<?xml version='1.0' encoding='utf-8'?>
<dcc:digitalCalibrationCertificate xmlns:dcc="https://ptb.de/dcc" xmlns:si="https://ptb.de/si" xmlns:ds="http://www.w3.org/2000/09/xmldsig" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" schemaVersion="3.3.0-rc.1" xsi:schemaLocation="https://ptb.de/dcc https://ptb.de/dcc/v3.3.0-rc.1/dcc.xsd" Id="ref-a6b9e45cccf8436d95d8a4d2f4e92d05">
	<dcc:administrativeData>
		<dcc:dccSoftware>
			<dcc:software>
				<dcc:name>
					<dcc:content>BAM - Middleware - Temperatur - DKD-R 5-1</dcc:content>
				</dcc:name>
				<dcc:release>4.3</dcc:release>
			</dcc:software>
			<dcc:software refType="templateVersion">
				<dcc:name>
					<dcc:content>BAM-dcc_DKD-R_5-1_Blanco</dcc:content>
				</dcc:name>
				<dcc:release>6.3</dcc:release>
			</dcc:software>
		</dcc:dccSoftware>
		<dcc:refTypeDefinitions>
			<dcc:refTypeDefinition>
				<dcc:name>
					<dcc:content lang="de">Namensraum für Querschnitts-RefTypes</dcc:content>
					<dcc:content lang="en">Namespace for Cross-Community RefTypes</dcc:content>
				</dcc:name>
				<dcc:description>
					<dcc:content lang="de">Der Namensraum 'basic' beinhaltet allgemeine RefTypes die messgrößenübergreifend genutzt werden.</dcc:content>
					<dcc:content lang="en">The 'basic' namespace contains RefTypes common for multiple communities.</dcc:content>
				</dcc:description>
				<dcc:namespace>basic</dcc:namespace>
				<dcc:link>https://digilab.ptb.de/dkd/refType/vocab/index.php?tema=2</dcc:link>
			</dcc:refTypeDefinition>
			<dcc:refTypeDefinition>
				<dcc:name>
					<dcc:content lang="de">Namensraum für RefTypes der Temperaturmessgrößen</dcc:content>
					<dcc:content lang="en">Namespace for RefTypes of the Temperature community</dcc:content>
				</dcc:name>
				<dcc:description>
					<dcc:content lang="de">Der Namensraum 'temperature' beinhaltet spezifische RefTypes die für Temperaturmessgrößen genutzt werden.</dcc:content>
					<dcc:content lang="en">The 'temperature' namespace contains RefTypes for temperature quantities.</dcc:content>
				</dcc:description>
				<dcc:namespace>temperature</dcc:namespace>
				<dcc:link>https://digilab.ptb.de/dkd/refType/vocab/index.php?tema=117</dcc:link>
			</dcc:refTypeDefinition>
		</dcc:refTypeDefinitions>
		<dcc:coreData>
			<dcc:countryCodeISO3166_1>DE</dcc:countryCodeISO3166_1>
			<dcc:usedLangCodeISO639_1>de</dcc:usedLangCodeISO639_1>
			<dcc:usedLangCodeISO639_1>en</dcc:usedLangCodeISO639_1>
			<dcc:mandatoryLangCodeISO639_1>de</dcc:mandatoryLangCodeISO639_1>
			<dcc:uniqueIdentifier>4cc33e21-b30a-475d-9072-aef330b48e31</dcc:uniqueIdentifier>
			<dcc:identifications>
				<dcc:identification refType="basic_certificateNumber">
					<dcc:issuer>calibrationLaboratory</dcc:issuer>
					<dcc:value>2173</dcc:value>
					<dcc:name>
						<dcc:content lang="de">Kalibriernummer</dcc:content>
						<dcc:content lang="en">Calibration ID</dcc:content>
					</dcc:name>
				</dcc:identification>
				<dcc:identification refType="basic_certificateIdentification">
					<dcc:issuer>calibrationLaboratory</dcc:issuer>
					<dcc:value>8.1I1539A</dcc:value>
					<dcc:name>
						<dcc:content lang="de">Interne Kalibrierscheinnummer</dcc:content>
						<dcc:content lang="en">Internal certificate ID</dcc:content>
					</dcc:name>
				</dcc:identification>
				<dcc:identification refType="basic_orderNumber">
					<dcc:issuer>calibrationLaboratory</dcc:issuer>
					<dcc:value>7509.52/005#0027</dcc:value>
					<dcc:name>
						<dcc:content lang="de">e-Aktenzeichen</dcc:content>
					</dcc:name>
				</dcc:identification>
			</dcc:identifications>
			<dcc:receiptDate>2024-07-10</dcc:receiptDate>
			<dcc:beginPerformanceDate>2024-07-10</dcc:beginPerformanceDate>
			<dcc:endPerformanceDate>2024-07-10</dcc:endPerformanceDate>
			<dcc:performanceLocation id="staticPerformanceLocation">laboratoryBranch</dcc:performanceLocation>
		</dcc:coreData>
		<dcc:items>
			<dcc:name>
				<dcc:content lang="de">Kalibriergegenstand</dcc:content>
				<dcc:content lang="en">Device under test</dcc:content>
			</dcc:name>
			<dcc:item id="itemIndicator">
				<dcc:name>
					<dcc:content lang="de">Anzeigegerät</dcc:content>
					<dcc:content lang="en">Indicator</dcc:content>
				</dcc:name>
				<dcc:manufacturer>
					<dcc:name>
						<dcc:content>Arduino</dcc:content>
					</dcc:name>
				</dcc:manufacturer>
				<dcc:model>Arduino Uno, MAX31865</dcc:model>
				<dcc:identifications>
					<dcc:identification refType="basic_serialNumber">
