Abbrevation
ICFPT
City
Kyoto
Country
Japan
Deadline Paper
Start Date
End Date
Abstract

ICFPT is the premier conference in the Asia&#8211;Pacific region on<br>field&#8211;programmable technologies including reconfigurable computing<br>devices and systems containing such components&#046; Field&#8211;programmable<br>devices promise the flexibility of software with the performance<br>of hardware&#046; The development and application of field&#8211;programmable<br>technology have become important topics of research and development&#046;<br>Field&#8211;programmable technology is widely applied, in high&#8211;performance<br>computing systems, embedded and low&#8211;power control instruments,<br>mobile communications, rapid prototyping and product emulation,<br>among other areas&#046;<br>Submissions are solicited on new research results and detailed<br>tutorial expositions related to FPT, including but not limited to:<br>&#8211; Tools and Design techniques for FPT<br>including placement, routing, synthesis, verification, debugging,<br>run&#8211;time support, technology mapping, partitioning, parallelization,<br>timing optimization, design and run&#8211;time environments, languages<br>and modeling techniques, provably&#8211;correct development, intellectual<br>property core&#8211;based design, domain&#8211;specific development,<br>hardware/software co&#8211;design&#046;<br>&#8211; Architectures for FPT<br>including field&#8211;programmable gate arrays, complex programmable<br>logic devices, coarse&#8211;grained reconfigurable arrays, field&#8211;programmable<br>interconnect, field&#8211;programmable analogue arrays, field&#8211;programmable<br>arithmetic arrays, memory architectures, interface technologies,<br>low&#8211;power techniques, adaptive devices, reconfigurable computing<br>systems, high&#8211;performance reconfigurable systems, evolvable hardware<br>and adaptive computing, fault tolerance and avoidance&#046;<br>&#8211; Device technology for FPT including programmable memories such as<br>non&#8211;volatile, dynamic and static memory cells and arrays,<br>interconnect devices, circuits and switches, and emerging VLSI device<br>technologies&#046;<br>&#8211; Applications of FPT including biomedical and scientific computation<br>accelerators, network processors, real&#8211;time systems, rapid prototyping,<br>hardware emulation, digital signal processing, interactive multimedia,<br>machine vision, computer graphics, cryptography, robotics, manufacturing<br>systems, embedded applications, evolvable and biologically&#8211;inspired<br>hardware, financial application, big data management, aerospace and<br>extreme environment applications<br>&#8211; Education for FPT including courses, teaching and training experience,<br>experiment equipment, design and applications&#046;<br>