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Small Angle X-ray Scattering Products - SAXS

Providing you the best range of Rigaku BioSAXS-2000 Small Angle X-Ray Scattering, Rigaku SmartLab Small Angle X-ray Scattering and Rigaku Ultima IV Small Angle X-Ray Scattering with effective & timely delivery.

Rigaku BioSAXS-2000 Small Angle X-Ray Scattering
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Incident BeamOptiSAXS CMF Focusing Optic
Beam StopPIN diode detector (motorized)
Sample Stage3 capillaries (X, Y stage, motorized) with a flow cell option
Sample Volume20 - 30 microliter
Collimation2D Kratky (X stage and tilt, motorized)
Beam Size at SampleVariable Width x 1.5 mm2

Rigaku's BioSAXS-2000 SAXS camera is designed specifically to meet the needs of the structural biologist. Based on a patented two-dimensional Kratky design, the BioSAXS-2000 takes up much less space than a conventional 3-pinhole camera but offers better flux characteristics. Best of all, the BioSAXS-2000 can be mounted on the open port of a Rigaku rotating anode X-ray generator, taking full advantage of existing infrastructure, or it can be mated to a Rigaku microfocus sealed tube X-ray source. The BioSAXS AUTO configuration incorporates two time-saving features: an Automatic Sample Changer for unattended overnight operation and an Automatic Analysis Pipeline based on the world standard ATSAS package from EMBL Hamburg.

No need to wait for beamtime at a synchrotron

The BioSAXS-2000 is equipped with the new OptiSAXS optic, a doubly focusing multilayer optic whose focus is at the detector. The OptiSAXS provides better than two fold improvement in flux compared to its predecessor resulting in higher brilliance at the sample position and data collection times in the range of minutes. Thus, the BioSAXS-2000 brings a beamline experience to home laboratory SAXS experiments.

Optional accessories
  • Automatic Sample Changer (ASC) with support for 8 or 96 samples. See Accessories tab for more details.
  • Automatic Analysis Pipeline (AAP) based on ATSAS, the world’s most popular SAXS analysis software developed at EMBL Hamburg. See Accessories tab for more details.

  • Easily installed on the open port of an existing generator or can be installed with your choice of X-ray source: Microfocus sealed tube, MicroMax-007 HF, FR-X
  • Point focusing optics eliminates smearing issues common to traditional Kratky cameras.
  • All system components are motorized for control from the control computer
  • Photodiode beamstop for intensity measurements and sample absorption correction
  • Sample temperature control included with the system
  • SAXSLab data collection and processing software

Other Details:
  • q-range: 0.006 Å¿¿¿¹ - 0.6 Å¿¿¿¹
  • Detector: Rigaku HyPix-3000 Hybrid Pixel Array Detector (pixel size: 100 μm, active area: 77.5 mm X 30.5 mm)

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Rigaku SmartLab Small Angle X-ray Scattering
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X ray Generator3 kW for sealed x-ray tube, 9 kW for PhotonMax rotating anode
Tube Voltage Variable Range20-60 kV(3 kW for sealed x-ray tube), 20-45 kV(9 kW for PhotonMax rotating anode)
Tube Current Variable Range2-50 mA(3 kW for sealed x-ray tube), 10-200 mA( 9 kW for PhotonMax rotating anode)
Enclosure Dimension1300x1300x1880 mm, 51.2x51.2x74 inch(WxDxH)
Weight~750 kg, 1653 lb(3 kW for sealed x-ray tube), ~850 kg, 1874 lb(9 kW for PhotonMax rotating anode)
Ground ResistanceLess than or equal to 100 ohm

Rigaku SmartLab is the newest and most novel high-resolution X-ray diffractometer (XRD) available today. Perhaps its most novel feature is the new SmartLab Studio II software, which provides the user with an intelligent User Guidance expert system functionality that guides the operator through the intricacies of each experiment. It is like having an expert standing by your side.

Engineered for Performance
This new X-ray diffraction system features the PhotonMax high-flux 9 kW rotating anode X-ray source coupled with a HyPix-3000 high-energy-resolution 2D multidimensional semiconductor detector that supports 0D, 1D and 2D measure­ment modes, allowing all applications to be handled with a single detector, eliminating the inconvenience of preparing and switching individual detectors for different applications. The HyPix-3000 detector can be used to obtain 2D powder diffraction patterns, which can be processed to deliver superior qualitative analysis by using all the 2D pattern information.

