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ICP-7760HP Full Spectrum Direct Reading Inductively Coupled Plasma Emission Spectrometer

All elements in the sample are synchronously collected within the full spectral range. The medium-step two-dimensional spectrophotometry technology is adopted to reduce the error caused by spectral interference and meet the needs of detecting various complex samples. The adoption of a megapixel anti-overflow scientific CCD improves the accuracy of qualitative and quantitative data. Meanwhile, this design can effectively enhance the signal-to-noise ratio in trace analysis and significantly reduce the detection limit.

ICP-7760.pngICP-7760HP Full Spectrum Direct Reading Inductively Coupled Plasma Emission Spectrometer

All elements in the sample are collected synchronously in the full spectrum.

Adopt mid-step two-dimensional spectroscopy technology to reduce the error caused by spectral interference and meet the needs of detecting various complex samples; adopt a million-pixel anti-spill scientific CCD to improve the accuracy of qualitative and quantitative data. At the same time, the design can improve the signal to noise ratio in trace analysis and reduce the detection limit; qualitative analysis can be realized without configuring a standard solution; all-element detection of unknown samples can also be realized under the condition of limited sample volume; detection time is shortened, argon consumption is reduced, and operating costs are reduced; sample spectral signals can be collected first, and analytical elements can be added later; background signals are collected synchronously with the spectral signals of the elements to be measured, which improves the analysis accuracy; light source position and observation height are quickly optimized through motor drive control Transform to obtain a strong spectral signal; by monitoring the spectral signal in real time, the instrument parameters and analysis parameters can be quickly optimized.

Key Features

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ICP-7760.pngICP-7760HP Full Spectrum Direct Reading Inductively Coupled Plasma Emission Spectrometer

All elements in the sample are collected synchronously in the full spectrum.

Adopt mid-step two-dimensional spectroscopy technology to reduce the error caused by spectral interference and meet the needs of detecting various complex samples; adopt a million-pixel anti-spill scientific CCD to improve the accuracy of qualitative and quantitative data. At the same time, the design can improve the signal to noise ratio in trace analysis and reduce the detection limit; qualitative analysis can be realized without configuring a standard solution; all-element detection of unknown samples can also be realized under the condition of limited sample volume; detection time is shortened, argon consumption is reduced, and operating costs are reduced; sample spectral signals can be collected first, and analytical elements can be added later; background signals are collected synchronously with the spectral signals of the elements to be measured, which improves the analysis accuracy; light source position and observation height are quickly optimized through motor drive control Transform to obtain a strong spectral signal; by monitoring the spectral signal in real time, the instrument parameters and analysis parameters can be quickly optimized.

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