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Surface Plasmon Resonance Analysis
Surface plasmon resonance (SPR) is an optical-based, label-free detection technology for real-time monitoring of binding interactions between two or more molecules. The throughput, flexibility and sensitivity of the SPR platform gives researchers the potential to characterize biomolecular interactions in any binding study.
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Manual Label-Free Molecular Interaction Analysis Machine, Flexible Research Platform
OpenPleX
Designed to meet the demands of biologists, biochemists and biophysicists, the OpenPlex is a flexible surface plasmon resonance imaging system.OpenPlex is your companion for the development of label-free and multiplexed bio-assays and molecule detection. It is a robust and compact system designed for simple use and high versatility. Its open format, dedicated sensor chips and manual operation enable numerous types of experiments to be explored without compromise, covering chemistry, biochemistry, physico-chemistry and biomolecular interactions.
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Simulating Optical Design Components
Wave Optics Module
The Wave Optics Module provides dedicated tools for electromagnetic wave propagation in linear and nonlinear optical media for accurate component simulation and optical design optimization. With this module you can model high-frequency electromagnetic wave simulations in either frequency- or time-domain in optical structures. It also adds to your modeling of optical media by supporting inhomogeneous and fully anisotropic materials, and optical media with gains or losses. It is straightforward to simulate optical sensors, metamaterials, optical fibers, bidirectional couplers, plasmonic devices, nonlinear optical processes in photonics, and laser beam propagation.
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High-Performance Surface Plasmon Resonance System
SPR-32
Features like ‘Frame Inject’ allows for turn-key sample processing protocols and customized workflows created together with pharmaceutical customers. The faster data analysis and highly intuitive user interface combine to deliver an industry-leading SPR throughput of 10,000 control-substracted binding measurements. Combining flexible 8-needle sample delivery with a 32-sensor detection array laid out in 8 detection flow cells, enables 4 sensors per flow cell, an important advantage for controlled, high-throughput SPR methods. The patented Hydrodynamic Isolation™ technology enables ‘Any Sample, Any Sensor, Any Time’, making it the preferred platform for screening, kinetics, thermodynamics and epitope mapping for pharmaceutical applications.