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Quantity
SCM-PIC-10 Box of 10 AFM Probes
423.00 EUR
SCM-PIC-50 Box of 50 AFM Probes
1673.00 EUR
Your volume discount is 442.00 EUR or 20.90%
SCM-PIC-W Box of 380 AFM Probes
8902.00 EUR
Your volume discount is 7172.00 EUR or 44.60%
Product availability: On stock

SCM-PIC

Electrical, Contact Mode AFM Probe

Manufacturer: NanoWorld

Coating: Electrically Conductive
AFM tip shape: Standard
AFM Cantilever
F 13 kHz
C 0.2 N/m
L 450 µm
*nominal values
Applications
How to optimize AFM scan parameters gear icon
NanoWorld Pointprobe® CONT AFM probes are designed for contact mode imaging. Furthermore this AFM probe can be used for force-distance spectroscopy mode or pulsed force mode (PFM). The CONT type is optimised for high sensitivity due to a low force constant.

All SPM and AFM probes of the Pointprobe® series are made from monolithic silicon which is highly doped to dissipate static charge. They are chemically inert and offer a high mechanical Q-factor for high sensitivity. The AFM tip is shaped like a polygon based pyramid.

This AFM probe was sold by Veeco Instruments Inc. for over 10 years up until April 2007. Bruker Corporation, which acquired Veeco metrology business, is no longer selling the original AFM probe which has always been manufactured by NanoWorld®.

This AFM probe features alignment grooves on the back side of the holder chip.

PtIr5 Coating

The PtIr5 coating consists of a 23 nm thick platinum iridium5 layer deposited on both sides of the AFM cantilever. The tip side coating enhances the conductivity of the AFM tip and allows electrical contacts. The detector side coating enhances the reflectance of the laser beam by a factor of 2 and prevents light from interfering within the AFM cantilever.

The coating process is optimized for stress compensation and wear resistance. Wear at AFM the tip can occur if operating in contact-, friction- or force modulation mode. As the coating is almost stress-free the bending of the AFM cantilever due to stress is less than 2 degrees.
AFM Tip:

  • AFM Cantilever:
  • Beam
  • 0.2 N/m (0.07 - 0.4 N/m)*
  • 13 kHz (9 - 17 kHz)*
  • 450 µm (445 - 455 µm)*
  • 50 µm (45 - 55 µm)*
  • 2 µm ( 1.5 - 2.5 µm)*
  • * typical range
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