Did you know that certain Hamilton sensors can be used in ATEX environments for industrial separation and drying processes? Read our application note to find out how RIERA NADEU utilized Hamilton’s VisiFerm mA Optical Sensors to measure very low oxygen levels within their ATEX (explosive atmospheres) applications. The VisiFerm mA’s compact design simplified installation and resolved sensor placement concerns, while its integrated Arc features, combined with Bluetooth communication to ArcAir software on their mobile devices, streamlined sensor maintenance. Read the full application note here: https://hubs.li/Q04qbvWz0 #HamiltonCompany #ProcessAnalytics #ATEX #ProcessSensors #ChemicalIndustry
Hamilton Process Analytics
Biotechnologieforschung
Bonaduz, Graubünden 15.654 Follower:innen
Hamilton Process Analytics - Pionier auf dem Gebiet der Messtechnik.
Info
Der Bereich Process Analytics ist eine Geschäftseinheit von Hamilton, ein führendes Unternehmen auf dem Gebiet der Messtechnik und für Liquid-Handling-Lösungen. Bei Hamilton Process Analytics treiben wir die Entwicklung offener Lösungen voran, um das Verständnis und die Kontrolle kritischer Prozessparameter zu verbessern. Die enge Kooperation mit unseren Kunden stärkt unsere Vision: exzellente Messtechnik, die nahtlos mit der Infrastruktur von heute und den Möglichkeiten von morgen zusammenarbeitet.
- Website
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https://www.hamiltoncompany.com/process-analytics
Externer Link zu Hamilton Process Analytics
- Branche
- Biotechnologieforschung
- Größe
- 1.001–5.000 Beschäftigte
- Hauptsitz
- Bonaduz, Graubünden
- Gegründet
- 1968
- Spezialgebiete
- pH sensors, dissolved oxygen sensors, conductivity sensors, ORP/redox sensors, cell density sensors, intelligent sensors, sensors for biopharma, sensors for brewing/fermentation, sensors for biotech, sensors for cultivated food, sensors for PAT und GMP
Updates
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This MSc thesis investigates a dynamic carbonate-system model for predicting pH in microalgae photobioreactors across a range of salinities—an important capability for soft-sensor development and pH control. The study included Hamilton’s CO2NTROL RS485 120 dissolved CO₂ sensor to evaluate whether direct, liquid-phase CO₂ measurement could serve as an input for the model alongside off-gas analysis and electrical-conductivity data. While the off-gas CO₂ signal delivered the stronger model fit in this experimental setup, the work demonstrates the relevance of online dissolved-CO₂ monitoring for characterizing carbonate dynamics and enabling sensor-driven process models in saline photobioreactor systems. The thesis also identifies opportunities to further improve direct CO₂-based predictions through signal smoothing and low-concentration offset correction. Read the full thesis here: https://hubs.li/Q04r17Wb0 #Microalgae #Photobioreactors #DissolvedCO2 #SoftSensors #ProcessMonitoring #Bioprocessing #HamiltonCompany #CO2NTROL
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Here at Hamilton Process Analytics, we’re proud to help customers gain deeper process insights with reliable, intelligent sensor technologies. But Hamilton’s expertise reaches far beyond process sensors. Across Hamilton, our teams develop precision solutions that support scientists and other industry professionals throughout their workflows, from precision syringes and laboratory products to automated liquid handling, laboratory robotics, sample storage, and workflow automation. Whether you work in bioprocessing, analytical chemistry, genomics, biobanking, drug discovery, or another area of life sciences, there is more to explore from Hamilton. Follow Hamilton Company and our other Hamilton pages to stay connected with the innovations, expertise, and solutions being developed across our organization. ➡️ Hamilton Robotics | Hamilton Robotics EMEA ➡️ Hamilton Lab Products (Americas & Pacific) | Hamilton Lab Products & OEM Components (EMEA) ➡️ Hamilton Lab Solutions | Hamilton Lab Solutions EMEA ➡️ Hamilton Storage #HamiltonCompany #ProcessAnalytics #LabAutomation #LiquidHandling #Robotics #SampleManagement #LifeSciences #Bioprocessing #ScientificInnovation
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📣Hamilton's new Arc Wi Pivot: Flexible, secure sensor integration that fits any installation.📣 Arc Wi Pivot gives you a compact, pivoting adapter that improves installation freedom and delivers clean, stable 4–20 mA signals with galvanic isolation. It supports wireless setup through encrypted Bluetooth on selected models or fully wired operation where required. The family works with all Arc VP‑head sensors and simplifies configuration, calibration, and troubleshooting in ArcAir. With the Arc Wi Pivot, customers move from tight, inconsistent installations to a secure and flexible process‑ready setup. Find out more: https://hubs.li/Q04q98NG0 #HamiltonCompany #ArcWiPivot #ProcessSensors #ProcessAnalytics
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We’re looking forward to attending the SIMB Annual Meeting and Exhibition! Join Hamilton at booth #1 in Austin as the industrial microbiology and biotechnology community comes together to share research, exchange ideas, and explore the technologies advancing the field. Whether you’re focused on fermentation, bioprocess development, industrial biotechnology, or microbial innovation, our team is ready to discuss in-line sensor solutions that can help support reliable, efficient workflows. 📍 Austin Marriott Downtown | Austin, Texas 📅 August 2–5, 2026 🔬 Hamilton booth #1 Stop by to connect with our team, we look forward to seeing you there. #SIMB2026 #IndustrialMicrobiology #Biotechnology #Fermentation #Bioprocessing #LifeSciences #HamiltonCompany