						<dcc:issuer>customer</dcc:issuer>
						<dcc:value>DCC Demonstrator 1.1</dcc:value>
						<dcc:name>
							<dcc:content lang="de">Bezeichnung</dcc:content>
							<dcc:content lang="en">Notation</dcc:content>
						</dcc:name>
					</dcc:identification>
				</dcc:identifications>
			</dcc:item>
			<dcc:item id="itemProbe">
				<dcc:name>
					<dcc:content lang="de">Fühler</dcc:content>
					<dcc:content lang="en">Probe</dcc:content>
				</dcc:name>
				<dcc:description>
					<dcc:name>
						<dcc:content lang="de">Beschreibung des Temperaturfühlers</dcc:content>
						<dcc:content lang="en">Description of temperature probe</dcc:content>
					</dcc:name>
					<dcc:content refType="temperature_probeType">Pt100</dcc:content>
					<dcc:content lang="de">Schutzrohr: PFA-Ummantelung</dcc:content>
					<dcc:content lang="en">tube: PFA</dcc:content>
					<dcc:content lang="de">4-Leiter</dcc:content>
					<dcc:content lang="en">4-wire</dcc:content>
				</dcc:description>
				<dcc:manufacturer>
					<dcc:name>
						<dcc:content>Sensorshop24</dcc:content>
					</dcc:name>
				</dcc:manufacturer>
				<dcc:model>KT-PT100P-4L-2.0-3200W</dcc:model>
				<dcc:identifications>
					<dcc:identification refType="basic_marking">
						<dcc:issuer>customer</dcc:issuer>
						<dcc:value>Temperature Sensor 1b</dcc:value>
						<dcc:name>
							<dcc:content lang="de">Identifikation des Fühlers</dcc:content>
							<dcc:content lang="en">Probe identification</dcc:content>
						</dcc:name>
					</dcc:identification>
					<dcc:identification refType="temperature_itemProbeChannel">
						<dcc:issuer>customer</dcc:issuer>
						<dcc:value>MAX1.1</dcc:value>
						<dcc:name>
							<dcc:content lang="de">Angeschlossen an Kanal</dcc:content>
							<dcc:content lang="en">Connected to channel</dcc:content>
						</dcc:name>
					</dcc:identification>
				</dcc:identifications>
				<dcc:itemQuantities>
					<dcc:itemQuantity>
						<dcc:name>
							<dcc:content lang="de">Länge des Fühlers</dcc:content>
							<dcc:content lang="en">Length of probe</dcc:content>
						</dcc:name>
						<si:real>
							<si:value>0.2</si:value>
							<si:unit>\metre</si:unit>
						</si:real>
					</dcc:itemQuantity>
					<dcc:itemQuantity refType="temperature_itemProbeDiameter">
						<dcc:name>
							<dcc:content lang="de">Außendurchmesser des Fühlers</dcc:content>
							<dcc:content lang="en">Outer diameter of probe</dcc:content>
						</dcc:name>
						<si:real>
							<si:value>0.003</si:value>
							<si:unit>\metre</si:unit>
						</si:real>
					</dcc:itemQuantity>
					<dcc:itemQuantity>
						<dcc:name>
							<dcc:content lang="de">Kabellänge</dcc:content>
							<dcc:content lang="en">Wire length</dcc:content>
						</dcc:name>
						<si:real>
							<si:value>2</si:value>
							<si:unit>\metre</si:unit>
						</si:real>
					</dcc:itemQuantity>
				</dcc:itemQuantities>
			</dcc:item>
		</dcc:items>
		<dcc:calibrationLaboratory>
			<dcc:calibrationLaboratoryCode>D-K-11075-08-00</dcc:calibrationLaboratoryCode>
			<dcc:contact>
				<dcc:name>
					<dcc:content>Bundesanstalt für Materialforschung und -prüfung (BAM), Fachbereich 8.1 Sensorik, mess- und prüftechnische Verfahren</dcc:content>
				</dcc:name>
				<dcc:eMail>michael.melzer@bam.de</dcc:eMail>
				<dcc:phone>+49 30 8104-1919</dcc:phone>
				<dcc:fax>+49 30 8104-1917</dcc:fax>
				<dcc:location>
					<dcc:city>Berlin</dcc:city>
					<dcc:countryCode>DE</dcc:countryCode>
					<dcc:postCode>12205</dcc:postCode>
					<dcc:street>Unter den Eichen</dcc:street>
					<dcc:streetNo>87</dcc:streetNo>
					<dcc:further>
						<dcc:content>www.bam.de</dcc:content>
						<dcc:content>rrr.bam.de/RRR/Navigation/DE/Kalibrierlabor/kalibrierlabor.html</dcc:content>
					</dcc:further>
				</dcc:location>
			</dcc:contact>
		</dcc:calibrationLaboratory>
		<dcc:respPersons>
			<dcc:respPerson>
				<dcc:person>
					<dcc:name>
						<dcc:content>B.Eng. M. Thomas</dcc:content>
					</dcc:name>
				</dcc:person>
				<dcc:description>
					<dcc:content lang="de">Durchgeführt von:</dcc:content>
					<dcc:content lang="en">Conducted by:</dcc:content>
				</dcc:description>
				<dcc:role>Bearbeiter</dcc:role>
			</dcc:respPerson>
			<dcc:respPerson>
				<dcc:person>
					<dcc:name>
						<dcc:content>Dr.rer.nat. M. Melzer</dcc:content>
					</dcc:name>
				</dcc:person>
				<dcc:description>
					<dcc:content lang="de">Freigabe durch:</dcc:content>
					<dcc:content lang="en">Approval by:</dcc:content>
