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Fluorescence X-ray Spectrometer System ZSX Series - Rigaku

Fluorescence X-ray Spectrometer System ZSX Series - Rigaku

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wavelengths are characteristic of the elements in the<br />

sample will transpire. These secondary X-<strong>ray</strong>s then<br />

undergo spectral processing with the analyzing crystal<br />

and are detected by the detector (SC, F-PC). The <strong>ZSX</strong><br />

Fig. 2. Sensitivity Comparison Profiles in Offset<br />

Arrangement and Tandem Arrangement.<br />

is equipped with a 3-axis (2-22-22) independent<br />

driving goniometer. This allows for the selection of<br />

the offset arrangement for high-resolution analysis or<br />

for the tandem arrangement for high-sensitivity<br />

analysis (SC+F-PC arranged in series).<br />

The SC detector can be equipped with an optional<br />

high-sensitivity slit. This can be installed in addition<br />

to the standard high-resolution slit. This allows an<br />

optimal combination to meet the desired analytical<br />

requirement. Fig. 2 shows a sensitivity comparison<br />

chart for the tandem arrangement. The sample<br />

chamber employs a double vacuum system. A<br />

preliminary vacuum chamber is also provided to<br />

enable evacuation for a subsequent sample while<br />

measurement of the current sample is occurring.<br />

5. r-2 Sample Stage and CCD Point Analysis<br />

Figure 3 depicts the X-<strong>ray</strong> intensity distribution<br />

that takes place with the primary X-<strong>ray</strong>s. The<br />

conventional design enables the maximum X-<strong>ray</strong><br />

intensity to be obtained with a standard diameter<br />

sample. However, for small diameter samples, the<br />

measurement will occur at a position deviating from<br />

the maximum X-<strong>ray</strong> intensity. With the <strong>ZSX</strong>, the use<br />

Fig. 3. Sensitivity Comparison by use of the r-2 stage.<br />

60 The <strong>Rigaku</strong> Journal

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