Bruker's range of X-ray sources cover every level of analytical need - from reliable and cost-effective sealed-tube X-ray sources for routine crystallography to our ultra-high-performance METALJET source, which brings the intensity of a beamline to your home lab.
Our SC-XRD product portfolio is organized in four classes - Economy, Efficiency, Performance, and Beamline - reflecting the different specifications of the X-ray source technologies.
View our sources below or if you would like guidance in choosing which X-ray wavelength is best for your application view our guide.
Our sealed-tube X-ray source delivers excellent intensity with low investment and maintenance needs. Perfect for routine chemical crystallography with large and medium sized crystals.
The IµS 3.0 is a microfocus X-ray source designed specifically for crystallography. It has an intensity several orders of magnitude greater than sealed-tube X-ray sources, but maintains the low service requirements, to deliver efficient performance, significantly shorter measurement times and improved data quality.
The performance of the IµS 3.0 facilitates the analysis of small and weakly diffracting crystals.
The IμS DIAMOND II is a microfocus X-ray source with hybrid anode technology that sets a new standard for brilliance in microfocus technology, with intensities that outperform conventional roating anode microfocus sources.
The METALJET MC liquid-metal-jet source generates highly intense beams for the most demanding crystallography and structural biology applications.
Choosing the right X‑ray wavelength source is a key decision for single-crystal X-ray diffraction.
Because each crystal-type and application has its own demands, selecting a source is about finding the right match for your experimental needs and budget.
Silver (Ag) radiation delivers the shortest in‑house wavelength for cleaner, higher‑resolution data. It’s increasingly the go‑to for advanced materials, quantum chemistry and battery research.
Thanks to modern high‑intensity microfocus technology, Ag now provides the brightness earlier sealed tubes couldn’t - making it a powerful alternative to Mo in many challenging applications.
Molybdenum (Mo) remains the dependable all‑rounder in small‑molecule crystallography, offering low absorption, strong scattering and efficient data collection for most routine structures.
Mo is the most widely used wavelength in published SC‑XRD work and continues to provide excellent performance across a broad range of samples.
Copper (Cu) radiation is ideal for organics, peptides, and protein crystals, delivering strong scattering for light‑element structures.
While Cu delivers excellent results for these compounds, users should remain aware of its higher absorption and potential for sample damage, especially with today’s high‑intensity sources.
Like Cu, Gallium (Ga) radiation has strong interactions with light‑atom materials like proteins, MOFs, COFs, and organic compounds, whereas its slightly shorter wavelength (1.341 Å) reduces absorption and air scatter.
The result is improved data quality and cleaner results for samples that benefit from enhanced light‑atom contrast without the drawbacks of longer‑wavelength radiation.
Gallium radiation is available exclusively in our METALJET MC solution, the D8 VENTURE METALJET, for highly demanding crystallography.
Source technology influences beam intensity, stability and overall data quality.
Talk to one of our experts to determine which source and wavelength works best for your application.
Our X-ray sources are favoured by crystallography labs worldwide. To learn more about what our customers think of our systems and technology check out our testimonials page.