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How New Spectrometer Technologies Substantially Cut Operating Costs

机译:新的光谱仪技术如何大幅降低运营成本

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摘要

A new whitepaper detailing how new ICP-OES spectrometer technologies are substantially cutting operating costs in environmental, industrial, and academic laboratories is available to download from SPECTRO Analytical Instruments (USA). Controlling costs associated with the operation of ICP-OES instruments is a continuing challenge for laboratories, regardless of application, given the variety of operational, maintenance and hidden expenses that dramatically increase their total cost of ownership. Traditional spectrometers bear the burden of a number of inherent problems in their design. A new whitepaper, titled "How New Spectrometer Technologies Substantially Cut Operating Costs," explores how engineering innovations have addressed design issues to enable significant savings while improving performance. The advancements, detailed in the paper, include: New system designs that deliver improved uptime and throughput while reducing operating costs, A unique sealed optical system that abolishes the need for the constant purging of argon or nitrogen, eliminating purge gas consumables cost and purging delays, Improved spectrometer technology that removes the need for a separate, external, water-based cooling system along with the associated purchase, installation, power and maintenance costs, Innovations in optical technology that improve performance measures such as sensitivity and stability, A robust generator design that provides ample power reserves, so it can handle extreme plasma loads, and adapt to quickly changing demands.
机译:可以从SPECTRO Analytical Instruments(美国)下载新的白皮书,详细介绍新的ICP-OES光谱仪技术如何大幅降低环境,工业和学术实验室的运营成本。鉴于操作,维护和隐性支出的多样性极大地增加了总拥有成本,因此与ICP-OES仪器的运行相关的控制成本对于实验室而言,无论其应用如何,都是一个持续的挑战。传统的光谱仪在设计中承担了许多固有问题的负担。一份名为“新型光谱仪技术如何大幅降低运营成本”的新白皮书探讨了工程创新如何解决设计问题,从而在显着节省成本的同时提高性能。本文中详细介绍的进步包括:新的系统设计,可提供更长的正常运行时间和吞吐量,同时降低运营成本;独特的密封光学系统,消除了对氩气或氮气的持续净化的需要,消除了净化气体消耗品的成本和净化延迟,改进的光谱仪技术,消除了对单独的外部水基冷却系统的需求,以及相关的购买,安装,电源和维护成本;光学技术的创新,改善了诸如灵敏度和稳定性之类的性能指标;坚固的发生器设计提供足够的功率储备,因此它可以处理极端的等离子负载,并适应快速变化的需求。

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