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HCF40181BEYSTN/a26avai4-BIT ARITHMETIC LOGIC UNIT


HCF40181BEY ,4-BIT ARITHMETIC LOGIC UNITHCC/HCF40181B4-BIT ARITHMETIC LOGIC UNIT. FULL LOOK-AHEAD CARRY FOR SPEEDOPERATIONS ON LONG WORDS. ..
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HCF40181BEY
4-BIT ARITHMETIC LOGIC UNIT
HCC/HCF401 81B
4-BIT ARITHMETIC LOGIC UNIT FULL LOOK-AHEAD CARRY FOR SPEED
OPERATIONS ON LONG WORDS. GENERATES16 LOGIC FUNCTIONS OF TWO
BOOLEAN VARIABLES. GENERATES 16 ARITHMETIC FUNCTIONS TWO 4-BIT BINARY WORDS.A=B COMPARATOR OUTPUT AVAILABLE. RIPPLE- CARRY INPUT AND OUTPUT AVAIL-
ABLE. TYPICAL ADDITION TIME 200ns@ VDD= 10V. STANDARDIZED SYMMETRICAL OUTPUT
CHARACTERISTICS. QUIESCENT CURRENT AT 20V FOR HCC DE-
VICE. 5V, 10V, AND 15V PARAMETRIC RATINGS. INPUT CURRENT OF 100nA AT 18V AND 25°C
FOR HCC DEVICE. 100% TESTED FOR QUIESCENT CURRENT. MEETS ALLREQUIREMENTS OF JEDECTEN-
TATIVESTANDARDN°13A, ”STANDARD SPE-
CIFICATIONS FOR DESCRIPTION OF ”B”
SERIES CMOS DEVICES”
DESCRIPTION

The HCC40181B (extended temperature range)
and HCF40181B (intermediate temperature range)
are monolithic integrated circuits, availablein 24-
lead dual in-line plasticor ceramic package and
plastic micro package. The HCC/HCF40181Bisa
low-power four-bit parallel arithmetic logic unit
(ALU) capableof providing 16 binary arithmetic
operationson two four-bit words and16 logicalfunc-
tionsof two Boolean variables. The mode control
inputM selects logical(M= High)or arithmetic (M=
Low) operation. The four select inputs (S0, S1, S2,
and S3) select thedesired logicalor arithmetic func-
tions, whichinclude AND, OR, NAND, NOR,and ex-
clusive-OR and-NORin the logical mode, and
addition, subtraction, decrement, left-shift and
straight transferin the arithmetic mode, accordingto
the truth table. The HCC/HCF40181B operation
maybe interpreted with either active-lowor active-
high dataat the AandB word inputsand the function
outputsF,by using the appropriate truth table. The
HCC/HCF40181B
contains logicforfull look-ahead
(Plastic Package)
(CeramicFrit Seal Package)
ORDER CODES:

HCC40181BF HCF40181BEY
HCF40181BM1
PIN CONNECTIONS

(Micro Package)
for the four bitsof the HCC/HCF40181B. Useofthe HCC/HCF40182B look-ahead carry generator conjunction with multiple HCC/HCF40181B’s per-
mits high-speed arithmetic operations on long
words.A ripple carry output Cn+4is available for use systems where speedis notof primary import-
ance. Also includedin the HCC/HCF40181Bisa
comparator outputA=B, which assumesa high
level whenever the two four-bit input wordsA andB
are equal and thedeviceisin the subtract mode.In
addition, relative magnitude information may be
derived from the carry-in inputCn and ripple carry-
out output Cn+4by placing the unitin the subtract
mode and externally decoding usingthe information tableII. The HCC/HCF40181Bis similarto indus-
try types MC 14581 and 74181.
FUNCTIONAL DIAGRAM

Active-low Data. Active-high Data.
ABSOLUTE MAXIMUM RATINGS
Symbol Parameter Value Unit

VDD* Supply Voltage :HCC Types
HCF
Types 0.5to+20 0.5to+18 Input Voltage – 0.5to VDD+ 0.5 V DC Input Current (any one input) ±10 mA
Ptot Total Power Dissipation (per package)
Dissipation per Output Transistor
for Top= Full Package-temperature Range
Top Operating Temperature: HCC Types
HCF
Types55to+ 125
–40to+85
Tstg Storage Temperature –65to+ 150 °C
Stresses above those listed under ”Absolute Maximum Ratings” may cause permanent damageto the device. Thisisa stress
rating only and functional operationofthe deviceat theseor any other conditions above those indicatedinthe operational sections this specificationisnot implied. Exposureto absolute maximum rating conditionsfor external periods may affect device reliability.All voltagesare with respectto VSS (GND).
HCC/HCF40181B
RECOMMENDED OPERATING CONDITIONS
Symbol Parameter Value Unit

VDD Supply Voltage: HCC Types
HCF
Types
3to18
3to15 Input Voltage 0to VDD V
Top Operating Temperature: HCC Types
HCF
Types55to+ 125
–40to+85
TRUTH TABLES
Table1.
Inputs/Outputs Active Low Inputs/Outputs Active HighFunction
Select S2 S1 S0
Logic
Function

