Philips speechmike pro plus
How Philips SpeechMike dictation microphones help protect medical staff every day.SpeechMike Dictation Microphone LFH/ | Philips
Philips SpeechMike Pro Plus – Demo Dictate directly onto your PC with the Philips SpeechMike Pro Plus LFH The gives you total control of your PC voice / dictation application in one lightweight unit. Record dictations directly onto your PC with the recording function buttons, ergonomically located for one-thumb operation.4/5(1). Philips SpeechMike Pro Plus – trackball – USB overview and full product specs on : Philips. Philips provides a software development kit (SDK) for speech, office, and business application developers that allows for convenient programming of interfaces when integrating the SpeechMike into professional information and dictation solutions.
Philips speechmike pro plus.Software & Drivers | Philips
Jun 04, · Philips dictations solutions are developed to turn speech to text as easy and reliable as possible and improve day-to-day work of busy professionals, allowing them to simply work smarter! How Philips SpeechMike dictation microphones help protect medical staff every day. Learn more. Professional solutions for the real estate industry. Overview: Work in comfort with digital dictation The professional microphone Philips SpeechMike dictation is stationary at a level never reached. It offers excellent opportunities for voice recognition/5(77). Philips provides a software development kit (SDK) for speech, office, and business application developers that allows for convenient programming of interfaces when integrating the SpeechMike into professional information and dictation solutions.
Philips SpeechMike LFH-5276 Pro Plus
Philips LFH SpeechMike Pro Plus / Dictation / Archive –
Philips 5274 – SpeechMike Pro – Trackball User Manual
Philips – SpeechMike Pro Plus Manuals | ManualsLib
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HTSC: Still, Phonons Are to Blame
If one of our readers follows the events in the world of science, then, perhaps, they will remember how Academician of the Russian Academy of Sciences Vitaly Lazarevich Ginzburg in his Nobel lecture delivered at the Physics Institute named after. P. H. Lebedev, identified ten main problems facing physicists of the XXI century. One of such tasks, as Ginzburg formulated them, was the search for a theory explaining the phenomenon of high-temperature superconductivity (HTSC) and the search for materials exhibiting the property of superconductivity (zero resistance to a limited constant electric current) at room temperature (RTSC). And since even modern HTSC technologies have found application in the telecommunications industry, despite the need to maintain the temperature slightly above the boiling point of liquid nitrogen, there can be no doubt that KTSC materials will be in great demand in this, as well as in many other industries.
It is possible that the solution of the first of these problems (HTSC) is not far off: in the past two years, a fairly large number of theories have been put forward to explain this effect. Initially, it was assumed that in high-temperature superconductors, like low-temperature ones, so-called Cooper pairs are also formed (consisting of two electrons in such a way that the total spin magnetic moment of the pair turns out to be zero, due to which the Cooper pair propagates in the electric field of the crystal lattice without interacting with it ), however, their number fluctuates, although on average greater than zero. The main question that haunts researchers is what mechanism is responsible for the formation of Cooper pairs. Last month, scientists at Oak Ridge National Laboratory suggested that the pair is most likely due to magnetic resonance rather than phonon interaction. However, Cornell University believes that careful consideration of all interactions at high temperatures does not deny the possibility of pair formation due to the electron-phonon interaction, which is obvious at low temperatures.
A group of researchers at Cornell University investigated an HTSC material created in 1986 by IBM scientists (a compound of bismuth, strontium, calcium, copper and oxygen, for the discovery of HTSC in 1987 was awarded the Nobel Prize in Physics). To begin with, the researchers examined the fine structure of the tunneling spectrum using a precision STM (scanning tunneling microscope) in a superconducting state and isolated several characteristic peaks that were attributed to electron-phonon pairing. The scientists then varied the dopants and found no change in the behavior of the compound, concluding that there was no magnetic resonance. But the replacement of oxygen-18 by its lighter isotope oxygen-16 led to a decrease in the average energy of the mode by 6%, which also testifies in favor of the electron-phonon interaction.
So far, however, scientists at Cornell University are rather cautious in their conclusions, since there is no coherent theory of HTSC and they themselves. And the very fact that it is the electron-phonon interaction that is responsible for the formation of Cooper pairs cannot yet be considered 100% proven. At the same time, this is another step forward – towards achieving an understanding of one of the main mysteries of the 21st century.