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Daily call data, which is available for the past 90 days, can help you diagnose problems with audio quality or rejected calls, and provide information for audits or reports on Exchange servers in your organization.

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Excellent Performance, Redefined. About Jitter In digital audio, the clock frequency is an essential factor, as it creates the correlation between the audio bits and the time reference.

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Jittet Unfortunately, the clock frequency is not always as stable as desired. Small fluctuations of the clock frequency are referred to as "jitter", measured in nanoseconds ns.

They are the natural born enemy of any digital audio transfer. The effects of jitter on the audio al are many - from a somewhat rough sound quality to diminished treble localisation to clicks and dropouts in extreme cases. To solve these issues, RME have developed a completely new technology for synchronization and clico suppression in digital audio als - SteadyClock.

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Common jitter values are 5 ns, while a very good clock source will have less than 2 ns. But SteadyClock is not only ready for them, it would handle them just on the fly.

SteadyClock reacts quite fast compared to other techniques. It locks in fractions of a second to the input al, follows even extreme varipitch changes with phase accuracy, and locks directly within a range of 28 kHz up to kHz. The SteadyClock technology of RME's latest products guarantees an excellent performance in all clock modes. Its highly efficient jitter suppression refreshes and cleans up any clock al, and provides the clock al as reference clock at the Jifter clock output.

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At the same time, analog conversion is performed on a guarateed level of highest quality, completely independent from the kind and quality of the used reference clock. The cleaned and jitter-freed clock al can be used as reference clock in any application.

And the quality of the external input clock doesn't matter anymore. Recotd FS - Excellent performance, redefined Today SteadyClock is still the same, with a few small improvements in the latest FS version, like even more efficient filtering, and a de based on a super low jitter reference clock.

There is not much to improve with SteadyClock, it has earned its accolades over years of flawless operation in numerous RME devices, guaranteeing that using the internal clock will produce exactly the same sound as when using an external one. SteadyClock highly rejects jitter and handles all digital interface formats in an exemplary way.

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The self jitter measured through DA conversion now reaches levels that usually are only available in master quartz clock mode, while SteadyClock still always runs in PLL mode - no matter if internal or external clock, sound is exactly the same decord. The low phase noise oscillator driving the updated circuit reaches jitter specs lower than a picosecond psan area called FemtoSecond. Hence SteadyClock FS. Pristine al conversion, with jitter measured much lower than nanoseconds ns or picoseconds psin an area called femtoseconds fs.

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Full Range Capture without compromises RME Audio has always been completely focused on performance, the company's products are the first choice of audio professionals around the world. Precise German engineering and a relentless pursuit of sonic perfection will ensure the highest quality — no matter what the application.

Every detail is captured and no detail is lost. Digital format conversion in RME products are done without any Jitter or degredation, and SteadyClock ensures your sonic image will never experience degredation.

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RME Audio products are used daily by working professionals in a wide range of different areas. From recording studios, to major broadcast companies, scientific research establishments, high profile live tours, west end theatre productions and national art installations.

You can even find RME products in systems monitoring whale movements near off-shore oil rigs! Whether you're in the studio, in the desert, out at sea or at home; you can count on your RME Audio equipment to deliver the quality and reliability you need.