TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Features
Description
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The TP156xAL1 series of products are CMOS dual
and quad RRIO op-amps with low offset, low power
and stable high-frequency response. They incorporate
3PEAK’s proprietary and patented design techniques to
achieve very good AC performance with 6-MHz bandwidth,
4.5-V/μs slew rate, and low distortion while drawing only
600 μA of quiescent current per amplifier. The input
common-mode voltage range extends 300 mV beyond
V− and V+, and the outputs swing rail-to-rail. The
TP156xAL1 family can be used as plug-in replacements
for many commercially available op-amps to reduce
power consumption and improve input/output range and
performance.
Supply Voltage: 2.5 V to 6 V
Low Supply Current: Typical 600-μA per Channel
Rail-to-Rail Input and Output
Bandwidth: Typical 6 MHz
Slew Rate: Typical 4.5 V/μs
Excellent EMI Suppress Performance
Offset Voltage: Maximum ±3 mV
Offset Voltage Temperature Drift: Typical 1 μV/°C
Low Noise: Typical 19 nV/√Hz at 1 kHz
High Output Capability: Typical 100 mA
−40°C to 125°C Operation Temperature Range
The combination of features makes the TP156xAL1 ideal
choice for motor control and automotive applications. The
ability to swing rail-to-rail at the inputs and outputs enables
designers to buffer CMOS DACs, ASICs, or other wide
output swing devices in single-supply systems.
Qualified for Automotive Applications with AEC-Q100
Reliability Test
Applications
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Automotive Motor Control
On-Board Charger
Typical Application Circuit
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Table of Contents
Features................................................................................................................................................................1
Applications......................................................................................................................................................... 1
Description........................................................................................................................................................... 1
Typical Application Circuit..................................................................................................................................1
Revision History...................................................................................................................................................3
Pin Configuration and Functions....................................................................................................................... 4
Specifications.......................................................................................................................................................7
Absolute Maximum Ratings (1) .......................................................................................................................7
ESD, Electrostatic Discharge Protection........................................................................................................ 7
Recommended Operating Conditions............................................................................................................ 7
Thermal Information........................................................................................................................................7
Electrical Characteristics................................................................................................................................ 8
Typical Performance Characteristics............................................................................................................ 10
Detailed Description.......................................................................................................................................... 13
Functional Block Diagram.............................................................................................................................13
Application and Implementation...................................................................................................................... 14
Application Information ................................................................................................................................ 14
Tape and Reel Information................................................................................................................................ 15
Package Outline Dimensions........................................................................................................................... 16
SOT23-5....................................................................................................................................................... 16
SOP8............................................................................................................................................................ 17
MSOP8......................................................................................................................................................... 18
SOP14.......................................................................................................................................................... 19
Order Information.............................................................................................................................................. 20
IMPORTANT NOTICE AND DISCLAIMER......................................................................................................... 21
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Revision History
Date
Revision
2022-11-20
Rev.A.0
Initial version.
2023-02-01
Rev.A.1
Updated the status of AEC-Q100 test in Features.
2023-02-15
Rev.A.2
Corrected typo.
2023-09-15
Rev.A.3
Update the max value of supply voltage from 5.5V to 6V.
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Notes
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Pin Configuration and Functions
TP1561AL1
SOT23-5 Package
Top View
Out
1
5
+Vs
4
−In
Part Number
−Vs
2
+In
3
Table 1. Pin Functions: TP1561AL1
Pin No.
Name
I/O
1
Out
Output
2
−VS
-
3
+In
Input
Noninverting input
4
−In
Input
Inverting input
5
+VS
-
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Description
Output
Negative power supply
Positive power supply
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
TP1562AL1
SOP8 Package
Top View
TP1562AL1
MSOP8 Package
Top View
Out A
11
88
+Vs
−In A
22
77
Out B
+In A
33
66
−In B
4
−Vs
55
Out A
1
8
+Vs
−In A
2
7
Out B
+In A
3
6
−In B
−Vs
4
5
+In B
+In B
Table 2. Pin Functions: TP1562AL1
Pin No.
Name
I/O
1
Out A
Output
2
−In A
Input
Inverting input
3
+In A
Input
Noninverting input
4
−VS
-
5
+In B
Input
Noninverting input
6
−In B
Input
Inverting input
7
Out B
Output
8
+VS
-
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Description
Output
Negative power supply
Output
Positive power supply
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
TP1564AL1
SOP14 Package
Top View
Out A
1
14
Out D
−In A
2
13
−In D
+In A
3
12
+In D
+Vs
4
11
−Vs
+In B
5
10
+In C
−In B
6
9
−In C
Out B
7
8
Out C
Table 3. Pin Functions: TP1564AL1
Pin No.
