By D. Sriram, R. Logcher, S. Fukuda
This quantity includes a collection of papers offered on the MIT-JSME Workshop on Cooperative Product improvement held on the Massachusetts Institute of know-how, Cambridge, MA, united states, November 20/21, 1989. The 28 chosen papers are equipped into the next six different types: - Frameworks, facing problem-solving architectures, - Organizational matters, investigating options for organizing engineering actions for powerful usage of computer-aided instruments, - Negotiation ideas, facing clash detection and determination among quite a few brokers, - Transaction administration matters, facing interplay concerns among the brokers and the critical conversation medium, - layout tools, facing suggestions used by person brokers, - Visualization concepts, together with consumer Interfaces and actual modeling options. Sponsorship and monetary help for the workshop used to be supplied by way of the japanese Society of Mechanical Engineers (JSME), the clever Engineering structures Laboratory at MIT, and Bell Atlantic wisdom platforms, Inc.
Read or Download Computer-Aided Cooperative Product Development: MIT-JSME Workshop MIT, Cambridge, USA, November 20/21, 1989 Proceedings PDF
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Extra resources for Computer-Aided Cooperative Product Development: MIT-JSME Workshop MIT, Cambridge, USA, November 20/21, 1989 Proceedings
Cross-coupling noise has become more significant with higher circuit frequencies and greater coupling capacitance between wires. Wire cross-coupling capacitance has increased with wires spaced closer together and with higher aspect ratios, which have been used to reduce wire RC delays as dimensions scale down. , by twizzling or shielding with ground wires). There are tools for analyzing cross-coupling noise, and some support for half shielding or full shielding of wires by routing them with one or both sides next to a power or ground net at the cost of additional routing congestion and detours.
2 MODULARITY Modular tools are developed in small, independent pieces. This gives several benefits. It simplifies incremental development because new algorithms can more easily be substituted for old ones if the original implementation was modular. It facilitates reuse. Smaller modular utilities are easier to reuse, since they have fewer side effects. It simplifies code development and maintenance, making problems easier to isolate. Modules are easier to test independently. Tool modularity should be made visible to and usable by application engineers and sophisticated users, allowing them to integrate modular utilities through an extension language.
To avoid this nondeterminism, incremental analysis on distributed workers may need to use a consistent snapshot of the circuit with periodic synchronizations points at which changes and analysis updates are done or undone in a fixed deterministic order. Some operations may also need to be serial to ensure consistent behavior. 5 FUTURE SCALING CHALLENGES In the previous sections, we mainly focused on how continued scaling changed the way we are able to predict delay throughout the design flow. This has been one of the main drivers of the design flow changes over the past two decades.