{"id":6880,"date":"2019-10-16T18:41:37","date_gmt":"2019-10-16T16:41:37","guid":{"rendered":"https:\/\/wika-blog-live-4.wika-blog-live.mcon.net\/?p=6880"},"modified":"2023-03-15T11:50:01","modified_gmt":"2023-03-15T10:50:01","slug":"pt100-pt1000-of-ntc-welke-is-de-juiste-sensor","status":"publish","type":"post","link":"https:\/\/blog.wika.com\/nl\/kennis\/pt100-pt1000-of-ntc-welke-is-de-juiste-sensor\/","title":{"rendered":"Pt100, Pt1000 of NTC \u2013 welke is de juiste sensor?"},"content":{"rendered":"<p><strong>Vooral de machinebouw vraagt mij vaak welke het juiste meetelement voor hen is. Daarom wil ik in dit artikel de verschillen tussen de meest gebruikte sensoren Pt100, Pt1000 en NTC uitleggen. In de vergelijking aan het eind van dit artikel zal ik meer in detail ingaan op de minder gebruikte meetelementen Ni1000 en KTY sensoren. <\/strong><\/p>\n<h2>Toepassingsgebieden van Pt100, Pt1000 en NTC<\/h2>\n<p>Weerstandsthermometers op basis van Pt100, Pt1000 (positieve temperatuurco\u00ebffici\u00ebnt PTC) en NTC (negatieve temperatuurco\u00ebfficient) worden overal in de industri\u00eble temperatuurmeting gebruikt waar lage tot gemiddelde temperaturen worden gemeten. In de procesindustrie worden Pt100- en Pt1000- sensoren vrijwel uitsluitend gebruikt. In de machinebouw wordt echter vaak een NTC gebruikt \u2013 niet in de laatste plaats uit kostenoverwegingen. Omdat de Pt100- en Pt1000-sensoren in de dunne-filmtechnologie worden vervaardigd, kan het platinagehalte tot een minimum worden beperkt. Hierdoor kan het prijsverschil ten opzichte van de NTC zodanig gereduceerd worden dat een overstap van NTC naar Pt100 of Pt1000 voor middelgrote hoeveelheden interessant wordt. Vooral omdat platina meetweerstanden aanzienlijke voordelen bieden ten opzichte van negatieve temperatuurco\u00ebffici\u00ebnten.<\/p>\n<h2>Voor- en nadelen van verschillende sensoren<\/h2>\n<p><span style=\"font-family: 'Arial','sans-serif';font-size: 12pt\" lang=\"EN-US\"><span style=\"color: #000000\">De platina-elementen Pt100 en Pt1000 bieden het voordeel dat ze voldoen aan de internationale normen (IEC 751\/DIN EN 60 751). Vanwege materiaal- en productiespecifieke criteria is een standaardisatie van halfgeleiderelementen zoals NTC niet mogelijk. Om deze reden is hun uitwisselbaarheid beperkt. Andere voordelen van platina-elementen zijn: betere stabiliteit op lange termijn en beter gedrag over temperatuurcycli, een groter temperatuurbereik en een hoge meetnauwkeurigheid en lineariteit. Een hoge meetnauwkeurigheid is ook mogelijk met een NTC, maar alleen in een zeer beperkt temperatuurbereik. Terwijl Pt100- en Pt1000-sensoren in de dunne-film technologie geschikt zijn voor temperaturen tot 500 \u00b0C, kan de standaard NTC gebruikt worden voor temperaturen tot ca. 150 \u00b0C.<br \/>\n<\/span><\/span><\/p>\n<h2>Invloed van de toevoerleiding op de gemeten waarde<\/h2>\n<p><span style=\"font-family: 'Arial','sans-serif';font-size: 12pt\" lang=\"EN-US\"><span style=\"color: #000000\">De kabelweerstand be\u00efnvloedt de meetwaarde van 2-draads temperatuursensoren en moet in aanmerking worden genomen. Voor koperen kabels met een doorsnede van 0,22 mm2 geldt de volgende richtwaarde: 0,162 \u03a9\/m \u2192 0,42 \u00b0C\/m voor Pt100. Als alternatief kan een uitvoering met Pt1000-sensor worden gekozen, waarbij de invloed van de toevoerleiding (bij 0,04 \u00b0C\/m) met een factor 10 kleiner is. De invloed van de loodweerstand ten opzichte van de basisweerstand R25 bij een NTC-meetelement is veel minder merkbaar. Door de hellingskarakteristiek van de NTC neemt de invloed bij hogere temperaturen onevenredig toe bij hogere temperaturen.