Bruker/JPK NanoRacer High-Speed AFM

Bruker/JPK NanoRacer High-Speed AFM
Molecular dynamics in real-time at 50 frames per second
The NanoRacer® High-Speed AFM marks a quantum leap in quantitative imaging capabilities. The real-time visualisation of dynamic biological processes with nanometre resolution has never been easier. The NanoRacer opens a world of new and exciting possibilities for Life Science applications, enabling researchers to gain an in-depth understanding of complex biological systems and molecular mechanisms, in a way not possible until now.
Features:
- Highest imaging speed of 50 frames/sec with outstanding resolution
- Intuitive V7 software for proven ease-of-use
- Newly developed high-speed head and scanner unit
- Automated cantilever alignment
- Robust concentric design for utmost stability
- Optimised for small and medium-sized cantilevers
- Cutting-edge electronics
- Optional with Bruker's exclusive PeakForce Tapping
Imaging atomic defects and sub-molecular resolution are now routine. The NanoRacer has the lowest noise levels of any commercial AFM system available, thanks to high precision electronics and enhanced accuracy positioning sensors in each axis. The NanoRacer reflects the pioneering work of Bruker's BioAFM team in combining technological advances with proven stability, sensitivity, and ease of use.
Additionally:
- Small cantilevers and lowest forces for minimum sample damage
- Infrared laser photothermal excitation option, for clean cantilever drive, easy setup and minimised perturbance of delicate samples
- Advanced algorithms for scanner control and feedback
- Minimised force drift for long-term experiments
- Highest bandwidth digital electronics, with lowest noise, for maximum performance
- Cutting-edge, high-speed power amplifier for perfect scanner drive
- Closed-loop scanning on all axes with minimal noise levels for highest accuracy
For further informaton please contact us or download the brochure.
Atomic resolution of calcite crystal step edge, imaged in fluid, 3D topography (1) 15 x 9nm2 (2) 4 x 4 nm2