Datasheet

UNISONIC TECHNOLOGIES CO., LTD
4052
CMOS IC
DIFFERENTIAL 4-CHANNEL
ANALOG MULTIPLEXERS/
DEMULTIPLEXERS

DESCRIPTION
The UTC 4052 is differential 4-channel analog multiplexers/
demultiplexers for application as digitally–controlled analog switches.
The device has two binary control inputs and an inhibit input. It
feature low ON impedance and very low OFF leakage current.
Control of analog signals up to the complete supply voltage range
can be achieved.

FEATURES
* Wide Analog Voltage Range: VDD–VEE = 3V~18V.
(Note: VEE must be≦VSS)
* Break-Before-Make Switching Eliminates Channel Overlap.
* Linearized Transfer Characteristics
* Implement an DP4T Switch Effectively.
* Pin to Pin Replacement for CD4052

ORDERING INFORMATION
Ordering Number
Lead Free
Halogen Free
4052L-D16-T
4052G-D16-T
4052G-S16-R
4052G-P16-R

Package
Packing
DIP-16
SOP-16
TSSOP-16
Tube
Tape Reel
Tape Reel
MARKING
DIP-16
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SOP-16 / TSSOP-16
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CMOS IC

PIN CONFIGURATION

PIN DESCRIPTION
PIN No.
SYMBAL
NAME AND FUNCTION
13, 3
X,Y
Commons Input/Output
6
INH
Inhibit Input
7
VEE
Supply Voltage
8
VSS
Ground
10,9
A,B
Binary Control Inputs
12,14,15,11
X0~X3
X Channel Inputs/Outputs
1,5,2,4
Y0~Y3
Y Channel Inputs/Outputs
16
VDD
Positive Supply Voltage
Note: Control Inputs referenced to VSS. Analog Inputs and Outputs reference to VEE. VEE must be <VSS.
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
CMOS IC
ABSOLUTE MAXIMUM RATING
PARAMETER
DC Supply Voltage (Referenced to VEE, VSS≧VEE)
SYMBOL
VDD
RATINGS
-0.5 ~ +18
UNIT
V
Input or Output Voltage (DC or Transient)
VIN, VOUT
-0.5 ~ VDD +0.5
V
(Referenced to VSS for Control Inputs and VEE for Switch I/O)
Input Current (DC or Transient), per Control Pin
IIN
±10
mA
Switch Through Current
ISW
±25
mA
700
mW
Power Dissipation
PD
Derating above 65°C
7
mW/°C
Junction Temperature
TJ
125
°C
Operating Temperature
TOPR
-40 ~ +125
°C
Storage Temperature
TSTG
-40 ~ +150
°C
Note: Absolute maximum ratings are those values beyond which the device could be permanently damaged.
Absolute maximum ratings are stress ratings only and functional device operation is not implied.

