New Modulation and Detection Method to Reduce Physical Address Reading

광디스크의 물리어드레스 독출에러를 줄이기 위한 변조 및 검출방법

  • Shim, Jae-Seong (Samsung Electronics DM R&D Center High Density Recording System Team) ;
  • Kim, Ki-Hyun (Samsung Electronics DM R&D Center High Density Recording System Team) ;
  • Park, Hyun-Soo (Samsung Electronics DM R&D Center High Density Recording System Team) ;
  • Park, In-Sik (Samsung Electronics DM R&D Center High Density Recording System Team) ;
  • Seo, Joong-Eon (Samsung Electronics DM R&D Center High Density Recording System Team) ;
  • Shin, Dong-Ho (Samsung Electronics DM R&D Center High Density Recording System Team)
  • 심재성 (삼성전자 DM연구소 고밀도기록기기팀) ;
  • 김기현 (삼성전자 DM연구소 고밀도기록기기팀) ;
  • 박현수 (삼성전자 DM연구소 고밀도기록기기팀) ;
  • 박인식 (삼성전자 DM연구소 고밀도기록기기팀) ;
  • 서중언 (삼성전자 DM연구소 고밀도기록기기팀) ;
  • 신동호 (삼성전자 DM연구소 고밀도기록기기팀)
  • Published : 2001.07.18

Abstract

The RF signal is distorted since the cross-talk noise from adjacent tracks and ISI(Inter Symbol Interference) is also incresed as recording density is increased. These cross-talk noise and ISI are main reason of reading error for the embossed pits on the disc. In this study we suggest a new coding method, spaced modulation technique and a detection technique for the spaced modulation. We report the result shows detection performance is improved when we use the suggested spaced modulation code and the detection technique instead of conventional modulation code.

Keywords