
Endress+Hauser, is a global leader in measurement and automation technology for process and laboratory applications. The family-owned company supports the life sciences industry with process instrumentation, laboratory analysis and digital technologies that provide trusted data across research, process development, quality control and production environments. These insights help manufacturers improve product quality, increase reliability and maintain compliance in regulated environments.
We work closely with life sciences customers to address some of the industry's most pressing challenges, including:
By delivering trusted process data and actionable insights, Endress+Hauser helps manufacturers make informed decisions throughout the production lifecycle.
The life sciences industry is increasingly embracing digitalization to improve manufacturing performance, strengthen compliance and enhance operational decision-making. Endress+Hauser helps organizations connect field instruments, maintenance teams and operational data through an integrated approach to process automation.
Our digital ecosystem combines intelligent instrumentation with advanced diagnostics, verification technologies and cloud-based monitoring tools to help facilities:
Solutions such as Netilion provide centralized access to calibration certificates, maintenance records and equipment health information, helping facilities streamline audits while optimizing asset performance.
Endress+Hauser Raman spectroscopy provides real-time, in situ composition measurement from the laboratory to the manufacturing floor. In life sciences applications, Raman technology can help manufacturers gain deeper process understanding, support PAT and QbD initiatives and improve lab-to-process scalability without relying on frequent manual sampling. Common applications include API reaction monitoring, crystallization, polymorph analysis, blending, granulation, drying, cell culture monitoring, metabolite monitoring, feed control, column loading and elution and downstream bioprocessing.
Endress+Hauser Raman analyzers and probes are designed for laboratory, process development and cGMP manufacturing environments, with options for reusable and single-use bioreactors, flow cells and downstream process streams. Integrated Raman RunTime software, diagnostics, self-monitoring and calibration or verification tools help facilities collect, manage and apply reliable process data across development and production.
Purified Water (PW), Water for Injection (WFI) and clean steam are among the most critical utilities in pharmaceutical and biotechnology manufacturing. Endress+Hauser provides continuous measurement technologies for conductivity, TOC, pressure, flow and temperature to help manufacturers maintain water quality, support compliance and reduce the risk of excursions.
Our portfolio is designed to support regulated manufacturing environments with hygienic instrumentation, traceable data and technologies that align with industry requirements such as USP <643>, USP <645>, ASME BPE and FDA 21 CFR Part 11.
From laboratory development to commercial production, Endress+Hauser supports GMP-regulated single-use and multi-use processes with instrumentation, engineering support and technology transfer expertise that help increase productivity and reduce operational risk.
Advanced diagnostics, Heartbeat Technology and Netilion-based monitoring allow manufacturers to move beyond reactive maintenance strategies by identifying potential issues before they impact production.
How does Raman spectroscopy work and what are its main applications?
Raman spectroscopy is an optical analytical technique that uses laser light to measure the molecular composition of solids, liquids or gases. When laser light interacts with a sample, a small portion of the scattered light shifts in energy. These shifts create a molecular fingerprint that can be used to identify and quantify materials such as solvents, products or substrates. Endress+Hauser Raman systems use this information to provide real-time, in situ process insight without requiring sample preparation.
What are the latest advancements in Raman spectroscopy technology?
Recent advancements in Endress+Hauser Raman spectroscopy focus on making the technology more adaptable for real-time process monitoring, pharmaceutical manufacturing and bioprocessing. Current Raman systems support in situ, non-destructive measurement, fast sampling, lab-to-process transferability and continuous collection of composition data without the need for sample handling systems. Endress+Hauser materials also highlight improvements in probe interfaces, including single-use optics, bio multi-optic and sleeve technology, flow cells and flow benches, which help expand Raman use across upstream and downstream bioprocessing applications.
What are self-calibrating sensors?
Self-calibrating sensors are measurement devices that can automatically verify their calibration status using built-in diagnostics or reference functions. In regulated industries such as pharmaceutical manufacturing, these capabilities can help reduce manual maintenance effort, support documentation and improve confidence in measurement reliability. For life sciences facilities, self-calibrating or self-verifying technologies can be especially useful for critical parameters such as temperature, conductivity, flow, pressure and analytical measurements, where accurate and traceable data supports process control and compliance.
What are the latest innovations in single-use technology for bioprocessing?
Recent Endress+Hauser innovations in single-use bioprocessing focus on making measurement more accurate, flexible and easier to integrate into GMP-regulated manufacturing. One example is the Proline Promass U 500, a single-use Coriolis flowmeter designed for superior flow measurement in single-use applications. Endress+Hauser materials highlight its best-in-class Coriolis accuracy, cGMP compliance, one base unit for multiple disposable line sizes, full digital integration and Heartbeat Technology for automated verification of factory calibration in the field.