IMS 1300-HR³

Versatile SIMS Tool: Reference Detection Sensitivity with High Throughput & Full Automation

The IMS 7f-Auto is the latest version of our successful IMS xf Secondary Ion Mass Spectrometer (SIMS) product line. Designed to deliver high precision elemental and isotopic analyses with increased ease-of-use and productivity, it has been optimized for challenging applications such as glass, metals, ceramics, Si-based, III-V and II-VI devices, bulk materials, thin films... fulfilling industry requirements for efficient device development and process control.

Key analytical features for solving a wide range of analytical problems
The IMS 7f-Auto offers unparalleled depth profiling capabilities with high depth resolution and high dynamic range. The high transmission mass spectrometer is combined with two reactive, high-density ion sources, O2+ and Cs+, thus providing high sputter rate and excellent detection limits. A unique optical design allows both direct ion microscopy and scanning microprobe imaging.

Improved automation & operation efficiency
The IMS 7f-Auto is equipped with a redesigned, in-line primary column for easier and faster primary beam tuning and optimized primary beam current stability. New automated routines minimize operator related biases and improve ease-of-use. A motorized storage chamber with automated load / unload of sample holders ensures high throughput through analysis chaining and remote operation.

High reproducibility at high throughput
Thanks to its new motorized storage chamber & sample transfer, the IMS 7f-Auto can analyze multiple samples in chained or remote mode. Measurements can be fully unattended and automated, with unequalled throughput and reproducibility. Ultimate reproducibility can be achieved (RSD < 0.5 %), together with excellent detection limits, high throughput and productivity (tool can be used 24h a day with minimum operator intervention).

 

 

 

Carbon isotopes in diamond mapped with LG SIMS

Stable isotopes: Carbon (LG-SIMS)

Our Large-Geometry SIMS provides excellent precision and reproducibility in mapping minerals for minor variations in isotopic ratios.

 

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Magnesium in Olivine - stable isotope analysis with Large Geometry SIMS

Stable isotopes: Magnesium (LG SIMS)

The simultaneous detection system available on our Large-Geometry SIMS provides key advantages for the analysis of Mg isotopes.

 

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SIMS U-Th-Pb dating of zircon grains from lost continent

Geochronology - Confirming the existence of an Ancient ‘lost continent’ (LG-SIMS)

Zircon grains extracted from a volcanic rock on Mauritius were dated around 3 Ga old using U-Th-Pb age determination methods on large-geometry SIMS... far too old to belong to the island of Mauritius! 

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In situ U-Pb geochronology of zircon

U-Pb geochronology in zircon (LG-SIMS)

The IMS 1300-HR3 large geometry SIMS performs in situ dating of old and very young zircon with excellent precision. 

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Uranium isotope analysis on nuclear particles with LG SIMS

Nuclear safeguards: U isotope analysis (LG-SIMS)

Our Large Geometry SIMS is used in major international safeguards agencies to perform high precision Uranium isotopic analysis on nuclear particles.

 

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Unveiling Water Distribution in the Early Solar System with LG-SIMS

Webinar presented by Laurette Piani, a CNRS Researcher at CRPG (France), specializing in studying meteorites to understand the distribution of water in the forming solar system.
↓ Duration: 49 minutes

Click here to view

Isotopic and elemental characterization of nuclear and radioactive materials at the micrometric scale

Exploring the application of SIMS for nuclear and radioactive materials with Anne-Laure Fauré, an experienced analytical chemistry researcher and Assistant Laboratory Manager at CEA-DAM.
↓ Download our one-pager highlighting the key takeaways.

Click here to view

Investigating the formation conditions of the first solids in the solar system using Large-Geometry SIMS

In this webinar Dr Yves Marrocchi, CRPG, Nancy, France presents recent petrographic observations and isotopic measurements of chondrules which shed new light on the timing of chondrule formation and how recycling processes during disk evolution led to the formation of chondrules.
↓ Duration: 52 minutes

Click here to view

Part 1: Pb-isotope imaging of ultra-high temperature zircon, the most widely used mineral in geochronology.

Prof. Martin Whitehouse, Swedish Museum of Natural History, Stockholm, details the benefits of both direct and Scanning Ion Imaging (SII) at high mass resolution illustrated by recent case studies . Recording of a seminar hosted by IUAC, Delhi, India. ↓ Approx. 30 minutes

Click here to view

Part 2: Full U-Pb analysis from complex imaged zircon grains from the early Earth and the Moon as well as terrestrial impact craters

Prof. Martin Whitehouse, Swedish Museum of Natural History, Stockholm, details the benefits of both direct and Scanning Ion Imaging (SII) at high mass resolution illustrated by recent case studies. Recording of a seminar hosted by IUAC, Delhi, India. ↓ Approx. 7 minutes

Click here to view

Part 3: Pb-Pb dating of lunar basalts and determination of lunar chemical geodynamics.

Prof. Martin Whitehouse, Swedish Museum of Natural History, Stockholm, details the benefits of both direct and Scanning Ion Imaging (SII) at high mass resolution illustrated by recent case studies. Recording of a seminar hosted by IUAC, Delhi, India.
↓ Duration: 10 minutes

Click here to view

Triple Oxygen Isotope Measurements by Multi-Collector Isotope by Multi-Collector large Geometry SIMS

Large-geometry SIMS equipped with a multicollector system (LG-SIMS) provide the best performance for geo- and cosmochemistry applications as they provide in situ analysis with both high spatial resolution and high precision. Recently, latest generations LG-SIMS were equipped with low noise 1012Ω resistor Faraday Cup preamplifier boards optimized for the measurement of low intensity signals. This talk describes an innovative path for triple oxygen isotope analyses, based on the measurement of the 17O minor isotope on a Faraday Cup detector equipped with a 1012Ω preamplifier board. This new analytical method allows nowadays to routinely measure oxygen isotopic ratios (18O/16O and 17O/16O) in various matrices with a precision (internal error and reproducibility) better than 0.5‰ (2σ), a spatial resolution smaller than 10 μm and in a few minutes per analysis. This work is the result of a collaboration between CAMECA and the CRPG Nancy lab in France.
↓ Duration : 15 minutes

Click here to view

An Excel spreadsheet compiling scientific research articles using Large Geometry SIMS (IMS 1270, IMS 1280, IMS 1280-HR, IMS 1300-HR³) data is available for download. The articles are ordered by main applications as below and are easily searchable with Excel word search functions:

  • Stable isotopes
  • Geochronology
  • Trace elements
  • Nuclear forensics

Download spreadsheet here

Do not hesitate to contact us at cameca.info@ametek.com if you can not access some pdf files on your own. You are also more than welcome to send us any missing references, pdf and supplements!

  • WinCurve dataprocessing sofware

    WinCurve

    Specifically developed for CAMECA SIMS instruments, WinCurve offers powerful data processing & visualization capabilities in a user-friendly environment.

     

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  • WinImage Software

    WinImage II

    Specifically developed for CAMECA SIMS instruments, WinImage II offers powerful image visualization, processing & printing capabilities under PC-Windows™ Environment.

     

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  • APM Software

    APM

    Automated Particle Measurement (APM) is CAMECA software tool allowing fast screening of millions of particles, particle detection and isotopic characterization.

     

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