F100112 NSC | Alldatasheet
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Semiconductor . Quad Driver General Description The F100112 is a monolithic quad driver with two OR and _Refer to the F100313 Datasheet for: two NOR outputs and common enable. The common input PCC packaging is buffered to minimize input loading. If the D inputs are not Lower power used the Enable can be used to drive sixteen 509 lines. All Military versions inputs have 50 kN pull-down resistors and all outputs are Extended voltage specs (—4.2V to —5.7V) butfered. Ordering Code: see sections Logic Symbol Orn Ds Or Bn [_ Pinnames | Description | Or Da-Dg Data Inputs bid E Enable Input Dv a, Ona-Ond Data Outputs on Gna-Ond Complementary Data Outputs Ore De Or¢ Bre Ore O17 Ds aa E Ow O24 TUF/9899-1 Connection Diagrams 24-Pin DIP 24-Pin Quad Cerpak ay Bye! abo Dg 0, E Vee Dy Dy One=2 23074 24 23 22 21 20 19 eS 22014 yt 1801, Op——4 21F-0g Og-42 17-09, es 20;-0,, Oa3 1601, Veo46 19he O44 155-0, af 7 18 Y, x = oe 8 ”7 fe B45 14-0, tb % o.-46 13 Oy, om id 78 9 0 oe 1) 1509 On" 14-07, 26 1 VeeVecatb Orb Ong 42 137-01, TRF /9639-3 TLF/9699-2 3-17
N o| Absolute Maximum Ratings S| Above which the useful life may be impaired. (Note 1) If Military/Aerospace specified devices are required, Case Temperature under Bias (Tc) OC to + 85°C please contact the National Semiconductor Sales Vee Pin Potential to Ground Pin -7.0V to +0.5V Office/Distributors for availablity and specifications. input Voltage (DC) Vee to +0.5V Storage Temperature ~65Cto + 150°C Output Current (DC Output HIGH) 50 mA Maximum Junction Temperature (T)) + 150°C Operating Range (Note 2) -8.7Vt0 —4.2V Vee = —4.5V. Voc = Voca = GND, To = 0°C to +85°C (Note 3) Vou OutputHIGH Voltage | -1025 | -955 | -se0 | Vin =Vin(Maxy | Loading with Vou Output LOW Voltage | -1810 | -1705 oF Vit (Min) 500 to ~2.0V Vouc OutputHiGHVoltage | 10395 [|| Vin = Vin try | Loading with | ViH Input HIGH Voltage —1165 —880 mv Guaranteed HIGH Signal for All Inputs Vit Input LOW Voltage _ _ Guaranteed LOW Signal 1810 1475 mv for Al inputs Vee = —4.2V, Voc = Voca = GND, To = 0°C to +85°C (Note 3) symbol | Parameter [min | typ | Max | units | Conaitions (Note 4) Vou OutputHiGHVotage | -1020 | | -870 | ay Vin = Vik (Max) | Loading with Vou OutputLOW Voltage | -1810 | | -1605 | or Vit (Min) 509 to —2.0V Vous | Outputtic vottage | -1030 [|| ay | Yin = Vint) | Loading with Vin Input HIGH Voltage 1150 —870 mv Guaranteed HIGH Signal for All Inputs Vit Input LOW Voltage —aat0 41475 mv Guaranteed LOW Signal for All Inputs Vee = —48V, Voc = Voca = GND, To = 0°C to +B5°C (Note 3) symbol | Parameter [min | tye [Max | units | Conditions (Note 4) Vou OutputHIGH Voltage | -1o3s | | 800 | ay Vin = Vin (ax) | Loading with Vou Output LOW Voltage | ~18390 | | -1620 | oF Vi. (Min) 500 to —2.0V Vouo | Output HiGHvotage | -104s [|| ay | Vin= Vint) | Loading with Viq Input HIGH Voltage 4165 880 mv Guaranteed HIGH Signal for All Inputs Vit Input LOW Voltage — 4890 —4490 mv Guaranteed LOW Signal for All Inputs Note 1: Absolute maximum ratings are those values beyond which the device may be damaged or have its useful life impaired. Functional operation under these conditions is not implied. Note 2: Parametric values specified at —4.2V to — 4.8V. Note 3: The specified limits represent the “worst case" value for the parameter. Since these “worst case" values normally occur at the temperature extremes, additional noise immunity and guard banding can be achieved by decreasing the allowable system operating ranges. Note 4: Conditions for testing shown in the tables are chosen to guarantee operation under “worst case’ conditions. 3-18
Vee = —4.2V to —4.8V unless otherwise specified, Voc = Voca = GND, Tc = 0°C to + 85°C Fey tia Input HIGH Current Vin = Vin (Max) Data 550 A Enable 450 lee Power Supply Curent Inputs Open Ceramic Dual-In-Line Package AC Electrical Characteristics Vee = —4.2V to —4.8V, Voc = Voca = GND tPLH Propagation Delay 4! 1.60 tea Data to Output 0.48 tPLH Propagation Delay _ tTLH Transition Time Cerpak AC Electrical Characteristics Vee = —4.2V to —4.8V, Voc = Voca = GND tPLH Propagation Delay teHL Data to Output 0.55 1.20 0.45 1.40 teLH Propagation Delay , tTLH Transition Time 3-19