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96-Round Well, V Bottom, MicroPlates
Huge round top wells (with conical V-bottom) provide easier access and up to 480 µL per well of working volume in this short (14.4mm high) micro-plate.
Manufactured from chemically resistant and inert virgin polypropylene, this plate is optimized for sample collection; combinatorial chemistry; library applications, bacterial and yeast growth, storage, and sample recovery.
The V-bottom design helps to concentrate reagents and samples, by minimizing the amount of both needed. It also improves sample recovery, while larger diameter wells improve sample access and overall volume.
The sturdy design and ANSI/SLAS 2004 compliant footprint (SBS) allow for automated usage with grippers, stackers, and heater/cooler blocks.
Raised rims on each well make for easy and secure sealing with adhesive films, silicone mats, or heat-sealing films, help prevent cross-contamination, and reduce sample loss in storage.
Lot to lot tested and certified to be free of RNase, DNase, and Pyrogen contamination.
384-well transparent tissue-culture treated (TC-treated) microplate for cell-based absorbance (colorimetric) assays.
Glass Coated Plate, 96 Square Well U-Bottom 41.60mm Height, 2.0mL
- Reduced binding
- Increase chemical resistance
- Protect the same from any potential compounds leached from the plastic.
- Unique square top with round bottom design allows for maximum volume, optimum mixing, and enhanced recovery
- Separated round well bottoms allow for the use of ring or post style magnetic plates.
- Raised rims on each well make for easy and secure sealing with adhesive films, silicone mats, or heat sealing films
- Manufactured from virgin polypropylene (no mold release agents or regrind)
- Certified to be free of RNase, DNase, and Pyrogen contamination.
Specifications:
384-well white tissue culture-treated (TC-treated) sterile microplate for cell-based assays.
Deep Well Plate Round Well U-bot 2mL
Specifications:
96-Deep Well Plate, Round Well, U Bottom 42mm
This round deep-well U-bottom plate combines 1.2 mL working volume with automation friendly design. Sturdy and warp-resistant design with ultra-flat surfaces and rigid construction, this plate is ideal for high throughput screening, sample collection, compound storage, screening, and combinatorial chemistry applications. It is compatible with stackers, grippers, heater/cooler blocks, and other instruments that comply with the ANSI/SLAS 2004-1 (SBS) footprint.
Raised rims on each well help protect from cross-contamination, minimize sample loss during storage, and make for enhanced sealing with adhesive films, silicone mats, or heat sealing films. Manufactured of inert, chemically resistant, and exceptionally clear virgin polypropylene.
Made from medical grade virgin polypropylene (no mold release agents or regrind); certified RNase, DNase, DNA, and Pyrogen Free.
- Uniform wall thickness
- Easy well identification with molded in alpha-numeric position markings
- Raised rims for easy and secure sealing with adhesive films, silicone mats, or heat sealing films
- Raised rims help protect from cross contamination
24-Square Well, U-Bottom 44 mm Plate
Our 10.0 mL and 15.0 mL 24-well plates are ideal for growing bacterial cultures and for sample purification with magnetic beads, utilizing manual and automated systems.
The unique square top with round bottom design allows for optimum mixing and enhanced recovery of magnetic beads. Separated round well bottoms allow for the use of post or ring-style magnetic plates.
Automation-compliant footprint and rigid construction allow for use on automation platforms with most robotic grippers.
Raised rims on each well make for easy and secure sealing with adhesive films, silicone mats, or heat-sealing films.
Made from Virgin Polypropylene (no mold release agents or regrind); certified RNase, DNase, DNA, and Pyrogen Free.
- Uniform wall thickness
- Easy well identification with molded-in alpha-numeric position markings
- Large sidewalls for easy labeling
- Square well design maximizes sample volume to well ratio while still complying with ANSI/SLAS 6-2012 I