				</dcc:description>
				<dcc:role>Leiter des Kalibrierlaboratoriums</dcc:role>
				<dcc:mainSigner>true</dcc:mainSigner>
				<dcc:cryptElectronicSeal>true</dcc:cryptElectronicSeal>
			</dcc:respPerson>
		</dcc:respPersons>
		<dcc:customer>
			<dcc:name>
				<dcc:content>BAM 8.1</dcc:content>
				<dcc:content>M. Melzer</dcc:content>
			</dcc:name>
			<dcc:eMail>michael.melzer@bam.de</dcc:eMail>
			<dcc:location>
				<dcc:city>Berlin</dcc:city>
				<dcc:countryCode>DE</dcc:countryCode>
				<dcc:postCode>12205</dcc:postCode>
				<dcc:street>Unter den Eichen</dcc:street>
				<dcc:streetNo>87</dcc:streetNo>
			</dcc:location>
		</dcc:customer>
		<dcc:statements>
			<dcc:statement id="traceable" refType="basic_metrologicallyTraceableToSI">
				<dcc:traceable>true</dcc:traceable>
				<dcc:norm>ISO/IEC 17025:2017</dcc:norm>
				<dcc:reference>7.8.4.1c</dcc:reference>
				<dcc:link>https://www.iso.org/obp/ui/fr/#iso:std:iso-iec:17025:ed-3:v1:en</dcc:link>
				<dcc:declaration>
					<dcc:content lang="de"> Dieser Kalibrierschein dokumentiert die metrologische Rückführbarkeit 
											auf nationale Normale zur Darstellung der Einheiten 
											in Übereinstimmung mit dem Internationalen Einheitensystem (SI).
					</dcc:content>
					<dcc:content lang="en"> This calibration certificate documents the metrological traceability 
											to national standards, which realize the units of measurement 
											according to the International System of Units (SI).
					</dcc:content>
				</dcc:declaration>
			</dcc:statement>
			<dcc:statement id="accredited" refType="basic_isInCMC">
				<dcc:convention>DAkkS-ILAC</dcc:convention>
				<dcc:link>https://www.dakks.de/de/akkreditierte-stelle.html?id=D-K-11075-08-00</dcc:link>
				<dcc:declaration>
					<dcc:content lang="de"> Die DAkkS ist Unterzeichner der multilateralen Übereinkommen 
											der European co-operation for Accreditation (EA)
											und der International Laboratory Accreditation Cooperation (ILAC) 
											zur gegenseitigen Anerkennung der Kalibrierscheine.
					</dcc:content>
					<dcc:content lang="en"> The DAkkS is signatory to the multilateral agreements 
											of the European co-operation for Accreditation (EA) 
											and of the International Laboratory Accreditation Cooperation (ILAC) 
											for the mutual recognition of calibration certificates.
					</dcc:content>
				</dcc:declaration>
			</dcc:statement>
			<dcc:statement>
				<dcc:norm>ISO/IEC 17025:2017</dcc:norm>
				<dcc:reference>7.8.2.1l</dcc:reference>
				<dcc:link>https://www.iso.org/obp/ui/fr/#iso:std:iso-iec:17025:ed-3:v1:en</dcc:link>
				<dcc:declaration>
					<dcc:content lang="de">Die hier berichteten Ergebnisse beziehen sich nur auf die kalibrierten Gegenstände.</dcc:content>
					<dcc:content lang="en">The presented results relate only to the items calibrated.</dcc:content>
				</dcc:declaration>
			</dcc:statement>
			<dcc:statement refType="basic_recalibration">
				<dcc:norm>ISO/IEC 17025:2017</dcc:norm>
				<dcc:reference>7.8.4.3</dcc:reference>
				<dcc:link>https://www.iso.org/obp/ui/fr/#iso:std:iso-iec:17025:ed-3:v1:en</dcc:link>
				<dcc:declaration>
					<dcc:content lang="de">Für die Einhaltung einer angemessenen Frist zur Wiederholung der Kalibrierung ist der Benutzer verantwortlich.</dcc:content>
					<dcc:content lang="en">The user is obliged to have the object recalibrated at appropriate intervals.</dcc:content>
				</dcc:declaration>
				<dcc:valid>false</dcc:valid>
			</dcc:statement>
			<dcc:statement>
				<dcc:norm>ISO/IEC 17025:2017</dcc:norm>
				<dcc:reference>7.8.2.1 NOTE</dcc:reference>
				<dcc:link>https://www.iso.org/obp/ui/fr/#iso:std:iso-iec:17025:ed-3:v1:en</dcc:link>
				<dcc:declaration>
					<dcc:content lang="de"> Auszüge oder Änderungen dieses Kalibrierscheins bedürfen der Genehmigung des ausstellenden Kalibrierlaboratoriums.</dcc:content>
					<dcc:content lang="en"> This calibration certificate may not be reproduced other than in full 
											except with the permission of the issuing laboratory.</dcc:content>
					<dcc:content lang="de"> ACHTUNG! ACHTUNG! ACHTUNG! ACHTUNG! ACHTUNG! ACHTUNG! ACHTUNG! ACHTUNG!
											Dies ist kein gültiger Kalibrierschien. Er wird ausschliesslich zum Zweck der Demonstration und Erprobung zur Verfügung gestellt.</dcc:content>
					<dcc:content lang="en"> ATTENTION! ATTENTION! ATTENTION! ATTENTION! ATTENTION! ATTENTION! ATTENTION!
