M4052BP MITSUBISHI | Alldatasheet

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a= fg orang tent = . - MITSUBISHI CMOS LoGIC MITSUBISHI ELEK {LINEAR} 40 D 6249426 Oo04 3 EK (LINEAR? 80 0 105 | f Mi4052BP ; | EE Ea er M4052BFP | opi oheee SUN: DUAL 4.CHANNEL ANALOG MULTIPLEXER/DEMULTIPLEXER - S249826 MITSUBISHI ELEK (LINEAR) _ 80C 09109 D 7¥S¢-// DESCRIPTION. “7 : — The M40528P Is a semiconductor Intagrated circuit consist- PIN COFIGRATION (Top VIEW) -* : — * Ing of two multiplexe’/demultiplexers which use 2-bit digit © [~~ al inputs to perform selection of four analog switches, ee Voo @ Low ON resistance: 50Mtyp. (Vpp=15V) oon ane wt lon od Fy an IK COMMON | © High OFF resistance: 10°2 or greater (typ) eat | +L pcsiqP5l~ Common ou } @ Small differences in ON resistance between each outputs a ai “fe bed vel switch In the package: 101 typ. (Voo=7.5V, Vss=— | iNtierr pur innieiT [6 |-—[n 1 2 = 1x] OUTPUTS 7.5V) Vee e Td-a © Linearized transfer characteristics: 0.07% distortion ve all 8 |oosra, tneur - (typ) “ @ Signals with amplitude greater than the logic level am- 16P4 . Outline plitude of the control inputs may be switched. 16P2N © Provided with an inhibit input APPLICATION FUNCTION TABLE (note1) General purpose, for use in industrial and consumer digital Sonal Trannal NPUTOUTPUT I COMMON } eguipment. Inpute switch selection [were [a | « fT « Tx | FUNCTIONAL DESCRIPTION [ft] [on Torr [ore { oFF | ‘When a 2-bit binary input signal is applied to the control in- L | [288 | on | OFF | Ore puts (A and B), the channel number corresponding to the H OFF ‘ON binary value input (Xp through X) is set at low Impedance Hw | # | orr | ore | orF | on | with respect to the corresponding (X-COMMON). All other [oa [x | x [ore [ore [ore | orF | . channels remain at high impedance. Note 1: X: Wrelevant i (n=0~3) In this operation, if the (INHIBIT) input is held high, all ON Law impadanc betwen ON 8) channels (Xp through Xe).will be put in the high-impedance state, regardless of the state of the other Inputs. . It Is possible to switch an analog signal of amplitude Vpo~ Vee if this Is greater than the logic level span Voo-Vss for ; inputs (A and B) LOGIC DIAGRAM . . ; | —— (3) 1x-common i. D> | cma On | rele NO) D bo [>—| If Recar 3Ons ContROL Fa] al & INPUTS E o> {| Feat 2@) Lid 2 Lt > —th | [| Cea} Om. gin

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oo AS ee AS cia we ns : 1 wie fie, guiewialo eit wet ona . MITSUBISHI CMOS LOGIC MITSUBISHI ELEK {LINEAR} 60 D BP pevssen o009110 2 I m4os2ep . S eee Bote tae a moon. 8. M4052BFP - Goo eae East DUAL 4-CHANNEL ANALOG MULTIPLEXER/DEMULTIPLEXER _ 6249826 MITSUBISHI ELEK (LINEAR) «_... 80C 09110 0 7=S7%-¢/ | e ABSOLUTE MAXIMUM RATINGS (Te=—4~+850, uniess otnerwise noted} = 9.20 Ts ee | [VooVee | PY ‘ose ee ee eee : Controt and inhibit inputs i a a ce [Vio | tepurto-ouputvatage | a | [eof oviputeurent Satchel ; [Tstg [storage temperature range i SSCS 1 RECOMMENDED OPERATNG CONDITING CONDITIONS (te~—40~+05%, uniocs cthorise noted) fee [ ee rere | Van-Ves | guppy votage et . pes [3 [ie |v ee Output voltage [Vee [| Yoo |v | 1 ELECTRICAL CHARACTERISTICS (v..=0v) tg | om | Parameter Tost conditions . a Vootv) | tin [Max | Min [typ [Max | Min 5 3.5 3.5 H Input wotage Voy ¥ Inpotto-apl cunent~ Mehl 10 7.0 7.0 : L nput cuvent V=5V 500, 600 800 Vim2. 8V 850 950, 1300 Vm. 250 500 600 800 Ve t0v 250 300 Vem5V_ 250 300 . Vir0. 25 250 300 VeisV 140 160 200 ON resistance Ve7.5V 140 160 200 V=0. 5V 140 160 200 vies . 250 300 Virt0.25V 250 300 Ve 250 300 Vi=7. 5V 7.5 7.5 160 200 vir t0.25V —7.5) 7.5 160 200 ‘Test ciroutt! Wee 7. SV 77.5, 75 160 200 ON resistance variations 2.5 25 delween switches of the 5 5 sane peksge __|=25 | 75 | Vuo™ 10V, Von=0V C) 10 125 1 cram bee ene Wom0V, Voa™lOV o| 10 =125 ; Vuo™18V, Von=0V 0 18 250 250 1000 (eX KCOMMON) | voy, Von 18V o| 18 250 250 =1000 : = 0 5 20 20 150 Quiescent supply cument | Vi=Voo, Ves oO 0 40 40 300 0 15 80 80 600 | ee — ee eee fe Cs a HD DT | - oo MITSUBISHI TW. ELECTRIC a F

