Invention Grant
US09433082B1 Propagation velocity tuning with functionalized carbon nanomaterial in printed wiring boards (PWBs) and other substrates, and design structures for same
有权
印刷电路板(PWB)和其他基板中的官能化碳纳米材料的传播速度调节,以及相同的设计结构
- Patent Title: Propagation velocity tuning with functionalized carbon nanomaterial in printed wiring boards (PWBs) and other substrates, and design structures for same
- Patent Title (中): 印刷电路板(PWB)和其他基板中的官能化碳纳米材料的传播速度调节,以及相同的设计结构
-
Application No.: US14730286Application Date: 2015-06-04
-
Publication No.: US09433082B1Publication Date: 2016-08-30
- Inventor: Dylan J. Boday , Samuel R. Connor , Joseph Kuczynski
- Applicant: International Business Machines Corporation
- Applicant Address: US NY Armonk
- Assignee: International Business Machines Corporation
- Current Assignee: International Business Machines Corporation
- Current Assignee Address: US NY Armonk
- Agent Matthew J. Bussan
- Main IPC: H05K1/00
- IPC: H05K1/00 ; H05K1/02

Abstract:
An apparatus has a permittivity attenuation layer interposed between a substrate and a first conductive trace, wherein the permittivity attenuation layer comprises a resin matrix containing functionalized carbon nanomaterial, such as functionalized single-wall carbon nanotubes (f-SWNTs). In some embodiments, a design structure for designing, manufacturing, or testing the apparatus is tangibly embodied in a machine readable medium. In some embodiments, the apparatus comprises an enhanced laminate core for use in a printed wiring board (PWB) that contains a differential pair having an inner-leg conductive trace and an outer-leg conductive trace. A permittivity attenuation layer is interposed between the inner-leg conductive trace and a laminate core, wherein the loading level of f-SWNTs in the permittivity attenuation layer is selected to attenuate the permittivity of the inner-leg conductive trace to match the permittivity of the outer-leg conductive trace.
Information query