首页> 外文会议>American Society For Engineering Education Annual Conference and Exposition >DIGITAL LOGIC DESIGN: MEETING INDUSTRY'S NEEDS THROUGH UNIVERSITY COMMUNITY COLLEGE COLLABORATION
【24h】

DIGITAL LOGIC DESIGN: MEETING INDUSTRY'S NEEDS THROUGH UNIVERSITY COMMUNITY COLLEGE COLLABORATION

机译:数字逻辑设计:通过大学和社区学院合作满足行业的需求

获取原文

摘要

Hardware Description Language and Field Programmable Gate Array (FPGA) have revolutionized the way Digital Logic Design is taught and implemented. Traditional ways of teaching logic design using discrete components (TTL: Transistor-Transistor Logic and CMOS: Complementary Metal Oxide Semiconductors) have been replaced by Programmable Logic Devices (CPLD: Complex Programmable Logic Devices and FPGA). Today, a more standard development process is widely used in industry. The process uses Hardware Description Languages as a design entry to describe the digital systems. The two most widely used Hardware Description Languages in industry are VHDL (Very High Speed Integrated Circuit Hardware Description Language) and Verilog (Verifying Logic). Although most traditional electrical and computer engineering programs have updated their curriculum to include topics in hardware description language and programmable logic design (FPGA/CPLD), two-year and four-year electrical engineering technology programs have fallen behind and are moving slowly in updating their curriculum. To effectively meet the next generation's workforce needs, the electrical and computer engineering technology curriculum must be current, relevant, and teach technology that is widely used in industry. To meet this goal, this paper propose a curriculum development project designed to meet the needs of both community college and university-based two- and four-year technology programs that will develop new courses in logic design and hardware modeling using VHDL and Field Programmable Gate Array (FPGA) Logic Design to teach students marketable logic design skills. Curriculum development will include the development of hands-on re-configurable computing labs both at the university and the community college, we will be able to provide students at universities and community colleges with state-of-the-art training tools that match the expectations of industry. Through this enhanced partnerships with community colleges, which will involve faculty development, sharing of curriculum resources, and undergraduate research exchanges, we aim to increase the transition of students from two-year to four-year programs. Our aim is not to take away from students attending or planning to attend community college but rather to improve curriculum for students in both two- and four-year programs and to make pathways clear and easy for those who do wish to continue their technology education past their two-year degree.
机译:硬件描述语言和现场可编程门阵列(FPGA)彻底改变了数字逻辑设计的方式教导和实现。使用离散组件(TTL:晶体管 - 晶体管逻辑和CMOS:互补金属氧化物半导体)的传统教学方式已被可编程逻辑器件(CPLD:复杂的可编程逻辑器件和FPGA)代替。如今,一个更标准的开发过程广泛用于工业。该过程使用硬件描述语言作为描述数字系统的设计条目。业界中使用的两个最广泛使用的硬件描述语言是VHDL(非常高速集成电路硬件描述语言)和Verilog(验证逻辑)。虽然大多数传统电气和计算机工程方案更新了他们的课程,但包括硬件描述语言和可编程逻辑设计(FPGA / CPLD),两年和四年电气工程技术程序已经落后,在更新中慢慢移动课程。为了有效满足下一代的劳动力需求,电气和计算机工程技术课程必须是当前,相关和教学技术,这些技术在工业中被广泛应用于行业。为满足这一目标,提出了课程开发项目,旨在满足社区学院和大学的两年和四年技术方案的需求,将使用VHDL和现场可编程门开发逻辑设计和硬件建模的新课程阵列(FPGA)逻辑设计,以教育学生可销售逻辑设计技巧。课程开发将包括在大学和社区学院开发实践重新配置计算实验室,我们将能够为大学和社区学院提供学生,最先进的培训工具符合预期行业。通过这种加强与社区学院的伙伴关系,将涉及教师发展,分享课程资源和本科研究交流,我们的目标是将学生从两年增加到四年计划的转型。我们的宗旨是不带走参加或计划参加社区学院的学生,而是为了改善两年和四年计划的学生课程,并为那些希望继续进行技术教育的人来说清晰,容易实现途径他们的两年学位。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号