LM2904AQ [DIODES]

AUTOMOTIVE COMPLIANT DUAL AND QUAD OPERATIONAL AMPLIFIERS;
LM2904AQ
型号: LM2904AQ
厂家: DIODES INCORPORATED    DIODES INCORPORATED
描述:

AUTOMOTIVE COMPLIANT DUAL AND QUAD OPERATIONAL AMPLIFIERS

放大器
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LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
AUTOMOTIVE COMPLIANT DUAL AND QUAD OPERATIONAL AMPLIFIERS  
Description  
Pin Assignments  
The LM2902Q/2904Q series operational amplifiers consist of four and  
two independent high-gain operational amplifiers with very low input  
offset voltage specification. They are designed to operate from a  
single power supply over a wide range of voltages; however,  
operation from split power supplies is also possible. They offer low  
power supply current independent of the magnitude of the power  
supply voltage.  
LM2904Q/ LM2904QA  
(Top View)  
V
CC  
1OUT  
1IN-  
1
2
3
4
8
7
6
5
-
2OUT  
2IN-  
1
-
1IN+  
GND  
The LM2904Q dual devices are available in SO-8, TSSOP-8 and  
MSOP-8; and the LM2902Q quad devices are available in SO-14 and  
TSSOP-14. All are in industry-standard pinouts, and both use green”  
mold compound as standard.  
2
+
2IN+  
SO-8/TSSOP-8/MSOP-8  
The LM2902Q/2904Q are characterized for operation from  
-40°C to +125°C, qualified to AEC-Q100 Grade 1 and are Automotive  
Compliant supporting PPAPs.  
LM2902Q/ LM2902QA  
(Top View)  
Features  
4OUT  
4IN-  
1OUT  
1IN-  
1
2
3
4
5
14  
13  
12  
Wide Power Supply Voltage Range:  
-
-
-
1
2
4
3
.
.
Single Supply: 3V to 36V  
1IN+  
4IN+  
Dual Supplies: ±1.5V to ±18V  
11 GND  
Very Low Supply Current Drain Independent of Supply Voltage  
V
CC  
.
.
LM2904Q: 500µA  
LM2902Q: 700µA  
3IN+  
3IN-  
2IN+  
2IN-  
10  
9
-
6
7
Low Input Bias Current: 20nA  
Low Input Offset Voltage:  
2OUT  
8
3OUT  
.
.
A Versions: 1mV (Typ)  
SO-14/TSSOP-14  
Non-A Version: 2mV (Typ)  
Large DC Voltage Gain: 100dB  
Wide Bandwidth (Unity Gain): 700kHz (Temperature  
Compensated)  
Internally Compensated with Unity Gain  
Input Common-Mode Voltage Range Includes Ground  
Differential Input Voltage Range Equal to Power Supply Voltage  
Large Output Voltage Swing: 0V to VCC -1.5V  
Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)  
Halogen and Antimony Free. “Green” Device (Note 3)  
Qualified to AEC-Q100 Grade 1  
PPAP Capable (Note 4)  
Notes:  
1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS) & 2011/65/EU (RoHS 2) compliant.  
2. See http://www.diodes.com/quality/lead_free.html for more information about Diodes Incorporated’s definitions of Halogen- and Antimony-free, "Green"  
and Lead-free.  
3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and  
<1000ppm antimony compounds.  
4. Automotive products are AEC-Q100 qualified and are PPAP capable. Refer to http://www.diodes.com/quality/product_compliance_definitions/.  