<br \/>\n<\/span><\/span><\/p>\n<h2>Conclusie<\/h2>\n<p>In geval van grote hoeveelheden is het gebruik van NTC-sensoren nog steeds gerechtvaardigdheid uit kostenoverwegingen. Voor kleine tot middelgrote partijen adviseer ik het gebruik van een platina meetweerstand. Het gebruik van een Pt1000 in dunne-film technologie is een perfect compromis tussen de kosten enerzijds en de meetnauwkeurigheid anderzijds. In de volgende tabel heb ik de sterke en zwakke punten van de verschillende meetelementen in een overzicht voor u samengesteld:<\/p>\n<table style=\"background-color: #686663\" border=\"1\">\n<tbody>\n<tr style=\"height: 49px\">\n<td style=\"background-color: #d9d9d9;height: 49px\"><strong> Sterke en zwakke punten van verschillende sensoren<br \/>\n<\/strong><\/td>\n<td style=\"background-color: #d9d9d9;height: 49px\">NTC<\/td>\n<td style=\"background-color: #d9d9d9;height: 49px\">Pt100\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 49px\">\u00a0PT1000<\/td>\n<td style=\"background-color: #d9d9d9;height: 49px\">\u00a0Ni1000<\/td>\n<td style=\"background-color: #d9d9d9;height: 49px\">KTY\u00a0<\/td>\n<\/tr>\n<tr style=\"height: 50px\">\n<td style=\"background-color: #d9d9d9;height: 50px\">Temperatuurbereik<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">\u00a0&#8211;<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">\u00a0&#8211;<\/td>\n<\/tr>\n<tr style=\"height: 50px\">\n<td style=\"background-color: #d9d9d9;height: 50px\">Nauwkeurigheid<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">\u00a0&#8211;<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">&#8211;\u00a0<\/td>\n<\/tr>\n<tr style=\"height: 50px\">\n<td style=\"background-color: #d9d9d9;height: 50px\">Lineariteit<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">&#8211;\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<\/tr>\n<tr style=\"height: 50px\">\n<td style=\"background-color: #d9d9d9;height: 50px\">Stabiliteit op lange termijn<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<\/tr>\n<tr style=\"height: 50px\">\n<td style=\"background-color: #d9d9d9;height: 50px\">Internationale normen<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">&#8211;\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">&#8211;\u00a0<\/td>\n<\/tr>\n<tr style=\"height: 50px\">\n<td style=\"background-color: #d9d9d9;height: 50px\">Temperatuurgevoeligheid (dR\/dT)<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">&#8211;\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<\/tr>\n<tr style=\"height: 50px\">\n<td style=\"background-color: #d9d9d9;height: 50px\">Invloed van de toevoerleiding<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">++\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">&#8211;\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<td style=\"background-color: #d9d9d9;height: 50px\">+\u00a0<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<h2>Karakteristieke curven van Pt100, Pt1000, NTC, KTY en Ni1000<\/h2>\n<p>De karakteristieke krommen van de verschillende meetelementen zijn te zien in het volgende overzicht:<\/p>\n\n      <div class=\"wp-caption alignnone\" style=\"max-width:846px;\"><a href=\"https:\/\/blog.wika.com\/de\/files\/2015\/12\/blog_2015-10_kennlinienmesselemente_rdss.jpg\"><img decoding=\"async\" src=\"https:\/\/blog.wika.com\/de\/files\/2015\/12\/blog_2015-10_kennlinienmesselemente_rdss-838x471.jpg\" alt=\"Kenmerkende krommen van de verschillende sensoren\" \/><\/a><p class=\"wp-caption-text\">Kenmerkende krommen van de verschillende sensoren<\/p><\/div>\n    \n<p><strong><br \/>\nOpmerking<\/strong><br \/>\nOnze <a href=\"https:\/\/www.wika.nl\/industries_machine_building_and_automation_nl_bx.WIKA\" rel=\"external\" target=\"_blank\">temperatuursensoren voor de machinebouw<\/a> zijn leverbaar met alle gangbare meetelementen. Meer informatie vindt u op de website van WIKA.