CD4049UBMS
®
Data Sheet
March 6, 2007
FN3315.1
CMOS Hex Buffer/Converter
Features
The CD4049UBMS is an inverting hex buffer and features
logic level conversion using only one supply (voltage (VCC).
The input signal high level (VIH) can exceed the VCC supply
voltage when this device is used for logic level conversions.
This device is intended for use as CMOS to DTL/TTL
converters and can drive directly two DTL/TTL loads.
(VCC = 5V, VOL ≤ 0.4V, and IOL ≥ 3.3mA.
• High Voltage Type (20V Rating)
• Inverting Type
• High Sink Current for Driving 2 TTL Loads
• High-to-Low Level Logic Conversion
• 100% Tested for Quiescent Current at 20V
• Maximum Input Current of 1mA at 18V Over Full Package
Temperature Range; 100nA at 18V and +25°C
The CD4049UBMS is designated as replacement for
CD4009UB. Because the CD4049UBMS requires only one
power supply, it is preferred over the CD4009UB and
CD4010B and should be used in place of the CD4009UB in
all inverter, current driver, or logic level conversion
applications. In these applications the CD4049UBMS is pin
compatible with the CD4009UB, and can be substituted for
this device in existing as well as in new designs. Terminal
No. 16 is not connected internally on the CD4049UBMS,
therefore, connection to this terminal is of no consequence
to circuit operation. For applications not requiring high sink
current or voltage conversion, the CD4069UB Hex Inverter is
recommended.
• 5V, 10V and 15V Parametric Ratings
Applications
• CMOS to DTL/TTL Hex Converter
• CMOS Current “Sink” or “Source” Driver
• CMOS High-to-Low Logic Level Converter
Pinout
CD4049UBMS
TOP VIEW
The CD4049UBMS is supplied in these 16 lead outline
packages:
VCC
G = A
A
1
2
3
4
5
6
7
8
16 NC
15 L = F
Braze Seal DIP H4S
14
F
Frit Seal DIP
H1E
H = B
B
13 NC
12 K = E
Ceramic Flatpack H3X
I = C
C
11
E
10 J = D
Functional Diagram
9
D
VSS
3
5
2
A
G = A
H = B
I = C
4
Schematic
B
C
D
E
F
VCC
7
6
9
10
12
15
J = D
K = E
L = F
1
8
P
VCC
VSS
11
14
R
IN
OUT
N
NC = 13
NC = 16
VSS
FIGURE 1. SCHEMATIC DIAGRAM, 1 OF 6 IDENTICAL UNITS
1
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
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