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Ceramic Beads Pre-Filled 2 mL 96 Deep Well Plates, 1.4 mm (10/pk)

Omni Bead Ruptor 96 bead mill homogenizer compatible bead beating tubes are pre-filled with an optimized amount of lysing matrix to provide efficient and robust sample homogenates.

Product features:

  • 2.0 mL polypropylene 96 deep well plates. Wells pre-filled with 1.4 mm Ceramic beads
  • Recommended for: Operation on Bead Ruptor 96
  • Certification: RNase & DNase Free

For research use only. Not for use in diagnostic procedures.

Product Variants
Quantity: 10
Part #:
27-6009
List Price
USD 1,342.00
Quantity: 2
Part #:
27-6011
List Price
USD 300.00
Feature Specification
Bead Type or Material Ceramic
Diameter 8.0 mm wells
Instrument Compatibility Bead Ruptor 96
Material Polypropylene Well Plate and Silicone and PTFE Sealing Mat
Sample Volume 400 µL to 1.5 mL
Special Ordering Information 10 pre-filled well plates (1.4 mm ceramic beads) sealed with silicone mats.
Volume 2.0 mL wells
Maximum G Force 4,000 x g
Feature Specification
Bead Type or Material Ceramic
Diameter 8.0 mm wells
Instrument Compatibility Bead Ruptor 96
Material Polypropylene Well Plate and Silicone and PTFE Sealing Mat
Sample Volume 400 µL to 1.5 mL
Special Ordering Information 10 pre-filled well plates (1.4 mm ceramic beads) sealed with silicone mats.
Volume 2.0 mL wells
Maximum G Force 4,000 x g

Overview

  • Pre-filled 2 mL 96 deep well plates with 1.4 mm ceramic beads
  • Recommended for: Operation on Bead Ruptor 96

Specifications

Dimensions 127.8 cm (W) x 85.5 mm (D) x 43.6 mm (H)
Diameter
8.0 mm wells
Plate Format
96 wells
Volume
2.0 mL wells
Well Shape
U-shaped
Accreditations
RNase and DNase Free
Bead Type or Material
Ceramic
Instrument Compatibility
Bead Ruptor 96
Material
Polypropylene Well Plate and Silicone and PTFE Sealing Mat
Maximum G Force
4,000 x g
Quantity
10
Sample Volume
400 µL to 1.5 mL
Special Ordering Information
10 pre-filled well plates (1.4 mm ceramic beads) sealed with silicone mats.
Temperature Range
-80 to 121 °C

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Application Note
High throughput homogenization and DNA extraction from staple crops

Plants are essential to our diet and ecosystem; researchers are constantly working to better understand their genetic makeup and...

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