<\/p>\n<p>Meer informatie over de functionaliteit van weerstandsthermometers met Pt100- en Pt1000-sensoren vindt u in de volgende video:<\/p>\n<div data-fullscreen=\"disabled\" data-mode=\"normal\" data-oembed=\"1\" data-provider=\"youtube\" data-reset-after-played id=\"arve-youtube-hxmytpddn7g\" style=\"max-width:900px;\" class=\"arve\">\n<div class=\"arve-inner\">\n<div style=\"aspect-ratio:500\/281\" class=\"arve-embed arve-embed--has-aspect-ratio\">\n<div class=\"arve-ar\" style=\"padding-top:56.200000%\"><\/div>\n<p>\t\t\t<iframe allow=\"accelerometer &apos;none&apos;;autoplay &apos;none&apos;;bluetooth &apos;none&apos;;browsing-topics &apos;none&apos;;camera &apos;none&apos;;clipboard-read &apos;none&apos;;clipboard-write;display-capture &apos;none&apos;;encrypted-media &apos;none&apos;;gamepad &apos;none&apos;;geolocation &apos;none&apos;;gyroscope &apos;none&apos;;hid &apos;none&apos;;identity-credentials-get &apos;none&apos;;idle-detection &apos;none&apos;;keyboard-map &apos;none&apos;;local-fonts;magnetometer &apos;none&apos;;microphone &apos;none&apos;;midi &apos;none&apos;;otp-credentials &apos;none&apos;;payment &apos;none&apos;;picture-in-picture;publickey-credentials-create &apos;none&apos;;publickey-credentials-get &apos;none&apos;;screen-wake-lock &apos;none&apos;;serial &apos;none&apos;;summarizer &apos;none&apos;;sync-xhr;usb &apos;none&apos;;web-share;window-management &apos;none&apos;;xr-spatial-tracking &apos;none&apos;;\" allowfullscreen=\"\" class=\"arve-iframe fitvidsignore\" credentialless data-arve=\"arve-youtube-hxmytpddn7g\" data-lenis-prevent=\"\" data-src-no-ap=\"https:\/\/www.youtube-nocookie.com\/embed\/HXMytpddn7g?feature=oembed&amp;iv_load_policy=3&amp;modestbranding=1&amp;rel=0&amp;autohide=1&amp;playsinline=0&amp;autoplay=0&amp;enablejsapi=1\" frameborder=\"0\" height=\"505.8\" loading=\"lazy\" name=\"\" referrerpolicy=\"strict-origin-when-cross-origin\" sandbox=\"allow-scripts allow-same-origin allow-presentation allow-popups allow-popups-to-escape-sandbox\" scrolling=\"no\" src=\"https:\/\/www.youtube-nocookie.com\/embed\/HXMytpddn7g?feature=oembed&#038;iv_load_policy=3&#038;modestbranding=1&#038;rel=0&#038;autohide=1&#038;playsinline=0&#038;autoplay=0&#038;enablejsapi=1\" title=\"How does a resistance thermometer work? | Resistance thermometers per IEC 60751\" width=\"900\"><\/iframe><\/p><\/div>\n<\/p><\/div>\n<p>\t<script type=\"application\/ld+json\">{\"@context\":\"http:\\\/\\\/schema.org\\\/\",\"@id\":\"https:\\\/\\\/blog.wika.com\\\/nl\\\/kennis\\\/pt100-pt1000-of-ntc-welke-is-de-juiste-sensor\\\/#arve-youtube-hxmytpddn7g\",\"type\":\"VideoObject\",\"embedURL\":\"https:\\\/\\\/www.youtube-nocookie.com\\\/embed\\\/HXMytpddn7g?feature=oembed&iv_load_policy=3&modestbranding=1&rel=0&autohide=1&playsinline=0&autoplay=0&enablejsapi=1\",\"name\":\"How does a resistance thermometer work? | Resistance thermometers per IEC 60751\",\"thumbnailUrl\":\"https:\\\/\\\/i.ytimg.com\\\/vi\\\/HXMytpddn7g\\\/hqdefault.jpg\",\"uploadDate\":\"2019-03-08T15:11:46Z\",\"author\":\"WIKA Group\",\"description\":\"What exactly is a resistance thermometer, a Pt100 or a Pt1000 sensor? How do Pt100 and Pt1000 resistance sensors differ? These and other important differences are explained in this video about electrical thermometers.