CSG11S Print E-mail
csgs.jpgContact probes CSG11S series with calibrated SEM photo for each cantilever tip, each chip has two cantilevers, resonant frequency 7-14kHz, 14-28kHz; force constant 0,01-0,08N/m, 0,03-0,2N/m.


csgsa.jpg
CSG11S

 

High Resolution CONTACT "GOLDEN" Silicon Cantilevers CSG11S series with calibrated SEM photo for each cantilever tip

 

  • Standard chip size: 1.6x3.6x0.4 mm.
  • High reflective Au coating (reflective property is 3 times better in comparison with uncoated cantilevers).
  • Guaranteed curvature radius of a tip:  10 nm or less.
  • Tip height: 10 - 15 µm.
  • Each chip has two RECTANGULAR springs.
  • Recommended for contact modes.
  • Calibrated SEM photo for each cantilever tip.
  • Packaged in GelPak® boxes.

GelPak® is a registered trade mark of Vichem Corporation.

 

Specification for probes of CSG11S series

 

 

Chip thickness 0.4mm
Reflective side Au
Spring number 2
Aspect ratio 3:1
Cone angle j <=22°
Curvature radius of a tip typical 10nm
   csg20sb.jpg

 

 

Cantilever series

Spring

Cantilever lenght, L±5µm

Cantilever width, W±3µm

Cantilever thickness, µm

Resonant frequency, kHz

Force constant, N/m

min

typical

max

min

typical

max

min

typical

max

CSG11S

A

250

35

0.7

1.0

1.3

14

20

28

0.03

0.1

0.2

B

350

35

0.7

1.0

1.3

7

10

14

0.01

0.03

0.08

 

 

Highlights

 

csgsc.jpgcssgd.jpg
  • Calibrated SEM photo for each cantilever tip and guaranteed curvature radius 10nm or less.
  • Compatible with the most commercial SPM devices.
  • Chemically stable Au coating.
  • Silicon is doped by boron with the concentration about 5x1020 cm-3 to avoid electrostatic charges.



Cantilever series

 

 

csg01e.jpg
Recommended measuring mode
N - noncontact, semicontact
C - contact
cantilever series S - with calibrated SEM photo for each tip and guaranteed curvature radius 10nm or less.

 

 

Copyright © 2003, Nano Technology Instruments - Europe BV.
Copyright © 1998-2003, NT-MDT. All rights reserved.
 
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Any sufficiently advanced technology is indistinguishable from magic.

Arthur C.Clarke

 

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