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Nanomeasurement Instruments for Industry R&D

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Keysight Technologies

Nanomeasurement Instruments for Industry R&D

Keysight Technologies, Inc.

Keysight Technologies’ impressive legacy includes the original Hewlett-Packard business founded in 1939 by Bill Hewlett and Dave Packard, which spun off with Agilent Technologies in 1999. In September 2013, Agilent announced plans to separate into two publicly traded companies through a spinoff of its electronic measurement business. The new company, Keysight Technologies, began trading on the NYSE under the symbol KEYS in November 2014.

Keysight Technologies offers powerful and intuitive nanomeasurement instrumentation systems for scientists and engineers whose primary focus is on materials research. Keysight is a leading global provider of advanced atomic force microscopes with full environmental control for myriad in situ applications, as well as versatile, high-precision nanomechanical testing systems. We have also introduced a remarkably compact field-emission scanning electron microscope for low-voltage imaging that delivers fully integrated energy dispersive spectroscopy capabilities.

Keysight’s growing collection of nanotechnology instruments, accessories, software, and consumables is well suited to many applications within the automotive, energy, MEMS, and LED industries. We offer invaluable expertise in the areas of materials science, polymer science, and electrochemistry, as well as cross-disciplinary nanoscale research. Our goal is to help you see and comprehend the nanoscale world both quickly and reliably.

Every Keysight nanomeasurement solution — whether an atomic force microscope, nanoindentation system, universal testing machine, or compact field-emission scanning electron microscope — is backed by our knowledgeable application scientists and world-wide technical service engineers, all of whom strive to provide outstanding service and support to customers around the world.

Keysight’s own leading-edge R&D laboratories are dedicated to the timely introduction and optimization of innovative, easy-to-use nanomeasurement technologies.

Advanced Automotive Research

Atomic force microscopy

Atomic force microscopy (AFM) systems allow scientists and engineers to perceive and understand physical processes occurring at the nanoscale that affect ultimate lifetime, reliability, and performance. Here are just a few of the ways in which the latest AFM systems from Keysight Technologies can be utilized to enhance the discovery process.

Nano indentation

Nanoindentation systems from Keysight provide the ability to perform industry-standard mechanical testing at various size scales, which can greatly facilitate efforts to improve the lifetime and reliability of advanced automotive components. Nanoindentation has proven to shorten the learning curve and deliver improved performance, economy, and lifetime with advanced materials at all levels of automotive development and production.

FE-SEM

Keysight’s compact field-emission scanning electron microscopy (FE-SEM) systems permit quick and easy acquisition of images with resolution approaching 8 nm. Variable low voltage greatly reduces charging as well as the need for sample coating in automotive applications. Fully integrated energy dispersive spectroscopy enables elemental analysis, particularly useful in development and failure analysis.

Advanced Energy Research

Atomic force microscopy

Atomic force microscopy (AFM) systems facilitate leading-edge nanoscale research on energy storage and conversion, thereby driving innovation for tomorrow’s energy production and delivery. Examples of the ways in which AFM systems from Keysight Technologies can be utilized in such endeavors are presented here.

Nano indentation

From flexible batteries to high-current semiconductors, understanding the mechanical properties of energy solutions at the nanoscale is crucial to achieve optimal performance, longevity, and safety. Nanoindentation systems from Keysight permit measurements of elastic modulus (i.e., stiffness/strength) and hardness in compliance with ISO 14577.

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