Datasheet
General Purpose CMOS Logic IC
Quad 2ch Analog Multiplexer/Demultiplexer
BU4551B BU4551BF BU4551BFV
General Description
The BU4551B, BU4551BF, BU4551BFV are
multiplexers/demultiplexers with capabilities of
selection and mixture of analog signal and digital
signal.
This series are configured with quad 2 channels
input/output. The digital signal of the control terminal
turns on the corresponding switch of each channel.
The large am plitude voltage (V
DD
-V
EE
) can be
switched by the control signal with small logical
amplitude voltage (V
DD
-V
SS
).
Key Specifications
Operating Supply Voltage Range:
Input Voltage Range:
Operating Temperature Range:
3V to 16V
V
SS
to V
DD
-40°C to +85°C
Packages
DIP16
SOP16
SSOP-B16
W(Typ) x D(Typ) x H(Max)
19.40mm x 6.50mm x 7.95mm
10.00mm x 6.20mm x 1.71mm
5.00mm x 6.40mm x 1.35mm
Features
Low power consumption
Wide operating supply voltage
High input impedance
DIP16
SOP16
SSOP-B16
Truth Table
CONTROL
0
1
ON SWITCH
W0,X0,Y0,Z0
W1,X1,Y1,Z1
〇Product
structure : Silicon monolithic integrated circuit
〇This
product has no designed protection against radioactive rays
.
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BU4551B BU4551BF BU4551BFV
Pin Configuration
(TOP VIEW)
W1
X0
X1
X
Y
Y0
VEE
VSS
1
16
VDD
W0
W
Z
Z1
Z0
Y1
CONTROL
2
15
3
14
4
13
5
12
6
11
7
10
8
9
Pin Description
Pin No.
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
Pin Name
W1
X0
X1
X
Y
Y0
VEE
VSS
CONTROL
Y1
Z0
Z1
Z
W
W0
VDD
I/O
I/O
I/O
I/O
I/O
I/O
I/O
―
―
I
I/O
I/O
I/O
I/O
I/O
I/O
―
Function
Analog Switch Input / Output
Analog Switch Input / Output
Analog Switch Input / Output
Analog Switch Input / Output
Analog Switch Input / Output
Analog Switch Input / Output
Power Supply(-)
Power Supply(-)
Control Input
Analog Switch Input / Output
Analog Switch Input / Output
Analog Switch Input / Output
Analog Switch Input / Output
Analog Switch Input / Output
Analog Switch Input / Output
Power Supply (+)
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Block Diagram
VDD
CONTROL
VSS
VEE
W0
W1
X0
X1
Y0
Y1
Z0
Z1
COMMON W
COMMON X
COMMON Y
COMMON Z
LEVEL
CONVERTER
CONTROL
Absolute Maximum Ratings (T
A
=25°C)
Parameter
Supply Voltage
Input Voltage
Input Current
Operating Temperature
Storage Temperature
Maximum Junction Temperature
Power Dissipation
P
D
Symbol
V
DD
V
IN
I
IN
T
opr
T
stg
T
jmax
DIP16
SOP16
SSOP-B16
Rating
(V
SS
-0.3) to (V
SS
+18.0)
(V
SS
-0.3) to (V
DD
+0.3)
±10
-40 to +85
-55 to +150
+150
1.25
0.62
0.87
(Note 1)
(Note 2)
(Note 3)
Unit
V
V
mA
°C
°C
°C
W
(Note 1) Mounted on 70mm x 70mm x 1.6mm glass epoxy board. Reduce 10.0mW per 1°C above 25°C
(Note 2) Mounted on 70mm x 70mm x 1.6mm glass epoxy board. Reduce 5.0mW per 1°C above 25°C
(Note 3) Mounted on 70mm x 70mm x 1.6mm glass epoxy board. Reduce 7.0mW per 1°C above 25°C
Caution:
Operating the IC over the absolute maximum ratings may damage the IC. The damage can either be a short circuit between pins
or an open circuit between pins and the internal circuitry. Therefore, it is important to consider circuit protection measures, such as adding
a fuse, in case the IC is operated over the absolute maximum ratings.
