CO-RE and CO-RE® II Tips
Precision Revolutionized
Introducing Hamilton’s patented CO-RE® II (Compression O-Ring Expansion) tips. Promising continued integrity, precision, and dependability, the new CO-RE II tip design, in combination with the new stop-disk, will enhance existing hardware, extend tip longevity, and improve tip alignment and retention. For decades Hamilton has defined the standard for high-precision liquid handling. Quality engineering, a unique innovation culture combined with first-class service and support has led to cutting edge performance in handling the most challenging liquids.
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CO-RE® II Benefits
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CO-RE II® Tips Traceability & Manufacturing Facilities

Hamilton Pipetting Technologies
Specific Applications
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CO-RE 96 Probe Head Pipetting Specifications with or without TADM Feature
This technical note describes the verification procedure at Hamilton Robotics. It has been applied in the design phase of the Microlab STAR Line to validate the pipetting performance. -
1000 μL Channels Pipetting Specifications
This technical note describes the verification procedure at Hamilton Robotics. It has been applied in the design phase of the Microlab STAR Line to validate the pipetting performance. -
Simultaneous, Automated Extraction of 96 Urine Samples for Drugs of Abuse Analysis by LC-MS/MS Using the Microlab NIMBUS Workstation
Utilizing Hamilton’s CO-RE disposable tips with DPX technology provides a fast, accurate, and simple extraction method for analyzing drugs of abuse in urine. The Microlab NIMBUS equipped with a CO-RE 96-channel Multi-Probe Head (MPH) allows for high-throughput, automated sample processing. Using the NIMBUS96 platform, two sample plates can be ready for LC-MS/MS injection in approximately 15 minutes. -
Utilizing Hamilton® TADM Technology for Measurement of Dynamic Surface Tension via Bubble Pressure Method
Learn how Hamilton's patented Total Aspiration and Dispense Monitoring (TADM) provides the capability to measure and quantify fluid properties not possible on competitor platforms.

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