Datasheet

UNISONIC TECHNOLOGIES CO., LTD
U74LV4052
CMOS IC
DUAL 4-CHANNEL ANALOG
MULTIPLEXERS/DEMULTIPLEX
ERS

DESCRIPTION
SOP-16
These dual 4-channel CMOS analog multiplexers/demultiplexers
are designed for 2-V to 5.5-V VCC operation.
The U74LV4052 handles both analog and digital signals. Each
channel permits signals with amplitudes up to 5.5V (peak) to be
transmitted in either direction.
Applications include signal gating, chopping, modulation or
demodulation (modem), and signal multiplexing for analog-to-digital
and digital-to-analog conversion systems.

TSSOP-16
FEATURES
* 2-V to 5.5-V VCC Operation
* Fast Switching
* High On-Off Output-Voltage Ratio
* Low Crosstalk Between Switches
* Extremely Low Input Current

ORDERING INFORMATION
Ordering Number
U74LV4052G-S16-R
U74LV4052G-P16-R

Package
SOP-16
TSSOP-16
Packing
Tape Reel
Tape Reel
MARKING
www.unisonic.com.tw
Copyright © 2015 Unisonic Technologies Co., Ltd
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
PIN CONFIGURATION

FUNCTION TABLE
CMOS IC
INPUTS
ON Channel
INH
B
A
L
L
L
1Y0, 2Y0
L
L
H
1Y1, 2Y1
L
H
L
1Y2, 2Y2
L
H
H
1Y3, 2Y3
H
X
X
None
Note: H: HIGH voltage level; L: LOW voltage level; X: Don’t care

LOGIC DIAGRAM (positive logic)
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
CMOS IC
ABSOLUTE MAXIMUM RATING
PARAMETER
Supply voltage range
Input voltage range
Switch I/O voltage range
Input clamp current
I/O diode Current
Switch through current
Continuous current through VCC or GND
Storage temperature range

RATINGS
-0.5 ~ +7.0
-0.5 ~ +7.0
-0.5~Vcc+0.5
-20
-50
±25
±50
-65 ~ +150
UNIT
V
V
V
mA
mA
mA
mA
°C
SYMBOL
RATINGS
73
108
UNIT
°C/W
°C/W
THERMAL DATA
PARAMETER
Junction to Ambient

SYMBOL
VCC
VIN
VIO
IIK
IIOK
IT
ICC
TSTG
SOP-16
TSSOP-16
θJA
RECOMMENDED OPERATING CONDITIONS
PARAMETER
Supply Voltage
Control Input Voltage
Input/output Voltage
Input Transition Rise or Fall rate
SYMBOL
VCC
VIN
VIO
t/v
TEST CONDITIONS
MIN
2.0
0
0
TYP
VCC=2.3V to 2.7V
VCC=3V to 3.6V
VCC=4.5V to 5.5V
Operating free-air temperature
TA
-40
Note: All unused inputs of the device must be held at VCC or GND to ensure proper device operation.
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MAX
5.5
5.5
VCC
200
100
20
+85
UNIT
V
V
V
ns/V
°C
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CMOS IC
DC ELECTRICAL CHARACTERISTICS (TA =25°C , unless otherwise specified)
PARAMETER
High-level
SYMBOL
VIH
Input voltage
Low-level
VIL
ON-state switch resistance
rON
Peak ON-state resistance
rON (p)
Difference in on-state
resistance between switches
△rON
Off-state switch leakage
current
IS(off)
On-state switch leakage
current
IS(on)
Supply Current
ICC
Control input current

II
TEST CONDITIONS
VCC=2V
VCC=2.3 ~ 2.7V
VCC=3 ~ 3.6V
VCC=4.5 ~ 5.5V
VCC=2V
VCC=2.3 ~ 2.7V
VCC=3 ~ 3.6V
VCC=4.5 ~ 5.5V
VCC=2.3V
VINH=VIL,
VCC=3V
VI =VCC or GND, IT=2mA
VCC=4.5V
VCC=2.3V
VINH=VIL,
VI =VCC or GND
VCC=3V
IT=2mA
VCC=4.5V
VCC=2.3V
VINH=VIL,
VI =VCC or GND
VCC=3V
IT=2mA
VCC=4.5V
VI=VCC and VO =GND, or
VI=GND and VO =VCC, VCC=5.5V
VINH=VIH
VINH=VIL,
VCC=5.5V
VI =VCC or GND
VI= VCC or GND
VCC=5.5V
VIN= 5.5V or GND
VCC=0 ~ 5.5V
MIN
1.5
VCC×0.7
VCC×0.7
VCC×0.7
TYP
MAX
43
34
25
133
63
35
1.5
1.1
0.7
0.5
VCC×0.3
VCC×0.3
VCC×0.3
180
150
75
500
180
100
30
20
15
UNIT
V
Ω
Ω
Ω
±0.1
μA
±0.1
μA
20
μA
±0.1
μA
AC ELECTRICAL CHARACTERISTICS (TA=25°С, unless otherwise specified)
PARAMETER
Propagation delay time from COM or Y
to Y or COM
Enable delay time from INH to COM or
Y
Disable delay time from INH to COM or
Y
SYMBOL
tPLH/tPHL
tPZH/tPZL
tPHZ/tPLZ
TEST CONDITIONS
VCC=2.5±0.2
CL=15pF
VCC=3.3±0.3
VCC=5±0.5
VCC=2.5±0.2
CL=50pF
VCC=3.3±0.3
VCC=5±0.5
VCC=2.5±0.2
CL=15pF
VCC=3.3±0.3
VCC=5±0.5
VCC=2.5±0.2
CL=50pF
VCC=3.3±0.3
VCC=5±0.5
VCC=2.5±0.2
CL=15pF
VCC=3.3±0.3
VCC=5±0.5
VCC=2.5±0.2
CL=50pF
VCC=3.3±0.3
VCC=5±0.5
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MIN
TYP
1.9
1.2
0.7
3.8
2.5
1.5
8
5.7
4
9.4
6.7
4.7
8.3
6.6
5
12.4
9.5
6.9
MAX
10
6
4
12
9
6
18
12
8
28
20
14
18
12
8
28
20
14
UNIT
ns
ns
ns
ns
ns
ns
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CAPACITANCE CHARACTERISTICS (TA=25°С, unless otherwise specified)
PARAMETER
Control input capacitance
COMMON terminal capacitance
SWITCH terminal capacitance
Feedthrough capacitance

