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Why a Fully Integrated Translation Loop Device Achieves the Best Phase Noise Performance

We are experiencing an explosive growth in demand for bandwidth that pushes the carrier frequencies to multiple decades of gigahertz. At these extremely high frequencies, consumers can enjoy wider bandwidths without the fear of overcrowding the spectrum. However, as the frequencies increase, the instrumentation solutions targeting these devices and frequencies can become extremely complex. This stems from the need for an order of magnitude better performance in instrumentation solutions to prevent impairing the device under test. In this article, we will review several methods for low phase noise signal generation. We will demonstrate the advantages and disadvantages of these methods and introduce the translation loop device, which takes the best of all frequency generation methods without their complexity to enable ultralow phase noise signal generation.

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An Introduction to 10BASE-T1S Ethernet

Ethernet and Internet Protocol (IP)-based networks are everywhere. You can find them in standard computer networks as well as in automotive, IoT and all kinds of automation applications. It has been around for almost 50 years. It provides scalable bandwidth from a few megabits per second, up to multiple gigabits per second, over several different physical media. There are proven software stacks available to ensure reliable transmission over the medium.

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