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Digital Technology Education Collaborative Third Year Progress Report

机译:数字技术教育合作三年进度报告

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The electronics world is undergoing a transformation in the underlying technologies used to create new products for the world's consumers. The movement to reconfigurable digital systems using Field Programmable Gate Arrays (FPGAs) and microcontrollers is sweeping the electronics world in the rush to create smaller, faster, and more flexible consumer and industrial devices. J. F. Drake State Community College has put together a team of educational partners spanning the country with the background and skills necessary to create a vibrant virtual center. Team members include colleges and universities with a history of reaching out to minority and under-served student populations. Partners on this project have years of successful National Science Foundation project implementations educating and training hundreds of instructors and introducing thousands of students to advanced technologies. The goal of this project is to offer an unprecedented opportunity to bring America's technicians directly to this cutting edge of reconfigurable electronics technology. This project will substantially update digital logic courses by providing the tools and curricular materials needed to replace the now outdated materials most commonly used. The updated curriculum will greatly enhance competitiveness for community college graduates seeking to enter the job market or undergraduate engineering programs. Secondly, the project will provide colleges with educational equipment up-to-date with current technological solutions. Most importantly, the project will bring new excitement to education by introducing reconfigurable electronics with a new world of possibilities for student projects, such as robot competitions, video game design, embedded systems and more. Finally, the project will develop industry, K-12 and university partnerships to facilitate pathways to careers in the exciting field of reconfigurable electronics for first-generation, minority and other under-served populations, including veterans. In summary, this project will provide the training and educational resources and promote best practices for community college, university, and high school instructors to enable them to teach new hardware technologies to a broad range of students, including those who have not previously had access to this level of training and career choice. The paper will address third year project activities including the Faculty Professional Development workshop on Field Programmable Gate Arrays (FPGAs) and ARM-based microcontrollers, assessment results and lessons learned, the summer outreach activity happened at partner institutions, and finally, the undergraduate research internship experience.
机译:电子世界正在接受潜在技术的转型,用于为世界消费者创造新产品。使用现场可编程门阵列(FPGA)和微控制器的可重新配置数字系统的运动正在急剧创造较小,更快,更灵活的消费和工业设备。 J. F. Drake State Community College将一支教育合作伙伴团队汇集在一起​​,其中包括创建充满活力的虚拟中心所需的背景和技能。团队成员包括历史抵达少数民族和送达学生人口的历史。对该项目的合作伙伴具有多年的成功国家科学基金会项目实现,教育和培训数百名教师,并将成千上万的学生引入先进技术。该项目的目标是提供前所未有的机会,将美国技术人员直接带到可重新配置的电子技术的前沿。该项目将通过提供更换现在常用的现代材料所需的工具和课程材料来大幅更新数字逻辑课程。更新的课程将大大提高社区大学毕业生寻求进入就业市场或本科工程方案的竞争力。其次,该项目将以最新的技术解决方案对教育设备提供高等学校。最重要的是,该项目将通过引入重新配置的电子产品与学生项目的新可能性,如机器人竞争,视频游戏设计,嵌入式系统等,为教育带来新的兴奋。最后,该项目将开发行业,K-12和大学伙伴关系,以促进令人兴奋的智力领域的职业领域,以获得第一代,少数群体和其他不足的人口,包括退伍军人。总之,该项目将提供培训和教育资源,促进社区学院,大学和高中教师的最佳实践,使他们能够向广泛的学生教授新的硬件技术,包括以前没有访问过的人这种培训水平和职业选择。本文将介绍第三年项目活动,包括专业专业发展研讨会,包括现场可编程门阵列(FPGA)和基于ARM的微控制器,评估结果和经验教训,夏季外展活动发生在合作机构,最后,本科研究实习经验。

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