Small Sample AFM
PARK NX10
Proven performance in nanoscale metrology
PARK NX10
Description:
Park NX10 is a flagship atomic force microscope (AFM) designed for small-sample research, delivering unmatched accuracy, reliability, and ease of use. As Park Systems’ original small-sample AFM, it has earned global recognition in both academic and industrial laboratories for producing precise, repeatable nanoscale measurements.
At the core of the NX10 are Park’s proprietary orthogonal scan system and True Non-contact™ mode, innovations that virtually eliminate lateral motion artifacts while protecting both tip and sample. Together, these technologies ensure artifact-free, high-resolution imaging even for the most delicate or challenging samples.
From materials science to polymers and bioengineering, NX10 delivers robust performance and dependable results, making it a trusted platform for advanced nanoscale metrology.
Key Features:
- Outstanding NX Mechanical Design
- Fast Z Servo and High Resolution
- NX Laser Beam Path
- Pre-Mounted Probe
- Improved Z Scan Straightness
- Simple Expansion Slot for Modes and Options
- On-Axis Optical Microscope
- Industry Leading Low Noise Z Detector
Specification:
-
Scanner - Z-scan range: 15 µm (optional 30 µm)
X-Y scan range: 50 µm × 50 µm (optional 10 µm × 10 µm or 100 µm × 100 µm) -
Stage - Sample size: Open space up to 100 mm x 100 mm, thickness up to 20 mm
XY stage travel range: 20 mm x 20 mm
Z stage travel range: 25 mm
Focus stage travel range: 15 mm -
Objective lens - 10 x ultra-long working distance lens
20 x high-resolution, long working distance lens -
Software - Park SmartScanTM
Park SmartAnalysisTM
Applications:
- Material & Chemistry: Aluminium TX630 alloy, 2D material, Polymer, Blended Polymer, Plastic, Coating, Thin film, Catalyst
- Life Science: Rat trachea cell, Origami DNA, Fixed or Living cell membrane, Blood cell, Biomolecular interaction, Tissue, Bacteria or Virus
- Metal & Semiconductor: Failure analysis on Semiconductor device, Measurements on nano electronic device, Thin-film electronics component
- Battery & Energy: Battery material, Fuel cell, Energy harvesting, Ionic conductor
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