MMC4000 MICRO-ELECTRONICS | Alldatasheet
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This file has been download from www.datasheetcatalog.com z pope eeett BTinNeKeleWeleiceniveia MMC 4000 MMC 400%, NOR GATES: 4000 OUAL 3 INPUT PLUS INVERTER
4001 QUAD 2 INPUT
4002 DUAL 4 INPUT
4025 TRIPLE 3 INPUT
GENERAL DESCRIPTION FEATURES These NOR gates are monolithic complementary ime = = a cmos integrated circuits. The N and P chan- U ieee delay time = 60 ns (typ) at C, = SO pF nel enhancement mode transistors provide a symme- i trical circuit with output swings essentially equal to 4 puciered pts ene Otae Decree eherecreriorice! the supply voltage. This results in high noise immu- 7 O00 tested faa fii aha pee peta nity Sia a ne Supply portage range. No DC power @ 5 V. 10 V and 15 V parametric ratings other than that caused by leakage current is consu- bagi a med during static conditions. All inputs are protec- © High noise immunity: 0.45 Voo (typical) ted against static discharge and latching conditions. The MMC_ 4000, MMC 4001, MMC 4002 and MMC 4025E/F/G/H NOR gates provide the system designer with direct implementation of the NOR function. The MMC 4000, MMC 4001, MMC 4002 and MMC 4025E/F/G/H types are supplied in 14-lead her metic dual-in-line ceramic or plastic packages ’ eee ABSOLUTE MAXIMUM RATINGS a Vpo* Supply voltage: G and H types -0.5 to 20 Vv 60 E and F types -0.5 to 18 Vv Vv, Input voltage -0.5t0 Vppt0.5 Vv | OC input current (any one input) +10 mA Brot Total power dissipation (per package) e200 =mwW Dissipation per output transistor for T, = full package-temperature range 100 mW Ta Operating aoa m 7 temperature: G and H types -55 to 7 E and F types -40 to 85 °C Totg Storage temperature -65 to 150 Cc een err * All voltage values are referred to Vgg pin voltage RECOMMENDED OPERATING CONDITIONS Vop* Supply voltage: G and H types . 3 to 18 Vv pe E and F types Sto 15 Vv Vv, Input voltage Oto Voo Vv Ta Operating temperature: G and H types -55to 125 cc E and F types -40 to 85 °C CONNECTION DIAGRAMS mmc 4000 MMC 4001 MMC 4002 MMC 4025 x bo Aq % von s qi 4 LB \\bo aQi *O V0 Nc {2 i}F B G2 BOK a G2 BOK eQ2 BOG a Q CE 1 0p rie 8 OB 10H og3 nr “Bg of x Gs 10m cq nOc eQs np cq ork c as opt oe Q OF Fgs ope H &% cyl D Ue oUF wu Oe OE K@e ot \\s 0 ays vs G7 Ls \\s Q OPaNC ves? ope RD 13 p
This file has been download from www.datasheetcatalog.com MMC 4000 MMC 4001 MMC 4008 MMC 4og8 ' Anon Gon te ee - - @TATIGMLECTRIGAL CHARACTERISTICS (over racommendad operating conditions) LA [in | a [in [ern [rin | ma | ONY Quiescent G,H/O/ 5 5 Q01 75 Current types|0/10 10 0.01 45 0/15 15 0.01 30 0/20 20 0.02 150 pA EF }0/5 5 4 Q01 75 types /0/10 10 2 001 15 10/15 15 4 001 30 Von Output high o/ 5 <1 5 | 495 4.95 4.95 voltage 0/10 <7} 10 | 995 9.95 9.95, Vv i 0/15 <1} 15 114.95 14.95 14.95) : Vo. Output low 5/0 <1 5 0.05 0.05 0.05 voltage 10/0 <1} 10 0.05 0.05 0.05] v 15/0 <1] 15 0.05 0.05 0.05 Vin Input high 05/45) <1 5 | 35 3.5 3.5 voltage 1/9 | <1] 10] 7 7 7 Vv 15/135) <1] 15 414 11 1 Vit Input low es <1 5 15 voltage 9/1 <1] 10 3 Vv 13.5/1.5) <1 15 4 lon Output G.H{O/ 5] 25 5 |-2 ~1.6 |-32 1.1 m Ig. Output G.HjO/ 5 04 5 | 064 05%] 1 0.36 sink typesjO/10/ 05 10 | 1.6 13 | 26 og current 0/15} 15 15 | 42 34 | 68 24 a mi E,F 10/5 04 5 | 052 0.44! 4 036 types|0/10 os 10 | 1.3 1.1 | 26 og 0/15 1.5 15 | 36 3.0 | 68 24 Te fy Input GH ig/4 5) +0.1 +1 \\eckope types |/"8] Any 18 +0.1 +10°5| +0. A current P types |- C, Input capacitance Any input 75 pF * TLow = —55°C for G, H devices; —40°C for E, F devices. * Trig = +125°C for G, H devices; +85°C for E, F devices. The Noise Margin for both “1” and “0” level is: 4.V min. with Vpp = SV 2 V min. with Vog = 10 V 2.5 V min. with Vpp = 15 V Eee
This file has been download from www.datasheetcatalog.com MMC 4000 MMC 4001 MMC 4C02 MMC 4025 TY DYNAMIC ELECTRICAL CHARACTERISTICS (T, = 25°C, C, = 50 pF, R, = 200k, typical temperature coefficient for all Vpp values is 0.9%/°C, all input rise and fall times = 20 ns) PARAMETER EST CONDITIONS VALUES UNIT teu Propagation delay time SI 250 teu 10 120 ns 15 30 tru, Transition time 5 100 200 try 10 50 100 ns‘ 15 40 80 SCHEMATIC AND LOGIC DIAGRAMS MMC 3000 + : 610) p p P 5112) A it al sTETE H=A+B+C 311) _ i J L=G 413) 5112) K=D+E+F n 311) 6110) 4(13) “s >_> MMC 4001 om : % — J=A+B p K=C+O 1 — (86.8) | in 3 L=E+F 0 n} 00,4.) M=67H a (8,6,13) 2 3 (95,12)
1 OF & GATES u
(NUMBERS IN. PARENTHESES MSS ARE TERMINAL NUMBERS FOR OTHER GATES) tr
MMC 4000 MMG 4001 MMC 4008 MMC a0a5 ‘<reneerstentnaninaeteeeteneneeteetinnnenntattateeseetretteetnnnte heen nn mnéc 400ea 202) p’oo 0 D. D * Lari A 400) f g if i 2 i fA 3 currant J=FA+Beci dD n K=E+F+ +H j 0 p a cy n TON. MMC 4025 an 4 6 p (2,12) (90) 6 (8.13) p (9.0) — ; aw J=a+B+C aD K=D+EtF A L=GiHey 122) f (28) INVERTER AND 19 3 GATES 7 MUMBEDS ON PARENTHESES ARE 5s TERNAL NUMBER, FOR SECOND GATE) Erect St neon nhnsenennen enone crn inna?