This article records tradition as it has been passed down and reported. Its sources are not yet part of the atlas's verified catalogue.
For years after Kary Mullis worked out the chemistry of the polymerase chain reaction in 1983, running it meant standing at a bench moving tubes between water baths held at different temperatures, and adding fresh DNA polymerase by hand after every heating step, because the enzyme could not survive the heat. The reaction itself was simple: heat the DNA to separate its two strands, cool it so short primer sequences could bind, warm it partway so the polymerase could copy the strand, and repeat. What made it exhausting was that a human being had to run the schedule.
Two changes turned that bench routine into a machine. The first was borrowing an enzyme from Thermus aquaticus, a bacterium that lives in hot springs and produces a DNA polymerase built to keep working at high heat. The second was building a device that could hold that heat-stable enzyme in the tube for the whole reaction and step the temperature up and down on its own. The result is the thermal cycler: a heating block, a controller, and a program of three temperatures repeated as many times as the reaction needs, with no hand required at any step after the tubes go in.
The device is not a measuring instrument in the way a thermometer or a spectrometer is. It does not sense a quantity and report it. It drives a chemical process forward on a schedule, which is a different kind of work, and one that turned a laborious, error-prone bench technique into something that runs overnight while nobody is watching it.