											This is not a real calibration certificate. It is invalid. It is distributed for the purpose of demonstration and testing, only.</dcc:content>
				</dcc:declaration>
			</dcc:statement>
			<dcc:statement refType="basic_membership">
				<dcc:name>
					<dcc:content lang="de">Mitgliedschaft DKD</dcc:content>
					<dcc:content lang="en">Membership DKD</dcc:content>
				</dcc:name>
				<dcc:declaration>
					<dcc:content lang="de">Mitglied im Deutschen Kalibrierdienst (DKD)</dcc:content>
					<dcc:content lang="en">Member of the Deutscher Kalibrierdienst (DKD)</dcc:content>
				</dcc:declaration>
			</dcc:statement>
			<dcc:statement refType="copyRight">
				<dcc:declaration>
					<dcc:content lang="en"> DCC - Digital Calibration Certificate
											Copyright (c) 2023 Bundesanstalt für Materialforschung und -prüfung (BAM) 

											This XML dataset is free software: you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation, version 3 of the License.
											This XML-DCC is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details.
											This prototype DCC is based on the PTB DCC good practice template "GP_DCC_temperature_extensive_1.2".  It is adapted by the Bundesanstalt für Materialforschung und –prüfung (BAM), to be a digital representation of the DAkkS-accredited calibration certificate "8.1I1496A", issued by the calibration lab D-K-11075-08. 
											This adaption was performed within the scope of the QI-Digital joint initiative of the German Federal Ministry for Economic Affairs and Climate Action (BMWK) and by attorney of the 5th technical committee for temperature and humitity of the Deutscher Kalibrierdient (DKD).</dcc:content>
					<dcc:content lang="de"> DCC - Digitaler Kalibrierschein 
											Copyright (c) 2023 Bundesanstalt für Materialforschung und -prüfung (BAM) 

											Dieser XML-Datensatz ist freie Software: Sie können ihn unter den Bedingungen der GNU Lesser General Public License, veröffentlicht von der Free Software Foundation, Version 3 der Lizenz, weitergeben und/oder verändern.
											Dieser XML-DCC wird mit der Absicht weitergegeben, dass er von Nutzen sein kann, jedoch OHNE JEGLICHE GEWÄHRLEISTUNG; auch ohne die stillschweigende Garantie der MARKTREIFE oder der EIGNUNG FÜR EINEN BESTIMMTEN ZWECK. Schauen Sie in die GNU Lesser General Public License, um zusätzliche Informationen zu erhalten. 
											Dieser DCC-Prototyp basiert auf der PTB DCC-Vorlage "GP_DCC_temperature_extensive_1.2". Die Bundesanstalt für Materialforschung und -prüfung (BAM) hat ihn angepasst, um eine digitale Darstellung des DAkkS-akkreditierten Kalibrierscheins "8.1I1496A" zu sein, welcher vom Kalibrierlabor D-K-11075-08-00 ausgestellt wurde. 
											Diese Modifikation wurde im Rahmen der QI-Digital-Initiative des Bundesministeriums für Wirtschaft und Klimaschutz (BMWK) und in Zusammenarbeit mit Bevollmächtigten des 5. Fachausschusses für Temperatur und Feuchte des Deutschen Kalibrierdienstes (DKD) umgesetzt. </dcc:content>
				</dcc:declaration>
			</dcc:statement>
			<dcc:statement refType="basic_calibratedRange">
				<dcc:declaration>
					<dcc:content lang="de">Die Kalibrierung erfolgte im Temperaturbereich von:</dcc:content>
					<dcc:content lang="en">The calibration was performed within the following temperature range:</dcc:content>
				</dcc:declaration>
				<dcc:data>
					<dcc:quantity refType="basic_minimum">
						<dcc:name>
							<dcc:content lang="de">Unteres Limit</dcc:content>
							<dcc:content lang="en">Lower limit</dcc:content>
						</dcc:name>
						<si:hybrid>
							<si:real>
								<si:value>263.224</si:value>
								<si:unit>\kelvin</si:unit>
							</si:real>
							<si:real>
								<si:value>-9.926</si:value>
								<si:unit>\degreecelsius</si:unit>
							</si:real>
						</si:hybrid>
					</dcc:quantity>
					<dcc:quantity refType="basic_maximum">
						<dcc:name>
							<dcc:content lang="de">Oberes Limit</dcc:content>
							<dcc:content lang="en">Upper limit</dcc:content>
						</dcc:name>
						<si:hybrid>
							<si:real>
								<si:value>303.265</si:value>
								<si:unit>\kelvin</si:unit>
							</si:real>
							<si:real>
								<si:value>30.115</si:value>
								<si:unit>\degreecelsius</si:unit>
							</si:real>
						</si:hybrid>
					</dcc:quantity>
				</dcc:data>
			</dcc:statement>
			<dcc:statement refId="staticPerformanceLocation">
				<dcc:declaration>
					<dcc:content lang="de">Die Messungen wurden in den Räumen des Kalibrierlaboratoriums durchgeführt.</dcc:content>
					<dcc:content lang="en">The measurements were conducted within the premises of the calibration laboratory.</dcc:content>
				</dcc:declaration>
				<dcc:location>
					<dcc:building>50</dcc:building>
					<dcc:room>171</dcc:room>
				</dcc:location>
			</dcc:statement>
		</dcc:statements>
	</dcc:administrativeData>
	<dcc:measurementResults>
		<dcc:measurementResult>
			<dcc:name>
				<dcc:content lang="de">Kalibrierung eines Widerstandsthermometers</dcc:content>
				<dcc:content lang="en">Calibration of a resistance thermometer</dcc:content>
			</dcc:name>
			<dcc:usedMethods>
				<dcc:usedMethod refType="basic_calibrationMethod">
					<dcc:name>
						<dcc:content lang="de">Kalibrierverfahren</dcc:content>
						<dcc:content lang="en">Calibration procedure</dcc:content>
					</dcc:name>
					<dcc:description>
						<dcc:content lang="de">	Die Kalibrierung erfolgte im Vergleichsverfahren, gemäß der unten aufgeführten Verfahrensbeschreibung.</dcc:content>
						<dcc:content lang="en"> According to the method description referenced below, the object was calibrated comparing the indicated values 
												of the calibration object and the values from the reference thermometer.</dcc:content>
					</dcc:description>
					<dcc:norm>DKD-R 5-1:2023-11</dcc:norm>
				</dcc:usedMethod>
				<dcc:usedMethod id="selfHeating">
					<dcc:name>
						<dcc:content lang="de">Bestimmung der Eigenerwärmung</dcc:content>
						<dcc:content lang="en">Determination of self-heating</dcc:content>
					</dcc:name>
					<dcc:description>
						<dcc:content lang="de">	Der Einfluss der Eigenerwärmung für den Temperaturfühler wurde nicht untersucht.
