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Order Code, Price (EUR/GBP) Probes per set
CDT-FMR-10 10 pcs
€ 1517.00 £ 1335.00 add to shopping cart
CDT-FMR-20 20 pcs
€ 2715.00 £ 2389.00 add to shopping cart
CDT-FMR-50 50 pcs
€ 5987.00 £ 5269.00 add to shopping cart

Product Availability: 5 - 10 working days


AFM Probe type:

CDT-FMR

Manufacturer: NANOSENSORS
Product Description:

NANOSENSORS™ CDT-FMR probes are designed for force modulation microscopy. The force constant of this probe type spans the gap between contact and non-contact mode and is specially tailored for the force modulation mode. The FM sensor serves also as a basis for magnetic coatings (MFM). Furthermore non-contact or tapping mode operation is possible with the FM probe but with reduced operation stability.

For applications that require a wear resistant and an electrically conductive tip we recommend this type. Some applications are Tunneling AFM and Scanning Capacitance Microscopy (SCM). The CDT Diamond Coating is highly doped and the total resistance measured in contact to a platinium surface is < 10 kOhm.

The typical macroscopic tip radius of curvature is between 100 and 200 nm. Nanoroughness in the 10 nm regime improves the resolution on flat surfaces.

The probe offers unique features:

  • real diamond coating, highly doped
  • high mechanical Q-factor for high sensitivity
  • precise alignment of the cantilever position (within +/- 2 µm) when used with the Alignment Chip
  • compatible with PointProbe® Plus XY-Alignment Series

Application Modes:
AFM Probe Specifications:
AFM Tips:
shape tip height tip set back tip radius full cone angle half cone angle
Standard 0 µm 0 - 0 µm* 0 µm ( 0 - 0 µm)* < 200 nm guaranteed

AFM Cantilever(s):
cant. shape length width thickness force const. res. freq. probe base
Beam 225 µm (215 - 235 µm)* 27.5 µm (20 - 35 µm)* 3 µm (2 - 4 µm)* 6.2 N/m (1.5 - 18.3 N/m)* 105 kHz (65 - 155 kHz)*

* guaranteed range

Coating:
The reflex coating is an approximately 30 nm thick aluminum coating on the detector side of the cantilever which enhances the reflectivity of the laser beam by a factor of about 2.5. Furthermore it prevents light from interfering within the cantilever. The virtually stress-free coating is bending the cantilever less than 3.5% of the cantilever length.
Probes Datasheets:
Datasheet for all sensors with sets of 10 or 20 sensors.
Datasheet for up to 32 sensors with full wafer.

**ScanAsyst® and Peak Force Tapping® are registered trademarks of Bruker Corporation.
*** Olympus® is a trademark of Olympus Corporation.

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