TPW4052
12V General Purpose Analog Switch
Features
Description
⚫
Analog Switch Voltage: 3.3V, 5V, 10V, ±5V
The TPW4052 is dual SP4T analog switch suitable for use in
⚫
Low ON-State Resistance:
analog or digital multiplexer/demultiplexer applications. The
typical 50Ω at Vs = ±4.5V or 9V
switch features three digital select inputs (S0, S1), eight
typical 60Ω at Vs = 4.5V
independent inputs/outputs (An, Bn), two common input/output
typical 300Ω at Vs = 3V
(A, B) and a digital enable input (/E). When /E is HIGH, the
switches are turned off.
⚫
Bandwidth: 200 MHz
⚫
Fast switching times: tON = 60ns, tOFF = 50ns
⚫
Break-Before-Make Switching
⚫
Operation Temperature Range: –40°C to 125°C
The device is designed on an enhanced process that provides
lower power dissipation yet gives high switching speeds. These
devices can operate equally well as either multiplexers or demultiplexers and have an input range that extends to the
supplies. All channels exhibit break-before-make switching
Applications
⚫
Industry control systems
⚫
Battery-powered systems
⚫
Audio Signal Routing
⚫
Instrumentation
action,
preventing
momentary
shorting
when
switching
channels.
Switch Selection Guide
Product
Switch
Supply
Ron(OHM)
Bandwidth(MHz)
Package
Configuration
Voltage(V)
TPW4051
8:1
12
50
200
SOIC-16, TSSOP-16, QFN-16
TPW4052
(4:1)*2
12
50
200
SOIC-16, TSSOP-16
TPW4053
(2:1)*3
12
50
200
SOIC-16, TSSOP-16
TPW3111
1:1
5.5
1
100
SC70-5
TPW3115
1:1
5.5
5
250
SC70-5, SOT23-5
TPW4157
2:1
5.5
1
100
SC70-6
TPW3157A
2:1
5.5
2
100
SC70-6
TPW3221
(2:1)*2
5.5
1
100
MSOP-10
TPW3223
(2:1)*2
5.5
1
100
QFN-10, 1.4*1.8mm
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1 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Table of Contents
Features ........................................................................................................................................................................... 1
Applications ..................................................................................................................................................................... 1
Description....................................................................................................................................................................... 1
Switch Selection Guide .................................................................................................................................................. 1
Table of Contents ............................................................................................................................................................ 2
Revision History .............................................................................................................................................................. 3
Order Information ............................................................................................................................................................ 3
Pin Configuration, Description and Functional Table
Note 1
......................................................................................... 4
TPW4052 ..................................................................................................................................................................................... 4
Absolute Maximum Ratings Note 1 ................................................................................................................................... 5
ESD Rating ....................................................................................................................................................................... 5
Thermal Information ....................................................................................................................................................... 5
Recommended Operating Conditions Note 1 .................................................................................................................. 5
Electrical Characteristics ............................................................................................................................................... 6
Typical Performance Characteristics .......................................................................................................................... 10
Test Circuit and Waveforms ......................................................................................................................................... 11
Application Information ................................................................................................................................................ 12
Tape and Reel Information ........................................................................................................................................... 13
Package Outline Dimensions ....................................................................................................................................... 14
SOIC-16 ..................................................................................................................................................................................... 14
TSSOP-16 .................................................................................................................................................................................. 14
IMPORTANT NOTICE AND DISCLAIMER .................................................................................................................... 15
www.3peak.com
2 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Revision History
Date
Revision
Notes
2018/8/8
Rev.Pre
Pre-Release Version
2019/3/4
Rev.0
Initial Version
2019/10/2
Rev.0.01
HBM: 2KV -> 1KV
2019/12/25
Rev.0.02
Correct test conditions of RON and switch leakage to follow the product test(Product test is not
changed):
all of “0V” -> “VEE”;
On Resistance Match between Channels at 3 to 3.6V Vcc: -> remove;
On Resistance Match between Channels at 9 to 11V Vcc: VIS = 3.5V -> VIS = 1V;
On Resistance Match between Channels at 4.5 to 5.5V Vcc, Vee = -4.5V to 5.5V: VIS = 3.5V
-> VIS = -3.5V
2020/1/14
Rev.0.03
Correct the “P0” information of TR in Tape and Reel Information
Order Information
Order Number
Operating Temperature Range
Package
Marking Information
MSL
Transport Media, Quantity
TPW4052-SR
-40 to 125°C
16-Pin SOIC
W4052
3
Tape and Reel, 2500
TPW4052-TR
-40 to 125°C
16-Pin TSSOP
W4052
3
Tape and Reel, 3000
www.3peak.com
3 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Pin Configuration, Description and Functional Table Note 1
TPW4052
TPW4052
16-Pin SOIC/TSSOP
(-S and -T Suffixes)
B0 1
16 VCC
B2 2
15 A2
B 3
14 A1
B3 4
13 A
B1 5
12 A0
/E 6
11 A3
VEE 7
LOGIC
GND 8
10 S0
9 S1
Pin Description
Pin
No.