: # Ra Tee ae st = MITSUBISHI CMOS LOGIC MITSUBISHI ELEK {LINEAR} 80 D i beyqaeb OOOFLLL 4 I M4052BP fee ae DUAL 4-CHANNEL ANALOG MULTIPLEXER/DEMULTIPLEXER ___ : ,. 6249826 MITSUBISHI ELEK (LINEAR) “ 60C 09111 D0 7-50-77 . SWITCHING CHARACTERISTCS (te=2%, Veo“) © Ryd entire BREST OS 8 Pore [ne | wee Gem Pe Tae | Rusk Cu=I5pF_ Test ciroult2 0 1000 0 500 | tour . . ° 400 - - 5 700 “L-H" and “H-L" output propagation time P= 10K -7.5 500 (A, B-Xo~Xa, X-COMMON) Cy S0pF Test clroult3 o 5 1000 - 0 10 500 tom 0 15, 400 . 5 5 700 7.5 7.5 500, 0 5 1400 0 10 700 . . o| 16 600 5 5 900 . “L+H and *H-L* output propation time R=10KA -7.5 | 7.5 500 (INHIBIT-Xo~Xe, X-COMMON) CL=S0pF Tset clrouit4 0 5 1400 0. 10 700 . ° 15 500 os 5 900 = —7.5 7.5 500 C) 45 0 30 . “L-H* and *H-L* output propagation time R=N0KA t) |__20 (Xo~Xa/X-COMMON-X-COMMON/Xe~Xa) C.=S0pF Test ciroult 5 0 45 tone . 0 30 ° 20 R=1KO |= [ewrweamin [em rwaeae | -# | 8 | | | | [= [Feecirocan Goch ot —_——S~*d RA Toone’ | 8] || 800 || ee | Anka 200 . | | (manner *-COMMON) nttee bhai ‘oo | fe] , _ * Cu=I5pF_Test olroult7 400 | c1 _| mut capetane [geese rege Te | TEST CIRCUITS (ve=0v, capacitance ©, includes stray wig capacitance end'probe Input capactance) ‘LIT on resistance (Ron) _ [2] Maximum transfer frequency (fmax(1/0)) . . Sine-wave distortion Voo “9 Vo0 - ) Ver te ‘ AY °° . : | a 7 Bo RY Dey?” ' ° . . [A en O, @ Vo 3 b ? . . ° 6 Ves Vee | om. ] Vea Vee Reiko . SR Ditorion . . nor Ron =10x MEV) 409) fmax (1/0) Is taken as that frequency f, st which, using a lo sine-wave input of 2.6Vp.», 20 logie(Vo/V,) = —34B. Refer to Rofor to the function table for conditions of control inputs A and B, | the function table for conditions of contro! inputs A end B. 4 miTsuBIsH 13 | ELECTRIC a i

ee eee the ses! : MITSUBISHI CMOS LOGIC MITSUBISHI ELEK {LINEAR} 80 D ff Geysa2b ooOTiie & I m4os2ep veihiiees A j4ch. DUAL 4-CHANNEL ANALOG MULTIPLEXER/DEMULTIPLEXER _ 8249826 MITSUBISHI ELEK (LINEAR)... 80C 09112 0 7-S/-4/. i [3] “tH” and “H-L* output propagation time = [S] “L+H” and “H-L* output propagation time = Fo FER exe, BOMMON) TL FAP Ogi coMMONK-COMMON/AGrKg) 2 SSPE E

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a re , sols PY ox T [ bA X-COMMON : ho os} XSGOMMON net GX: COMMON Bo px OXo~Xs, fa: Bs: ° X-COMMON 3 6 | © > Se XonXs Vss Vee . TIMNG DIAGRAM 20ns 20ns Ves Vee X-COMMON fen \\ 50% TIMNG DIAGRAM 1083 1096 % (90% AB AB X-COMMON ae bird Xo~Xs 50% 50% 20ns 20ns | tou tone X-coMMON x-coMMON Xo~%s 50% Xo~Xy 50% Refer to the function table for conditions of control Inputs A and B. trun ft [6] Feedthrough . Refer to te function table for conditions of contol Inputs A A | Yew and B. . Von vM [4] “t-H" and “H-L" output propagation time ho AV (INHIBIT-Xo-Xs, X-GOMMON) Bo Pad Yoo * . 8 ove O heen he rs Pan o- S41 x-COMMON BO Px OVen OVer inter o “The feodthrough js taken as that frequency fal which, using A a sine-wave input of 2.5Vp.e, 20 logie(Vo/Vi)=—S0dB. Refer OF [Be XQMON] tothe unction tbl for cncton of coal pute Aand 8. > Ks i ee ge Resin 2%) FR TIMNG DIAGRAM . ? 10% 8,71, So=2 S,™2, Seo! Ac 1% . 0% BO Pad INHIBIT 50% INHIBIT 1 | 10% INHIBIT o- /. . | To , X-COMMON 50% 50% %o~% SguMon I . fe ton tee . Ver Refer to the function table for conditions of control inputs A * Refer to the function table for conditions of control inputs A and 8, and 8. i 7-14 : 9 MITSUBISHI i | ELECTRIC :