STADI P COMBI

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Description

STADI P COMBI X-Ray Diffraction System

The STADI P COMBI by STOE is a high-throughput powder diffraction system designed for rapid combinatorial analysis. Built on the proven STADI P platform, it combines precision measurement with exceptional efficiency for multi-sample workflows.

Key Features

  • 96-fold sample stage for simultaneous multi-sample analysis
  • User-definable x-y grid for flexible sample positioning
  • Pure Kα1 radiation using Co, Cu, Mo, or Ag sources
  • Transmission geometry for high data reliability
  • Optimized for high-throughput and combinatorial measurements

Core Advantages

  • Rapid phase identification and similarity analysis across multiple samples
  • Consistent measurement conditions with fixed sample-to-detector distance
  • High efficiency for research and quality control environments
  • Retains all precision and accuracy benefits of the STADI P system

System Capabilities

  • Designed for automated workflows and batch processing
  • Ideal for screening up to 96 samples in a single setup
  • Stable and reproducible data across all sample positions
  • Flexible configuration with various sample holders and stages

Specifications (Summary)

  • 2θ range: 0° – 140°
  • Goniometer: 2-circle system
  • Measuring radius: 260 mm
  • Focusing radius: 160 mm
  • X-ray sources: Co, Cu, Mo, Ag (sealed tubes)
  • Detector: MYTHEN2 R 1K silicon strip detector
  • Software: WinXPOW
  • Dimensions: 1100 × 880 × 2050 mm
  • Weight: ~650 kg

Software & Accessories

Powered by WinXPOW, providing:

  • Instrument control and automation
  • Data reduction and analysis (profile fitting, indexing, space group determination)
  • Advanced 2D and 3D visualization

Available accessories include:

  • x-y stage and multiple sample stages
  • High- and low-temperature chambers
  • Reaction chambers and sample changers
  • Specialized holders such as battery cell modules

Applications

  • High-throughput material screening
  • Phase identification and comparison studies
  • Combinatorial materials research
  • Quality control and batch analysis

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