⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文介绍了一款厘米级自供电、智能且安全的IoT边缘节点,集成了基于14nm Tri-Gate CMOS的超低功耗SoC。解决了物联网设备在尺寸、功耗、安全性和能量收集方面的挑战。
Erkan Alpman1, Angela Nicoara1, Roman Popov1, Leonid Azarenkov1, Mikhail Moiseev1, Li Zhao1, Santosh Ghosh1, Rafael Misoczki1, Ankit Gupta2, Akhila M2, Sriram Muthukumar2, Saurabh Bhandari2, Yada Satish2, Kartik Jain2, Robert Flory1, Chanitnan Kanthapanit1, Eduardo Quijano3, Bradley Jackson1, Hao Luo4, Suhwan Kim1, Vaibhav Vaidya1, Adel Elsherbini5, Renzhi Liu1, Farhana Sheikh1, Omesh Tickoo1, Ilya Klotchkov1, Manoj Sastry1, Sheldon Sun1, Mukesh Bhartiya2, Anuradha Srinivasan1, Yatin Hoskote6, Hong Wang4, Vivek De1 Intel, Hillsboro, OR; 2Intel, Bangalore, India; 3Intel, Guadalajara, Mexico 4 Intel, Santa Clara, CA; 5Intel, Chandler, AZ; 6ARM, Austin, TX 1 Energy efficiency, performance and security of compact, self-powered, smart, secure and connected motes at the edge of IoT are critical for realizing intelligent, robust and sustainable end-to-end cyberphysical systems that deliver compelling
Tanay Karnik1, Dileep Kurian2, Paolo Aseron1, Richard Dorrance1,