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Eight-to-fourteen modulation

Eight-to-fourteen modulation (EFM) is a data encoding technique – formally, a line code – used by compact discs (CD), laserdiscs (LD) and pre-Hi-MD MiniDiscs. EFMPlus is a related code, used in DVDs and Super Audio CDs (SACDs).

EFM and EFMPlus were both invented by Kees A. Schouhamer Immink. According to European Patent Office former President Benoît Battistelli, "Immink's invention of EFM made a decisive contribution to the digital revolution."[1]

Technological classification

EFM[2] belongs to the class of DC-free run-length limited (RLL) codes; these have the following two properties:

  • the spectrum (power density function) of the encoded sequence vanishes at the low-frequency end, and
  • both the minimum and maximum number of consecutive bits of the same kind are within specified bounds.[3][4]

In optical recording systems, servo mechanisms accurately follow the track in three dimensions: radial, focus, and rotational speed. Everyday handling damage, such as dust, fingerprints, and tiny scratches, not only affects retrieved data, but also disrupts the servo functions. In some cases, the servos may skip tracks or get stuck. Specific sequences of pits and lands are particularly susceptible to disc defects, and disc playability can be improved if such sequences are barred from recording. The use of EFM produces a disc that is highly resilient to handling and solves the engineering challenge in a very efficient manner.

How it works

Under EFM rules, the data to be stored is first broken into eight-bit blocks (bytes). Each eight-bit block is translated into a corresponding fourteen-bit codeword using a lookup table.

The 14-bit words are chosen such that binary ones are always separated by a minimum of two and a maximum of ten binary zeroes. This is because bits are encoded with NRZI encoding, or modulo-2 integration, so that a binary one is stored on the disc as a change from a land to a pit or a pit to a land, while a binary zero is indicated by no change. A sequence 0011 would be changed into 1101 or its inverse 0010 depending on the previous pit written. If there are two consecutive zeroes between two ones, then the written sequence will have three consecutive zeros (or ones), for example, 010010 will translate into 100011 (or 011100). The EFM sequence 000100010010000100 will translate into 111000011100000111 (or its inverse).

Because EFM ensures there are at least two zeroes between every two ones, it is guaranteed that every pit and land is at least three bit-clock cycles long. This property is very useful since it reduces the demands on the optical pickup used in the playback mechanism. The ten consecutive-zero maximum ensures worst-case clock recovery in the player.

EFM requires three merging bits between adjacent fourteen-bit codewords. Although they are not needed for decoding, they ensure that consecutive codewords can be concatenated without violating the specified minimum and maximum runlength constraint. They are also selected to maintain DC balance of the encoded sequence. Thus, in the final analysis, seventeen bits of disc space are needed to encode eight bits of data.[5]

EFMPlus

EFMPlus[6][7] is the channel code used in DVDs and SACDs.

The EFMPlus encoder is based on a deterministic finite automaton having four states, which translates eight-bit input words into sixteen-bit codewords. The binary sequence generated by the finite state machine encoder has at least two and at most ten zeros between consecutive ones, which is the same as in classic EFM. There are no packing (merging) bits as in classic EFM.

EFMPlus effectively reduces storage requirements by one channel bit per user byte, increasing storage capacity by 1/16 = 6.25%. Decoding of EFMPlus-generated sequences is accomplished by a sliding-block decoder of length two, that is, two consecutive codewords are required to uniquely reconstitute the sequence of input words.

References

  1. ^ EPO. "Pioneering the digital revolution: Kornelis Schouhamer Immink, developer of CD, DVD, and Blu-ray Disc coding named finalist for the European Inventor Award". Retrieved 2015-06-07.
  2. ^ U.S. Patent 4,501,000, EFM Patent, applied in Compact Disc, CD-R, MiniDisc.
  3. ^ Kees Schouhamer Immink (December 1990). "Runlength-Limited Sequences". Proceedings of the IEEE. 78 (11): 1745–1759. doi:10.1109/5.63306. A detailed description is furnished of the limiting properties of runlength limited sequences.
  4. ^ Kees A. Schouhamer Immink (November 2004). Codes for Mass Data Storage Systems (Second fully revised ed.). Eindhoven, The Netherlands: Shannon Foundation Publishers. ISBN 90-74249-27-2. Retrieved 2015-08-23.
  5. ^ Tekla S. Perry. "Kees Immink: The Man Who Put Compact Discs on Track". 2017. quote: "Three merging bits separate each sequence, for a total of 17 bits to represent each 8-bit chunk of data."
  6. ^ Kees Schouhamer Immink (1995). "EFMPlus: The Coding Format of the MultiMedia Compact Disc". IEEE Transactions on Consumer Electronics. CE-41: 491–497. A high-density alternative to EFM is described.
  7. ^ U.S. Patent 5,696,505, EFMPlus Patent, applied in DVD, DVD±RW, SACD

