For the nanotools® M*-CNT-300 we pushed our proofen EBD technology to the dimensions of a CNT, maintaining EBD´s key strength. Our M*-CNT-300 is not using a multiwall carbon nanotube attached to a silicon cantilever.
What is critical in nanotube technology is solved for the M*-CNT-300:
• controlled tip length
• controlled tip orientation (angle accuracy better 0.5 deg)
• automated fabrication process
The high aspect ratio part of the probe is made from HIGH-DENSITY, DIAMOND LIKE CARBON( HDC/DLC).
• high aspect ratio
• hydrophobic surface properties
• high stiffness/elastic modulus (8 x of that of silicon)
• low thermal mass
• abrasion resistance
tip spec:
shape: cylindrical
length: 300 nm +/- 50
diameter: 20 nm +/- 5
tilt compensation: 3 deg +/- 0.5
Our HDC dissipates static charge. This leads to probes offering the extreme durability of diamond together with high resolution imaging capability. Applying our patented EBD techninque we ensure a stiff and rigid high aspect ratio probe of superior symmetry and nanometer precision.
| cant. | shape | length | width | thickness | force const. | res. freq. | probe base |
|---|---|---|---|---|---|---|---|
| beam | 160 µm (155 - 165 µm)* | 45 µm (40 - 50 µm)* | 4.6 µm (4.1 - 5.1 µm)* | 42 N/m (27 - 80 N/m)* | 285 kHz (240 - 380 kHz)* | ||
| cant. | shape | tip height | tip set back | tip radius | full cone angle | half cone angle | |
|---|---|---|---|---|---|---|---|
| EBD, Arrow , High-Aspect-Ratio |
0.3 µm (0.25 - 0.35 µm)* | 0.25 - 0.35 µm* | 0 (0 - 0 )* | < 5 nm (< 7 nm guaranteed) |
* typical range
On stock
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