Eppendorf twin.tec® PCR Plates 96-well, 250 µl

Supplier: EPPENDORF
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732-0106EA 167 GBP
732-0106 391-2053 391-2052 391-2051 391-2050 737-0165 737-0181 737-0182 713-0020 731-0474 713-0022 713-0023 EPPE0030129.610
Eppendorf twin.tec® PCR Plates 96-well, 250 µl
Microplates PCR Plates
Eppendorf's twin.tec® 96-well, 250 µl PCR Plates feature a polycarbonate frame and thin-walled polypropylene wells ensuring optimal heat transfer and high rigidity. With raised well rims, these plates enable an effective seal, minimizing the risk of cross-contamination and contributing to consistently reliable results.

  • One-piece design: combining a polycarbonate frame and polypropylene wells for optimum performance
  • Extremely thin-walled polypropylene wells guarantee optimum heat transfer to the sample
  • Exceptionally solid and torque-resistant polycarbonate frame
  • Improved well-to-well tolerance
  • Cut-away corner and alphanumeric grid-referencing
  • Raised well rims for effective sealing, also reduces risk of cross-contamination
  • Batch-tested and certified free of DNA, DNase, RNase and PCR inhibitors (PCR clean)

The Eppendorf twin.tec® PCR plate combines extremely thin-walled polypropylene wells for optimal heat transfer to the sample, with robust polycarbonate frames for high rigidity. With raised well rims, twin.tec plates enable highly effective sealing to reduce the risk of cross-contamination.

Twin.tec plates are available in many different formats to suit different workflows and applications, for example: skirted, semi-skirted, and unskirted, divisible plates to avoid waste in small assays, individually wrapped forensic DNA grade plates, microbiology plates, and barcoded plates.

All Eppendorf twin.tec PCR plates are 'PCR clean', having been batch-tested and certified by an independent laboratory to be free of a range of common PCR contaminants, including DNA, DNAse, RNAse, and PCR inhibitors. With twin.tec PCR plates you will have maximum confidence in your results.

Autoclavable: 121 °C, 20 min
Centrifugation stability: 2250×g
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