ELECTRICAL CHARACTERISTICS (TA=25°C, unless otherwise specified.)
PARAMETER
SYMBOL
TEST CONDITIONS
MIN
TYP
MAX UNIT
SUPPLY REQUIREMENTS (Voltages Referenced to VEE)
Power Supply Voltage Range
VDD
VDD – 3≧VSS≧VEE
3
18
V
VDD=5V
0.005
5
µA
Control Inputs: VIN = VSS or VDD
Quiescent
Current
per
IQ
VDD=10V
Switch I/O: VEE ≦VI/O ≦VDD,
0.010
10
µA
Package
and ∆VSW≦500mV(Note 2)
VDD=15V
0.015
20
µA
(0.07 µA/kHz) f + IQ
µA
Total
Supply
Current VDD=5V
TA=25°C only (The channel
(Dynamic Plus Quiescent, VDD=10V
ID(AV) component, (VIN-VOUT)/RON,
(0.20 µA/kHz) f + IQ
µA
Per Package)
is excluded.)
VDD=15V
(0.36 µA/kHz) f + IQ
µA
SWITCHES IN/OUT AND COMMONS OUT/IN -- X, Y, Z (Voltages Referenced to VEE)
Recommended Peak to Peak Voltage
VI/O
Channel On or Off
0
VDD VPP
Into or Out of the Switch
Recommended Static or Dynamic
∆VSW Channel On
0
600 mV
Voltage Across the Switch (Note2)
Output Offset Voltage
VO(OFF) VIN = 0V, No Load
10
µV
250
1050 Ω
VDD=5V
∆VSW≦500mV (Note2)
RON
VIN = VIL or VIH (Control), and
ON Resistance
VDD=10V
120
500
Ω
V
=
0
to
V
(Switch)
VDD=15V
80
280
Ω
IN
DD
25
70
Ω
∆ON Resistance Between VDD=5V
Any Two Channels in the VDD=10V
∆RON
10
50
Ω
Same Package
VDD=15V
10
45
Ω
VIN = VIL or VIH (Control) Channel to
Channel or Any One Channel,
Off Channel Leakage Current
IOFF
±0.05
±100 nA
VDD=15V
Capacitance, Switch I/O
CI/O
Inhibit = VDD
10
pF
Capacitance, Common O/I
CO/I
Inhibit = VDD
17
pF
Pins Not Adjacent
0.15
Capacitance, Feedthrough
CI/O
pF
(Channel Off)
Pins Adjacent
0.47
CONTROL INPUTS – INHIBIT A, B, C (Voltages Referenced to VSS)
VDD=5V
2.25
1.5
V
VIL
Low Level Input Voltage
VDD=10V
RON= per spec, IOFF = per spec
4.50
3.0
V
VDD=15V
6.75
4.0
V
VDD=5V
3.5
2.75
V
High Level Input Voltage
VDD=10V
VIH
RON= per spec, IOFF = per spec
7.0
5.50
V
VDD=15V
11
8.25
V
Input Leakage Current
ILEAK VIN= 0 or VDD, VDD=15V
±0.00001 ±0.1 µA
Input Capacitance
CIN
5.0
7.5
pF
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CMOS IC
DYNAMIC ELECTRICAL CHARACTERISTICS
(CL = 50pF, TA=25°C, VEE≦VSS, unless otherwise specified)
PARAMETER
SYMBOL
Propagation Delay Times
Switch Input to Switch tPLH, tPHL
Output (RL = 10 kΩ)
Inhibit to Output
tPHZ, tPLZ
tPZH, tPZL
Control Input to Output
tPLH, tPHL
Total Harmonic Distortion
THD
VDD-VEE
VDC
5
10
15
5
10
15
5
10
15
10
TEST CONDITIONS
tPLH, tPHL =(0.17 ns/pF)CL + 21.5ns
tPLH, tPHL =(0.08 ns/pF)CL + 8.0ns
tPLH, tPHL =(0.06 ns/pF)CL + 7.0ns
(RL=10kΩ, VEE=VSS)
Output “1” or “0” to High Impedance,
or High Impedance to “1” or “0” Level
RL = 10 kΩ, VEE = VSS
MIN
TYP
MAX
UNIT
30
12
10
300
155
125
325
130
90
0.07
75
30
25
600
310
250
650
260
180
ns
ns
ns
ns
ns
ns
ns
ns
ns
%
RL = 10KΩ, f = 1 kHz, VIN = 5 VPP
RL = 1kΩ, VIN = 1/2 (VDD–VEE) p–p,
17
MHz
Bandwidth
BW
10
CL = 50pF, 20 Log (VOUT/VIN) = -3dB)
RL=1KΩ, VIN = 1/2 (VDD–VEE) p–p
Off Channel Feedthrough
10
-50
dB
Attenuation
fIN = 30MHz
RL = 1kΩ, VIN = 1/2 (VDD–VEE) p–p
-50
dB
Channel Separation
10
fIN = 3MHz
R1 = 1kΩ, RL = 10kΩ Control
Crosstalk, Control Input to
10
75
mV
Common O/I
tTLH = tTHL = 20ns, Inhibit = VSS
Notes: 1. Data of “TYP” is intended as an indication of the IC’s potential performance.
2. For voltage drops across the switch(∆VSW)>600mV (>300mV at high temperature), excessive VDD current
may be drawn, i.e. the current out of the switch may contain both VDD and switch input components. The
reliability of the device will be unaffected unless the Maximum Ratings are exceeded.
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
CMOS IC
TEST CIRCUIT
VDD
VDD
VDD
OUT/IN
IN/OUT
VEE
VDD
LEVEL
CONVERTED
CONTROL
OUT/IN
IN/OUT
CONTROL
VEE
Switch Circuit Schematic

TRUTH TABLE
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CMOS IC
TYPICAL CHARACTERISTICS
"ON" Resistance, RON(Ω)
"ON" Resistance, RON(Ω)
"ON" Resistance, RON(Ω)
"ON" Resistance, RON(Ω)

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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