Results 301 to 310 of about 163,884 (332)
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Design tradeoffs among MCM-C, MCM-D and MCM-D/C technologies
IEEE Transactions on Components, Packaging, and Manufacturing Technology: Part B, 1994The paper describes tradeoffs in electrical performance, wiring density and cost for MCM-C, MCM-D and MCM-D/C technologies. The thin and thick film interconnection media are compared with their associated pros and cons in terms of performance and cost. >
A. Iqbal +3 more
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Proceedings of the 44th Annual International Symposium on Computer Architecture, 2017
Historically, improvements in GPU-based high performance computing have been tightly coupled to transistor scaling. As Moore's law slows down, and the number of transistors per die no longer grows at historical rates, the performance curve of single monolithic GPUs will ultimately plateau. However, the need for higher performing GPUs continues to exist
Akhil Arunkumar +8 more
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Historically, improvements in GPU-based high performance computing have been tightly coupled to transistor scaling. As Moore's law slows down, and the number of transistors per die no longer grows at historical rates, the performance curve of single monolithic GPUs will ultimately plateau. However, the need for higher performing GPUs continues to exist
Akhil Arunkumar +8 more
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Mcm-L Product Development Process for Low-Cost Mcms
Proceedings of the International Conference on Multichip Modules, 1995System size and cost reduction are often the largest factors for interest in commercial MCMs. Performance improvement is generally of secondary interest. Development and qualification can add significantly to the total cost of an MCM, so in addition to the normal desire to provide reliable products, the cost of doing so has gained increased importance.
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Rapid prototyping MCMs with MCM-CF technology
1995 Proceedings. 45th Electronic Components and Technology Conference, 2002Rapid implementation of an MCM provides the most timely and efficient way of validating a circuit design concept in a few weeks. It uses MCM-CF technology, the diffusion patterning multilayer thick film technology, to support early prototyping efforts for demonstrating design validity.
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Synthesis of mesoporous manganosilicates: Mn-MCM-41, Mn-MCM-48 and Mn-MCM-L
Journal of the Chemical Society, Chemical Communications, 1995Mesoporous manganosilicate materials Mn-M41S, having hexagonal, cubic and lamellar structures, are synthesized with a low surfactant: Si ratio (0.12 : 1) at various temperatures and acid/base contents and are characterized by X-ray powder diffraction and Q-band EPR spectroscopy.
Dongyuan Zhao, Daniella Goldfarb
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Static crystallization of zeolites MCM-22 and MCM-49
Microporous and Mesoporous Materials, 1999Abstract Zeolites MCM-22 and MCM-49, with SiO 2 /Al 2 O 3 molar ratios (SARs) of 30 and 50, were prepared under static conditions using silica, sodium aluminate and hexamethyleneimine. An aging step before the hydrothermal treatment made it possible to obtain good-quality MCM-22 under these reaction conditions.
Ana Lucia Santos Marques +2 more
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Preparation of Al-MCM-48 and Ti-MCM-48
Applied Mechanics and Materials, 2014In system of cetyltrimethylammonium bromide (CTAB), tetraethyl orthosilicate (TEOS) and sodium hydroxide, the mesoporous sieves MCM-48 with hetero atom could be synthesized by adding different aluminum and titanium sources. The results showed that M41S family of hexagonal (MCM-41), cubic (MCM-48) and lamellar phase (MCM-50) could be synthesized ...
Zhi Xi Zhao, Li Ming Zhang, Ping Chen
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Journal of Electronic Testing, 1997
This paper presents a cost-based assessment of the effectiveness of Smart Substrate MCM Systems. A Smart Substrate MCM System is one in which the substrate contains active circuitry for carrying out testing functions. The feasibility of using this approach is investigated. The Smart Substrate strategy is compared to an alternative approach based on the
Anne E. Gattiker, Wojciech Maly
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This paper presents a cost-based assessment of the effectiveness of Smart Substrate MCM Systems. A Smart Substrate MCM System is one in which the substrate contains active circuitry for carrying out testing functions. The feasibility of using this approach is investigated. The Smart Substrate strategy is compared to an alternative approach based on the
Anne E. Gattiker, Wojciech Maly
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2023
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???????????????????? ?????????? ?????????????????? ???????????????????????? ?????????????????????????????? ?????????? ???????????? ?? ?????????????????? ???????????????????????????? ?????????????????????? ?????????? MCM-41 ???? ???????????????????????? ?????????????????? VO???-????????, ???? ????????????-?????????????? ???? ?????????????????????? ??????
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MCM Structure and Mechanics: What We Have Learned from Archaeal MCM
2012Minichromosome maintenance (MCM) complexes have been identified as the primary replicative helicases responsible for unwinding DNA for genome replication. The focus of this chapter is to discuss the current structural and functional understanding of MCMs and their role at origins of replication, which are based mostly on the studies of MCM proteins and
Ian M, Slaymaker, Xiaojiang S, Chen
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