(M=H)
Arithmetic*
Function
=L,Cn =L)
Logic
Function
=H)
Arithmetic*
Function
=L,Cn =H) 0 0 0 A A minus1 A A 0 0 1 AB AB minus1 A+B A+B 10 A+B AB minus1 AB A+B 0 1 1 Logic1 minus1 Logic0 minus1 1 0 0 A+B A plus(A+B) AB A plus AB 1 0 1 B AB plus(A+B) B (A+B) plus AB 10 A B⊕ A minusB minus1 A⊕B A minusB minus1 1 1 1 A+B A+B AB AB minus1 0 0 0 AB A plus(A+B) A+B A plus AB 01 A⊕B A plusB A B⊕ A plusB 0 1 0 B AB plus(A+B) B (A+B) plus AB 0 1 1 A+B A+B AB AB minus1 1 0 0 Logic0 A plusA Logic1 A plusA 1 0 1 AB AB plusA A+B (A+B) plusA 1 1 0 AB AB plusA A+B (A+B) plusA 11 A A A A minus1 Expressedas two’s complement. For arithmetic function withCnin the opposite state,the resulting functionisas show plus1.= HIGH LEVEL.= LOW LEVEL.
Table2:
Magnitude Comparison.
Active-high Data Active-low Data
Input
Outputn+4 Magnitude Input
Output
Cn+4 Magnitude
A≤ B0 0 A≤B AB 0 1 A>B A≥ B1 1 A≥B= HIGH LEVEL= LOW LEVEL
HCC/HCF40181B
LOGIC DIAGRAM Active-low Data
HCC/HCF40181B
STATIC ELECTRICAL CHARACTERISTICS (over recommended operating conditions)
Test Conditions Value VO |IO|VDD T
Low* 25°CTHigh*Symbol Parameter
(V) (V) (μA) (V) Min. Max. Min. Typ. Max. Min. Max.
Unit
Quiescent
Current HCC
Types5 5 5 0.04 5 150
0/10 10 10 0.04 10 300
0/15 15 20 0.04 20 600
0/20 20 100 0.08 100 3000
HCF
Types5 5 20 0.04 20 150
0/10 10 40 0.04 40 300
0/15 15 80 0.04 80 600
VOH Output High
Voltage5 <1 5 4.95 4.95 4.950/10 <1 10 9.95 9.95 9.95
0/15 <1 15 14.95 14.95 14.95
VOL Output Low
Voltage
5/0 <1 5 0.05 0.05 0.0510/0 <1 10 0.05 0.05 0.05
15/0 <1 15 0.05 0.05 0.05
VIH Input High
Voltage
0.5/4.5 <1 5 3.5 3.5 3.51/9 <1 10 7 7 7
1.5/13.5<1 15 11 11 11
VIL Input Low
Voltage
4.5/0.5 <1 5 1.5 1.5 1.59/1 <1 10 3 3 3
13.5/1.5<1 15 4 4 4
IOH Output
Drive
Current HCC
Types5 2.5 5 –2 – 1.6– 3.2 – 1.155 4.6 5 – 0.64 – 0.51–1 – 0.36
0/10 9.5 10 – 1.6 – 1.3– 2.6 – 0.9
0/15 13.5 15 – 4.2 – 3.4– 6.8 – 2.4
HCF
Types5 2.5 5 – 1.53 – 1.36– 3.2 – 1.15 4.6 5 – 0.52 – 0.44–1 – 0.36
0/10 9.5 10 – 1.3 – 1.1– 2.6 – 0.9
0/15 13.5 15 – 3.6 – 3.0– 6.8 – 2.4
IOL Output
Sink
Current
HCC
Types5 0.4 5 0.64 0.51 1 0.36
0/10 0.5 10 1.6 1.3 2.6 0.9
0/15 1.5 15 4.2 3.4 6.8 2.4
HCF
Types5 0.4 5 0.52 0.44 1 0.36
0/10 0.5 10 1.3 1.1 2.6 0.9
0/15 1.5 15 3.6 3.0 6.8 2.4
IIH,IIL Input
Leakage
Current
HCC
Types 0/18
Any Input 18 ± 0.1 ±10–5± 0.1 ±1HCF
Types 0/15 15 ± 0.3 ±10–5± 0.3 ±1 Input Capacitance Any Input 5 7.5 pF
*TLow =– 55°Cfor HCC device:– 40°Cfor HCF device.
HCC/HCF40181B
Table3: AC Test Setup Reference (active-low data). Paths DC Data InputsTest
Delay Times Inputs Outputs to VSS to VDD Mode*

SUMINto SUMOUT BO AnyF B1, B2, B3,Cn All A’s ADD
SUMINtoP AO P A1, A2, A3,Cn All B’s ADD
SUMINtoG BO G All A’sCn B1, B2,B3 ADD
SUMINto Cn+4 BO Cn+4 All A’s,Cn B1, B2,B3 ADDto SUMOUT Cn AnyF All A’s, All B’s ADDto Cn+4 Cn Cn+4 All A’s, All B’s ADD
SUMINtoA=B BO A=B All A’s
B1, B2, B3, SUBTRACT
SUMINto SUMOUT
(logic mode) All B’s AnyF AllA’s, M EXCLUSIVE ADD Mode: S0,S3= VDD ;S1,S2= VSS. SUBTRACT Mode: S0,S3= VSS; S1,S2= VDD.
DYNAMIC ELECTRICAL CHARACTERISTICS
(Tamb =25°C,CL= 50pF, RL= 200kΩ,
typical temperature coefficientforall VDD valuesis 0.3%/°C,all input rise and fall time= 20ns)
Test Conditions ValueSymbol Parameter
VDD
(V) Min. Typ. Max.
Unit

tPLH,
tPHL
Propagation Delay TimeorBtoF (logic mode) orBtoG orP
5400 80010 160 320 120 240
AorBtoF,
Cn+ 4,orA=B 300 100010 200 400 140 280toF 5 320 64010 135 270 100 200to Cn+4 5200 40010 100 200 70 140
tTLH,
tTHL
Transition Time 5 100 20010 50 100 40 80
HCC/HCF40181B
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