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CD40106BC Hex Schmitt Trigger

October 1987

Revised January 1999

CD40106BC

Hex Schmitt Trigger

General Description

The CD40106BC Hex Schmitt Trigger is a monolithic com-

plementary MOS (CMOS) integrated circuit constructed

with N and P-channel enhancement transistors. The posi-

tive and negative-going threshold voltages, V

T+

and V

T−

,

show low variation with respect to temperature (typ

0.0005V/°C at V

DD

= 10V), and hysteresis, V

T+

− V

T−

≥ 0.2

V

DD

is guaranteed.

All inputs are protected from damage due to static dis-

charge by diode clamps to V

DD

and V

SS

.

Features

sWide supply voltage range: 3V to 15V

sHigh noise immunity:0.7 V

DD

(typ.)

sLow power TTL compatibility:

Fan out of 2 driving 74L or 1 driving 74LS

sHysteresis:0.4 V

DD

(typ.),

0.2 V

DD

guaranteed

sEquivalent to MM74C14

sEquivalent to MC14584B

Ordering Code:

Order Number

CD40106BCM

CD40106BCN

Package Number

M14A

N14A

Package Description

14-Lead Small Outline integrated Circuit (SOIC), JEDEC MS-120, 0.150” Narrow Body

14-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300” Wide

Devices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code.

Connection Diagram

Pin Assignments for DIP and SOIC

Schematic Diagram

Top View

© 1999 Fairchild Semiconductor

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C

D

4

0

1

0

6

B

C

Absolute Maximum Ratings

(Note 1)

(Note 2)

DC Supply Voltage (V

DD

)

Input Voltage (V

IN

)

Storage Temperature Range (T

S

)

Power Dissipation (P

D

)

Dual-In-Line

Small Outline

Lead Temperature (T

L

)

(Soldering, 10 seconds)260°C

700 mW

500 mW

−0.5 to +18 V

DC

−0.5 to V

DD

+0.5 V

DC

−65°C to +150°C

Recommended Operating

Conditions

(Note 2)

DC Supply Voltage (V

DD

)

Input Voltage (V

IN

)

Operating Temperature Range (T

A

)

3 to 15 V

DC

0toV

DD

V

DC

−40°C to +85°C

Note 1: “Absolute Maximum Ratings” are 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 Conditions” and “Electrical Characteristics” provides

conditions for actual device operation.

Note 2: V

SS

= 0V unless otherwise specified.

DC Electrical Characteristics

(Note 3)

Symbol

I

DD

Parameter

Quiescent Device CurrentV

DD

= 5V

V

DD

= 10V

V

DD

= 15V

V

OL

LOW Level Output

Voltage

|I

O

| < 1 µA

V

DD

= 5V

V

DD

= 10V

V

DD

= 15V

V

OH

HIGH Level Output

Voltage

|I

O

| < 1 µA

V

DD

= 5V

V

DD

= 10V

V

DD

= 15V

V

T−

Negative-Going Threshold

Voltage

V

T+

Positive-Going Threshold

Voltage

V

H

Hysteresis (V

T+

− V

T−

)

Voltage

I

OL

LOW Level Output

Current (Note 3)

I

OH

HIGH Level Output

Current (Note 3)

I

IN

Input Current

V

DD

= 5V, V

O

= 4.5V

V

DD

= 10V, V

O

= 9V

V

DD

= 15V, V

O

= 13.5V

V

DD

= 5V, V

O

= 0.5V

V

DD

= 10V, V

O

= 1V

V

DD

= 15V, V

O

= 1.5V

V

DD

= 5V

V

DD

= 10V

V

DD

= 15V

V

DD

= 5V, V

O

= 0.4V

V

DD

= 10V, V

O

= 0.5V

V

DD

= 15V, V

O

= 1.5V

V

DD

= 5V, V

O

= 4.6V

V

DD

= 10V, V

O

= 9.5V

V

DD

= 15V, V

O

= 13.5V

V

DD

= 15V, V

IN

= 0V

V

DD

= 15V, V

IN

= 15V

Note 3: I

OH

and I

OL

are tested one output at a time.

Conditions

−40°C

MinMax

4.0

8.0

16.0

0.05

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

0.52

1.3

3.6

−0.52

−1.3

−3.6

−0.30

0.30

2.0

4.0

6.0

4.3

8.6

12.9

3.6

7.2

10.8

4.95

9.95

14.95

0.7

1.4

2.1

3.0

6.0

9.0

1.0

2.0

3.0

0.44

1.1

3.0

−0.44

−1.1

−3.0

Min

+25°C

TypMax

4.0

8.0

16.0

0.05

0.05

0.05

5

10

15

1.4

3.2

5.0

3.6

6.8

2.0

4.0

6.0

4.3

8.6

+85°C

MinMax

30

60

120

0.05

0.05

0.05

4.95

0.95

14.95

0.7

1.4

2.1

3.0

6.0

2.0

4.0

6.0

4.3

8.6

3.6

7.2

10.8

Units

µA

µA

µA

V

V

V

V

V

V

V

V

V

V

V

V

V

V

V

mA

mA

mA

mA

mA

mA

10.0

2.2

3.6

5.0

0.88

2.25

8.8

−0.88

−2.25

−8.8

−10

−5

10

−5

−0.30

0.30

12.9

3.6

7.2

10.8

9.0

1.0

2.0

3.0

0.36

0.9

2.4

−0.36

−0.9

−2.4

12.9

−1.0

1.0

µA

µA

2