会议信息

FPT 2026: International Conference on Field-Programmable Technology

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截稿日期:
2026-06-05
通知日期:
2026-08-14
会议日期:
2026-12-07
会议地点:
Honolulu, Hawaii, USA
届数:
25
CCF: C   浏览: 139814   关注: 46   参加: 10

会伴指数 (CP-I)

64.3 / 100
全站第 456 名 / 共 5,683 个会议 · 前 9%

系统与体系结构 第 80 / 341

学术认可 (35%)
66
投稿选择性 (20%) 无数据 —— 按中性基准 50 分计入
会议传承 (20%)
88
社区关注 (10%)
62
资料公开度 (15%)
50

用到的输入: 收录等级:CCF C · 有据可查的届次:25 · 在会伴关注它的研究者:46 人 · 过去 24 个月打开过本页的研究者:26 人

公开资料里还缺: 历年录用率 (+4.5) · 历届信息 (+3.0)
主办方认领本会议后,可直接在这一页补上;分数每晚重算。如何提升这个分数

置信度 80% —— 分数中有多大比例来自实际观测到的数据,而不是中性基准。 这个分数是怎么算出来的 · 查看完整榜单 · 算法版本 1.1 · 算于 2026-09-22

征稿

FPT 2026 (International Conference on Field-Programmable Technology) is a CCF C conference held in Honolulu, Hawaii, USA on 2026-12-07. The paper submission deadline is 2026-06-05. Acceptance notifications are sent on 2026-08-14.

Topics of Interest The FPT conference is the premier conference in the Asia-Pacific region on field-programmable technologies. Field-programmable devices enable flexible hardware performance with software-like adaptability, driving innovation in high-performance computing, embedded systems, AI accelerators, and beyond. Submissions are solicited on new research results and detailed tutorial expositions related to field-programmable technologies, including but not limited to: Tools and Design Techniques for field-programmable technology including placement, routing, synthesis, verification, debugging, runtime support, technology mapping, partitioning, parallelization, timing optimization, design and run-time environments, high-level synthesis (HLS) compilers, languages and modeling techniques, provably-correct development, intellectual property core-based design, domain-specific development, hardware/software co-design. Architectures for field-programmable technology including field-programmable gate arrays, complex programmable logic devices, coarse-grained reconfigurable arrays, field-programmable interconnect, field-programmable analogue arrays, field-programmable arithmetic arrays, memory architectures, interface technologies, low-power techniques, adaptive devices, reconfigurable computing systems, high-performance reconfigurable systems, evolvable hardware and adaptive computing, fault tolerance and avoidance. Device Technology for field-programmable logic including programmable memories such as non-volatile, dynamic and static memory cells and arrays, interconnect devices, circuits and switches, and emerging VLSI device technologies. Applications of field-programmable technology including accelerators for biomedical/scientific/neuro-morphic computing and machine learning, network processors, real-time systems, rapid prototyping, hardware emulation, digital signal processing, interactive multimedia, machine vision, computer graphics, cryptography, robotics, manufacturing systems, embedded applications, evolvable and biologically-inspired hardware. Education for field-programmable technology including courses, teaching and training experience, experiment equipment, design and applications. Note that simply implementing an application using an FPGA is not considered a sufficient research contribution. Application-based papers should emphasize novel design techniques, novel use of embedded resources, or clearly articulated and measured system performance benefits.
Dou Sun 最后更新于

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