2004•Unpublished venueRequires access

Process flow and manufacturing concept for embedded active devices

Rolf Aschenbrenner, Andreas Ostmann, A. Neumann, H. Reichl

Open publisher page 22 citations

Abstract

The development of smaller, lighter and thinner packages with larger and higher pin count IC's and better performance will play an enormously important role in the future for portable electronic products. Additionally the product life time is going down, requiring short design cycles and a production at low-cost based on well established technologies. These trends are a strong challenge for microelectronic packaging and assembly technology. A chip embedding technology for stackable packages was developed at the joined institute of Fraunhofer IZM and the Technical University of Berlin the so-called chip in polymer (CIP) process. Its main feature is the embedding of very thin chips (50 /spl mu/m thickness or less) into build-up layers of printed circuit boards (PCBs), which does not sacrifice any space in the core substrate. The embedded chips can be combined with integrated passive components. A substantial advantage of the CIP approach is the embedding of components, using mainly processes and equipment from advanced PCB manufacturing. The scope of this paper is the presentation of the chip in polymer technology regarding technological and economical aspects and to discuss the effect on a new value chain.

About this research paper

What this paper is about

The development of smaller, lighter and thinner packages with larger and higher pin count IC's and better performance will play an enormously important role in the future for portable electronic products. Additionally the product life time is going down, requiring short design cycles and a production at low-cost based on well established technologies. These trends are a strong challenge for microelectronic packaging and assembly technology. A chip embedding technology for stackable packages was developed at the joined institute of Fraunhofer IZM and the Technical University of Berlin the so-called chip in polymer (CIP) process. Its main feature is the embedding of very thin chips (50 /spl mu/m thickness or less) into build-up layers of printed circuit boards (PCBs), which does not sacrifice any space in the core substrate. The embedded chips can be combined with integrated passive components. A substantial advantage of the CIP approach is the embedding of components, using mainly processes and equipment from advanced PCB manufacturing. The scope of this paper is the presentation of the chip in polymer technology regarding technological and economical aspects and to discuss the effect on a new value chain.

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OpenAlex reports 22 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The development of smaller, lighter and thinner packages with larger and higher pin count IC's and better performance will play an enormously important role in the future for portable electronic products. Additionally the product life time is going down, requiring short design cycles and a production at low-cost based on well established technologies. These trends are a strong challenge for microelectronic packaging and assembly technology. A chip embedding technology for stackable packages was developed at the joined institute of Fraunhofer IZM and the Technical University of Berlin the so-called chip in polymer (CIP) process. Its main feature is the embedding of very thin chips (50 /spl mu/m thickness or less) into build-up layers of printed circuit boards (PCBs), which does not sacrifice any space in the core substrate. The embedded chips can be combined with integrated passive components. A substantial advantage of the CIP approach is the embedding of components, using mainly processes and equipment from advanced PCB manufacturing. The scope of this paper is the presentation of the chip in polymer technology regarding technological and economical aspects and to discuss the effect on a new value chain.

Key concepts: Microelectronics, Chip, Embedding, Manufacturing engineering, Computer science, Flip chip, Process (computing), Integrated circuit packaging

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