{"id":20386,"date":"2025-12-02T16:00:47","date_gmt":"2025-12-02T15:00:47","guid":{"rendered":"https:\/\/micromega-dynamics.com\/what-is-the-vibration-range-of-a-sensorg\/"},"modified":"2026-07-30T11:05:33","modified_gmt":"2026-07-30T09:05:33","slug":"what-is-the-vibration-range-of-a-sensorg","status":"publish","type":"post","link":"https:\/\/micromega-dynamics.com\/de\/what-is-the-vibration-range-of-a-sensorg\/","title":{"rendered":"Was ist der Vibrationsbereich eines Sensors (g)?"},"content":{"rendered":"<p>[et_pb_section fb_built=&#8220;1&#8243; admin_label=&#8220;section&#8220; _builder_version=&#8220;4.16&#8243; global_colors_info=&#8220;{}&#8220;][et_pb_row admin_label=&#8220;Zeile&#8220; _builder_version=&#8220;4.16&#8243; background_size=&#8220;initial&#8220; background_position=&#8220;top_left&#8220; background_repeat=&#8220;repeat&#8220; global_colors_info=&#8220;{}&#8220;][et_pb_column type=&#8220;4_4&#8243; _builder_version=&#8220;4.16&#8243; custom_padding=&#8220;|||&#8220; global_colors_info=&#8220;{}&#8220; custom_padding__hover=&#8220;|||&#8220;][et_pb_image src=&#8220;https:\/\/micromega-dynamics.com\/files\/uploads\/2025\/09\/Sans-titre-2000-x-800-px-1600-x-900-px-1.jpg&#8220; alt=&#8220;Was ist der Vibrationsbereich eines Sensors (g)?&#8220; title_text=&#8220;Ohne Titel (2000 x 800 px) (1600 x 900 px) (1)&#8220; _builder_version=&#8220;4.27.4&#8243; _module_preset=&#8220;default&#8220; global_colors_info=&#8220;{}&#8220;][\/et_pb_image][et_pb_text admin_label=&#8220;Text&#8220; _builder_version=&#8220;4.27.4&#8243; background_size=&#8220;initial&#8220; background_position=&#8220;top_left&#8220; background_repeat=&#8220;repeat&#8220; global_colors_info=&#8220;{}&#8220;]<\/p>\n<p>In der Schwingungsanalyse bezieht sich das Symbol <b>g<\/b> auf die Erdbeschleunigung, die <b>9,81 m\/s\u00b2<\/b> entspricht. Die Angabe von Vibrationswerten in g erleichtert den Vergleich und die Quantifizierung von Schwingungen in Maschinen oder Strukturen. <\/p>\n<p>Der <b>Vibrationsbereich<\/b> definiert das Intervall der Beschleunigung, das ein Sensor genau messen kann. Ein niedriger Bereich, z.B. \u00b12 g, ist ideal f\u00fcr leichte Vibrationen, w\u00e4hrend h\u00f6here Bereiche, z.B. \u00b150 g oder \u00b1200 g, f\u00fcr schwere Maschinen oder Ersch\u00fctterungen ben\u00f6tigt werden. Es ist wichtig zu beachten, dass das Sensorrauschen mit dem <g id=\"gid_1\">Vibrationsbereich<\/g> zunimmt. Die Wahl des richtigen Bereichs ist von entscheidender Bedeutung: ist er zu niedrig, geht der Sensor in die S\u00e4ttigung; ist er zu hoch, werden kleine Abweichungen weniger sichtbar.   <\/p>\n<p>Micromega Dynamics bietet Sensoren mit unterschiedlichen Reichweiten f\u00fcr verschiedene Anwendungsf\u00e4lle:<\/p>\n<ul>\n<li>Die<a href=\"https:\/\/micromega-dynamics.com\/de\/products\/recovib\/miniature-vibration-recorder\/\"> <b>Recovib Tiny<\/b><\/a><b><\/b> ist ein tragbarer Sensor, der in drei Versionen erh\u00e4ltlich ist: <b>\u00b12 g \/ \u00b16 g<\/b>, <b>\u00b115 g<\/b> und <b>\u00b1200 g<\/b>. Dank dieser Flexibilit\u00e4t eignet er sich sowohl f\u00fcr empfindliche \u00dcberwachungsaufgaben als auch f\u00fcr industrielle Umgebungen mit hoher Beanspruchung. <\/li>\n<li>Die <b><a href=\"https:\/\/micromega-dynamics.com\/de\/products\/recovib\/usb-accelerometer\/\">Recovib Feel<\/a><\/b> ist f\u00fcr den praktischen Einsatz konzipiert und kann direkt an einen PC oder ein Smartphone angeschlossen werden. Damit ist es ideal f\u00fcr schnelle Diagnosen, Fehlersuche und Laboranwendungen. Es ist in den Versionen \u00b12 g \/ \u00b16 g und \u00b115 g erh\u00e4ltlich. <\/li>\n<li>Die <a href=\"https:\/\/micromega-dynamics.com\/de\/products\/recovib\/industrial-accelerometers\/\"><b>Recovib Beschleunigungssensoren<\/b><\/a> sind in einer breiten Palette von Optionen erh\u00e4ltlich, von <b>\u00b12 g<\/b> bis <b>\u00b1400 g<\/b>, je nach Modell. Diese gro\u00dfe Flexibilit\u00e4t macht es einfach, den optimalen Sensorbereich f\u00fcr jede spezifische Anwendung zu w\u00e4hlen. <\/li>\n<\/ul>\n<p>Durch die Auswahl des richtigen g-Bereichs f\u00fcr jede Anwendung stellen Ingenieure eine zuverl\u00e4ssige Datenerfassung sicher und vermeiden kostspielige Ausfallzeiten oder Fehlinterpretationen.