Experts In Environmental Control: Active Vibration Control Platforms, Acoustic Enclosures, and Magnetic Field Cancellation Systems
Experts In Environmental Control
Vibration Cancellation
Achieve Max Resolution With A Vibration Cancellation System
For over 25 years, Herzan has been helping researchers achieve more from their research by removing disruptive vibration noise from affecting their instrument. Vibration noise can cause distortions to occur in imaging, making understanding data collected less precise.
Herzan vibration cancellation systems help attenuate noise found in imaging, whereby maximizing the quality of data collected for a wide range of instruments and applications.
Atomic Force Microscope Supported By A TS Series Table
“Simply put, our experiments would not be possible without the equipment from Herzan. It allows us to do even single-molecule experiments on the second floor of a shaky building!” – Professor Volkmar Heinrich, UC Davis
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Herzan has partnered with customers around the world to share their experiences highlighting how they were able to eliminate troublesome environmental noise and maximize the utility of their instrumentation by partnering with Herzan to define a solution.
SICM + AVI Series
There are three instrumentation setups in the Baker Group that make use of the AVI-200 active vibration isolation system. Our studies are mainly focused on scanned probe microscopy, where is a nanopipette filled with electrolyte is used to either map the local ion current of a given sample or to obtain a
Researchers at Boston University were in search of isolating mechanical noise from a custom metrology platform consisting of a MEMs accelerometer, which was re-purposed to perform a sensitive, room temperature measurement of the Casimir force.
The Nano-Bio Lab at the University of Texas at Dallas saw vibration noise not being isolated by their optical table. As a result, they turned to the TS-150 vibration isolation table as a solution to help remove the low-frequency vibration noise from limiting their research.
A consortium of researchers aimed to understand binocular encoding within the Damselfly Pre-motor Target Tracking Systems. Paloma Bellido of the University of Minnesota worked with Herzan to remove vibration noise from the electrophysiology testing setup created. Ultimately, the testing setup helped record intracellularly from neurons in damselflies.