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lt tDrtrcnr or Eleiro.ics, Td@6o!!iolio, & ttior.di.rl E.linerttrg

lt tDrtrcnr or Eleiro.ics, Td@6o!!iolio, & ttior.di.rl E.linerttrg

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LISTOFTABLES<br />

Table 2. | : C<strong>or</strong>icctioh lacr<strong>or</strong>s r<strong>or</strong> nels wilb uD ro liat' te<strong>di</strong>nals 16<br />

Tabl.2.2 Th. XC4ooOE,(L lamily 37<br />

Table 2,3 Rouling les<strong>or</strong>esper losic blocl in 4000xL 39<br />

Tible l, I : Tract Fgm.hrs in 4000xlik. dchitrcture 44<br />

TaUe 1.2: C<strong>or</strong>piletines l<strong>or</strong> <strong>di</strong>flerenr bin sia scaling hoo$ 59<br />

Table l.l: Dlsccostoa<strong>di</strong>rerntmurinArcsourccs 6e<br />

Table 4.1 lmp<strong>or</strong>tonl inra{lsterd€lays in lSMC} 0.35 no CMOS DGes 73<br />

Table 4.2 Inp<strong>lt</strong>s rquircd f<strong>or</strong> 98olo u.ilianion f<strong>or</strong> vPack and T-vPrck 7!<br />

Tabl€ 4.1 Roudns a@ vs Fc, inpu f<strong>or</strong> v<strong>di</strong>os clusler sia 80<br />

T.bl€ t. I : b(n) valucs f<strong>or</strong> Eacn lype of Roulins R€$!Ee tO2<br />

-f.ble t,2r Exp.rincnral cianirs tO7<br />

Tftle 6.1;Benchnark cncuirs I 12<br />

T.bk 6.2; Channel width vs LUT ud clusrs sia (l to?) 117<br />

-f.bh A.lrT<strong>or</strong>ilAra (xl0') iD Min. WidrhToN. AEa(clusrer Size = l) l19<br />

Trble A.2: T<strong>or</strong>.l Area (x l0') in Min. Widrh TfaDs. Aea {Clurs Size = 2) 140<br />

T.bl. A.liToulAEa(x106)inMin. WidthT6Ds. AEa (Cluste! Sia = l) l4l<br />

Tible A.4: Tolal Area (x 106) io Mh. widrh T6' Area {clNrs siz. = 4) 142<br />

Tlbh A.5: Toul Ara (x106) itr Mitr. widrh Tm. A@ (clstd sirc = 5) t4l<br />

Table 4.6: T<strong>or</strong><strong>rl</strong> Ars (x106) in Min. widrh Tm. A@ (clster sirc = 6) t44<br />

Tablc A.7: Tolal AEa (x 106) in Min. wid$ Tnns. Aea(ClusterSia= 7) 145<br />

Table B.l<strong>rl</strong>nrta-Cluster Aa(x106) in Mii. Wid$ Tms Arca (Cluner Sia=l) 146<br />

Tabh B.2r lnuecluner AEa (x106) in Mii. Widlh Tms Aea (Clnner Si&=2) I47<br />

Table B.l: lnt.-Clusler Ada (x 106) in Min, Wid$Ttus. Aea (Clusldr Si^ -3) 148<br />

Table D,4r lnlh.Cluster AEa (x106) in Mii, Widrh Trfls. Arca (Cluslq Size =4 149<br />

Tabre 4.5: InrE-crusrer Area (xt06) in Min. widlh Tms. Aea (clusrd si4 -5) 150<br />

Tabh 8.6: lhrGcrusrcr AEa (x106) in Min. widlh Tnng Aea (Clusrd Sirc =6) Ifl<br />

'hbh 8.7: rnr'lcrusler AM (x r 06) ir Mii. widrh 1 tus. Aea (cluss sirc =7) I 52<br />

Tlblc C.l: IntFclusrcr A@ (x106) in Min. Widlh Tms. Arcaicluier<br />

-ldbl. Shr=l) <strong>lt</strong>l<br />

c.2: Inrg,crusrcr<br />

^@ (x106) in Mio. widt-t@' Arca{clusrs stx=2) t54<br />

'l-abl.<br />

C.l: lnrcr -Clusler AH (x106) in Min. Widlh Tlm. Arca (Clurq<br />

-lnbk<br />

Si& =l)155<br />

C.4:lntcr -Clr$s A@ (x106) in Mi.. Widlh Tlm. A@(Ctcr€r Sia =4 t56<br />

Tablc C tr Inrcr -Clsler AH (x | 06) in Min. Wi{tth Ttm. AEa (Clusrcr Si& =5) l5?<br />

Tablc C 6: lnt.r -Clusrer Area (x 106) in Min. Widtn Tra. Ara (Clust r Size -6)t58<br />

Tablec.T: Inr.r -Cluster A@ (x106) in Min. widrh Tdns. A'€a (clusrerSia =7) t59<br />

Table D. I : Tohl Delay in nano-sconds (Ctusle Sie = l) 160<br />

Table D.2: ToulDeky in .flo-sNonds (Clusld Sirc = 2) 161<br />

Tabie D.l:TotalDelay in nmo-seconds (Cludcr sire = ll 16:<br />

lablc l)..1:]-.ralDclay in mno+c.onds (Cluscr Si^ =,11 163<br />

l able D.5: lbbl Delat in nmo,sMnds (Clu!.r Si4 = 5) t64<br />

Tlhle t).6: Toul Delay in nano-secondr (Cl$rcr Sjr = 6) 165<br />

'lrhl.l) 7r'l;kl l).ht n, nrnd *conds ( lrNr$ Si7r 7) 16(,

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