Pin
Name
Input / Output
Description
Pin
No.
Pin
Name
Input / Output
Description
1
B0
Input / Output
Channel B0 input or output
9
S1
Input
Control Input
2
B2
Input / Output
Channel B2 input or output
10
S0
Input
Control Input
3
B
Input / Output
B Common input or output
11
A3
Input / Output
Channel A3 input or output
4
B3
Input / Output
Channel B3 input or output
12
A0
Input / Output
Channel A0 input or output
5
B1
Input / Output
Channel B1 input or output
13
A
Input / Output
A Common input or output
6
/E
Input
Enable switchs, active low
14
A1
Input / Output
Channel A1 input or output
7
VEE
Negative Power Input
15
A2
Input / Output
Channel A2 input or output
8
GND
Ground
16
VCC
Positive Power Input
Functional Table
/E, Enable
S2
S1
S0
ON Channel
L
NA
L
L
A0, B0
L
NA
L
H
A1, B1
L
NA
H
L
A2, B2
L
NA
H
H
A3, B3
H
NA
X
X
None
X = Don’t care, NA = Not Available
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4 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Absolute Maximum Ratings Note 1
Parameters
Rating
Supply Voltage, VCC - VEE
-0.5V to 13V
Supply Voltage, VCC - GND
-0.5V to 13V
Supply Voltage, VEE - GND
-6.5V to 0.5V
Analog Switch Voltage
VEE – 0.5V to VCC + 0.5V
Analog Switch Current
±25mA
Analog Switch Diode Current
±20mA
Digital Input Voltage, /E, S2, S1, S0
GND to VCC + 0.5V
Digital Input Diode Current
±20mA
Maximum Junction Temperature
150°C
Storage Temperature Range
–65 to 150°C
Lead Temperature (Soldering, 10 sec)
260°C
Note 1: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to
any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime.
ESD Rating
Symbol
Parameter
Condition
Minimum Level
Unit
HBM
Human Body Model ESD
ANSI/ESDA/JEDEC JS-001
1
kV
CDM
Charged Device Model ESD
ANSI/ESDA/JEDEC JS-002
1
kV
Thermal Information
Package Type
θJA
θJC
Unit
16-Pin SOIC
100
50
°C/W
16-Pin TSSOP
150
60
°C/W
Recommended Operating Conditions Note 1
Over operating temperature range
Parameters
Min
Max
Unit
Supply Voltage, VCC - VEE
3
12
V
Supply Voltage, VCC – GNDNote2
3
12
V
Supply Voltage, VEE – GNDNote2
-6
0
V
Select Input Voltage
0
VCC
V
100
ns/V
Input Transition Rise and Fall Rate
Switch I/O Port Voltage
VEE
VCC
V
Operating Temperature Range
–40
125
°C
Note 1: Select input must be held HIGH or LOW and it must not float.
Note 2: The voltage of VCC, VEE need be in the range of VCC-VEE
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5 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Electrical Characteristics
Single Supply, VCC = 4.5 to 5.5V, VEE = 0V, GND = 0V, unless otherwise noted.