												Er kann einen Messunsicherheitsbeitrag von bis zu 30 mK (k=2) liefern.
												Dieser Beitrag ist in der angegebenen erweiterten Messunsicherheit enthalten.</dcc:content>
						<dcc:content lang="en"> The influence of self-heating for the thermal sensor was not investigated.
												It can provide a measurement uncertainty contribution of up to 30 mK (k=2).
												This contribution is included in the expanded measurement uncertainty.</dcc:content>
					</dcc:description>
					<dcc:norm>DKD-R 5-1:2023-11</dcc:norm>
					<dcc:reference>8.8</dcc:reference>
				</dcc:usedMethod>
				<dcc:usedMethod id="hysteresis">
					<dcc:name>
						<dcc:content lang="de">Bestimmung der Hysterese</dcc:content>
						<dcc:content lang="en">Hysteresis determination</dcc:content>
					</dcc:name>
					<dcc:description>
						<dcc:content lang="de">	Der Einfluss der Hysterese wurde experimentell ermittelt.
												Es ist davon auszugehen, dass dieser im Temperaturbereich der Kalibrierung bis zu 0.01 K betragen kann,	
												sofern die Messungen nicht durchgehend in der angegebenen Temperaturmesspunkt-Reihenfolge durchgeführt werden.
												Dabei ist der größte Einfluss in der Mitte des Temperaturbereichs zu erwarten.
												Die Hysterese ist in der ausgewiesenen Messunsicherheit nicht berücksichtigt.</dcc:content>
						<dcc:content lang="en"> The influence of the hysteresis was determined experimentally, it is expected to have an additional contribution 
												of up to 0.01 K to the measurement uncertainty, for the temperature range of this calibration, 
												in case the measurements are not performed in the same order of temperature setpoints. 
												The lagest contribution is expected to be in the center of the temperature range.
												The hysteresis is not considered in the measurement uncertainty stated.</dcc:content>
					</dcc:description>
					<dcc:norm>DKD-R 5-1:2023-11</dcc:norm>
					<dcc:reference>8.10</dcc:reference>
				</dcc:usedMethod>
				<dcc:usedMethod refType="basic_methodMeasurementUncertainty">
					<dcc:name>
						<dcc:content lang="de">Messunsicherheit</dcc:content>
						<dcc:content lang="en">Measurement uncertainty</dcc:content>
					</dcc:name>
					<dcc:description>
						<dcc:content lang="de"> Angegeben ist die erweiterte Messunsicherheit, die sich aus der Standardmessunsicherheit 
												durch Multiplikation mit dem Erweiterungsfaktor k=2 ergibt. Sie wurde gemäß der unten aufgeführten Vorschrift ermittelt. 
												Der Wert der Messgröße liegt mit einer Wahrscheinlichkeit von 95 % im zugeordneten Werteintervall.</dcc:content>
						<dcc:content lang="en"> The reported expanded uncertainty is stated as the standard uncertainty multiplied by a coverage factor k=2. 
