Analog-to-Digital Conversion Using Self-Averaging Analog Hadamard Networks
dc.contributor.author
Malmberg, Hampus
dc.contributor.author
Loeliger, Hans-Andrea
dc.date.accessioned
2021-11-18T09:48:15Z
dc.date.available
2021-11-13T07:54:53Z
dc.date.available
2021-11-18T09:48:15Z
dc.date.issued
2020
dc.identifier.isbn
978-1-7281-3320-1
en_US
dc.identifier.other
10.1109/ISCAS45731.2020.9181151
en_US
dc.identifier.uri
http://hdl.handle.net/20.500.11850/515016
dc.description.abstract
Control-bounded analog-to-digital conversion as described in the work of Loeliger et al. opens opportunities for entirely new analog circuit topologies. The structure of such a converter is shown in Fig. 1. In this paper, we propose such a converter where the analog linear system is a network of N fully connected identical integrators, with uniform sensitivity to noise and mismatch across the network. Nonetheless, the converter achieves a nominal conversion error similar to that of a ΔΣ converter with a N-th order loop filter.
en_US
dc.language.iso
en
en_US
dc.publisher
IEEE
en_US
dc.title
Analog-to-Digital Conversion Using Self-Averaging Analog Hadamard Networks
en_US
dc.type
Other Conference Item
dc.date.published
2020-09-28
ethz.book.title
2020 IEEE International Symposium on Circuits and Systems (ISCAS)
en_US
ethz.pages.start
9181151
en_US
ethz.size
1 p.
en_US
ethz.event
2020 IEEE International Symposium on Circuits and Systems (ISCAS 2020) (virtual)
en_US
ethz.event.location
Seville, Spain
en_US
ethz.event.date
October 10-21, 2020
en_US
ethz.notes
Due to the Coronavirus (COVID-19) the conference was conducted virtually.
ethz.identifier.wos
ethz.publication.place
Piscataway, NJ
en_US
ethz.publication.status
published
en_US
ethz.date.deposited
2021-11-13T07:56:53Z
ethz.source
WOS
ethz.eth
yes
en_US
ethz.availability
Metadata only
en_US
ethz.rosetta.installDate
2021-11-18T09:48:25Z
ethz.rosetta.lastUpdated
2022-03-29T16:03:13Z
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true
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