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System level design

Materials need to be compatible with the HI, feed for reactor application Carbon composite can be considered for lower temperatures Systems-level design considerations in the integration of different materials... [Pg.110]

After finishing the system-level design, the system is partitioned into subsystems. In designing MEMS sensors, single-chip or dual-chip (or even more) approaches can be used. All approaches have their benefits and drawbacks. [Pg.43]

According to the typical work flow for developing MEMS sensors (Fig. 4.1.4), design of the angular-rate sensor system starts from the required specifications, with system-level design, and comprises the steps described in this section. [Pg.45]

Level 2 is the system engineering view and helps system engineers record and reason about the system in terms of the physical principles and system-level design principles upon which the system design is based. [Pg.311]

Make system-level design decisions to satisfy functional requirements and safety constraints... [Pg.316]

A. A. Jerraya and K. O Brien. SOLAR an intermediate form for system-level design and specification. CoDes Workshop, Grassau, Germany, 1992. [Pg.210]

Figure 10.6 System level design of the finger-tip artificial skin... Figure 10.6 System level design of the finger-tip artificial skin...
Product development can be defined as the transformation of a market opportunity into a product available for sale (Krishnan and Ulrich, 2001). The actual process that underlies this transformation is often decomposed into five phases concept development, system-level design, detailed design, testing and refinement, and production ramp-up (Ulrich and Eppinger, 1995). Each of these involves a series of dynamic decisions and can evolve over time in an iterative fashion. For recent literature reviews of research on product development see Krishnan and Ulrich, 2001, Ozer, 1999, and Wind and Mahajan, 1997. [Pg.298]

Characteristic design phases are design planning, conceptual phase, system level design, detail design, testing and refinement, production ramp up [2]. During... [Pg.640]

System level design Team formation Senior tool designer need to participate in tool architecture assessment 3.1.4.1, 5.2, 7.1, 7.2 Design-FMEA Team assessment of tool design concept... [Pg.657]

System level design Organization attention on inter team communication Communication with external team members is done through core team members 1.1, 1.5, 2.5, 3.1, 3.4, 4.1,4.2,4.3, 5.1, 5.2, 6.1,6.2, 6.3, 6.4, 7.1,7.2 Industrial design. Six sigma methods... [Pg.664]

Fig. 22.14 Target values for sum of (2E criteria for DIP—individual production of tools, DSPME —serial production of modules and elements and DMMP— manufacture of mass products in each PD phase 1 Planning, 2 conceptual phase, 3 system level design, 4 detail design, 5 testing and validation, 6 production process planning, 7 production launch, 8 product disposal... Fig. 22.14 Target values for sum of (2E criteria for DIP—individual production of tools, DSPME —serial production of modules and elements and DMMP— manufacture of mass products in each PD phase 1 Planning, 2 conceptual phase, 3 system level design, 4 detail design, 5 testing and validation, 6 production process planning, 7 production launch, 8 product disposal...
This reference provides an overview of system level design considerations... [Pg.172]

This reference covers the fundamental calculations for Nemst equation and other thermodynamic aspects of fuel cells also provides an overview of system level design considerations. [Pg.196]

Excellent review paper for comparison of three different technologies. Deals with the scientific aspects as well the system level design. [Pg.197]

The task of selecting the systems to include in the survey was by no means an easy one. There is a fairly strong consensus today on exactly what the term liigh-level synthesis means, and only the systems that fit this definition were included. However, any restriction by topic always raises border cases. For this survey, systems that convert Register-Transfer level descriptions into logic level descriptions (often called silicon compilers ) were not included neither were system level design tools. [Pg.1]

E. Lagnese and D. Thomas, Architectural Partitioning for System Level Design, Proc. 26th Design Automation Conference, pp. 62-67, ACM/IEEE, June 1989. [Pg.33]

E. Dirkes Lagnese and D.E. Thomas, "Architectural Partitioning for System Level Design , Proc. of the 26th DAC, pages 62rSl, June 1989. [Pg.72]

Elizabeth Dirkes Lagnese, Architectural Partitioning for System Level Design of Integrated Circuits, PhD Thesis, Dept of Electrical and Computer Engineering, Carnegie Mellon University, March 1989. [Pg.72]

Overall, the Elliptical Filter shows how the first two tools in the general synthesis path can be used to explore the system level design space. The utility of behavioral transformations in exploring various... [Pg.218]

SEESAW A Graphical Interface for System Level Design. [Pg.288]

Architectural Partitioning for System Level Design of Integrated Circuits. [Pg.289]

It is intended for the activities of SIS System Level Designers, Integrators, and Users in the process industry. [Pg.146]


See other pages where System level design is mentioned: [Pg.56]    [Pg.70]    [Pg.178]    [Pg.178]    [Pg.1394]    [Pg.632]    [Pg.203]    [Pg.2225]    [Pg.482]    [Pg.442]    [Pg.656]    [Pg.218]    [Pg.1354]    [Pg.1]    [Pg.45]    [Pg.66]    [Pg.289]    [Pg.52]    [Pg.927]    [Pg.928]    [Pg.931]    [Pg.935]    [Pg.1492]    [Pg.455]    [Pg.107]    [Pg.309]   
See also in sourсe #XX -- [ Pg.13 , Pg.19 ]




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Design levels

Energy-level molecular system design, quantum

Leveling system

System-level

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