MICROPLATEN 384 WELL SMALL VOLUME™ HIBASE
384 Well Small Volume HiBase Microplates
Optimized for Top Reading
384 Well Small Volume HiBase Microplates are designed for top‑reading instruments. Their geometry minimizes the distance between the detection optics and the liquid surface, improving signal quality in top‑read fluorescence and luminescence assays - especially at low working volumes.
384 Well Small Volume Microplates
More Data. Less Reagent. Maximum Throughput.
When assay miniaturization meets real‑world lab workflows, 384 Well Small Volume microplates deliver the perfect balance. They enable significant reagent and sample savings - approaching the efficiency of 1536 well formats - while maintaining the standard ANSI/SLAS footprint required for seamless compatibility with existing automation, readers, and liquid handling systems. Designed for modern high‑throughput screening (HTS), these plates help you scale efficiently without compromising data quality.
Key Benefits of 384 Well Small Volume Microplates
Near‑1536 Well Savings
Working volumes of ~4–25 µl per well deliver reagent and sample savings comparable to 1536 well plates without extensive assay re‑optimization.
High Throughput, Full Compatibility
The standard ANSI/SLAS footprint ensures seamless use with existing liquid handlers, dispensers, sealers, and plate readers.
Reliable Performance at Low Volumes
Optimized round, conical wells with flat bottoms enable accurate pipetting, minimal dead volume, and robust signals even at very low fill volumes.
Excellent Optical Readout
Designed for top and bottom reading, these plates support fluorescence, luminescence, transmission, and imaging applications with low background and cross‑talk.
Verwante Documenten
Application notes / PDF, 451 KB
Wetenschappelijke publicaties / PDF, 479 KB
Wetenschappelijke publicaties / PDF, 3 MB
Wetenschappelijke publicaties / PDF, 3 MB
Wetenschappelijke publicaties / PDF, 445 KB
Wetenschappelijke publicaties / PDF, 3 MB
Application notes / PDF, 1 MB
Wetenschappelijke publicaties / PDF, 2 MB