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INTRODUCTION NANOSCOPY xs
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Our complete scanning probe microscopy product range (CFM, AFM,
MFM, SNOM*, and STM*) has undergone a redesign to fit any 25 mm
(1”) static sample space including the Quantum Design PPMS.
Despite the compactness, a coarse travel range of 3 x 3 x 2.5 mm3
and a scan range of 12 x 12 µm2 at 4 K is provided.
The outstanding stability of the microscopes allows investigation
of nm-sized structures with highest resolution making these instruments
versatile tools for state-of-the-art investigations on the nanoscale
range.
SCANNING PROBE MICROSCOPY
for the Quantum Design PPMS®
PPMS-SPM
ultra-stable low temperature scanning probe microscopes
With the SPM insert for the Physical Property Measurement System
(PPMS) of Quantum Design, attocube meets growing demands
for highly sophisticated yet easy-to-use scanning probe microscopes.
The ultra-compact, high resolution PPMS-SPM uses advanced
technologies such as low temperature compatible objectives for
confocal microscopy or a fiber-optical interferometer for force
microscopy with outstanding signal-to-noise force detection.
The rugged housing construction is made from highest quality
Titanium, ensuring maximum stability and minimum sample drift
during variation of temperature and/or magnetic field. The patented
driving technology of the coarse positioning system warrants
a precise and reliable sample approach and positioning in three
axes with nanometer precision over several millimeters range.
Plus, the instrument is fully compatible with commercially available
AFM / MFM cantilevers.
In combination with the Quantum Design PPMS with its broad
temperature and magnetic field range, stability and ease of use,
exciting new measurements are only one click away ...
The strategic
relationship between attocube systems and Quantum Design expands
technology reach and provides both new and existing PPMS customers
with easier access to additional measurement and characterization
techniques.
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Download the current PPMS-SPM brochure! |
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PPMS®-SPM -
the next PPMS solution
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