Name
I/O
1
Out A
Output
2
−In A
Input
Inverting input
3
+In A
Input
Noninverting input
4
+VS
-
5
+In B
Input
Noninverting input
6
−In B
Input
Inverting input
7
Out B
Output
Output power supply
8
Out C
Output
Output power supply
9
−In C
Input
Inverting input
10
+In C
Input
Noninverting input
11
−VS
-
12
+In D
Input
Noninverting input
13
−In D
Input
Inverting input
1
Out D
Output
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Description
Output
Positive power supply
Negative power supply
Output
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Specifications
Absolute Maximum Ratings (1)
Parameter
Min
Max
Unit
6.5
V
(−VS) – 0.3
(+VS) + 0.3
V
Differential Input Voltage
(−VS) – (+VS)
(+VS) – (−VS)
V
Input Current: +IN, −IN (2)
−10
+10
mA
Supply Voltage, (+VS) – (−VS)
Input Voltage
Output Short-Circuit Duration (3)
Infinite
TJ
Maximum Junction Temperature
150
°C
TA
Operating Temperature Range
−40
125
°C
TSTG
Storage Temperature Range
–65
150
°C
TL
Lead Temperature (Soldering 10 sec)
260
°C
(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.
(2) The inputs are protected by ESD protection diodes to each power supply. If the input extends more than 300 mV beyond
the power supply, the input current should be limited to less than 10 mA.
(3) A heat sink may be required to keep the junction temperature below the absolute maximum. This depends on the power
supply voltage and how many amplifiers are shorted. Thermal resistance varies with the amount of PC board metal
connected to the package. The specified values are for short traces connected to the leads.
ESD, Electrostatic Discharge Protection
Parameter
Condition
Minimum Level
Unit
HBM
Human Body Model ESD
AEC-Q100-002
4
kV
CDM
Charged Device Model ESD
AEC-Q100-011
1.5
kV
Recommended Operating Conditions
Parameter
Min
Typ
Max
Unit
VS
Supply Voltage, (+VS) – (−VS)
2.5
6
V
TA
Operating Temperature Range
−40
125
°C
Thermal Information
Package Type
θJA
θJC
Unit
SOT23-5
250
81
°C/W
SOP8
158
43
°C/W
MSOP8
210
45
°C/W
SOP14
120
36
°C/W
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Electrical Characteristics
All test condition is at VS = 5 V, TA = 25°C, RL = 2 kΩ, CL = 100 pF, unless otherwise noted.
Parameter
Conditions
Min
Typ
Max
Unit
6
V
900
μA
1200
μA
Power Supply
VS
Supply Voltage Range
IQ
Quiescent Current per Amplifier
2.5
600
TA = −40°C to 125°C
VS = 2.7 V to 5.5 V, VCM = 0.1 V
PSRR
Power Supply Rejection Ratio
VS = 2.7 V to 5.5 V, VCM = 0.1 V,
TA = −40°C to 125°C
75
90
dB
65
dB
Input Characteristics
VOS
Input Offset Voltage
VOS
Input Offset Voltage
VOS TC
Input Offset Voltage Drift
IB
Input Bias Current
IOS
Input Offset Current
CIN
Input Capacitance
Av
VCMR
Open-loop Voltage Gain
VCM = 0 V to 3 V
VCM = 0 V to 3 V,
TA = −40°C to 125°C
−3
3
mV
−4
4
mV
TA = −40°C to 125°C
1
μV/°C
TA = 25 °C
−200
1
200
pA
TA = 125 °C
−500
25
500
pA
1
pA
Differential Mode
8
pF
Common Mode
7
pF
100
dB
VOUT = 0.1 V to 4.9 V,
RLOAD = 100 kΩ
80
VOUT = 0.1 V to 4.9 V,
RLOAD = 100 kΩ,
TA = −40°C to 125°C
70
Common-mode Input Voltage
Range
dB
(−VS) −
0.1
VCM = 0 V to 2.5 V
70
60
(+VS) +
0.1
100
CMRR
Common Mode Rejection Ratio
VCM = 0 V to 2.5 V,
TA = −40°C to 125°C
Xtalk
Channel Separation
f = 1 kHz, RL = 2 kΩ
110
Maximum Output Voltage Swing
RLOAD = 10 kΩ,
TA = −40°C to 125°C
3
Output Short-Circuit Current
TA = −40°C to 125°C
V
dB
dB
dB
Output Characteristics
ISC
65
20
mV
100
mA
6
MHz
4.5
V/μs
AC Specifications
GBW
Gain-Bandwidth Product
SR
Slew Rate
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AV = 1, VOUT = 1.5 V to 3.5 V,
CLOAD = 60 pF, RLOAD = 1 kΩ
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Parameter
Conditions
Open loop
Min
3
Typ
4.5
Settling Time, 0.1%
Settling Time, 0.01%
AV = 1, 2 V Step, CLOAD = 60 pF,
RLOAD = 1 kΩ
Unit
V/μs
Open loop, TA = −40°C to 125°C 2
tS
Max
V/μs
0.8
μs
1
μs
PM
Phase Margin
RLOAD = 1 kΩ,
CLOAD = 60 pF
60
°
GM
Gain Margin
RLOAD = 1 kΩ,
CLOAD = 60 pF
15
dB
Noise Performance
EN
Input Voltage Noise
f = 0.1 Hz to 10 Hz
8
μVPP
eN
Input Voltage Noise Density
f = 1 kHz
19
nV/√Hz
iN
Input Current Noise
f = 1 kHz
2
fA/√Hz
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Typical Performance Characteristics
All test condition: VS = 5 V, VCM = 2.5 V, RL = Open, unless otherwise noted.
