Olympus Introduces the BTX Profiler, a Combined XRD-XRF Analyzer for Comprehensive Materials Analysis

Waltham, MA, USA - June 25, 2013: Olympus is pleased to announce the release of a new benchtop analyzer that combines X-ray Diffraction (XRD) and X-ray Fluorescence (XRF) in one unit. The BTX Profiler carries on the revolutionary XRD technology employed in NASA’s “Curiosity” Rover, part of the successful NASA Mars Science Laboratory program, and the highly acclaimed, award winning earthbound technology employed in Olympus Analytical X-ray Instruments. The BTX Profiler combines these to provide compositional materials analysis at the structural and elemental level affording economy of operational costs, space, and time with a seamless integration of data and results.

The BTX Profiler reduces inefficiencies found in conventional powder diffraction systems. Its close-coupled transmission geometry allows for a low powered X-ray source and a small amount of sample. The sophisticated sample handling technology incorporates a patented vibration system that enables random crystal orientation in a fixed sample cell. The CCD detector with its “smart” energy discrimination provides graphical 2-D diffraction patterns, or Ring Patterns, and acquires more data more quickly than conventional XRD detectors.

The Energy Dispersive XRF technology in the BTX Profiler integrates selectable optimized beam paths of a miniature X-ray tube and specialized filters, a large area silicon drift detector (SDD) for optimized resolution and detection limits, and close coupled geometry with the sample, allowing for a wide elemental and concentration measurement range.

The combination of all of these features reduces operational costs, space, and time of measurement while providing rapid, accurate and precise data analysis. The BTX Profiler’s nondestructive capability is of particular significance for several industrial sectors including energy, geochemistry, pharmaceuticals, catalysts, forensics and education.

For more information on the BTX Profiler, please visit http://www.olympus-ims.com/en/btx-profiler/.

About Olympus NDT

Olympus NDT is a world-leading manufacturer of innovative nondestructive testing instruments that are used in industrial and research applications ranging from aerospace, power generation, petrochemical, civil infrastructure, and automotive to consumer products. Leading-edge testing technologies include ultrasound, ultrasound phased array, eddy current, eddy current array and X-ray fluorescence. The Olympus NDT product lineup includes flaw detectors, thickness gages, in-line systems, automated systems, industrial scanners, analyzers, pulser-receivers, probes, transducers, and various accessories. Olympus NDT is also a distributor of remote visual inspection instruments and high-speed video cameras in the Americas. Olympus NDT is based in Waltham, Massachusetts, USA, and has sales and service centers in all principal industrial locations worldwide.

For more information please contact:
Kim Russell
Marketing Director
Analytical Instruments
(1) 781-419-4643
[email protected]
Web: www.olympus-ims.com
.

More News

  • Researchers Propose New Regulations for Food Packaging Chemicals

    Scientists have proposed a new way to prioritize regulatory review of the more than 15,000 chemicals used in food packaging and other food contact materials, most of which currently lack the safety data needed to protect consumers. read more
  • Brain Activity Mirrors the Shape of Each Breath

    Each individual breath—not just breathing rate—is closely linked to the pattern of electrical activity in brain regions tied to cognition, emotion and memory, according to a new study that could help explain how breathing disorders turn deadly. read more
  • Body's Organs Age in Distinct, Synchronized Waves

    The human body doesn't age at a single, steady pace. Instead, each organ follows its own timeline, and organs that age quickly tend to have "aging partners" that speed up in sync, according to a new study that mapped structural aging across 40 types of tissue. read more