DocumentCode :
628634
Title :
Innovative ultra fine line ceramic substrate for semiconductor package
Author :
Shimoishizaka, Nozomi ; Nakano, T. ; Tsuji, Mineo ; Yamaguchi, Etsuji ; Fujimoto, Hiroshi ; Katsunori, Hirata
Author_Institution :
CONNECTEC Japan Corp., Myoko, Japan
fYear :
2013
fDate :
28-31 May 2013
Firstpage :
1840
Lastpage :
1845
Abstract :
Recently as represented by smart phones and high-speed graphic processing, data processing late is becoming more faster and band width is increasing rapidly. As a result, the clock speed of logic LSI and the bit rate of memory IC are becoming faster and faster. Additionally, the frequency of wireless communication is becoming higher, from GHz to several decimal GHz. The Semiconductor for these applications is required not only to be fast and low power internally, b ut also required to be lo we r signal loss at and higher thermal conductivity as the package. However semiconductor package with organic substrate which is commonly used, has fundamental issues of higher loss at GHz range, lower thermal conductivity, lower reliability by nature characteristic of organic substrate. So it is commonly known that organic substrate is difficult to meet with required specification of the next generation semiconductor. Meanwhile, ceramic substrate is known that the lower loss at GHz band, higher thermal conductivity and higher reliability by the nature characteristic of inorganic materials. and these characteristics are very suitable for next generation semiconductor. But regarding the signal line density of ceramic substrate, conductive patterns are made by old printing method by using metal mask and conductive paste. Thus it is difficult to make fine lines for narrow pitch LSI p ads. So currently, ceramic substrate package is used only for high-end semiconductor, such as high frequency, high power and high reliability application. In order to utilize excellent characteristic of ceramic substrate for semiconductor package, we are developing new patterning method by innovative approach. This method can make breakthrough conventional printing method completely and increase the density of signal lines dramatically. In this paper, we describe the process of this new method and discuss the results of transmission line simulation.
Keywords :
ceramics; substrates; conductive paste; data processing late; high reliability application; high speed graphic processing; innovative ultra fine line ceramic substrate; inorganic materials; metal mask; next generation semiconductor; old printing method; organic substrate; semiconductor package; smart phones; thermal conductivity; transmission line simulation; wireless communication; Ceramics; Conductivity; Dielectrics; Impedance; Laser beams; Printing; Substrates;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronic Components and Technology Conference (ECTC), 2013 IEEE 63rd
Conference_Location :
Las Vegas, NV
ISSN :
0569-5503
Print_ISBN :
978-1-4799-0233-0
Type :
conf
DOI :
10.1109/ECTC.2013.6575827
Filename :
6575827
Link To Document :
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