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Fundamentals of Layout Design for Electronic Circuits
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Fundamentals of Layout Design for Electronic Circuits/ by Jens Lienig, Juergen Scheible.
作者:
Lienig, Jens.
其他作者:
Scheible, Juergen.
面頁冊數:
XV, 306 p. 220 illus., 215 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Electronic Circuits and Devices. -
電子資源:
https://doi.org/10.1007/978-3-030-39284-0
ISBN:
9783030392840
Fundamentals of Layout Design for Electronic Circuits
Lienig, Jens.
Fundamentals of Layout Design for Electronic Circuits
[electronic resource] /by Jens Lienig, Juergen Scheible. - 1st ed. 2020. - XV, 306 p. 220 illus., 215 illus. in color.online resource.
Introduction -- Technology Know-How: From Silicon to Devices -- Bridges to Technology: Interfaces, Design Rules and Libraries -- Methodologies for Physical Design: Models, Styles, Tasks, and Flows -- Steps in Physical Design: From Netlist to Layout Post Processing -- Special Layout Techniques for Analog IC Design -- Addressing Reliability in Physical Design. .
This book covers the fundamental knowledge of layout design from the ground up, addressing both physical design, as generally applied to digital circuits, and analog layout. Such knowledge provides the critical awareness and insights a layout designer must possess to convert a structural description produced during circuit design into the physical layout used for IC/PCB fabrication. The book introduces the technological know-how to transform silicon into functional devices, to understand the technology for which a layout is targeted (Chap. 2). Using this core technology knowledge as the foundation, subsequent chapters delve deeper into specific constraints and aspects of physical design, such as interfaces, design rules and libraries (Chap. 3), design flows and models (Chap. 4), design steps (Chap. 5), analog design specifics (Chap. 6), and finally reliability measures (Chap. 7). Besides serving as a textbook for engineering students, this book is a foundational reference for today’s circuit designers. This is a welcome and very important new reference book for both students and practicing microelectronics design engineers. It fills a gap in pedagogy that has been growing over time, by building from foundations while spanning layers of system architecture and integration, as well as both analog and digital layout. Professor Andrew B. Kahng, University of California San Diego This book is an excellent introduction, covering where we are now, the key problems we currently face, and also providing a glimpse of what is to come. The authors are respected leaders in the field, with deep knowledge; they cover the material in a crisp and clear manner, making this text a great resource for anyone, from the new student to the seasoned expert. Associate Professor Patrick H. Madden, Binghamton University This book covers fundamentals of IC mask or layout design with a strong emphasis on the technological background, the practical design and verification steps, and the analog and reliability issues. I find the book worth reading. It equips students and junior engineers with comprehensive layout design knowledge. Professor Mark Po-Hung Lin, National Chiao Tung University, Taiwan The combined expertise of the authors and the attention they have paid to theory and practice, big picture and detail, illustrative examples and written text, make this book the perfect go-to resource for students and engineers alike. Professor Laleh Behjat, University of Calgary.
ISBN: 9783030392840
Standard No.: 10.1007/978-3-030-39284-0doiSubjects--Topical Terms:
782968
Electronic Circuits and Devices.
LC Class. No.: TK7888.4
Dewey Class. No.: 621.3815
Fundamentals of Layout Design for Electronic Circuits
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Introduction -- Technology Know-How: From Silicon to Devices -- Bridges to Technology: Interfaces, Design Rules and Libraries -- Methodologies for Physical Design: Models, Styles, Tasks, and Flows -- Steps in Physical Design: From Netlist to Layout Post Processing -- Special Layout Techniques for Analog IC Design -- Addressing Reliability in Physical Design. .
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