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Speed Mic uses a patented magnetic induction technology to heat your samples and fan forced air for cooling. This means fast qPCR results through rapid heating and cooling with 35 cycles possible in under 25 minutes*. Back that up with a robust optical system that acquires all channels simultaneously and running multiplexed assays has never been quicker. The Mic real-time cycler is available in either 2 or 4 channel models. Each channel uses an independent high intensity LED, photodetector and filter set combining together to give unparalleled detection performance. With a fixed optical path and no moving parts there is never any optical alignment or calibration required.
Even better is that no reference dyes or crosstalk compensation is required. Manual Lavadora Unique Klassen. *Assays designed toward cDNA targets with short amplicon sizes and using fast cycling compatible polymerases. Accuracy Mic delivers unrivaled reproducibility between samples, runs and instruments.
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Real-time PCR replicates have never looked so good and detection of two-fold differences in gene expression levels never easier. Why wait to run 384 samples? Get your results now and have the confidence your datasets can be seamlessly combined using our Projects analysis software. Comparing samples between multiple runs or even multiple instruments is effortless. Check out some of our data To achieve this level of quantification precision, the Mic real-time cycler incorporates a unique spinning aluminium rotor which has unsurpassed temperature uniformity during both dynamic and static operations. All other block-based real-time cyclers only promise static uniformity, which could lead to variability as samples aren’t heated and cooled at the same rate. Combine temperature accuracy of ±0.25ºC, a first class well-to- well temperature uniformity of ±0.05ºC, and superior equilibration time (zero seconds for all wells to reach the same temperature) and you can easily classify difficult class IV SNPs that require melt temperature resolutions of less than 0.1ºC.