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HCC40106BFSTN/a1207avaiHex schmitt trigger


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HCC40106BF
HEX SCHMITT TRIGGERS
HCC40106B CF401 06B
HEX SCHMITT TRIGGERS SCHMITT-TRIGGER ACTION WITH NO EX-
TERNAL COMPONENTS. HYSTERESIS VOLTAGE (TYP.) 0.9V AT VDD=
5V, 2.3V AT VDD= 10V AND 3.5V AT VDD =15V. NOISE IMMUNITY GREATER THAN 50%. NO LIMIT ON INPUT RISE AND FALL TIME. LOW VDD TO VSS CURRENT DURING SLOW
INPUT RAMP. STANDARDIZED SYMMETRICAL OUTPUT
CHARACTERISTICS. QUIESCENT CURRENT SPECIFIED AT 20V
FOR HCC DEVICE. 5V, 10V, AND 15V PARAMETRIC RATINGS. INPUT CURRENT OF 100nA AT 18V AND 25°C
FOR HCC DEVICE. 100% TESTED FOR QUIESCENT CURRENT. MEETS ALL REQUIREMENTS OF JEDEC
TENTATIVE STANDARD N°13A, ”STANDARD
SPECIFICATIONS FOR DESCRIPTION OF ”B”
SERIES CMOS DEVICES”
(Plastic Package)
(CeramicFrit Seal Package)
(Plastic Chip Carrier)
ORDERCODES:

HCC40106BF HCF40106BM1
HCF40106 BEY HCF40106BC1
PIN CONNECTIONS

(Micro Package)
DESCRIPTION

The HCC40106B (extended temperature range)
and HCF40106B (intermediate temperature range)
are monolithic integrated circuits, availablein 14-
lead dual in-line plasticor ceramic package and
plastic micropackage.
The HCC/HCF40106B consistsof six Schmitt-trig-
ger circuits. Each circuit functionsasan inverter with
Schmitt-trigger actionon the input. The trigger swit-
chesat different points for positive and negative-
going signals. The difference between the
positive-going voltage (VP) and the negative-going
FUNCTIONAL DIAGRAM
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
Types
–55to+ 125
–40to+85stg Storage Temperature –65to+ 150 °C
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
Stresses above those listed under ”Absolute Maximum Ratings” may cause permanent damagetothe device. Thisisa stress rating
only and functional operationofthe deviceat theseor any other conditions above those indicatedinthe operational sectionsofthis
specificationisnot implied. Exposureto absolute maximum rating conditionsfor external periods may affect device reliability.All voltage valuesare referredto VSSpin voltage.
HCC/HCF40106B
LOGIC DIAGRAM
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 1 0.02 1 30
0/10 10 2 0.02 2 60
0/15 15 4 0.02 4 120
0/20 20 20 0.04 20 600
HCF
Types5 5 4 0.02 4 30
0/10 10 8 0.02 8 60
0/15 15 16 0.02 16 120
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
5/10 <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 Positive Trigger
Threshold
Voltage 2.2 3.6 2.2 2.9 3.6 2.2 3.610 4.6 7.1 4.6 5.9 7.1 4.6 7.1 6.8 10.8 6.8 8.8 10.8 6.8 10.8 Negative Trigger
Threshold
Voltage 0.9 2.8 0.9 1.9 2.8 0.9 2.810 2.5 5.2 2.5 3.9 5.2 2.5 5.2 4 7.4 4 5.8 7.4 4 7.4 Hysteresis
Voltage 0.3 1.6 0.3 0.9 1.6 0.3 1.610 1.2 3.4 1.2 2.3 3.4 1.2 3.4 1.6 5 1.6 3.5 5 1.6
*TLow=– 55°Cfor HCC device:– 40°Cfor HCF device.
*THigh=+ 125°Cfor HCC device:+ 85°Cfor HCF device.
HCC/HCF40106B
DYNAMIC ELECTRICAL CHARACTERISTICS (Tamb =25°C,CL= 50pF, RL= 200kΩ,
typical temperature coefficient forall 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 Time 5 140 28010 70 140 60 120
tTHL,
tTLH
Transition Time 5 100 20010 50 100 40 80
STATIC ELECTRICAL CHARACTERISTICS
(continued)
Test Conditions Value VO |IO|VDD T
Low* 25°CTHigh*Symbol Parameter
(V) (V) (μA) (V) Min. Max. Min. Typ. Max. Min. Max.
Unit

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 1.6 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 2.9
IIH,IIL** Input
Leakage
Current
HCC
Types 0/18
Any Input ± 0.1 ±10–5± 0.1 ±1
HCF
Types 0/15 15 ± 0.3 ±10–5± 0.3 ±1 Input Capacitance Any Input 5 7.5 p
*TLow =– 55°Cfor HCC device:– 40°Cfor HCF device.
*THigh =+125°Cfor HCC device:+ 85°Cfor HCF device.
HCC/HCF40106B
(a) Definitionof VP,VN and VH. (b) Transfer Characteristicof1of6 gates.
(c) Test Setup. Input and Output Characteristics.
Typical Current Voltage Transfer Characteristics, and Test Circuit.
HYSTERESIS DEFINITION, CHARACTERISTICS AND TEST SETUP
HCC/HCF40106B
Typical Voltage Transfer Characteristics vs. Temperature, and Test Circuit.
Typical Transition Time vs. Load Capacitance. Output Low (sink) Current Characteristics.
Output High (source) Current Characteristics. Typical Propagation Delay Time vs. Load Capacit-
ance.
HYSTERESIS DEFINITION, CHARACTERISTICS AND TEST SETUP
HCC/HCF40106B
Typical Trigger Threshold Voltage vs. Supply
Voltage.
Typical per Cent Hysteresisvs. Supply Voltage.
Typical Power Dissipation per Trigger vs. Input
Frequency.
Typical Power Dissipation per Trigger vs. Input
Frequency.
TYPICAL APPLICATIONS

ASTABLE MULTIVIBRATOR. MONOSTABLE MULTIVIBRATOR.
HCC/HCF40106B
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