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Introduction:Even though FLASH memory is a well-established memory technology, continuous advances, such as multi-level cell (MLC), are aimed at achieving increased density. New measurement techniques and capabilities are also becoming available, from characterizing a single transistor for development purposes to integrated and automated solutions for FLASH production.
During this webinar, fundamentals of FLASH technology testing will be reviewed, incorporating a discussion of FN (Fowler-Nordheim) and (HEI) (Hot Electron Injection) programming and erasing. Different aspects of testing applicable to single FLASH transistors and FLASH array testing will be considered, including standard transistor characterization, endurance, and disturb testing. The pulse fidelity requirement for MLC testing will also be discussed. These applications will be demonstrated via Keithley's new Ultra Fast I-V test solution, which offers better control of the pulse shape and amplitude, and, as a result, is well-suited for MLC FLASH testing, and also Keithley's ACS software, which manages a range of testing scenarios.
Target Audience
This webinar will be beneficial for people with established FLASH test setups, as well as those looking for a test solution.

Introduction:Your Customers & Prospects are All Going Virtual. Are You Ready to Keep Their Business?
A must attend event for software vendors wishing to confidently introduce licensing and pricing models that support and control the utilization of their application(s) in virtual environments, enabling them to protect their applications from copy and duplication, ensure their competitive position, and even increase profitability!
• Brief Introduction to Virtualization
• Virtualization - What's in it For Me (as an ISV)?
• New Licensing Challenges Fueled by Virtualization
• How to Monetize Software in Virtual Environments? - License Enablement and Enforcement!
• Industry Best Practices - Turning Virtualization from a Headache to an Opportunity!

Introduction:Phase Change Memory, a type of non-volatile computer memory also known as PRAM, PCM, and PCRAM, is a new and promising technology. PRAM uses the unique behavior of chalcogenide glass, which can be switched between two states, crystalline and amorphous, with the application of heat. Recent versions can achieve two additional distinct states, effectively doubling its storage capacity.
This webinar will provide basic information on the physics and operation of PRAM memory elements. Common characterization and measurement techniques will be described and compared, including the R-Load method and a technique using Keithley抯 ultra-fast IV unit.
Target Audience:
This seminar is recommended primarily for test engineers and test engineering managers who are new to making PRAM measurements, but it will be useful for the experienced user, as well.

Introduction:The functional characteristics of Capacitive mTouch™ Sensing Solution along with basic touch sensor construction will be reviewed in the first half of this web seminar. The primary focus here is to provide some basic design guidelines relating to touch sensor pad size, placement, cover plate material selection and mounting recommendations. In the second half, there will be an overview of the fundamental components of an Inductive mTouch™ system. It will also introduce the inductive touch sensor detailing both construction and operational characteristics. Inductive touch sensing technologies can make up for some deficiencies of capacitive touch sensing solution. For instance, there can be more choices of panel material, the keys are unaffected by water droplet, humidity or liquids; and the technology can sense through thick gloves.
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