Designed for Flexibility
The system incorporates a high-resolution θ/θ closed loop goniometer drive system with an available in-plane diffraction arm. The system’s new Cross-Beam-Optics (CBO) family feature fully automated switchable reflection and transmission optics (CBO-Auto).

Coupling a computer controlled alignment system with a fully automated optical system, and the User Guidance functionality within the SmartLab Studio II software, makes it easy to switch between hardware modes, ensuring that your hardware complexity is never holding back your research.

Functionality Redefined
Whether you are working with thin films, nanomaterials, powders, or liquids the SmartLab will give you the XRD functionality to make the measurements you want to make when you want to make them. The equipment accepts powder, liquid, films, and even textile samples and allows mapping measurements within suitable samples. Operando (a.k.a., real time in-situ) measurements can be performed with the new Rigaku SmartLab Studio II software suite, which is an integrated software platform incorporating all functions from measurement to analysis. The system also features robust security and validation protocols to ensure that any technology component - software or hardware - fulfills its purpose within regulatory guidelines, including 21 CFR Part 11, establishing the US EDA regulations governing electronic records and electronic signatures (ER/ES).

  • Available in-plane arm (5-axis goniometer)
  • Highest flux X-ray source: PhotonMax
  • HyPix-3000 high energy resolution 2D HPAD detector
  • New CBO family, with fully automated beam switchable CBO-Auto and high-resolution micro area CBO-μ
  • Multi-year component warranty contributes to low cost of ownership

Power Supply:

  • Three phases AC200V, 50/60 Hz, 30 A or single phase AC200-230V, 50/60 Hz, 40A(3 kW for sealed x-ray tube)
  • Three phases AC200V, 50/60 Hz, 60 A (9 kW for PhotoMax rotating anode)

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Rigaku Ultima IV Small Angle X-Ray Scattering
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ModelUltima IV
Maximum Rated Output3 kW
Rated Tube Voltage20 - 60 kV
Rated Tube Current2 - 60 mA
TargetCu (others optional)
Focus Size0.4 x 12 mm (others optional)
Goniometer Radius285 mm
Minimum Step Size0.0001 Degree
Divergence SlitFixed or Automatic Variable
Scattering SlitFixed or Automatic Variable
Receiving SlitFixed or Automatic Variable
Optics AlignmentAutomatic alignment of tube height, goniometer, optics and detector
MonochromatorDual position graphite diffracted beam monochromator for Cu (others optional)
DetectorScintillation counter (others optional)
Dimension1600 x 1100 x 800 mm (H x W x D)
Sample Height1050 mm

The Ultima IV represents the state-of-the-art in multipurpose X-ray diffraction (XRD) systems. Incorporating Rigaku's patented cross beam optics (CBO) technology for permanently mounted, permanently aligned and user-selectable parallel and focusing geometries, the Ultima IV X-ray diffractometer can perform many different measurements fast.


Engineered for Performance

With a multipurpose diffractometer, performance is measured by not only how fast you perform an experiment but also how fast you can switch between different types of experiments. Individual experiments are optimized with accessories like the D/teX Ultra high-speed position sensitive detector system, but the speed between experiments is radically improved with the combination of the automated alignment and CBO.


Designed for Flexibility

The Ultima IV is the only XRD system on the market today that incorporates fully automatic alignment. When coupled with CBO and the in-plane arm, the automatic alignment capability makes the Ultima IV X-ray diffractometer the most flexible system available for multipurpose applications.


Functionality Redefined

In the Ultima IV XRD system, CBO technology eliminates time spent switching geometries, enables everyday users to run both sets of experiments without the need to reconfigure the system, and reduces wear and possible optic damage associated with the recurrent switching process. CBO and automatic alignment combine for the ultimate in functionality for: micro-crystalline diffraction, thin-film diffraction, small angle scattering, and in-plane scattering.



  • Full automated alignment under computer control.
  • Optional in-plane diffraction arm for in-plane measurements without reconfiguration.
  • Focusing and parallel beam geometries without reconfiguration.
  • SAXS capabilities.



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