<\/p>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][\/et_pb_section]<\/p>\n","protected":false},"excerpt":{"rendered":"<p>In der Schwingungsanalyse bezieht sich das Symbol g auf die Erdbeschleunigung, die 9,81 m\/s\u00b2 entspricht. Die Angabe von Vibrationswerten in g erleichtert den Vergleich und die Quantifizierung von Schwingungen in Maschinen oder Strukturen. Der Vibrationsbereich definiert das Intervall der Beschleunigung, das ein Sensor genau messen kann. Ein niedriger Bereich, z.B. \u00b12 g, ist ideal f\u00fcr [&hellip;]<\/p>\n","protected":false},"author":13,"featured_media":19485,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_et_pb_use_builder":"on","_et_pb_old_content":"<img class=\"alignnone size-large wp-image-19255\" src=\"https:\/\/micromega-dynamics.com\/files\/uploads\/2025\/09\/Design-sans-titre-2-1024x576.jpg\" alt=\"Inclinometer\" width=\"1024\" height=\"576\" \/>\r\n\r\nAn inclinometer, sometimes called a tilt sensor, is a device that measures the angle of slope or inclination relative to gravity. It is used when engineers, builders or technicians need to know how much a structure, surface or machine is tilting. Modern inclinometers are compact, accurate, and based on MEMS (Micro-Electro-Mechanical Systems) technology, making them easy to integrate into field equipment.\r\n<h2><strong>How it works<\/strong><\/h2>\r\nThe principle is simple: gravity acts on the sensing element inside the device. This displacement is converted into an electrical signal, which is then processed to calculate the angle of tilt. Depending on the design, inclinometers can measure one or two axes. They provide a direct reading of tilt angle, usually in degrees or radians, and are valued for their precision and robustness even in demanding environments.\r\n<h2><strong>Where inclinometers are used<\/strong><\/h2>\r\nIn construction and civil engineering, inclinometers help monitor the stability of buildings, bridges and tunnels. They are used during excavation or demolition to track slope angles and avoid structural damage. On geotechnical sites, they detect ground movement, monitor dams and embankments, and give early warning of landslides.\r\n\r\nA concrete example is the monitoring of <a href=\"https:\/\/micromega-dynamics.com\/project\/slender-structures\/\">slender structures<\/a>, where inclinometers play a crucial role in ensuring stability.\r\n<h2><strong>Inclinometer vs accelerometer<\/strong><\/h2>\r\nAlthough related, these two sensors have different roles. An accelerometer measures acceleration and vibrations, while an inclinometer measures tilt relative to gravity.\u00a0Discover more about our <a href=\"https:\/\/micromega-dynamics.com\/products\/recovib\/industrial-accelerometers\/\">industrial accelerometers<\/a> for vibration analysis.\r\n<h2><strong>Choosing the right inclinometer<\/strong><\/h2>\r\nThe best inclinometer depends on the level of accuracy required, the number of axes to be measured, the measurement range (\u00b0), the environmental conditions, and the way data will be collected.\u00a0For field work, robustness and easy installation are often essential. For laboratory or long-term monitoring, high resolution and integration with cloud platforms can make the difference.\r\n\r\nIf you need a reliable solution for tilt\u00a0monitoring, explore our <a href=\"https:\/\/micromega-dynamics.com\/products\/recovib\/inclinometers\/\">Recovib Inclinometers<\/a>.","_et_gb_content_width":"","footnotes":""},"categories":[112],"tags":[],"class_list":["post-20386","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-nicht-kategorisiert"],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v27.5 (Yoast SEO v27.5) - https:\/\/yoast.com\/product\/yoast-seo-premium-wordpress\/ -->\n<title>Was ist ein Neigungsmesser? 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