1 of 16  
www.diodes.com  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Schematic Diagram  
VCC  
6A  
4A  
100A  
Q5  
Q6  
Q2  
Q3  
Cc  
Q7  
-
Q4  
Q1  
Rsc  
INPUTS  
OUTPUT  
+
Q11  
Q13  
Q10  
Q12  
50A  
Q8  
Q9  
Functional Block Diagram of LM2902Q/ 2902AQ/ 2904Q/ 2904AQ  
(Each Amplifier)  
Pin Descriptions  
LM2902Q, LM2902AQ  
Pin Name  
Pin #  
1
Function  
Channel 1 Output  
1OUT  
1IN-  
2
Channel 1 Inverting Input  
Channel 1 Non-Inverting Input  
Chip Supply Voltage  
1IN+  
3
4
VCC  
2IN+  
5
Channel 2 Non-Inverting Input  
Channel 2 Inverting Input  
Channel 2 Output  
2IN-  
6
2OUT  
7
3OUT  
8
Channel 3 Output  
3IN-  
9
Channel 3 Inverting Input  
Channel 3 Non-inverting Input  
Ground  
3IN+  
10  
11  
12  
13  
14  
GND  
4IN+  
Channel 4 Non-Inverting Input  
Channel 4 Inverting Input  
Channel 4 Output  
4IN-  
4OUT  
LM2904Q, LM2904AQ  
1OUT  
1IN-  
1
2
3
4
5
6
7
8
Channel 1 Output  
Channel 1 Inverting Input  
Channel 1 Non-inverting Input  
Ground  
1IN+  
GND  
2IN+  
2IN-  
Channel 2 Non-Inverting Input  
Channel 2 Inverting Input  
Channel 2 Output  
2OUT  
VCC  
Chip Supply Voltage  
2 of 16  
www.diodes.com  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Absolute Maximum Ratings (Note 5) (@TA = +25°C, unless otherwise specified.)  
Symbol  
VCC  
Parameter  
Rating  
±18 or 36  
36  
Unit  
V
Supply Voltage  
Differential Input Voltage  
Input Voltage  
V
VID  
-0.3 to +36  
150  
V
VIN  
LM2904_QS-13  
LM2904_QTH-13  
LM2904_QM8-13  
LM2902_QS14  
LM2902_QT14  
175  
Package Thermal Impedance  
(Note 6)  
200  
°C/W  
θJA  
89  
100  
Output Short-Circuit to GND  
(One Amplifier) (Note 7)  
Continuous  
VCC ≤ 15V and TA = +25°C  
Operating Temperature Range  
Operating Junction Temperature  
Storage Temperature Range  
-40 to +125  
+150  
°C  
°C  
°C  
TA  
TJ  
-65 to +150  
TST  
Notes:  
5. Stresses beyond those listed under absolute maximum ratings may cause permanent damage to the device. These are stress ratings only, functional  
operation of the device at these or any other conditions beyond those indicated under recommended operating conditions is not implied. Exposure to  
absolute-maximum-rated conditions for extended periods may affect device reliability.  
6. Maximum power dissipation is a function of TJ(max), θ , and T . The maximum allowable power dissipation at any allowable ambient temperature is  
JA  
A
P
= (T  
T )/θ . Operating at the absolute maximum T of +150°C can affect reliability.  
D
J(max)  
A
JA  
J
7. Short circuits from outputs to V  
or ground can cause excessive heating and eventual destruction.  
CC  
ESD Ratings  
LM2901_QS14  
LM2901_QT14  
LM2903_QS-13  
LM2903_QTH-13  
LM2903_QM8-13  
LM2901_QS14  
LM2901_QT14  
LM2903_QS-13  
LM2903_QTH-13  
LM2903_QM8-13  
500  
500  
Human Body Mode ESD Protection (Note 8)  
500  
500  
<500  
V
Charge Device Mode ESD Protection  
1,000  
Note:  
8. Human body model, 1.5kΩ in series with 100pF.  
Recommended Operating Conditions (Over Operating Free-Air Temperature Range, unless otherwise noted.)  
Parameter  
Min  
2
±1  
Max  
36  
±18  
Units  
Single Supply  
Dual Supply  
Supply Voltage  
V
Ambient Temperature Range  
Junction Temperature Range  
-40  
-40  
+125  
+125  
°C  
3 of 16  
www.diodes.com  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Electrical Characteristics (Notes 12 & 13) (@ VCC = +5.0V, TA = +25°C, unless otherwise specified.)  
