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Gorlov M. I. Andreev A. V. Anufriev L. P. Emel'yanov V. A. 《Russian Microelectronics》2004,33(1):18-26
Technological methods for improving the reliability of silicon ICs in mass production are discussed. They include low-temperature processing, the compensating technology, and the equalizing technology. 相似文献
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Kim A. A. Eliseev K. V. Akap’ev V. V. Akap’ev V. L. Savotchenko S. E. Gorlov A. S. 《Technical Physics Letters》2020,46(5):427-431
Technical Physics Letters - A method of nondestructive examination of the state of cooling microchannels of heavily loaded turbine blades by measuring the speed of an exiting aerosol-containing air... 相似文献
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M. I. Gorlov A. V. Strogonov A. A. Vinokurov 《Russian Journal of Nondestructive Testing》2018,54(6):455-461
Five methods that have been developed by the authors since 2006 for benchmarking the reliability of semiconductor articles using electrostatic discharges are described. 相似文献
17.
Methods of measuring the fundamental parameters of the low-frequency noise of semiconductor devices are considered and versions
of instruments for monitoring the noise characteristics of microcircuits, discrete transistors and other semiconductor devices
are suggested.
__________
Translated from Izmeritel’naya Tekhnika, No. 12, pp. 46–49, December, 2006. 相似文献
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Mikhail Gorlov Nikolay Bredov Andrey Esin Igor Sirotin Mikhail Soldatov Volodymyr Oberemok Vyacheslav V. Kireev 《International journal of molecular sciences》2021,22(11)
Despite a significant number of investigations in the field of phosphazene chemistry, the formation mechanism of this class of cyclic compounds is still poorly studied. At the same time, a thorough understanding of this process is necessary, both for the direct production of phosphazene rings of a given size and for the controlled cyclization reaction when it is secondary and undesirable. We synthesized a series of short linear phosphazene oligomers with the general formula Cl[PCl2=N]n–PCl3+PCl6– and studied their tendency to form cyclic structures under the influence of elevated temperatures or in the presence of nitrogen-containing agents, such as hexamethyldisilazane (HMDS) or ammonium chloride. It was established that linear oligophosphazenes are inert when heated in the absence of the mentioned cyclization agents, and the formation of cyclic products occurs only when these agents are involved in the process. The ability to obtain the desired size phosphazene cycle from corresponding linear chains is shown for the first time. Known obstacles, such as side interaction with the PCl6– counterion and a tendency of longer chains to undergo crosslinking elongation instead of cyclization are still relevant, and ways to overcome them are being discussed. 相似文献
20.
Silvia Schicker Daniel E. García Igor Gorlov Rolf Janssen Nils Claussen 《Journal of the American Ceramic Society》1999,82(10):2607-2612
Wet milling of Al2 O3 -aluminide alloy (3A) precursor powders in acetone has been investigated by milling Fe/Al/Al2 O3 and Fe2 O3 /Al/Al2 O3 powder mixtures. The influence of the milling process on the physical and chemical properties of the milled powders has been studied. Particle refinement and homogenization were found not to play a dominant role, whereas plastic deformation of the metal particles leads to the formation of dislocations and a highly disarranged polycrystalline structure. Although no chemical reactions among the powder components in Fe2 O3 /Al/Al2 O3 powder mixtures were observed, the formation of a nanocrystalline, ordered intermetallic FeAl phase in Fe/Al/Al2 O3 powder mixtures caused by mechanical alloying was detected. Chemical reactions of Fe and Al particle surfaces with the atmosphere and the milling media lead to the formation of highly porous hydroxides on the particle surfaces. Hence the specific surface area of the powders increases, while the powder density decreases during milling. The fraction of Fe oxidized during milling was determined to be 0.13. The fraction of Al oxidized during milling strongly depends on the metal content of the powder mixture. It ranges between 0.4 and 0.8. 相似文献