												The coverage factor k=2 for a normal distribution corresponds to a coverage probability of approx. 95 %.</dcc:content>
					</dcc:description>
					<dcc:norm>EA-4/02 M:2022</dcc:norm>
				</dcc:usedMethod>
			</dcc:usedMethods>
			<dcc:usedSoftware>
				<dcc:software>
					<dcc:name>
						<dcc:content>HP3458A-neu_RefAuswahl.vi</dcc:content>
					</dcc:name>
					<dcc:release>2020-08-25</dcc:release>
				</dcc:software>
			</dcc:usedSoftware>
			<dcc:measuringEquipments>
				<dcc:measuringEquipment refType="measurementStandardUsed">
					<dcc:name>
						<dcc:content lang="de">Pt 100 Normal</dcc:content>
						<dcc:content lang="en">Pt 100 standard</dcc:content>
					</dcc:name>
					<dcc:manufacturer>
						<dcc:name>
							<dcc:content>Isotech</dcc:content>
						</dcc:name>
					</dcc:manufacturer>
					<dcc:model>935-14-61</dcc:model>
					<dcc:identifications>
						<dcc:identification refType="basic_serialNumber">
							<dcc:issuer>manufacturer</dcc:issuer>
							<dcc:value>18094/1</dcc:value>
							<dcc:name>
								<dcc:content lang="de">Serien Nr.</dcc:content>
								<dcc:content lang="en">Serial no.</dcc:content>
							</dcc:name>
						</dcc:identification>
					</dcc:identifications>
				</dcc:measuringEquipment>
				<dcc:measuringEquipment refType="measurementStandardUsed">
					<dcc:name>
						<dcc:content lang="de">Digitalmultimeter</dcc:content>
						<dcc:content lang="en">Digital multimeter</dcc:content>
					</dcc:name>
					<dcc:manufacturer>
						<dcc:name>
							<dcc:content>HP</dcc:content>
						</dcc:name>
					</dcc:manufacturer>
					<dcc:model>3458A</dcc:model>
					<dcc:identifications>
						<dcc:identification refType="basic_serialNumber">
							<dcc:issuer>manufacturer</dcc:issuer>
							<dcc:value>2823A11406</dcc:value>
							<dcc:name>
								<dcc:content lang="de">Serien Nr.</dcc:content>
								<dcc:content lang="en">Serial no.</dcc:content>
							</dcc:name>
						</dcc:identification>
					</dcc:identifications>
				</dcc:measuringEquipment>
			</dcc:measuringEquipments>
			<dcc:influenceConditions>
				<dcc:influenceCondition refType="basic_temperature">
					<dcc:name>
						<dcc:content lang="de">Umgebungsbedingung Temperatur</dcc:content>
						<dcc:content lang="en">Environmental condition temperature</dcc:content>
					</dcc:name>
					<dcc:data>
						<dcc:quantity refType="basic_minimum">
							<dcc:name>
								<dcc:content lang="de">Temperatur min</dcc:content>
								<dcc:content lang="en">temperature min</dcc:content>
							</dcc:name>
							<si:hybrid>
								<si:real>
									<si:value>294.65</si:value>
									<si:unit>\kelvin</si:unit>
								</si:real>
								<si:real>
									<si:value>21.5</si:value>
									<si:unit>\degreecelsius</si:unit>
								</si:real>
							</si:hybrid>
						</dcc:quantity>
						<dcc:quantity refType="basic_maximum">
							<dcc:name>
								<dcc:content lang="de">Temperatur max</dcc:content>
								<dcc:content lang="en">temperature max</dcc:content>
							</dcc:name>
							<si:hybrid>
								<si:real>
									<si:value>297.65</si:value>
									<si:unit>\kelvin</si:unit>
								</si:real>
								<si:real>
									<si:value>24.5</si:value>
									<si:unit>\degreecelsius</si:unit>
								</si:real>
							</si:hybrid>
						</dcc:quantity>
					</dcc:data>
				</dcc:influenceCondition>
				<dcc:influenceCondition refType="basic_humidityRelative">
					<dcc:name>
						<dcc:content lang="de">Umgebungsbedingung relative Luftfeuchte</dcc:content>
						<dcc:content lang="en">Environmental condition relative humidity</dcc:content>
					</dcc:name>
					<dcc:data>
						<dcc:quantity refType="basic_minimum">
							<dcc:name>
								<dcc:content lang="de">Feuchte min</dcc:content>
								<dcc:content lang="en">humidity min</dcc:content>
							</dcc:name>
							<si:hybrid>
								<si:real>
									<si:value>0.27</si:value>
									<si:unit>\one</si:unit>
								</si:real>
								<si:real>
									<si:value>27.0</si:value>
									<si:unit>\percent</si:unit>
								</si:real>
							</si:hybrid>
						</dcc:quantity>
						<dcc:quantity refType="basic_maximum">
							<dcc:name>
								<dcc:content lang="de">Feuchte max</dcc:content>
								<dcc:content lang="en">humidity max</dcc:content>
							</dcc:name>
							<si:hybrid>
								<si:real>
									<si:value>0.47</si:value>
									<si:unit>\one</si:unit>
								</si:real>
								<si:real>
									<si:value>47.0</si:value>
									<si:unit>\percent</si:unit>
								</si:real>
							</si:hybrid>
						</dcc:quantity>
					</dcc:data>
				</dcc:influenceCondition>
			</dcc:influenceConditions>
			<dcc:results>
				<dcc:result>
					<dcc:name>
						<dcc:content lang="de">Ergebnisse der Voruntersuchungen</dcc:content>
						<dcc:content lang="en">Results of the initial inspections</dcc:content>
					</dcc:name>
					<dcc:data>
						<dcc:quantity refType="temperature_inputValue">
							<dcc:name>
								<dcc:content lang="de">Eingangswert</dcc:content>
								<dcc:content lang="en">Input value</dcc:content>
							</dcc:name>
							<si:real>
								<si:value>0.02</si:value>
								<si:unit>\degreecelsius</si:unit>
							</si:real>
							<dcc:usedMethods>
								<dcc:usedMethod>
									<dcc:name>
										<dcc:content lang="de">Bestimmung des Eingangswertes</dcc:content>
										<dcc:content lang="en">Determination of the inputValue</dcc:content>
