Publication:
Precision measurement of the application-dependent current consumption of a wireless transceiver chip in the time and frequency domain

cris.customurl 14373
cris.virtual.department Elektrische Messtechnik
cris.virtual.department Elektrische Messtechnik
cris.virtual.department Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtual.departmentbrowse Elektrische Messtechnik
cris.virtualsource.department c4d4bced-8bf2-4ced-947e-d3867777a8cd
cris.virtualsource.department 0784a80b-3543-48d5-bd67-6aa21fcccfe1
cris.virtualsource.department 321a596d-ac34-4e64-a57a-0fe9bed251fd
dc.contributor.author Doebbert, Thomas Robert
dc.contributor.author Cammin, Christoph
dc.contributor.author Scholl, Gerd
dc.date.issued 2022-06-13
dc.description.abstract Modern production concepts generate a demand for reliable, energy-efficient, fast, and secure wireless communication solutions. Therefore, the current consumption should not increase substantially due to additional cryptographic operations. This paper shows a principle current measurement method that is exemplary of a transceiver for the IO-Link Wireless protocol. Low-pass filtering and single-sided amplitude spectrum analysis are used to evaluate the main information of the current measurement. An uncertainty estimation is realized using statistical measurement data and considering the measurement setup in order to approximate the combined standard uncertainty. The results show that the current consumption only increases slightly when using additional cryptographic operations. This can be measured with acceptable uncertainty.
dc.description.version NA
dc.identifier.citation Doebbert, T. R., Cammin, C., and Scholl, G.: Precision measurement of the application-dependent current consumption of a wireless transceiver chip in the time and frequency domain, J. Sens. Sens. Syst., 11, 149–159, https://doi.org/10.5194/jsss-11-149-2022, 2022.
dc.identifier.doi 10.5194/jsss-11-149-2022
dc.identifier.issn 2194-8771
dc.identifier.issn 2194-878X
dc.identifier.scopus 2-s2.0-85132250436
dc.identifier.uri https://openhsu.ub.hsu-hh.de/handle/10.24405/14373
dc.language.iso en
dc.publisher Copernicus Publishing
dc.relation.journal Journal of sensors and sensor systems
dc.relation.orgunit Elektrische Messtechnik
dc.relation.orgunit DTEC.bw
dc.relation.project Neue Lösung in Elektronik und Kommunikation: Digitale Sensor-2-Cloud Campus Plattform
dc.relation.project IO-Link Wireless for IEC-Approval
dc.rights.accessRights metadata only access
dc.subject dtec.bw
dc.title Precision measurement of the application-dependent current consumption of a wireless transceiver chip in the time and frequency domain
dc.type Research article
dspace.entity.type Publication
hsu.peerReviewed
hsu.uniBibliography
oaire.citation.endPage 159
oaire.citation.issue 11
oaire.citation.startPage 149
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