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Download our updated Liquid Calibration Solutions brochure to get an overview of Hamilton’s liquid calibration solutions for pH, ORP, and conductivity sensors, including certified buffers and standards designed to support accurate measurements and reliable calibration in laboratory and process environments. Calibration is essential to every analytical process. Hamilton calibration solutions provide exceptional accuracy and precision, along with certifications that meet the most stringent standards, ensuring that you not only set your measurements but also secure your compliance. Download the updated brochure now: https://hubs.li/Q04q99-10 #HamiltonCompany #CalibrationSolutions #ProcessAnalytics #Buffers #pHSensors #SensorCalibration
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Industrial ethanol production depends on healthy, active yeast, but traditional off-line measurements can delay critical process decisions. Our new application note highlights how in-line permittivity monitoring with the Incyte Arc sensor enables real-time tracking of viable yeast cell density (VCD), giving operators immediate insight into fermentation health. In a pilot-scale study with Cargill, the sensor: • Closely correlated with off-line viable cell counts during yeast growth • Detected the loss of viable yeast under heat stress in real time, even when traditional cell counts showed little change • Demonstrated the potential to support faster process optimization and future sensor-driven automation Real-time visibility into yeast viability can help improve fermentation efficiency, reduce process risk, and support better operational decisions. Read the full application note to see how in-line permittivity monitoring is advancing industrial ethanol fermentation: https://hubs.li/Q04pbkp20 #IndustrialFermentation #Biofuels #EthanolProduction #Bioprocessing #ProcessAnalytics #PAT #Fermentation #Yeast #Hamilton #IncyteArc
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In bioethanol production, every stage matters, from saccharification and liquefaction through fermentation, distillation, and final dehydration. Consistent product quality and process efficiency depend on having reliable, real-time insight into what’s happening inside the process. Hamilton's sensor portfolio is designed to provide that visibility across the entire bioethanol workflow. By delivering accurate in-line measurements, operators can: ✅ Optimize fermentation performance ✅ Monitor yeast health and propagation ✅ Improve process stability and consistency ✅ Support higher yields and operational efficiency ✅ Make data-driven decisions in real time From grain to bioethanol, reliable process analytics help producers maximize productivity while maintaining control over critical process conditions. Discover Hamilton's sensors that support bioethanol processing with robust, intelligent measurement technology: https://hubs.ly/Q04kCrVG0 #Bioethanol #Fermentation #ProcessAnalytics #Bioprocessing #IndustrialBiotechnology #RenewableEnergy #HamiltonCompany #ProcessControl #EthanolProduction
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Hamilton's GlucoSense sensor offers a pioneering solution: an easy-to-use, robust, optical MIR glucose sensor designed for real-time, in-situ monitoring of glucose in mammalian cell culture bioreactors. The need for external spectrometers and complex calibrations is eliminated, enabling accurate measurements and faster process development. Compatible with existing PG13.5 bioreactor ports and various cleaning processes, the GlucoSense sensor streamlines your workflow, reduces manual errors, and enhances process reproducibility. What you can expect: 📈Real-Time Insights from Day 1: Monitor mammalian cell cultures immediately with accurate, in-situ glucose data, and customizable data collection frequency. ✅Unmatched Ease of Use: Achieve precise glucose measurements with simple in-situ process calibration, no specialized expertise or equipment needed. Learn more and request a quote today: https://hubs.li/Q04n6k9G0 #HamiltonCompany #ProcessAnalytics #CellCulture #Glucose #Bioprocess
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This study on in situ cell detachment in microcarrier cultures highlights the value of Hamilton’s Incyte Arc capacitance sensor as a real-time process analytical technology (PAT) tool. The authors demonstrated that capacitance-based monitoring could track the detachment progress during Trypsinization and support early prediction of detachment outcomes using signals collected within the first minutes of the process. This approach reduces reliance on offline sampling and microscopy while improving process visibility, decision-making, and control in microcarrier-based cell culture workflows. The work further reinforces the role of online capacitance measurement in enabling more robust and scalable bioprocess operations. Read the full article here: https://hubs.ly/Q04kLLky0 #Bioprocessing #PAT #CapacitanceMonitoring #CellCulture #MicrocarrierCulture #Biomanufacturing #HamiltonCompany #IncyteArc
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