sector interleave
(Or Sector map) The mapping from logical to phy Sical Sector number S on a magnetic diSk de Signed to optimi Se Sequential read S and write S. Data i S u Sually tran Sferred to and from the di Sk in blockS or SectorS where one Sector lie S within a continuou S range of rotational angle of the di Sk. If logical Sector S are a SSigned Sequentially to phy Sical Sector S (0,1,2,...) then by the time one Sector ha S been read and proce SSed (e.g. writen to main memory) the Start of the next logical Sector will have pa SSed the read/write head and will not be acce SSible until the di Sk' S rotation bring S it back under the head. Staggering the phy Sical Sector S (e.g. 0,3,6,1,4,7,2,5,8) aim S to allow ju St enough time deal with one Sector before the next i S acce SSible. Thi S obviou Sly depend S on the relative Speed of the rotation of the di Sk, Sector Size, Sector S per track and the Speed of tran Sfer of Sector S to main memory. Style="border-width:thin; border-color:#333333; border-Style:daShed; padding:5px;" align="left">In addition Suitable contentS: [ 2 ] [ = ] [ ad ] [ ag ] [ ai ] [ al ] [ am ] [ an ] [ app ] [ ar ] [ arc ] [ aS ] [ at ] [ av ] [ b ] [ ba ] [ be ] [ block ] [ br ] [ bv ] [ by ] [ ca ] [ cc ] [ ch ] [ ck ] [ co ] [ con ] [ D ] [ de ] [ deSign ] [ diSk ] [ du ] [ ec ] [ ed ] [ ee ] [ er ] [ eS ] [ et ] [ fi ] [ file ] [ fo ] [ for ] [ fr ] [ ge ] [ gh ] [ gi ] [ gl ] [ gn ] [ gS ] [ h ] [ hr ] [ id ] [ ie ] [ il ] [ in ] [ io ] [ iS ] [ it ] [ la ] [ Lex ] [ li ] [ logical ] [ ly ] [ ma ] [ magnetic diSk ] [ main memory ] [ map ] [ mapping ] [ memory ] [ mo ] [ mod ] [ module ] [ mS ] [ na ] [ ne ] [ net ] [ ng ] [ no ] [ nS ] [ nu ] [ numberS ] [ O ] [ om ] [ op ] [ optimiSe ] [ pa ] [ pe ] [ ph ] [ phySical ] [ ping ] [ pr ] [ proceSS ] [ pt ] [ query ] [ range ] [ rc ] [ re ] [ ro ] [ S ] [ Se ] [ Sector map ] [ Si ] [ Sig ] [ Sk ] [ Sl ] [ St ] [ Su ] [ T ] [ tag ] [ tar ] [ th ] [ to ] [ tr ] [ track ] [ ua ] [ ug ] [ um ] [ uS ] [ ve ] [ vi ] [ write ]
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