DocumentCode :
1547615
Title :
Si-OEIC (OPIC) for optical pickup
Author :
Fukunaga, Naoki ; Yamamoto, Motohiko ; Kubo, Masaru ; Okabayashi, Naonori
Author_Institution :
Opto-Electron. Devices Div., Sharp Corp., Japan
Volume :
43
Issue :
2
fYear :
1997
fDate :
5/1/1997 12:00:00 AM
Firstpage :
157
Lastpage :
164
Abstract :
An optical pickup OPICTM with a built-in high-speed split photodiode and new device structure, has been developed. We have successfully fabricated the OPIC with a cutoff frequency of 18.4 MHz for 780 nm radiation and 21.1 MHz for 635 nm radiation. The development of the OPIC was made possible by the high-speed photodiode, which has n-type buried diffusion regions formed in the vicinity of the p-type buried isolation diffusion regions. An anti-reflection film is formed directly on the isolation region of the split photodiode as well as on the photodiode, therefore enhancing the sensitivity. The cutoff frequency of the photodiode thus realized is 24 MHz for 780 nm radiation and 41 MHz for 635 nm radiation and the reflection rate is lower than 3%. The OPIC is compatible with 12× speed CD-ROM and DVD optical systems. We show the structure of this new device and its fabrication process. We found that the cutoff frequency of the photodiode is lower when the isolation region is irradiated than when the center region of the photodiode is irradiated. We studied the mechanism of the above difference of the cutoff frequency of the photodiode using device simulations
Keywords :
CD-ROMs; integrated optoelectronics; photodiodes; pick-ups; silicon; video discs; 18.4 MHz; 21.1 MHz; 24 MHz; 41 MHz; 635 nm; 780 nm; CD-ROM; DVD optical systems; OEIC; OPIC; Si; antireflection film; built-in high-speed split photodiode; center region; cutoff frequency; device simulations; device structure; n-type buried diffusion regions; optical pickup; p-type buried isolation diffusion regions; radiation; reflection rate; sensitivity; CD-ROMs; Cutoff frequency; DVD; High speed optical techniques; Optical device fabrication; Optical devices; Optical films; Optical reflection; Optical sensors; Photodiodes;
fLanguage :
English
Journal_Title :
Consumer Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0098-3063
Type :
jour
DOI :
10.1109/30.585534
Filename :
585534
Link To Document :
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