Automotive

Intelligent embedded systems are the new driving force in today's automotive designs. The latest safety and efficiency technologies are made possible by the incorporation of an extensive variety of complex embedded devices that make thousands of decisions per second. Efficient verification and debug of common automotive serial buses like CAN, LIN, FlexRay and MOST will speed integration of these embedded technologies and build confidence in test engineering.

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Debugging Serial Buses in Embedded System Designs

Find out how the powerful trigger, decode and search capabilities of the popular MSO and DPO Series oscilloscopes solve serial debug challenges with exceptional efficiency.

Physical Layer Compliance Testing for 100BASE-TX

This application note describes the various tests that engineers, designing or validating the Ethernet physical layer, need to perform on their products.

High Amplitude Arbitrary/Function Generator Simplifies Measurement in Automotive, Semiconductor, Scientific and Industrial Applications

This application note describes the conventional approach of generating high amplitude signals with an external amplifier. It then discusses typical applications and shows the benefits of using a novel arbitrary/function generator with integrated high amplitude stage. Applications described in this note include measuring the timing and switching characteristics of power semiconductors for automotive applications and the characterization of amplifiers for gas chromatography detectors.

Fundamentals of Signal Integrity Primer

This primer is to provide some insight into signal integrity-related problems in digital systems, and to describe their causes, characteristics, effects, and solutions.

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Debugging Serial Buses in Embedded System Designs

Many embedded system designs utilize serial buses. Learn how to quickly and efficiently debug today's serial buses with the powerful trigger, decode, and search capabilities of the MSO/DPO Series.

Developing Cost-effective Communications Webinar

End-user constraints around portability, longer battery life, and lower prices make it even more critical to find cost-effective means for providing reliable communications.

Embedded Design Techniques for Optimizing Control Parameters Webinar

In this session we explore the process of optimizing control functions, small adjustments in microcontroller firmware can produce significant improvements in embedded system performance. Coming up with the right values for gains, offsets, delays, hysteresis values and PWM parameters can be time consuming, but using the right tools can speed the process. With a mixed signal oscilloscope, especially one with deep memory, you efficiently gain access to insights of your process including sensor signals, feedback signals and firmware timing.

Selecting Components and Sub-systems Webinar

Quickly and easily selecting appropriate components and sub-systems with confidence is essential to reliably delivering smaller and more cost-effective solutions. Find out how intuitive test and measurement tools can help you make quick and informed choices.

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MOST Essentials – Electrical Compliance and Debug Test Solution for MOST50 and MOST150 (MOI)

This document provides the Methods of Implementation for making MOST measurements with Tektronix oscilloscopes enabled with option DJA, option MOST.

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