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Product Description:

***Note: Bruker's new MESP-HM-V2 probe replaces the legacy MESP-HM probe.Bruker recommends transitioning to this probe.  The legacy MESP-HM isstill available for ordering while supplies last, at which point in will become obsolete.

Bruker's MESP-HM-V2 is the established choice for Magnetic Force Microscopy.  Built on the high-performance RFESP-75AFM probe, the hard Cobalt-Chromium coating on this tip is tailored forhigh-sensitivity and magnetic contrast.  This cost-effective probe has anominal tip radius of 80 nm for excellent lateral resolution for MFM,as well as other electrical and capacitance applications requiring acantilever with conductive coating. 

The MESP-HM-V2 has a nominal coercivity of 400 Oe (medium), and a magnetic moment of 3e-13 EMU (high). 

The reflex side of the cantilever has a Co-Cr coating for increased reflectivity up to 2.5 times that of an uncoated probe.

The new design provides:
• Tighter dimensional specifications for improved probe to probe consistency
• Tighter alignment of the tip apex to the cantilever resulting in easier laser positioning over the tip
• Improved probe quality & aesthetics

Add To Cart

Model Instrument Mount Pack Size Price Pack Quantity
MESP-HM-V2 All Unmounted 10 $990.00 (USD)

Quantity discounts available

2-6$891.00 (USD)
7-15$841.50 (USD)
16-24$792.00 (USD)
25-37$742.50 (USD)
38+$594.00 (USD)

Shape Resonant Freq. kHz Spring Const. N/m Length µm Width µm
Nom. Min. Max. Nom. Min. Max. Nom. Min. Max. Nom. Min. Max.
Rectangular 75 50 100 3.0 1.5 6.0 225 215 235 35 33 37

Tip Specification

This probe uses a rotated tip to provide a more symmetric representation of features over 200nm.
Geometry: Rotated
Tip Height (h): 10 - 15µm
Front Angle (FA): 17.5 ± 2.5º
Back Angle (BA): 25 ± 2.5 º
Side Angle (SA): 20 ± 2.5 º
Tip Radius (Nom): 80 nm
Tip Radius (Max): 100 nm
Tip SetBack (TSB)(Nom): 9.5 µm
Tip Set Back (TSB)(RNG): 7 - 12 µm
Tip Coating: Magnetic

Cantilever Specification

The Cobalt-Chromium reflective coating on the backside of the cantilever increases the laser signal (A+B) by up to 2.5 times. Although not necessary for general imaging, reflective coating is recommended for thin cantilevers (< 2.5 µm), highly reflective samples, and machine vision applications.
Material: 0.01 - 0.025 Ωcm Antimony (n) doped Si
Geometry: Rectangular
Cantilevers Number: 1
Cantilever Thickness (Nom): 2.80 µm
Cantilever Thickness (RNG): 2.05 - 3.55 µm
Front Side Coating: Magnetic CoCr
Back Side Coating: Reflective CoCr
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