System-on-chip (SoC) designs provide integrated solutions to challenging design problems in the telecommunications, multimedia, and consumer electronics domains. Much of the progress in these fields hinges on the designers ability to conceive complex electronic engines under strong time-to market pressure. Success will rely on using appropriate design and process technologies, as well as on the ability to interconnect existing components including processors, controllers, and memory array reliably, in plug and play fashion. This paper presents a prototyping methodology and flexible hardware platform developed to facilitate rapid prototyping of such communication systems
With the growing complexity in consumer embedded products, new tendencies forecast heterogeneous Mul...
Network-on-chip (NoC) is an emerging interconnect infrastructure to address the scalability limitati...
Kalte H, Porrmann M, Rückert U. A Prototyping Platform for Dynamically Reconfigurable System on Chip...
System-on-chip (SoC) designs provide integrated solutions to challenging design problems in the tele...
NoThis paper presents a framework for high-level exploration, Register Transfer-Level (RTL) design a...
Diversity of computational requirements of information technology products will increase. The produc...
Multiprocessor system-on-chip (MP-SoC) platforms are emerging as an important trend for System on Ch...
Brinkmann A, Langen D, Rückert U. A Rapid Prototyping Environment for Microprocessor based System-on...
Systems on chip (SOC) are composed of intellectual property blocks (IP) and interconnect. While matu...
Addresses the Challenges Associated with System-on-Chip Integration Network-on-Chip: The Next Genera...
Systems on chip (SOC) are composed of intellectual property blocks (IP) and interconnect. While matu...
This chapter reviews techniques for technology-aware connectivity design for the early planning of N...
Exploitation of silicon capacity will require improvements in design productivity and more scalable ...
We propose a packet switched platform for single chip systems which scales well to an arbitrary numb...
Traditionally, design space exploration for Systems-on-Chip (SoCs) has focused on the computational ...
With the growing complexity in consumer embedded products, new tendencies forecast heterogeneous Mul...
Network-on-chip (NoC) is an emerging interconnect infrastructure to address the scalability limitati...
Kalte H, Porrmann M, Rückert U. A Prototyping Platform for Dynamically Reconfigurable System on Chip...
System-on-chip (SoC) designs provide integrated solutions to challenging design problems in the tele...
NoThis paper presents a framework for high-level exploration, Register Transfer-Level (RTL) design a...
Diversity of computational requirements of information technology products will increase. The produc...
Multiprocessor system-on-chip (MP-SoC) platforms are emerging as an important trend for System on Ch...
Brinkmann A, Langen D, Rückert U. A Rapid Prototyping Environment for Microprocessor based System-on...
Systems on chip (SOC) are composed of intellectual property blocks (IP) and interconnect. While matu...
Addresses the Challenges Associated with System-on-Chip Integration Network-on-Chip: The Next Genera...
Systems on chip (SOC) are composed of intellectual property blocks (IP) and interconnect. While matu...
This chapter reviews techniques for technology-aware connectivity design for the early planning of N...
Exploitation of silicon capacity will require improvements in design productivity and more scalable ...
We propose a packet switched platform for single chip systems which scales well to an arbitrary numb...
Traditionally, design space exploration for Systems-on-Chip (SoCs) has focused on the computational ...
With the growing complexity in consumer embedded products, new tendencies forecast heterogeneous Mul...
Network-on-chip (NoC) is an emerging interconnect infrastructure to address the scalability limitati...
Kalte H, Porrmann M, Rückert U. A Prototyping Platform for Dynamically Reconfigurable System on Chip...