Figure 1. Unity Gain Bandwidth vs. Temperature
Figure 2. Open-Loop Gain and Phase
Figure 3. Supply Current vs. Temperature
Figure 4. Short Circuit Current vs. Temperature
Figure 5. Quiescent Current vs. Supply Voltage
Figure 6. Offset Voltage vs. Common-Mode Voltage
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Figure 7. CMRR vs. Frequency
Figure 8. CMRR vs. Temperature
Figure 9. PSRR vs. Frequency
Figure 10. PSRR vs. Temperature
Figure 11. Input Voltage Noise Spectral Density
Figure 12. 0.1-Hz to 10-Hz Input Voltage Noise
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Figure 13. EMIRR IN+ vs. Frequency
Figure 14. Large-Scale Step Response
Figure 15. Negative Over-Voltage Recovery
Figure 16. Positive Over-Voltage Recovery
Figure 17. Negative Output Swing vs. Load Current
Figure 18. Positive Output Swing vs. Load Current
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12 / 22
AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Detailed Description
Functional Block Diagram
Figure 19. Functional Block Diagram
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Application and Implementation
Note
Information in the following application sections is not part of the 3PEAK’s component specification and 3PEAK does not
warrant its accuracy or completeness. 3PEAK’s customers are responsible for determining suitability of components for
their purposes. Customers should validate and test their design implementation to confirm system functionality.
Application Information
Low Supply Voltage and Low Power Consumption
The TP156xAL1 family of operational amplifiers can operate with power supply voltages ranging from 2.5 V to 6 V. Each
amplifier draws only 600-μA quiescent current. The low-supply voltage capability and low-supply current are ideal for
portable applications demanding high capacitive load driving capability and stable wide bandwidth. The TP156xAL1 family
is optimized for wide bandwidth and low-power applications. They have an industry leading high GBWP to power ratio and
are unity gain stable for any capacitive load. When the load capacitance increases, the increased capacitance at the output
pushed the non-dominant pole to lower frequency in the open loop frequency response, lowering the phase and gain margin.
Higher gain configurations tend to have better capacitive drive capability than lower gain configurations due to lower closed
loop bandwidth and hence higher phase margin.
Ground Sensing and Rail-to-Rail Output
The TP156xAL1 family has excellent output drive capability, delivering over 100 mA of output drive current. The output stage
is a rail-to-rail topology that is capable of swinging to within 10 mV of either rail. Since the inputs can go 300 mV beyond
either rail, the op-amp can easily perform ‘true ground’ sensing.
The maximum output current is a function of total supply voltage. As the supply voltage to the amplifier increases, the output
current capability also increases. Attention must be paid to keep the junction temperature of the IC below 150°C when the
output is in continuous short-circuit. The output of the amplifier has reverse-biased ESD diodes connected to each supply.
The output should not be forced more than 0.5 V beyond either supply, otherwise the current will flow through these diodes.
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Tape and Reel Information
Order Number
Package
D1 (mm)
W1
(mm)
TP1561AL1-S5TR-S
SOT23-5
180.0
13.1
3.2
3.2
1.4
TP1562AL1-SO1R-S
SOP8
330.0
17.6
6.4
5.4
TP1562AL1-VS1R-S
MSOP8
330.0
17.6
5.2
TP1564AL1-SO2R-S
SOP14
330.0
21.6
6.5
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W0
(mm)
Pin1
Quadrant
4.0
8.0
Q3
2.1
8.0
12.0
Q1
3.3
1.5
8.0
12.0
Q1
9.0
2.1
8.0
16.0
Q1
A0 (mm) B0 (mm) K0 (mm) P0 (mm)
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Package Outline Dimensions
SOT23-5
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16 / 22
AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
SOP8
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17 / 22
AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
MSOP8
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18 / 22
AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
SOP14
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19 / 22
AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
Order Information
Operating Temperature
Range
Package
Marking Information
MSL
Transport Media, Quantity
Eco Plan
TP1561AL1-S5TR-S
−40 to 125°C
SOT23-5
61S
MSL 3
Tape and Reel, 3000
Green
TP1562AL1-SO1R-S
−40 to 125°C
SOP8
1562S
MSL 1
Tape and Reel, 4000
Green
TP1562AL1-VS1R-S
−40 to 125°C
MSOP8
1562S
MSL 1
Tape and Reel, 3000
Green
TP1564AL1-SO2R-S
−40 to 125°C
SOP14
1564S
MSL 1
Tape and Reel, 2500
Green
Order Number
(1) For future products, contact the 3PEAK factory for more information and samples.
Green: 3PEAK defines "Green" to mean RoHS compatible and free of halogen substances.
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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
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 thirdparty’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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AA20221102A3
TP1561AL1/TP1562AL1/TP1564AL1-S
6-MHz, 600-μA, RRIO, Op Amps
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AA20221102A3