									</dcc:name>
									<dcc:description>
										<dcc:content lang="de">	Als Eingangswert wurde die Temperatur am Eispunkt gemessen.</dcc:content>
										<dcc:content lang="en"> As input value, the indicated temperature was measured at the ice point</dcc:content>
									</dcc:description>
									<dcc:norm>DKD-R 5-1:2023-11</dcc:norm>
									<dcc:reference>6</dcc:reference>
								</dcc:usedMethod>
							</dcc:usedMethods>
							<dcc:measurementMetaData>
								<dcc:metaData refId="traceable">
									<dcc:valid>false</dcc:valid>
								</dcc:metaData>
							</dcc:measurementMetaData>
						</dcc:quantity>
						<dcc:quantity refType="temperature_isolationResistance">
							<dcc:name>
								<dcc:content lang="de">Isolationswiderstand</dcc:content>
								<dcc:content lang="en">Isolation resistance</dcc:content>
							</dcc:name>
							<dcc:description>
								<dcc:content lang="de">Der Isolationswiderstand betrug an allen Messschleifen mehr als 110 MOhm. </dcc:content>
								<dcc:content lang="en">The isolation resistance exceeds 110 MOhm on all measuring loops.</dcc:content>
							</dcc:description>
							<si:real>
								<si:value>110000000</si:value>
								<si:unit>\ohm</si:unit>
							</si:real>
							<dcc:usedMethods>
								<dcc:usedMethod>
									<dcc:name>
										<dcc:content lang="de">Überprüfung des Isolationswiderstandes</dcc:content>
										<dcc:content lang="en">Isolation resistance check</dcc:content>
									</dcc:name>
									<dcc:description>
										<dcc:content lang="de">	Der Isolationswiderstand wurde bei Ramtemperatur und bei der höchsten Kalibriertemperatur 
																zwischen jedem Messkreis und der Armatur mit einer Gleichspannung von 100 V überprüft.</dcc:content>
										<dcc:content lang="en"> The isolation resistance was checked at room temperature and the highest calibration temperature 
																between each measuring circuit and the fitting applying a DC voltage of 100 V.</dcc:content>
									</dcc:description>
									<dcc:norm>DIN EN IEC 60751:2022</dcc:norm>
									<dcc:reference>6.3.2</dcc:reference>
									<dcc:reference>6.5.4</dcc:reference>
								</dcc:usedMethod>
							</dcc:usedMethods>
							<dcc:measurementMetaData>
								<dcc:metaData>
									<dcc:conformity>pass</dcc:conformity>
								</dcc:metaData>
								<dcc:metaData refId="traceable">
									<dcc:valid>false</dcc:valid>
								</dcc:metaData>
							</dcc:measurementMetaData>
						</dcc:quantity>
					</dcc:data>
				</dcc:result>
				<dcc:result>
					<dcc:name>
						<dcc:content lang="de">Ergebnisse der Kalibrierung</dcc:content>
						<dcc:content lang="en">Results of calibration</dcc:content>
					</dcc:name>
					<dcc:description>
						<dcc:content lang="de">Es sind die Mittelwerte der jeweiligen Kalibriermessung in der Reihenfolge der Kalibrierungen angegeben.</dcc:content>
						<dcc:content lang="en">The respective means of the measurement values are provided in the order of the calibration sequence.</dcc:content>
					</dcc:description>
					<dcc:data>
						<dcc:list>
							<dcc:description>
								<dcc:content lang="de">Temperatur</dcc:content>
								<dcc:content lang="en">Temperature</dcc:content>
							</dcc:description>
							<dcc:dateTimeXMLList>2024-07-10T07:07:57Z 2024-07-10T07:33:37Z 2024-07-10T07:56:22Z 2024-07-10T08:17:16Z 2024-07-10T08:35:50Z</dcc:dateTimeXMLList>
							<dcc:quantity refType="basic_referenceValue basic_arithmeticMean temperature_ITS-90">
								<dcc:name>
									<dcc:content lang="de">Referenzwertwerte</dcc:content>
									<dcc:content lang="en">Reference values</dcc:content>
								</dcc:name>
								<si:hybrid>
									<si:realListXMLList>
										<si:valueXMLList>263.224 273.152 283.246 293.253 303.265</si:valueXMLList>
										<si:unitXMLList>\kelvin</si:unitXMLList>
									</si:realListXMLList>
									<si:realListXMLList>
										<si:valueXMLList>-9.926 0.002 10.096 20.103 30.115</si:valueXMLList>
										<si:unitXMLList>\degreecelsius</si:unitXMLList>
									</si:realListXMLList>
								</si:hybrid>
							</dcc:quantity>
							<dcc:quantity refId="itemIndicator" refType="basic_measuredValue temperature_ITS-90">
								<dcc:name>
									<dcc:content lang="de">Anzeigewerte</dcc:content>
									<dcc:content lang="en">Indicated values</dcc:content>
								</dcc:name>
								<si:hybrid>
									<si:realListXMLList>
										<si:valueXMLList>263.24 273.17 283.26 293.27 303.29</si:valueXMLList>
										<si:unitXMLList>\kelvin</si:unitXMLList>
									</si:realListXMLList>
									<si:realListXMLList>
										<si:valueXMLList>-9.91 0.02 10.11 20.12 30.14</si:valueXMLList>
										<si:unitXMLList>\degreecelsius</si:unitXMLList>
									</si:realListXMLList>
								</si:hybrid>
							</dcc:quantity>
							<dcc:quantity refType="basic_measurementError">
								<dcc:name>
									<dcc:content lang="de">Abweichung</dcc:content>
									<dcc:content lang="en">Deviation</dcc:content>
								</dcc:name>
								<si:realListXMLList>
									<si:valueXMLList>0.016 0.018 0.014 0.017 0.025</si:valueXMLList>
									<si:unitXMLList>\kelvin</si:unitXMLList>
									<si:measurementUncertaintyUnivariateXMLList>
										<si:expandedMUXMLList>
											<si:valueExpandedMUXMLList>0.05 0.05 0.05 0.05 0.05</si:valueExpandedMUXMLList>
