Bruker
Provisional entry — research in progress
This page was generated automatically from cited public sources and hasn't completed the full research pass yet. Every specification shown carries its source; more detail is added as research completes.
The Bruker D 8 Advance is an X-ray diffractometer. The Bruker D 8 Advance supports XRD, PDF, SAXS, and WAXS applications. The Bruker D 8 Advance uses a two-circle goniometer.[1][2][3]

The Bruker D 8 Advance is an X-ray diffractometer used for X-ray diffraction and scattering measurements. The D 8 Advance family is a versatile platform for phase identification, quantitative phase analysis, microstructure and crystal structure analysis, residual stress and texture investigations, X-ray reflectometry, SAXS, PDF analysis, and micro-diffraction.[2]
The D 8 Advance is a metrology and inspection instrument class machine that characterizes materials by measuring how they diffract and scatter X-rays. The D 8 Advance family uses a time-tested D8 goniometer and a user-friendly enclosure.[2]
The D 8 Advance fits in analytical metrology after material deposition, synthesis, forming, or heat treatment, when structural properties need verification. The D 8 Advance family is used for phase identification, quantitative phase analysis, residual stress and texture investigations, reflectometry, SAXS, PDF analysis, and micro-diffraction.[2]
Documented failure modes, common issues, and field considerations.
| Designation | Generation | Vintage | Changes | Source |
|---|---|---|---|---|
| D8 ADVANCE ECO | — | — | No external water cooling required. | bruker.com[2] |
| D8 ADVANCE Plus | — | — | Maximum flexibility and ease-of-use for epitaxial and polycrystalline thin film, bulk, and powder samples. | bruker.com[2] |
| D8 ADVANCE HE | — | — | Optimized for high-energy X-ray diffraction, highly absorbing samples, structure determination, and pair distribution function analysis. | bruker.com[2] |
Generated from public-source data on file. Enter your email to access — nothing is published; details are routed privately.
No research found yet — worked with this tool? Share what you know.
No, X-ray diffraction is non-destructive. The sample remains intact and is not altered during the measurement, making it suitable for quality control where the material may need to be used after analysis.
Regular maintenance includes checking the X-ray source (usually a sealed tube), calibrating the goniometer angles, and cleaning the optics and detector. The X-ray tube has a limited lifetime and may need replacement after extended use. Proper safety checks are also required due to the use of ionizing radiation.
Measurement times vary depending on the sample type, desired resolution, and detector efficiency, but can range from a few minutes for a quick scan to hours for high-resolution analysis. Modern detectors and data acquisition software have significantly reduced times compared to older systems.
Yes, such systems are commonly used for quantitative analysis of multi-phase mixtures. The intensity of the diffraction peaks is related to the amount of each phase present, and using reference standards or Rietveld refinement, the relative concentrations can be determined with good accuracy.
The following facts about the D 8 Advance are absent from this record as of this revision. First-hand knowledge or a citation closes a gap; every submission is reviewed before publication.
No publicly documented production dates or lifecycle milestones (introduction, end of production, EOL) for the D 8 Advance are on record.
Answerable by: OEM historical records or a trade-press announcement
The control-system platform and OS era of the D 8 Advance are not on record.
Answerable by: an engineer who operated it or OEM installation records
The process node or technology generation of the D 8 Advance is not on record.
Answerable by: an OEM datasheet or a fab qualification report
No publicly documented compatible parts, consumables, or accessories for the D 8 Advance are on record.
Answerable by: an OEM parts catalog or a service engineer
No publicly hosted manuals, SOPs, or datasheets for the D 8 Advance are on record.
Answerable by: university cleanroom staff or an OEM application specialist
Last updated Oct 6, 2026.
The KLA .204 PSL Wafer is an 8-inch NIST-traceable reference wafer compatible with Surfscan 6xy0 and Sp1 particle counters.
KLA .496 PSL Wafer is an 8-inch NIST traceable wafer stated to be capable on Surfscan 6xy0 and SP1.
The KLA .498 PSL Wafer is a NIST traceable reference wafer.