 bits resolution or more. This unprecedented power of computing hardware has allowed the digitalization of signal processes traditionally performed by analog components. In radio astronomy, the clearest example has been the development of digital sideband separating receivers which, by replacing the IF hybrid and calibrating the system imbalances, have exhibited a sideband rejection above 40...
We describe the technological concept and the first-light results of a 1024-channel spectrometer ba...
An FPGA-based digital-receiver has been developed for a low-frequency imaging radio interferometer, ...
In radio astronomy, the radio spectrum is used to detect weak emission from celestial sources. By sp...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Magíster en Ciencias de la Ingeniería, Mención Ingeniería EléctricaPolarization is a key measurement...
Context. Deep spectral-line surveys in the mm and sub-mm range can detect thousands of lines per ban...
This paper presents the development of a reconfigurable receiver to undertake challenging signal pro...
The detailed knowledge of the Milky Way radio emission is important to characterize galactic foregro...
Context. We describe the concept, construction, and testing of TasPGA, a new, versatile digital si...
Our group seeks to revolutionize the development of radio astronomy signal processing instrumentatio...
The international Galactic Emission Mapping project aims to map and characterize the polarization fi...
This thesis presents the design and development of a complete receiver system for a conversion proje...
The rapid advances in processing capabilities of modern Field Programmable Gate Array (FPGAs) combin...
We describe the technological concept and the first-light results of a 1024-channel spectrometer ba...
An FPGA-based digital-receiver has been developed for a low-frequency imaging radio interferometer, ...
In radio astronomy, the radio spectrum is used to detect weak emission from celestial sources. By sp...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Field Programmable Gate Arrays (FPGAs) capacity and Analog to Digital Converters (ADCs) speed have l...
Magíster en Ciencias de la Ingeniería, Mención Ingeniería EléctricaPolarization is a key measurement...
Context. Deep spectral-line surveys in the mm and sub-mm range can detect thousands of lines per ban...
This paper presents the development of a reconfigurable receiver to undertake challenging signal pro...
The detailed knowledge of the Milky Way radio emission is important to characterize galactic foregro...
Context. We describe the concept, construction, and testing of TasPGA, a new, versatile digital si...
Our group seeks to revolutionize the development of radio astronomy signal processing instrumentatio...
The international Galactic Emission Mapping project aims to map and characterize the polarization fi...
This thesis presents the design and development of a complete receiver system for a conversion proje...
The rapid advances in processing capabilities of modern Field Programmable Gate Array (FPGAs) combin...
We describe the technological concept and the first-light results of a 1024-channel spectrometer ba...
An FPGA-based digital-receiver has been developed for a low-frequency imaging radio interferometer, ...
In radio astronomy, the radio spectrum is used to detect weak emission from celestial sources. By sp...