SYMBOL
CIC
CIS
COS
CF
TEST CONDITIONS
f=10MHz, VCC=3.3V
VCC=3.3V
VCC=3.3V
VCC=3.3V
MIN
TYP MAX UNIT
2.1
pF
13.1
pF
5.6
pF
0.5
pF
Analog Switch CHARACTERISTICS (GND=0V, TA=25°С, unless otherwise specified)
PARAMETER
Sine-Wave Distortion from COM or Y
to Y or COM
Frequency response(switch on) from
COM or Y to Y or COM
Feedthrough attenuation from COM or
Y to Y or COM (switch off)
Crosstalk from COM or Y to Y or COM
(between any switches)
Crosstalk from INH to COM or Y
(control input to signal output)

CMOS IC
SYMBOL
THD
fMAX
TEST CONDITIONS
VIN=2Vp-p
VCC=2.3V
RL=10k, CL=50p,
VIN=2.5Vp-p
fIN=1kHz
VCC=3V
(sine wave)
VIN=4Vp-p
VCC=4.5V
RL=600Ω,CL=50pF VCC=2.3V
, fIN=1MHz
VCC=3V
(sine wave )
VCC=4.5V
RL=600Ω,CL=50pF VCC=2.3V
,fIN=1MHz
VCC=3V
(sine wave)
VCC=4.5V
RL=600Ω,CL=50pF VCC=2.3V
,fIN=1MHz
VCC=3V
(sine wave)
VCC=4.5V
RL=600Ω,CL=50pF VCC=2.3V
,fIN=1MHz
VCC=3V
(sine wave)
VCC=4.5V
MIN
TYP
MAX UNIT
0.1
%
0.1
%
0.1
%
30
35
50
-45
-45
-45
-45
-45
-45
20
35
65
MHz
MHz
MHz
MHz
MHz
MHz
MHz
MHz
MHz
mV
mV
mV
OPERATING CHARACTERISTICS (TA=25°С, unless otherwise specified)
PARAMETER
SYMBOL
TEST CONDITIONS
MIN TYP MAX UNIT
Power Dissipation Capacitance
CPD
CL=50pF, f=10MHz
11.8
pF
Note: 1. Adjust fIN voltage to obtain 0 dBm at output. Increase fin frequency until dB meter reads -3 dB.
2. Adjust fIN voltage to obtain 0 dBm at input.
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CMOS IC
TEST CIRCUIT AND WAVEFORMS
Fig. 1 On-State Resistance Test Circuit
Fig. 2 Off-State Switch Leakage-Current Test Circuit
Fig. 3 On-State Switch Leakage-Current Test Circuit
Fig. 4 Propagation Delay Time, Signal Input to Signal Output
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CMOS IC
TEST CIRCUIT AND WAVEFORMS (Cont.)
Fig. 5 Switching Time (tPZL, tPLZ, tPZH, tPHZ), Control to Signal Output
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CMOS IC
TEST CIRCUIT AND WAVEFORMS (Cont.)
Fig. 6 Frequency Response (Switch On)
VCC
VINH=GND
0.1μF
fIn
VCC
600Ω
(ON)
VI
50Ω
VO1
GND
RL=600Ω
CL=50pF
VCC/2
VCC
VINH=VCC
VCC
(OFF)
600Ω
GND
VO2
RL=600Ω
CL=50pF
VCC/2
Fig. 7 Crosstalk Between Any Two Switches
Fig. 8 Crosstalk Between Control Input and Switch Output
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CMOS IC
TEST CIRCUIT AND WAVEFORMS (Cont.)
Fig. 9 Feedthrough Attenuation (Switch Off)
Fig. 10 Sine-Wave Distortion
UTC assumes no responsibility for equipment failures that result from using products at values that
exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or
other parameters) listed in products specifications of any and all UTC products described or contained
herein. UTC products are not designed for use in life support appliances, devices or systems where
malfunction of these products can be reasonably expected to result in personal injury. Reproduction in
whole or in part is prohibited without the prior written consent of the copyright owner. The information
presented in this document does not form part of any quotation or contract, is believed to be accurate
and reliable and may be changed without notice.
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