Symbol
Parameter
Conditions
VCC
(V)
25°C
-40°C to
85°C
-40°C to
125°C
Limit
Unit
VIN = 0V or VCC
5.5
4
6
8
Max
μA
Power Supply
ICC
Quiescent Supply Current
Digital Input
VIH
Input Voltage High
2.0
2.0
Min
V
VIL
Input Voltage Low
0.8
0.8
Max
V
IIN
Control Input Leakage
±1
±1
Max
μA
Typ
Ω
VIN = 0V or VCC
5.5
±0.4
RON
IOUT = 1mA, VIS = VEE or VCC
4.5
60
RON
IOUT = 1mA, VIS = VEE or VCC
4.5
100
130
150
Max
Ω
Analog Switch
ΔRON
On Resistance Match
between Channels
IOUT = 1mA, VIS = 2.5V
4.5
20
30
35
Max
Ω
RFLAT(ON)
On Resistance Flatness
IOUT = 1mA
4.5
60
80
80
Max
Ω
ICH(OFF)
Switch OFF Leakage
Current on Channel
VIS = VEE, VOS = VCC;
or VIS = VCC, VOS = VEE
5.5
±0.4
±1
±1
Max
μA
ICOM(OFF)
Switch OFF Leakage
Current on Common
VIS = VEE, VOS = VCC;
or VIS = VCC, VOS = VEE,
5.5
±0.4
±2
±2
Max
μA
I(ON)
Switch ON Leakage Current
VIS = VEE or VCC
5.5
±0.4
±2
±2
Max
μA
Dynamic Characteristics
tPHL, tPLH
Switch IN to OUT time
CL = 50pF
4.5
5
Typ
ns
tON
Switch turn-on time
CL = 50pF
4.5
60
Max
ns
tOFF
Switch turn-off time
CL = 50pF
4.5
50
Max
ns
OFF-Isolation
f = 1MHz, RL = 50Ω, CL = 10pF
5
-70
Typ
dB
Crosstalk in channel
f = 1MHz, RL = 50Ω, CL = 10pF
5
-70
Typ
dB
Crosstalk in control
Between control and any switch;
RL = 600Ω; f = 1 MHz; E or Sn
square wave between VCC and
GND
5
110
Typ
mV
BW
Bandwidth
RL = 50Ω
5
200
Typ
MHz
THD
Total Harmonic Distortion
RL = 10kΩ, f = 1kHz
5
0.05
Typ
%
Capacitance
CIN
Switch Input Capacitance
5
5
Typ
pF
CCOM
Common Output
5
12
Typ
pF
5
50
Typ
pF
Capacitance
CPD
Power Dissipation
Capacitance
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6 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Single Supply, VCC = 3 to 3.6V, VEE = 0V, GND = 0V, unless otherwise noted.
Symbol
Parameter
Conditions
VCC
(V)
25°C
-40°C to
85°C
-40°C to
125°C
Limit
Unit
VIN = 0V or VCC
3.6
4
6
8
Max
μA
Power Supply
ICC
Quiescent Supply Current
Digital Input
VIH
Input Voltage High
2.0
2.0
Min
V
VIL
Input Voltage Low
0.8
0.8
Max
V
IIN
Control Input Leakage
±1
±1
Max
μA
VIN = 0V or VCC
3.6
IOUT = 1mA, VIS = VEE or VCC
3
300
Typ
Ω
Typ
Ω
Analog Switch
RON
RFLAT(ON)
On Resistance Flatness
IOUT = 1mA
3
100
ICH(OFF)
Switch OFF Leakage
Current on Channel
VIS = VEE, VOS = VCC;
or VIS = VCC, VOS = VEE
3.6
±0.4
±1
±1
Max
μA
ICOM(OFF)
Switch OFF Leakage
Current on Common
VIS = VEE, VOS = VCC;
or VIS = VCC, VOS = VEE,
3.6
±0.4
±2
±2
Max
μA
I(ON)
Switch ON Leakage Current
VIS = VEE or VCC
3.6
±0.4
±2
±2
Max
μA
Dynamic Characteristics
tPHL, tPLH
Switch IN to OUT time
CL = 50pF
3
5
Typ
ns
tON
Switch turn-on time
CL = 50pF
3
70
Max
ns
tOFF
Switch turn-off time
CL = 50pF
3
60
Max
ns
OFF-Isolation
f = 1MHz, RL = 50Ω, CL = 10pF
3.3
-70
Typ
dB
Crosstalk
f = 1MHz, RL = 50Ω, CL = 10pF
3.3
-70
Typ
dB
Crosstalk in control
Between control and any switch;
RL = 600Ω; f = 1 MHz; E or Sn
square wave between VCC and
GND
3.3
110
Typ
mV
BW
Bandwidth
RL = 50Ω
3.3
200
Typ
MHz
THD
Total Harmonic Distortion
RL = 10kΩ, f = 1kHz
3.3
0.2
Typ
%
Capacitance
CIN
Switch Input Capacitance
3.3
5
Typ
pF
CCOM
Common Output
3.3
12
Typ
pF
3.3
50
Typ
pF
Capacitance
CPD
Power Dissipation
Capacitance
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7 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Single Supply, VCC = 9V to 11V, VEE = 0V, GND = 0V, unless otherwise noted.
