The Revvity 2 mL 96-Well Garnet Bead Plates, 0.7 mm, 10 Pack (27-6008), are polypropylene deep well plates pre-filled with an optimised quantity of 0.7 mm garnet beads. Designed for use with the Bead Ruptor 96+, they support high-throughput homogenisation, lysis and analyte extraction from sample volumes between 200 µL and 1.5 mL per well.
Key Features
- Pre-filled 0.7 mm garnet bead matrix, removing the need to dispense grinding media into individual wells
- High-throughput 96-well configuration, with a 2.0 mL volume for each deep well
- Flexible 200 µL to 1.5 mL sample range, supporting low-volume plate-based preparation workflows
- U-shaped 8 mm wells, within a plate measuring 127.8 mm wide, 85.5 mm deep and 43.6 mm high
- Polypropylene plate construction, supplied with a silicone and PTFE sealing mat
- Designed for the Bead Ruptor 96+, providing verified compatibility with the high-throughput well-plate homogeniser
- Defined operating limits, with a maximum force rating of 4,000 × g and a temperature range of -80 to 121 °C
- Ten RNase and DNase-free plates per pack, supporting contamination-sensitive molecular sample preparation
Note: For research use only and not for use in diagnostic procedures.
Benefits
- Reduces plate preparation time by eliminating manual bead loading across individual wells.
- Supports simultaneous processing of up to 96 samples for higher-throughput laboratory workflows.
- Helps improve preparation consistency through a manufacturer-optimised quantity of garnet grinding media.
- Supports extraction of DNA, RNA and proteins for subsequent biochemical assays.
- Provides a ready-to-use ten-plate supply for laboratories performing regular bead mill homogenisation.
Why Choose the Revvity 2 mL 96-Well Garnet Bead Plates, 0.7 mm, 10 Pack (27-6008)?
These pre-filled garnet bead plates combine a low-volume 96-well format with verified Bead Ruptor 96+ compatibility for efficient homogenisation, lysis and analyte extraction. John Morris Group supplies Revvity bead mill consumables for laboratories seeking convenient and consistent high-throughput sample preparation.