\\n\\n#Temperature #ProcessControl #Thermometer #TemperatureMeasurement #IndustrialAutomation\\n\\n\\u25ac Contents of this video \\u25ac\\u25ac\\u25ac\\u25ac\\u25ac\\u25ac\\u25ac\\u25ac\\u25ac\\u25ac\\u25ac\\u25ac \\n0:00 Intro \\n0:12 Resistance thermometer working principle\\n0:47 Platinum resistance thermometer range\\n1:21 RTD: accuracy and standard measuring range\\n1:57 Pt100 temperature sensor: an industrial standard\\n2:10 Pt1000 and Pt25: for special cases\\n\\u00a0\\nUsually, two different types of electrical thermometers are used in industrial applications \\u2013 resistance thermometers and thermocouples. How thermocouples work is explained in this video:  With resistance thermometers, the temperature is determined using an ohmic measuring resistor. The \\u201cPt\\u201d in Pt100 stands for the chemical element platinum, the next digit indicates the resistance value of the sensor at zero degrees Celsius. The most frequently used measuring resistor, the Pt100, therefore has an electrical resistance of 100 \\u03a9 (ohms) at 0 \\u00b0C. In special applications, Pt1000 temperature sensors are also used. As the temperature drops or rises, the electrical resistance changes \\u2013 following a defined characteristic curve which is regulated by international standards. The temperature can be determined very precisely on the basis of the measured resistance.\\n\\u00a0\\nAccuracy and measuring ranges of Pt100\\\/Pt1000 temperature probes\\nAs with the traditional dial thermometer (see also our video for correct reading of thermometers:  the resistance thermometer has different accuracy classes. The following applies: The more accurately a resistance thermometer should measure, the more limited its permissible measuring range is. Likewise, you must also consider the type (design) of the measuring resistor.\\nIs a thin-film or wire-wound resistor used? Depending on the measuring resistor selected, there are different temperature measuring ranges based on the IEC 60751 standard. For example, class B wire-wound resistance thermometers have a defined measuring range of -196 \\u00b0C to a maximum of 600 \\u00b0C. If the temperature exceeds or drops below this range, the measured values of the temperature sensors begin to drift so they no longer measure within the defined accuracy and thus the measuring result is falsified. With the current level of technology, for thin-film sensors, this drift is stronger than with wire-wound sensors.\\n\\u00a0\\nFurther information on Pt100 and Pt1000 sensors can be found on our website: \\n\\u00a0\\n\\ud83d\\uded2 With WIKA, you can configure and order the most common resistance thermometers directly in the online shop:  \\n\\n\\ud83c\\udf10 You can find an overview of all resistance thermometers on our website: \\n\\u00a0\\n\\ud83d\\udcd6 Would you like to learn more about resistance thermometers? Then read our blog ( or the technical information on the subject \\u201cOperating limits and accuracies of platinum resistance thermometers per DIN EN IEC 60751\\u201d (\\n\\n-------------------------------------------------------------------------------\\n\\nFollow us on our social media channels:\\n\\ud83d\\udcfa YouTube: \\n\\u2705 LinkedIn:\"}<\/script><\/p>\n<\/div>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Vooral de machinebouw vraagt mij vaak welke het juiste meetelement voor hen is. Daarom wil ik in dit artikel de verschillen tussen de meest gebruikte sensoren Pt100, Pt1000 en NTC uitleggen. In de vergelijking aan het eind van dit artikel zal ik meer in detail ingaan op de minder gebruikte meetelementen Ni1000 en KTY sensoren. [&hellip;]<\/p>\n","protected":false},"author":267,"featured_media":6881,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[5],"tags":[321,319,320,324,323,322],"class_list":["post-6880","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-kennis","tag-ntc","tag-pt100","tag-pt1000","tag-temperatuur","tag-thermokoppel","tag-weerstandsthermometer"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.2 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Pt100, Pt1000 of NTC \u2013 welke is de juiste sensor? - WIKA blog<\/title>\n<meta name=\"description\" content=\"Welke sensor is het beste voor uw toepassingsgebied? 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