Cd4069

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CD4069UBM CD4069UBC Inverter Circuits

February 1988

CD4069UBM CD4069UBC Inverter Circuits
General Description
The CD4069UB consists of six inverter circuits and is manufactured using complementary MOS (CMOS) to achieve wide power supply operating range low power consumption high noise immunity and symmetric controlled rise and fall times This device is intended for all general purposeinverter applications where the special characteristics of the MM74C901 MM74C903 MM74C907 and CD4049A Hex Inverter Buffers are not required In those applications requiring larger noise immunity the MM74C14 or MM74C914 Hex Schmitt Trigger is suggested All inputs are protected from damage due to static discharge by diode clamps to VDD and VSS

Features
Y Y Y

Y

Wide supply voltage range 3 0V to15V High noise immunity 0 45 VDD typ Low power TTL Fan out of 2 driving 74L compatibility or 1 driving 74LS Equivalent to MM54C04 MM74C04

Schematic and Connection Diagram
Dual-In-Line Package

TL F 5975 – 1 TL F 5975 – 2

Order Number CD4069UB

AC Test Circuits and Switching Time Waveforms

TL F 5975 – 3 TL F 5975 – 4

C1995 National Semiconductor Corporation

TL F 5975RRD-B30M105 Printed in U S A

Absolute Maximum Ratings (Notes 1

2)

If Military Aerospace specified devices are required please contact the National Semiconductor Sales Office Distributors for availability and specifications
b 0 5V to a 18 VDC DC Supply Voltage (VDD) b 0 5V to VDD a 0 5 VDC Input Voltage (VIN) b 65 C to a 150 C Storage Temperature Range (TS) Power Dissipation (PD) Dual-In-Line700 mW Small Outline 500 mW Lead Temperature (TL) (Soldering 10 seconds) 260 C

Recommended Operating Conditions (Note 2)
DC Supply Voltage (VDD) Input Voltage (VIN) Operating Temperature Range (TA) CD4069UBM CD4069UBC 3V to 15VDC 0V to VDD VDC
b 55 C to a 125 C b 40 C to a 85 C

DC Electrical Characteristics CD4069UBM (Note 2)
Symbol IDD Parameter Quiescent Device Current Conditions VDD e5V VIN e VDD or VSS VDD e 10V VIN e VDD or VSS VDD e 15V VIN e VDD or VSS
b 55 C a 25 C a 125 C

Units mA mA mA

Min

Max 0 25 05 10

Min

Typ

Max 0 25 05 10

Min

Max 75 15 30

VOL

Low Level Output Voltage

lIOl k 1 mA VDD e 5V VDD e 10V VDD e 15V lIOl k 1 mA VDD e 5V VDD e 10V VDD e 15V lIOl k 1 mA VDD e 5V VO e 4 5V VDD e 10V VO e 9V VDD e 15V VO e 13 5V lIOl k 1 mA VDDe 5V VO e 0 5V VDD e 10V VO e 1V VDD e 15V VO e 1 5V
VDD e 5V VO e 0 4V VDD e 10V VO e 0 5V VDD e 15V VO e 1 5V 40 80 12 0 0 64 16 42 4 95 9 95 14 95

0 05 0 05 0 05 4 95 9 95 14 95 10 20 30 40 80 12 0 0 51 13 34
b 0 51 b1 3 b3 4 b 0 10

0 0 0 5 10 15

0 05 0 05 0 05 4 95 9 95 14 95 10 20 30 40 80 12 0

0 05 0 05 0 05

V V V V V V

VOH

High Level Output Voltage

VIL

Low LevelInput Voltage

10 20 30

V V V V V V mA mA mA mA mA mA

VIH

High Level Input Voltage

IOL

Low Level Output Current (Note 3) High Level Output Current (Note 3) Input Current

0 88 2 25 88
b 0 88 b 2 25 b8 8 b 10 b 5 b 0 10

0 36 09 24
b 0 36 b0 9 b2 4 b1 0

IOH

b 0 64 VDD e 5V VO e 4 6V b1 6 VDD e 10V VO e 9 5V VDD e 15V VO e 13 5V b4 2

IIN

VDD e 15V VIN e 0V VDD e15V VIN e 15V

0 10

10b5

0 10

10

mA mA

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 ‘‘Recommended Operating Conditions’’ and ‘‘Electrical Characteristics’’ provides conditions for actual device operation Note 2 VSS e 0Vunless otherwise specified Note 3 IOH and IOL are tested one output at a time

2

DC Electrical Characteristics CD4069UBC (Note 2)
Symbol IDD Parameter Quiescent Device Current Conditions VDD e 5V VIN e VDD or VSS VDD e 10V VIN e VDD or VSS VDD e 15V VIN e VDD or VSS
b 40 C a 25 C a 85 C

Units mA mA mA

Min

Max 10 20 40

Min

Typ

Max 10 20 40

Min

Max 75 15 30

VOL...
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