The Cole-Parmer Thermal Cycler with a single 384-well and triple 96-well capacity is designed for high-throughput PCR applications requiring versatility and precision. This cycler supports global voltage (100 to 230 VAC) and delivers uniform temperature cycling across all wells. Ideal for molecular biology, clinical, and research labs, it provides flexibility for a variety of PCR formats, ensuring consistent and reliable results for medium- to high-volume sample processing.
This versatile thermal cycler is the ideal solution for labs requiring high throughput and flexibility for multiple PCR protocols.
It is designed for high-throughput PCR applications requiring versatility and precision. This cycler supports global voltage (100 to 230 VAC) and delivers uniform temperature cycling across all wells. Ideal for molecular biology, clinical, and research labs, it provides flexibility for a variety of PCR formats, ensuring consistent and reliable results for medium to high-volume sample processing.
Yes. It is designed for research, diagnostics, and molecular biology applications, and offers a voltage of 100 to 230 VAC for universal compatibility to support this kind of work.
It has a voltage of 100 to 230 VAC for universal compatibility, and is supplied under manufacturer part number 93945-10.
It offers single 384-well and triple 96-well blocks for varied PCR applications, accurate thermal cycling for PCR, DNA amplification, and gene expression analysis, digital control panel with programmable settings for easy operation and single, dual or four block options available with either 96 or 384 well gradient blocks.
For research, diagnostics, and molecular biology applications, the Cole-Parmer model is the better choice, offering a voltage of 100 to 230 VAC for universal compatibility. The Eppendorf model offers racks with compartments for storing deep-well plates in ultra-low temperature freezers as an alternative, while the Cole-Parmer model's single 384-well and triple 96-well blocks for varied PCR applications and accurate thermal cycling for PCR, DNA amplification, and gene expression analysis help make it a strong fit for research, diagnostics, and molecular biology applications.
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