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easyLab Technologies Ltd
Science & Technology Centre
The University of Reading
Earley Gate, Whiteknights Road
Reading, Berkshire
RG6 6BZ, United Kingdom
phone: +44 (0)118 935 7272
fax: +44 (0)118 935 7271
email: info@easyLab.co.uk

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Support: support@easyLab.co.uk

Diacell® μScopeDAC-RT(G)

Boehler microDriller
Diacell® μScopeDAC-HT(G)
Diacell® μScopeDAC-HT(S)
Optiprexx PLS

Anvil Jigs
Diacell® Gas Membranes
Diacell® GM Controller
Diamond Anvils
Gasket Blanks
Ruby Powder and Spheres
Support Plates

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Diacell® μScopeDAC-RT(G)

Gas Membrane Driven Room Temp. Microscope Cell
Part of the Diacell μScopeDAC series

[Formerly MC–Microscope Cell]

Product Description

This versatile gas membrane driven diamond anvil cell meets the growing need to reach very high pressures and be compatible with the optical and physical constraints of microscopes.

The Diacell® μScopeDAC-RT(G) is just 18 mm thick along the optical axis and is symmetrical about the sample.  Thus, the physical distance from the objective to the sample between the diamond anvils is only 9 mm.  This makes the Diacell® μScope DAC-RT(G) compatible with most, if not all, commercial Raman and FTIR systems.

Applications

A large and increasing percentage of optical and spectroscopic observations is now made using microscopes. In particular, Raman instruments are commonly sold with integral microscopes to enable efficient scattered light collection, as well as to permit Raman mapping of complex samples. Similarly, FTIR spectrometers are often supplied with reflecting (Cassegrain) microscopes. Diacell® μScopeDAC-RT(G) is ideal for such applications.


Technical Specifications

Cell Material Stainless Steel AISI 440C
Anvil Support Plate Tungsten Carbide
Pressure Mechanism (G) Gas Membrane
Pressure Range
Up to 50 GPa
Temperature Range Room Temperature
Top Angle Optical: Conical 52°
Bottom Angle Optical: Conical 52°
Lateral Access N/A
Heating Air
Cooling Cold Air Only
DAC Diameter 50 mm
DAC Height 18 mm
Working Distance to Sample 9 mm
Numerical Aperture 0.54
Interfacing Solution N/A

Maximum pressure is dependent upon the culet size of the anvils.
easyLab is committed to its policy of continuous improvement.
Specifications may change without notice.
easyLab and Diacell are registered trademarks of easyLab Technologies Ltd.

Parameters

Experimental Techniques far-IR | Fluorescence | FTIR | Infrared | Microscopy | Raman |
Maximum Pressure 1 GPa | 10 GPa | 3.0 GPa | 30 GPa | 50 GPa |
Temperature Range Room Temperature |


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