Symbol
Parameter
Conditions
VCC
(V)
25°C
-40°C to
85°C
-40°C to
125°C
Limit
Unit
VIN = 0V or VCC
9
8
12
16
Max
μA
Power Supply
ICC
Quiescent Supply Current
Digital Input
VIH
Input Voltage High
2.4
2.4
Min
V
VIL
Input Voltage Low
0.8
0.8
Max
V
IIN
Control Input Leakage
±1
±1
Max
μA
Typ
Ω
VIN = 0V or VCC
11
±0.4
RON
IOUT = 1mA, VIS = VEE or VCC
9
50
RON
IOUT = 1mA, VIS = VEE or VCC
9
80
95
105
Max
Ω
Analog Switch
ΔRON
On Resistance Match
between Channels
IOUT = 1mA, VIS = 1V
9
15
25
30
Max
Ω
RFLAT(ON)
On Resistance Flatness
IOUT = 1mA
9
30
40
40
Max
Ω
ICH(OFF)
Switch OFF Leakage
Current on Channel
VIS = VEE, VOS = VCC;
or VIS = VCC, VOS = VEE
11
±0.4
±1
±1
Max
μA
ICOM(OFF)
Switch OFF Leakage
Current on Common
VIS = VEE, VOS = VCC;
or VIS = VCC, VOS = VEE,
11
±0.4
±2
±2
Max
μA
I(ON)
Switch ON Leakage Current
VIS = VEE or VCC
11
±0.4
±2
±2
Max
μA
Dynamic Characteristics
tPHL, tPLH
Switch IN to OUT time
CL = 50pF
9
5
Typ
ns
tON
Switch turn-on time
CL = 50pF
9
60
Max
ns
tOFF
Switch turn-off time
CL = 50pF
9
50
Max
ns
OFF-Isolation
f = 1MHz, RL = 50Ω, CL = 10pF
10
-70
Typ
dB
Crosstalk
f = 1MHz, RL = 50Ω, CL = 10pF
10
-70
Typ
dB
Crosstalk in control
Between control and any switch;
RL = 600Ω; f = 1 MHz; E or Sn
square wave between VCC and
GND
10
220
Typ
mV
BW
Bandwidth
RL = 50Ω
10
200
Typ
MHz
THD
Total Harmonic Distortion
RL = 10kΩ, f = 1kHz
10
0.03
Typ
%
Capacitance
CIN
Switch Input Capacitance
10
5
Typ
pF
CCOM
Common Output
10
12
Typ
pF
10
50
Typ
pF
Capacitance
CPD
Power Dissipation
Capacitance
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8 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Dual Supply, VCC = 4.5 to 5.5V, VEE = -4.5 to 5.5V, GND = 0V, unless otherwise noted.
Symbol
Parameter
Conditions
VCC
/VEE(V)
25°C
-40°C to
85°C
-40°C to
125°C
Limit
Unit
VIN = 0V or VCC
5.5/-5.5
8
12
16
Max
μA
Power Supply
ICC
Quiescent Supply Current
Digital Input
VIH
Input Voltage High
70%*
VCC
70%*
VCC
Min
V
VIL
Input Voltage Low
30%*
VCC
30%*
VCC
Max
V
IIN
Control Input Leakage
±1
±1
Max
μA
Typ
Ω
VIN = 0V or VCC
5.5/-5.5
±0.4
RON
IOUT = 1mA, VIS = VEE or VCC
4.5/-4.5
50
RON
IOUT = 1mA, VIS = VEE or VCC
4.5/-4.5
80
95
105
Max
Ω
Analog Switch
ΔRON
On Resistance Match
between Channels
IOUT = 1mA, VIS = -3.5V
4.5/-4.5
15
25
30
Max
Ω
RFLAT(ON)
On Resistance Flatness
IOUT = 1mA
4.5/-4.5
30
40
40
Max
Ω
ICH(OFF)
Switch OFF Leakage
Current on Channel
VIS = VEE, VOS = VCC;
or VIS = VCC, VOS = VEE
5.5/-5.5
±0.4
±1
±1
Max
μA
ICOM(OFF)
Switch OFF Leakage
Current on Common
VIS = VEE, VOS = VCC;
or VIS = VCC, VOS = VEE,
5.5/-5.5
±0.4
±2
±2
Max
μA
I(ON)
Switch ON Leakage Current
VIS = VEE or VCC
5.5/-5.5
±0.4
±2
±2
Max
μA
Dynamic Characteristics
tPHL, tPLH
Switch IN to OUT time
CL = 50pF
4.5/-4.5
5
Typ
ns
tON
Switch turn-on time
CL = 50pF
4.5/-4.5
60
Max
ns
tOFF
Switch turn-off time
CL = 50pF
4.5/-4.5
50
Max
ns
OFF-Isolation
f = 1MHz, RL = 50Ω, CL = 10pF
5/-5
-70
Typ
dB
Crosstalk
f = 1MHz, RL = 50Ω, CL = 10pF
5/-5
-70
Typ
dB
Crosstalk in control
Between control and any switch;
RL = 600Ω; f = 1 MHz; E or Sn
square wave between VCC and
GND
5/-5
220
Typ
mV
BW
Bandwidth
RL = 50Ω
5/-5
100
Typ
MHz
THD
Total Harmonic Distortion
RL = 10kΩ, f = 1kHz
5/-5
0.03
Typ
%
Capacitance
CIN
Switch Input Capacitance
5/-5
5
Typ
pF
CCOM
Common Output
5/-5
12
Typ
pF
5/-5
50
Typ
pF
Capacitance
CPD
Power Dissipation
Capacitance
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9 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Typical Performance Characteristics
250
1.0
0.0
Vcc=9v
