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Bruker

D 8

Metrology & InspectionBruker D 8 family
Research Quality: 60% complete

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.

D 8 — Inventory photo
Fig. 01D 8Inventory photo[1]

Power

Detector & generator not working[1]

Optics

Mo 0.71 Å, Cu 1.54 Å[3]

What it is

The Bruker D8 is a family of X-ray diffraction (XRD) instruments used for material characterization.[2]

The D8 systems can analyze powders, thin films, and single crystals.[2][3]

How it works

The Bruker D8 systems typically use a sealed-tube or rotating-anode X-ray source. Many configurations employ a copper anode producing Kα radiation with a wavelength near 1.54 Å. The systems incorporate high-precision goniometers for sample positioning. Detectors used include the LYNXEYE compound silicon strip detector, EIGER pixel detectors, and the Photon 100 area detector.[4][2][3][5]

Why won't it start?

Documented failure modes, common issues, and field considerations.

  • Detector and generator not working

What do the numbers mean?

Power & electrical2

Detector & generator not working[1]
Accurate?
Maximum X-ray generator power (general D8)
50 kV, 60 mA[4]
Accurate?

Vacuum & pumping1

X-ray source (D8 Discover)
High-efficiency Turbo X-ray source (TXS-HE)[2]
Accurate?

Optics & imaging6

X-ray wavelength (D8 Venture)
Mo 0.71 Å, Cu 1.54 Å[3]
Accurate?
Detector (D8 Venture)
Photon 100 detector (100 cm², 1024x1024 pixels)[3]
Accurate?
Detector (D8 Discover)
Eiger R 250k (OD, 1D, 2D modes, 38.4x38.4 mm, 75 μm pixel)[2]
Accurate?
X-ray tube wavelength (general D8)
CuKα = 1.5418 Å[4]
Accurate?
Detector (general D8)
LYNXEYE compound silicon strip detector, resolution 0.008°[4]
Accurate?
High-resolution detector (general D8)
Resolution ~0.0035° for single crystals and thin films[4]
Accurate?

Performance1

Goniometer (D8 Discover)
High-accuracy ATLAS goniometer with non-coplanar arm[2]
Accurate?

Configuration & options3

Cu rotating anode[1]
Accurate?
X-ray tube (general D8)
Copper rotating anode (CuKα)[1]
Accurate?
Geometry (D8 Venture)
Four-circle kappa geometry (7 μm sphere of confusion)[3]
Accurate?

Vintage & configurations

Documented models & variants

DesignationGenerationVintageChangesSource
D8 Discover——High resolution XRD with heated and cooling stages; ATLAS goniometer, TXS-HE source, Eiger R 250k detector, domed hot stage up to 1100 °C.emsal.nanofab.utah.edu[2]
D8 Venture——Single-crystal X-ray diffractometer; two microfocus sources (Mo and Cu), kappa four-circle geometry, Photon 100 detector, cooling to 30 K.snsf.stanford.edu[3]
D8D Plus——High intensity low-divergence collimated X-ray source; ATLAS goniometer; EIGER2 R 500K detector; capable of XRR, GI-SAXS/WAXS, pole figure and residual stress analysis; in situ heating and electrochemical analysis.nanofab.ualberta.ca[5]
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What does it need to run?

Site utility requirements, footprint, and infrastructure needed to install and operate this tool. Sourced from public records.

  • ConfigurationDetector & generator not working[1]
  • X-ray source (D8 Discover)High-efficiency Turbo X-ray source (TXS-HE)[2]
  • Maximum X-ray generator power (general D8)50 kV, 60 mA[4]

Where are the manuals?

Publicly hosted documents referencing this tool, linked at their original location. Hosted by the linked institutions — availability may change.

Generated from public-source data on file. Enter your email to access — nothing is published; details are routed privately.

Not publicly documented

Field notes

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Frequently asked questions

What X-ray wavelengths are available?

Some D8 systems offer both molybdenum (0.71 Å) and copper (1.54 Å) radiation from microfocus sources. Other D8 systems may use a copper tube with Kα radiation at 1.5418 Å.[3][4]

What sample temperature ranges are possible?

Heating stages allow measurements up to 1100 °C. Cooling systems enable temperatures as low as 30 K.[2][3]

What types of detectors are used?

Detectors include the LYNXEYE compound silicon strip detector, EIGER pixel detectors, and the Photon 100 area detector.[4][2][5][3]

Not publicly documented

The following facts about the D 8 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 are on record.

    Answerable by: OEM historical records or a trade-press announcement

  • The control-system platform and OS era of the D 8 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 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 are on record.

    Answerable by: an OEM parts catalog or a service engineer

Sources & citations

Sources (5)Every fact above is drawn from these public sources
  1. [1]Inventory photo
  2. [2]emsal.nanofab.utah.edu — emsal.nanofab.utah.eduemsal.nanofab.utah.edu
  3. [3]snsf.stanford.edu — snsf.stanford.edusnsf.stanford.edu
  4. [4]ncf.uic.edu — ncf.uic.eduncf.uic.edu
  5. [5]nanofab.ualberta.ca — nanofab.ualberta.cananofab.ualberta.ca
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Last updated Sep 24, 2026.

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