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Registration Date 11 Mar 2016
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Point Probe® Plus Non-Contact / Tapping Mode - Long Cantilever - Reflex Coating

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Electronics Sensor Product Number : PPP-NCLR-10

Afm Tip

Nanomaterials

Manufacturer Asserted

Aluminum

Al Nanostructure Coating CAS Number : 7429-90-5
Density : 30 nm

Applications

Atomic force microscope (AFM) tips AFM imaging

Properties

guaranteed tip radius of curvature < 10 nm tip height 10 - 15 µm highly doped to dissipate static charge Al coating on detector side of cantilever high mechanical Q-factor for high sensitivity alignment grooves on backside of silicon holder chip precise alignment of the cantilever position (within +/- 2 µm) when used with the Alignment Chip compatible with PointProbe® Plus XY-Alignment Series

Versatility High Resonance Frequency High sensitivity Fast Scanning Ability Dissipate Static Charge Enhanced Resolution

Manufacturer's Description

The new PointProbe® Plus (PPP) combines the well-known features of the proven PointProbe® series such as high application versatility and compatibility with most commercial SPMs with a further reduced and more reproducible tip radius as well as a more defined tip shape. The typical tip radius of less than 7 nm and the minimized variation in tip shape provide more reproducible images and enhanced resolution.NANOSENSORS™ PPP-NCLR AFM probes are designed for non-contact mode or tapping mode AFM (also known as: attractive or dynamic mode). The NCL type is offered as an alternative to NANOSENSORS™ high frequency non contact type (NCH). PPP-NCLR is recommended if the feedback loop of the microscope does not accept high frequencies (400 kHz) or if the detection system needs a minimum cantilever length > 125 µm. Compared to the high frequency non-contact type NCH the maximum scanning speed is slightly reduced. This probe type combines high operation stability with outstanding sensitivity and fast scanning ability.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 2% of the cantilever length.