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October 1987
Revised September 2003
CD40106BC
Hex Schmitt Trigger
General Description
Features
The CD40106BC Hex Schmitt Trigger is a monolithic com-
plementary MOS (CMOS) integrated circuit constructed
with N and P-channel enhancement transistors. The posi-
mtive and negative-going threshold voltages, VT+ and VT,
show low variation with respect to temperature (typ
o0.0005V/°C at VDD = 10V), and hysteresis, VT+ VT0.2
VDD is guaranteed.
.cAll inputs are protected from damage due to static dis-
charge by diode clamps to VDD and VSS.
s Wide supply voltage range: 3V to 15V
s High noise immunity: 0.7 VDD (typ.)
s Low power TTL compatibility:
Fan out of 2 driving 74L or 1 driving 74LS
s Hysteresis: 0.4 VDD (typ.),
0.2 VDD guaranteed
s Equivalent to MM74C14
UOrdering Code:
t4Order Number Package Number
Package Description
CD40106BCM
M14A
14-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-012, 0.150" Narrow
CD40106BCN
N14A
14-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300" Wide
eDevices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code.
eConnection Diagram
Schematic Diagram
.DataShTopView
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Absolute Maximum Ratings(Note 1)
(Note 2)
DC Supply Voltage (VDD)
Input Voltage (VIN)
Storage Temperature Range (TS)
Power Dissipation (PD)
Dual-In-Line
Small Outline
Lead Temperature (TL)
(Soldering, 10 seconds)
0.5 to +18 VDC
0.5 to VDD +0.5 VDC
65°C to +150°C
700 mW
500 mW
260°C
Recommended Operating
Conditions (Note 2)
DC Supply Voltage (VDD)
3 to 15 VDC
Input Voltage (VIN)
0 to VDD VDC
Operating Temperature Range (TA)
55°C to +125°C
Note 1: Absolute Maximum Ratingsare those values beyond which the
safety of the device cannot be guaranteed. They are not meant to imply
that the devices should be operated at these limits. The table of Recom-
mended Operating Conditionsand Electrical Characteristicsprovides
conditions for actual device operation.
Note 2: VSS = 0V unless otherwise specified.
DC Electrical Characteristics (Note 3)
Symbol
Parameter
Conditions
IDD
Quiescent Device Current
VDD = 5V
VDD = 10V
VDD = 15V
VOL LOW Level Output
|IO| < 1 µA
Voltage
VDD = 5V
VDD = 10V
VDD = 15V
VOH HIGH Level Output
|IO| < 1 µA
Voltage
VDD = 5V
VDD = 10V
VDD = 15V
VT
Negative-Going Threshold
VDD = 5V, VO = 4.5V
Voltage
VDD = 10V, VO = 9V
VDD = 15V, VO = 13.5V
VT+ Positive-Going Threshold VDD = 5V, VO = 0.5V
Voltage
VDD = 10V, VO = 1V
VDD = 15V, VO = 1.5V
VH Hysteresis (VT+ VT)
VDD = 5V
Voltage
VDD = 10V
VDD = 15V
IOL LOW Level Output
VDD = 5V, VO = 0.4V
Current (Note 3)
VDD = 10V, VO = 0.5V
VDD = 15V, VO = 1.5V
IOH HIGH Level Output
VDD = 5V, VO = 4.6V
Current (Note 3)
VDD = 10V, VO = 9.5V
VDD = 15V, VO = 13.5V
IIN Input Current
VDD = 15V, VIN = 0V
VDD = 15V, VIN = 15V
Note 3: IOH and IOL are tested one output at a time.
55°C
Min Max
1.0
2.0
4.0
+25°C
Min Typ Max
1.0
2.0
4.0
+125°C
Min Max
30
60
120
Units
µA
0.05
0.05
0.05
0.05
0.05
0.05
0.05
V
0.05
0.05
4.95
9.95
14.95
0.7
1.4
2.1
3.0
6.0
9.0
1.0
2.0
3.0
0.64
1.6
4.2
0.64
1.6
4.2
2.0
4.0
6.0
4.3
8.6
12.9
3.6
7.2
10.8
0.1
0.1
4.95
9.95
14.95
0.7
1.4
2.1
3.0
6.0
9.0
1.0
2.0
3.0
0.51
1.3
3.4
0.51
1.3
3.4
5
10
15
1.4
3.2
5.0
3.6
6.8
10.0
2.2
3.6
5.0
0.88
2.25
8.8
0.88
2.25
8.8
105
105
2.0
4.0
6.0
4.3
8.6
12.9
3.6
7.2
10.8
0.1
0.1
4.95
0.95
14.95
0.7
1.4
2.1
3.0
6.0
9.0
1.0
2.0
3.0
0.36
0.9
2.4
0.36
0.9
2.4
2.0
4.0
6.0
4.3
8.6
12.9
3.6
7.2
10.8
1.0
1.0
V
V
V
V
mA
mA
µA
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AC Electrical Characteristics (Note 4)
TA = 25°C, CL = 50 pF, RL = 200k, tr and tf = 20 ns, unless otherwise specified
Symbol
Parameter
Conditions
Min Typ Max Units
tPHL or tPLH
tTHL or tTLH
CIN
CPD
Propagation Delay Time from
Input to Output
Transition Time
Average Input Capacitance
Power Dissipation Capacity
VDD = 5V
VDD = 10V
VDD = 15V
VDD = 5V
VDD = 10V
VDD = 15V
Any Input
Any Gate (Note 5)
220 400
80 200
70 160
100 200
50 100
40 80
5 7.5
14
ns
ns
pF
pF
Note 4: AC Parameters are guaranteed by DC correlated testing.
Note 5: CPD determines the no load ac power consumption of any CMOS device. For complete explanation see 74C Family Characteristics Application Note,
AN-90.
Switching Time Waveforms
tr = tf = 20 ns
Typical Applications
Low Power Oscillator
Note: The equations assume
t1 + t2 >> tPHL + tPLH
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