											<si:coverageFactorXMLList>2</si:coverageFactorXMLList>
											<si:coverageProbabilityXMLList>0.95</si:coverageProbabilityXMLList>
											<si:distributionXMLList>normal</si:distributionXMLList>
										</si:expandedMUXMLList>
									</si:measurementUncertaintyUnivariateXMLList>
								</si:realListXMLList>
								<dcc:measurementMetaData>
									<dcc:metaData refId="selfHeating" refType="temperature_selfHeating">
										<dcc:validXMLList>false true</dcc:validXMLList>
										<dcc:data>
											<dcc:quantity>
												<dcc:name>
													<dcc:content lang="de">Standardunsicherheit der Eigenerwärmung</dcc:content>
													<dcc:content lang="en">Standard uncertainty of self-heating</dcc:content>
												</dcc:name>
												<si:realListXMLList>
													<si:valueXMLList>NaN</si:valueXMLList>
													<si:unitXMLList>\kelvin</si:unitXMLList>
													<si:measurementUncertaintyUnivariateXMLList>
														<si:standardMUXMLList>
															<si:valueStandardMUXMLList>0.017</si:valueStandardMUXMLList>
															<si:distributionXMLList>uniform</si:distributionXMLList>
														</si:standardMUXMLList>
													</si:measurementUncertaintyUnivariateXMLList>
												</si:realListXMLList>
											</dcc:quantity>
										</dcc:data>
									</dcc:metaData>
									<dcc:metaData refId="hysteresis" refType="temperature_hysteresis">
										<dcc:validXMLList>true false</dcc:validXMLList>
										<dcc:data>
											<dcc:quantity>
												<dcc:name>
													<dcc:content lang="de">Standardunsicherheit der Hysterese</dcc:content>
													<dcc:content lang="en">Standard uncertainty of hysteresis</dcc:content>
												</dcc:name>
												<si:realListXMLList>
													<si:valueXMLList>NaN</si:valueXMLList>
													<si:unitXMLList>\kelvin</si:unitXMLList>
													<si:measurementUncertaintyUnivariateXMLList>
														<si:standardMUXMLList>
															<si:valueStandardMUXMLList>0.006</si:valueStandardMUXMLList>
															<si:distributionXMLList>uniform</si:distributionXMLList>
														</si:standardMUXMLList>
													</si:measurementUncertaintyUnivariateXMLList>
												</si:realListXMLList>
											</dcc:quantity>
										</dcc:data>
									</dcc:metaData>
								</dcc:measurementMetaData>
							</dcc:quantity>
							<dcc:usedMethods>
								<dcc:usedMethod refType="temperature_thermostatUsed">
									<dcc:name>
										<dcc:content>Thermostat</dcc:content>
									</dcc:name>
									<dcc:description>
										<dcc:content lang="de">Die Kalibrierung wurde in einem gerührten Flüssigkeitsthermostat durchgeführt.</dcc:content>
										<dcc:content lang="en">The calibration was carried out in a stirred liquid bath.</dcc:content>
									</dcc:description>
									<dcc:norm>DKD-R 5-1:2023-11</dcc:norm>
									<dcc:reference>7</dcc:reference>
								</dcc:usedMethod>
								<dcc:usedMethod id="totalSampleTime">
									<dcc:name>
										<dcc:content lang="de">Gesamtaufnahmezeit pro Temperatur</dcc:content>
										<dcc:content lang="en">Total recording time per temperature</dcc:content>
									</dcc:name>
									<dcc:description>
										<dcc:content lang="de">	Die Messungen erfolgten, nach Temperaturstabilisierung am jeweiligen Kalibrierpunkt, über einen Zeitraum von 10 Minuten.</dcc:content>
										<dcc:content lang="en"> The measurements were made after temperature stabilization at the respective calibration point, over a period of 10 minutes.</dcc:content>
									</dcc:description>
								</dcc:usedMethod>
							</dcc:usedMethods>
							<dcc:influenceConditions>
								<dcc:influenceCondition refType="temperature_immersionDepth">
									<dcc:name>
										<dcc:content lang="de">Eintauchtiefe im Themostaten</dcc:content>
										<dcc:content lang="en">Immersion depth in the thermostat</dcc:content>
									</dcc:name>
									<dcc:data>
										<dcc:quantity>
											<dcc:name>
												<dcc:content lang="de">Die Eintauchtiefe des Fühlers im Thermostaten während der Kalibrierung betrug ca.:</dcc:content>
												<dcc:content lang="en">The Immersion depth of the probe into the calibrator was about:</dcc:content>
											</dcc:name>
											<si:real>
												<si:value>0.19</si:value>
												<si:unit>\metre</si:unit>
											</si:real>
										</dcc:quantity>
									</dcc:data>
								</dcc:influenceCondition>
							</dcc:influenceConditions>
							<dcc:measurementMetaData>
								<dcc:metaData>
									<dcc:data>
										<dcc:quantity refId="totalSampleTime" refType="temperature_totalSampleTime">
											<si:realListXMLList>
												<si:valueXMLList>600</si:valueXMLList>
												<si:unitXMLList>\second</si:unitXMLList>
											</si:realListXMLList>
										</dcc:quantity>
									</dcc:data>
								</dcc:metaData>
								<dcc:metaData refId="traceable">
									<dcc:valid>true</dcc:valid>
								</dcc:metaData>
							</dcc:measurementMetaData>
						</dcc:list>
					</dcc:data>
				</dcc:result>
			</dcc:results>
			<dcc:measurementMetaData>
				<dcc:metaData refId="accredited">
					<dcc:valid>true</dcc:valid>
				</dcc:metaData>
			</dcc:measurementMetaData>
		</dcc:measurementResult>
	</dcc:measurementResults>
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