Recommended Operating Conditions (T
A
= -40°C to +85°C)
Parameter
Supply Voltage
Input Voltage
Symbol
V
DD
V
IN
Min
3.0
V
SS
Typ
-
-
Max
16
V
DD
Unit
V
V
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Electrical Characteristics (Unless otherwise specified V
EE
=V
SS
=0V, T
A
=25°C)
Parameter
DC Characteristics
3.5
Input “H” voltage
V
IH
7.0
11.0
-
Input “L” voltage
Input “H” current
Input “L” current
ON resistance
V
IL
I
IH
I
IL
R
ON
-
-
-
-
-
-
-
-
ON resistance defluxion
△R
ON
-
-
Channel-OFF Leakage current
I
OFF
-
-
-
Quiescent supply current
Switching Characteristics, C
L
=50pF
Propagation delay time
IN→OUT
t
PLH
t
PHL
-
-
-
-
-
-
-
-
-
-
-
35
15
12
360
160
120
15
0.7
0.02
5
10
-
-
-
-
-
-
-
-
-
-
-
MHz
MHz
%
pF
pF
ns
ns
V
DD
=5V
V
DD
=10V
V
DD
=15V
V
DD
=5V
V
DD
=10V
V
DD
=15V
-
-
-
-
-
V
EE
=-5V
V
EE
=-5V
V
EE
=-5V
-
-
-
-
I
DD
-
-
-
-
-
-
-
-
-
-
-
-
-
25
10
5
-
-
-
-
-
-
-
-
1.5
3.0
4.0
0.3
-0.3
1100
500
280
-
-
-
0.3
-0.3
5
10
15
µA
µA
Ω
Ω
uA
uA
V
V
V
DD
=5V
V
DD
=10V
V
DD
=15V
V
DD
=5V
V
DD
=10V
V
DD
=15V
V
DD
=15V
V
DD
=15V
V
DD
=5V
V
DD
=10V
V
DD
=15V
V
DD
=5V
V
DD
=10V
V
DD
=15V
V
DD
=15V
V
DD
=15V
V
DD
=5V
V
DD
=10V
V
DD
=15V
V
IN
=V
DD
or V
EE
-
-
-
-
V
IH
=15V
V
IL
=0V
-
-
Symbol
Min
Typ
Max
Unit
Conditions
Propagation delay time
CONTROL→OUT
Maximum propagation frequency
Feed through attenuation
Sine wave distortion
Input capacitance (control input)
Input capacitance (switch input)
t
PHZ
,t
PLZ
t
PZH
,t
PZL
f
MAX
F
T
D
C
C
C
S
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Waveforms of Switching Characteristics
W0½W1
X0½X1
Y0½Y1
Z0½Z1
(INPUT)
V
DD
50%
V
EE
VDD
CONTROL
OUT
W/X/Y/Z
50%
W/X/Y/Z
(OUTPUT)
t
PLH
t
PHL
IN
W0 to W1
X0 to X1
Y0 to Y1
Z0 to Z1
VEE, VSS
R
L
C
L
Figure 1. Propagation Delay Time
(IN→OUT) (t
PLH
,t
PHL
)
Figure 2. Test Circuit 1 (t
PLH
,t
PHL
)
V
DD
CONTROL
(INPUT)
V
SS
50%
VDD
CONTROL
W/X/Y/Z
W/X/Y/Z
(OUTPUT)
90%
50%
OUT
(A,B,C,IN
HIBIT)→O
UT)
(t
PLH
,t
PHL
)
T
VDD
t
PZH
t
PHZ
W0 to W1
X0 to X1
Y0 to Y1
Z0 to Z1
VEE, VSS
R
L
C
L
Figure 3. Propagation Delay Time
(CONTROL→OUT) (t
PLH
,t
PHL
)
Figure 4. Test Circuit 2 (t
PZH
,t
PHZ
)
V
DD
CONTROL
(INPUT)
V
SS
50%
VDD
CONTROL
R
L
C
L
OUT
W/X/Y/Z
50%
W/X/Y/Z
(OUTPUT)
10%
W0 to W1
X0 to X1
Y0 to Y1
Z0 to Z1
VEE, VSS
t
PZL
t
PLZ
Figure 5. Propagation Delay Time
(CONTROL→OUT) (t
PZL
,t
PLZ
)
Figure 6. Test Circuit 3 (t
PZL
,t
PLZ
)
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