External links

Related websites

  • Eight-to-Fourteen Modulation Conversion Table
  • ECMA-130 CD-ROM standard, including full EFM description
  • ECMA-267 DVD-ROM standard, including full EFMPlus description

eight, fourteen, modulation, data, encoding, technique, formally, line, code, used, compact, discs, laserdiscs, minidiscs, efmplus, related, code, used, dvds, super, audio, sacds, efmplus, were, both, invented, kees, schouhamer, immink, according, european, pa. Eight to fourteen modulation EFM is a data encoding technique formally a line code used by compact discs CD laserdiscs LD and pre Hi MD MiniDiscs EFMPlus is a related code used in DVDs and Super Audio CDs SACDs EFM and EFMPlus were both invented by Kees A Schouhamer Immink According to European Patent Office former President Benoit Battistelli Immink s invention of EFM made a decisive contribution to the digital revolution 1 Contents 1 Technological classification 2 How it works 3 EFMPlus 4 References 5 External linksTechnological classification EditEFM 2 belongs to the class of DC free run length limited RLL codes these have the following two properties the spectrum power density function of the encoded sequence vanishes at the low frequency end and both the minimum and maximum number of consecutive bits of the same kind are within specified bounds 3 4 In optical recording systems servo mechanisms accurately follow the track in three dimensions radial focus and rotational speed Everyday handling damage such as dust fingerprints and tiny scratches not only affects retrieved data but also disrupts the servo functions In some cases the servos may skip tracks or get stuck Specific sequences of pits and lands are particularly susceptible to disc defects and disc playability can be improved if such sequences are barred from recording The use of EFM produces a disc that is highly resilient to handling and solves the engineering challenge in a very efficient manner How it works EditUnder EFM rules the data to be stored is first broken into eight bit blocks bytes Each eight bit block is translated into a corresponding fourteen bit codeword using a lookup table The 14 bit words are chosen such that binary ones are always separated by a minimum of two and a maximum of ten binary zeroes This is because bits are encoded with NRZI encoding or modulo 2 integration so that a binary one is stored on the disc as a change from a land to a pit or a pit to a land while a binary zero is indicated by no change A sequence 0011 would be changed into 1101 or its inverse 0010 depending on the previous pit written If there are two consecutive zeroes between two ones then the written sequence will have three consecutive zeros or ones for example 010010 will translate into 100011 or 011100 The EFM sequence 000100010010000100 will translate into 111000011100000111 or its inverse Because EFM ensures there are at least two zeroes between every two ones it is guaranteed that every pit and land is at least three bit clock cycles long This property is very useful since it reduces the demands on the optical pickup used in the playback mechanism The ten consecutive zero maximum ensures worst case clock recovery in the player EFM requires three merging bits between adjacent fourteen bit codewords Although they are not needed for decoding they ensure that consecutive codewords can be concatenated without violating the specified minimum and maximum runlength constraint They are also selected to maintain DC balance of the encoded sequence Thus in the final analysis seventeen bits of disc space are needed to encode eight bits of data 5 EFMPlus EditEFMPlus 6 7 is the channel code used in DVDs and SACDs The EFMPlus encoder is based on a deterministic finite automaton having four states which translates eight bit input words into sixteen bit codewords The binary sequence generated by the finite state machine encoder has at least two and at most ten zeros between consecutive ones which is the same as in classic EFM There are no packing merging bits as in classic EFM EFMPlus effectively reduces storage requirements by one channel bit per user byte increasing storage capacity by 1 16 6 25 Decoding of EFMPlus generated sequences is accomplished by a sliding block decoder of length two that is two consecutive codewords are required to uniquely reconstitute the sequence of input words References Edit EPO Pioneering the digital revolution Kornelis Schouhamer Immink developer of CD DVD and Blu ray Disc coding named finalist for the European Inventor Award Retrieved 2015 06 07 U S Patent 4 501 000 EFM Patent applied in Compact Disc CD R MiniDisc Kees Schouhamer Immink December 1990 Runlength Limited Sequences Proceedings of the IEEE 78 11 1745 1759 doi 10 1109 5 63306 A detailed description is furnished of the limiting properties of runlength limited sequences Kees A Schouhamer Immink November 2004 Codes for Mass Data Storage Systems Second fully revised ed Eindhoven The Netherlands Shannon Foundation Publishers ISBN 90 74249 27 2 Retrieved 2015 08 23 Tekla S Perry Kees Immink The Man Who Put Compact Discs on Track 2017 quote Three merging bits separate each sequence for a total of 17 bits to represent each 8 bit chunk of data Kees Schouhamer Immink 1995 EFMPlus The Coding Format of the MultiMedia Compact Disc IEEE Transactions on Consumer Electronics CE 41 491 497 A high density alternative to EFM is described U S Patent 5 696 505 EFMPlus Patent applied in DVD DVD RW SACDExternal links EditRelated websites Eight to Fourteen Modulation Conversion Table ECMA 130 CD ROM standard including full EFM description ECMA 267 DVD ROM standard including full EFMPlus description Retrieved from https en wikipedia org w index php title Eight to fourteen modulation amp oldid 1004347374, wikipedia, wiki, book, books, library,

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