![]() ![]() In regulated environments, particularly pharmaceutical and biotech service laboratories operating under “Good-X-Practices” (GLP for labs, GMPs for production), adherence to relevant FDA regulations is a must.Īt its most basic, lab balance software automates routine, repetitive operations like taring and calibration, while flawlessly copying, storing, and retrieving numbers that stretch to five or six significant figures. Today, almost every lab captures weighing data as it is generated, without operators as much as touching pen, paper, or electronic device (other than the instrument’s keypad). Lab peripherals like rotary evaporators, dryers, and balances were the last pieces to join the networked ecosystem, which they are now doing to great benefit through the elimination of drudgery and transcription errors. Major instrument makers provide software for linking a lab’s spectrometers, chromatographs, and high stickerprice process equipment with enterprise- or laboratory-level information systems. Hence the emergence, evolution, and coalescence of laboratory data products like laboratory information management systems (LIMS, which are sample-centric) and electronic laboratory notebooks (ELNs, process-centered). Manual transcription of multi-digit balance readings is a significant source of errors which, when introduced early, can change the outcome of an experiment or process. Recording laboratory data by hand is more than just mind-numbingly boring.
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