-1.0
Vcc=4.5V
150
Gain(dB)
RON(OHM)
200
Vcc=3.0v
100
-2.0
-3.0
Vcc=9V
-4.0
Vcc=4.5V
-5.0
50
-6.0
0
0.0
2.0
4.0
6.0
-7.0
8.0
1M
Vis(V)
Figure 1. RON vs. VIS
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10M
100M
Frenquency(Hz)
Figure 2. Bandwidth
10 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Test Circuit and Waveforms
VCC
VIS
AN
A
S1
VOS
1KΩ
50pF
Sn,/E
VEE
Logic
Input
tON: tPZH or tPZL
tOFF: tPHZ or tPLZ
tR=6ns
Switch
Input
10%
tF=6ns
90%
50%
GND
90%
50%
10%
tW
tPLH
tR=6ns
Logic
Input
VEE
90%
50%
10%
90%
50%
Vcc
10%
Gnd
tPHZ
VCC
tPZH
tPHL
50%
50%
VOL
90%
50%
VOH
Output
tF=6ns
VOS
tPZL
tPLZ
VCC
50%
10%
Figure 3 AC Test Circuit and Test Waveforms
VCC
Signal
0.1uF
Generator
50Ω
VCC
SWITCH
ON
50Ω
Signal
0.1uF
Generator
50Ω
½ Vcc
½ Vcc
SWITCH
OFF
Analyzer
50Ω
VCC
10pF
½ Vcc
50Ω
½ Vcc
Figure 4 Off Isolation
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10pF
SWITCH
OFF
Analyzer
50Ω
10pF
½ Vcc
Figure 5 Crosstalk
11 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Application Information
A 0.1-μF bypass capacitor on VCC and GND is recommended to prevent power disturbance, another 0.1-μF bypass capacitor on VEE
and GND is also recommended if the VEE is not connected to GND.
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12 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Tape and Reel Information
Order Number
Package
D1
W1
A0
B0
K0
P0
W0
Pin1
Quadrant
TPW4052-SR
SOIC-16
330
21.6
6.7±0.1
10.4±0.1
2.1±0.1
8.0±0.1
16.0±0.3
Q1
TPW4052-TR
TSSOP-16
330
17.6
6.8±0.1
5.4±0.1
1.3±0.1
8.0±0.1
12.0±0.1
Q1
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13 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
Package Outline Dimensions
SOIC-16
TSSOP-16
www.3peak.com
14 / 15
Rev.0.03
TPW4052
12V General Purpose Analog Switch
IMPORTANT NOTICE AND DISCLAIMER
Copyright© 3PEAK 2012-2023. All rights reserved.
Trademarks. Any of the 思瑞浦 or 3PEAK trade names, trademarks, graphic marks, and domain names contained in this document
/material are the property of 3PEAK. You may NOT reproduce, modify, publish, transmit or distribute any Trademark without the prior
written consent of 3PEAK.
Performance Information. Performance tests or performance range contained in this document/material are either results of design
simulation or actual tests conducted under designated testing environment. Any variation in testing environment or simulation
environment, including but not limited to testing method, testing process or testing temperature, may affect actual performance of the
product.
Disclaimer. 3PEAK provides technical and reliability data (including data sheets), design resources (including reference designs),
application or other design recommendations, networking tools, security information and other resources "As Is". 3PEAK makes no
warranty as to the absence of defects, and makes no warranties of any kind, express or implied, including without limitation, implied
warranties as to merchantability, fitness for a particular purpose or non-infringement of any third-party’s intellectual property rights.
Unless otherwise specified in writing, products supplied by 3PEAK are not designed to be used in any life-threatening scenarios,
including critical medical applications, automotive safety-critical systems, aviation, aerospace, or any situations where failure could
result in bodily harm, loss of life, or significant property damage. 3PEAK disclaims all liability for any such unauthorized use.
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