Presentation 1999/1/20
Electromagnetic analisys of integrated transmission line and comparison of interconnection characteristics for transmission line and optical waveguide
TAKESHI DOI, ATSUSHI IWATA,
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Abstract(in English) With the increase of integration scale and the chip size, interconnection delay on LSI chips has become one of the most important factors limiting performance. Using transmission line is a promising solution to overcome this limitation. For integrating the transmission line into LSI, the estimation of the characteristics is essential. By the electromagnetic analysis using the FDTD method, we calculated a relationship between the cross sectional size and characteristics of the transmission line that consist of aluminum wire and SiO_2 insulator. At 1 GHz, the wire width, the wire thickness and the insulator thickness of integrated stripline of 2 cm length amount to about 3 μm, 3 μm and 3 μm, respectively. Based on the results, the RC line, the transmission line and the optical waveguide were compared each other. The appropriate ranges of the interconnection length about the delay time and power dissipation are less than 5 mm for the RC line, 5 mm ~ several cm for the transmission line and over several cm for the optical waveguide. The line densities are about 100 lines/mm, 20 lines/mm, 250 lines/mm, respectively
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Keyword(in English) integrated transmission line / integrated optical waveguide / FDTD method / delay / power dissipation
Paper # ED98-192,MW98-155,ICD98-259
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Conference Date 1999/1/20(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Electromagnetic analisys of integrated transmission line and comparison of interconnection characteristics for transmission line and optical waveguide
Sub Title (in English)
Keyword(1) integrated transmission line
Keyword(2) integrated optical waveguide
Keyword(3) FDTD method
Keyword(4) delay
Keyword(5) power dissipation
1st Author's Name TAKESHI DOI
1st Author's Affiliation Department of Electrical Engineering, Hiroshima University()
2nd Author's Name ATSUSHI IWATA
2nd Author's Affiliation Department of Electrical Engineering, Hiroshima University
Date 1999/1/20
Paper # ED98-192,MW98-155,ICD98-259
Volume (vol) vol.98
Number (no) 523
Page pp.pp.-
#Pages 8
Date of Issue