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Proceedings ArticleDOI

Development of low viscosity, high dielectric constant (k) polymers for integral passive applications

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TLDR
In this article, the authors developed low viscosity, high k polymers for use in conjunction with high k ceramic materials, such as lead magnesium niobate, to form high k polymer-ceramic composites.
Abstract
The integration of passive components (resistors, capacitors, inductors) into printed wiring boards (PWBs) has become a very significant part of electronic packaging technology. The biggest advantages of integrating passive components into a substrate are reduced assembly costs, minimized PWB real estates, reduced component dimensions, and improved electrical performance. One of the challenges of incorporating passives into a PWB is choosing a suitable material that satisfies both electrical and reliability needs. This research seeks to develop high dielectric constant (k) materials for integral capacitors and integral decoupling capacitors. More specifically, the goal of this work is to develop low viscosity, high k polymers for use in conjunction with high k ceramic materials, such as lead magnesium niobate, to form high k polymer-ceramic composites. Polymers with viscosity values ranging from 0.13 to 0.15 Pa/spl middot/s were formulated and characterized by differential scanning calorimetry (DSC), dielectric analysis (DEA), and rheology. The polymers were mixed in different volume percentages with lead magnesium niobate-lead titanate (PMN-PT) ceramic powder by ball milling. DSC and DEA were used to characterize this composite material. Several methods for increasing dielectric constant were identified and implemented. Prototype capacitors were fabricated in order to measure k values for the composite materials. Dielectric constant values as high as 62 were achieved with samples containing relatively low volume percentages of PMN-PT ceramic powder.

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Citations
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Journal ArticleDOI

Dependence of dielectric properties on BT particle size in EP/BT composites

TL;DR: In this article, the dielectric properties of epoxy resin and barium titanate (BT) composites were studied by means of scanning electron microscopy (SEM).
Proceedings ArticleDOI

Novel high dielectric constant nano-structure polymer-ceramic composite for embedded capacitor application

TL;DR: In this paper, a novel nano-structure polymer-ceramic composite with very high dielectric constant (/spl epsi/sub r/-100, a new record for the highest reported value of nano-composite) has been developed.
Book ChapterDOI

Dielectric Powder/polymer Composites for High Energy Density Capacitors

TL;DR: In this article, the synthesis, characterization, and electrical performance of an epoxy/ barium titanate composite was presented. But the performance of the composite was not analyzed. But it was shown that the particles of BaTiO 3 could be well dispersed into an epoxylon matrix using the common ceramic dispersant Menhaden fish oil, in 80/20 ratio by weight xylene to ethanol solvents, via ball milling.
Proceedings ArticleDOI

CAD of integrated passives on printed circuit boards through utilization of multiple material domains

TL;DR: In this article, a CAD methodology for PCB's is presented that defines correlated component representations in two material stratifications, one is similar to the current SMT component approach whereas the other is an integrated passives approach.
Proceedings ArticleDOI

Space mapping of spiral inductors between multiple material domains

TL;DR: In this article, space mapping techniques are applied to generate an inductor component for a library that has two equivalent physical representations, one for prototype design phase and one for production, respectively.
References
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Reference BookDOI

Ferroelectric Polymers : Chemistry: Physics, and Applications

TL;DR: Ferroelectric Polymers: Polymer Electrets Crystal Structures and Phase Transitions of PVDF and Related Copolymers Ferroelectric, Pyroelectric, and Piezoelectric Properties of Poly(vinylidene fluoride) PVDF as mentioned in this paper and Its Blends Poly(trifluoroethylene) Ferro electric Nylons Cyanopolymers Polyureas and Polythioureas PIEZoelectrics and Pyroelectricity
Journal ArticleDOI

Polymer-ceramic composite materials with high dielectric constants

D.K. Das-Gupta, +1 more
- 01 Mar 1988 - 
TL;DR: In this article, the possibility of employing thick film composite materials for capacitor dielectrics has been investigated using a system in which high permittivity ceramic powders (lead zirconate titanate) have been incorporated in a polymer matrix (poly (vinylidene fluoride)).
Proceedings ArticleDOI

Integrated and integral passive components: a technology roadmap

TL;DR: The NEMI Passive Component Technology Working Group (P-TWG) of the National Electronics Manufacturing Initiative (NEMI) is a privately funded initiative created to promote collaborative development by industry, government and academia of the underlying technology and infrastructure required to facilitate manufacture of new high-technology electronic products in North America as discussed by the authors.
Journal ArticleDOI

Complex electrical permittivity of 0–3 superconducting ceramic/polymer composites

TL;DR: In this article, the dielectric behavior of a new high Tc superconducting composite material has been investigated and the complex electrical permittivity has been determined at frequencies between 1kHz and 1MHz and temperatures between 50 and 290K for composites with volume percentage of superconductor from 0 to 70%.
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