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Rapid prototyping equipment is used to build examples of products
before they are mass-produced for the marketplace. Rapid prototyping
equipment includes machines and processes that perform stereo
lithography (SLA), rapid injection molding, selective laser
sintering (SLS), room Express—rapid prototyping and product
development via integrated knowledge-based executable specifications
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Source ACM Annual Conference/Annual Meeting archive
Proceedings of the 1987 Fall Joint Computer Conference on
Exploring technology: today and tomorrow table of contents
Dallas, Texas, United States
Pages: 3 - 9
Year of Publication: 1987
ISBN:0-8186-0811-0
Authors P. Topping Lockheed Software, Technology Center
J. McInroy Lockheed Software, Technology Center
W. Livley Texas A&M University
S. Sheppard Texas A&M University
Sponsor ACM: Association for Computing Machinery
Publisher IEEE Computer Society Press Los Alamitos, CA, USA
Bibliometrics Downloads (6 Weeks): 3, Downloads (12 Months):
6, Citation Count: 2
A rapid prototyping method for top-down design of system-on-chipdevices
using LPGAs
Suzuki, F.; Koizumi, H.; Seo, K.; Yasuura, H.; Hiramine, M.;
Okino, K.; Or-Bach, Z.
Design Automation Conference 1997. Proceedings of the ASP-DAC
apos;97. Asia and South Pacific
Volume , Issue , 28-31 Jan 1997 Page(s):9 - 18 Find Products
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Printed Circuit Board (PCB) Fabrication Services
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Printed circuit board (PCB) fabrication services design and
fabricate circuit boards. They differ from electronic manufacturing
services, which populate and assemble boards. Although capabilities
vary from supplier to supplier, printed circuit board fabrication
services perform activities such as PCB design and layout,
prototyping and production, and testing and evaluation. Some
PCB fabrication services offer just-in-time capabilities.
Others specialize in single-sided, double-sided, multi-layer,
or flexible boards. Board components are mounted with either
through-hole technology (THT) or surface mount technology
(SMT).
Digital Object Identifier 10.1109/ASPDAC.1997.600051
Summary:This paper proposes two methods for a rapid prototyping
of top-down system-on-chip (SOC) design using laser programmable
gate arrays (LPGAs). The first one is a design flow of SOC
consisting of four steps: concept-making, virtual-world prototyping,
synthesis, and real-world prototyping. The steps can be undertaken
individually or in tandem and provisional product models are
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ABSTRACT
A knowledge based software development environment under development
at Lockheed's Software Technology Center (STC) in Austin,
Texas. The environment, called Express, consists of several
very high level executable specification languages, their
corresponding translation systems, and a knowledge based framework
to integrate and manage the specifications both at specification
time and execution time. Express generates code automatically
via a series of correctness-preserving transformations on
the specifications. The ultimate effect is a dramatic increase
in software development productivity and maintainability.
This paper provides an overview of the environment and highlights
the development of the Graphical Specification Subsystem which
is the component of the environment for prototyping the interface
between the target user and the embedded system interface.
temperature vulcanizing (RTV), and three-dimensional (3D)
printing. Rapid prototyping equipment may also be part of
a computer-aided manufacturing (CAM) system to aid in the
development process by creating 3D models from computer-aided
design (CAD) drawings. 3D rapid prototyping equipment reads
CAD data and creates a sculptural object based on this information.
Rapid prototyping equipment includes various additive methods
for creating design samples. Stereolithography (SLA) equipment
makes a solid object by using a laser on the surface of a
container of a liquid plastic or polymer. The laser traces
out a layer in the polymer, which is
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