LM2902Q, LM2902AQ  
Parameter  
Conditions  
Min  
Typ  
2
Max  
7
Unit  
TA  
TA = +25°C  
Full Range  
TA = +25°C  
Full Range  
Non-A  
Device  
VIC = VCMR Min,  
1
10  
2
VO = 1.4V,  
Input Offset Voltage  
mV  
VIO  
VCC = 5V to Max  
RS = 0Ω  
A-Suffix  
Device  
4
Input Offset Voltage Temperature  
Drift  
Full Range  
7
VIO/T  
RS = 0Ω  
µV/  
-20  
2
-200  
-500  
50  
TA = +25°C  
Full Range  
TA = +25°C  
Full Range  
IIN+ or IIN− with OUT in Linear Range,  
VCMR = 0V (Note 9)  
Input Bias Current  
Input Offset Current  
nA  
IB  
nA  
IIO  
IIN+ - IIN−, VCM = 0V  
150  
Input Offset Current Temperature  
Drift  
Full Range  
TA = +25°C  
Full Range  
10  
IIO/T  
pA/℃  
0 to  
VCC -1.5  
0 to  
Input Common-Mode Voltage  
Range  
V
VCMR  
VCC = 30V (Note 10)  
VCC -2.0  
Full Range  
Full Range  
1.0  
0.7  
100  
3.0  
1.2  
VO = 0.5 VCC, No Load VCC = 30V  
VO = 0.5 VCC, No Load VCC = 5V  
Supply Current  
(Four Amplifiers)  
mA  
ICC  
25  
15  
60  
70  
TA = +25°C  
Full Range  
TA = +25°C  
TA = +25°C  
VCC = 15V, VOUT = 1V to 11V,  
Voltage Gain  
V/mV  
AV  
RL 2kΩ  
CMRR Common Mode Rejection Ratio  
PSRR Power Supply Rejection Ratio  
70  
dB  
dB  
DC, VCMR = 0V to VCC-1.5V  
VCC = 5V to 30V  
100  
f = 1kHz to 20kHz  
(Input Referred)  
(Note 11)  
Amplifier to Amplifier Coupling  
-120  
50  
dB  
µA  
TA = +25°C  
TA = +25°C  
VIN- = 1V, VIN+ = 0V, VCC = 15V,  
VO = 200mV  
12  
Sink  
ISINK  
10  
5
20  
TA = +25°C  
Full Range  
TA = +25°C  
Full Range  
TA = +25°C  
TA = +25°C  
VIN- = 1V, VIN+ = 0V, VCC = 15V,  
VO = 15V  
Output Current  
mA  
-20  
-10  
-40  
-60  
VIN+ = 1V, VIN- = 0V, VCC = 15V,  
VO = 0V  
Source  
ISOURCE  
ISC  
Short-Circuit to Ground  
±40  
±60  
mA  
V
VCC = 5V, GND = -5V, VO = 0V  
RL = 10kΩ  
VCC -1.5  
High-Level Output Voltage Swing  
26  
27  
VOH  
RL = 2kΩ  
VCC = 30V  
Full Range  
Full Range  
28  
5
RL 10kΩ  
Low-Lever Output Voltage Swing RL 10kΩ  
20  
mV  
VOL  
AC Electrical Characteristics (Notes 12 & 13) (@ VCC = ±15.0V, TA = +25°C, unless otherwise specified.)  
Parameter  
Conditions  
RL = 1M, CL = 30pF, VI = ±10V  
RL = 1M, CL = 20pF  
Typ  
0.3  
0.7  
40  
Unit  
V/µs  
SR  
B1  
Vn  
Slew Rate at Unity Gain  
Unity Gain Bandwidth  
Equivalent Input Noise Voltage  
MHz  
nV/√Hz  
RS = 100, VI = 0V, f = 1kHz  
Notes:  
9. The direction of the input current is out of the IC due to the PNP input stage. This current is essentially constant, independent of the state of the  
output so that no loading change exists on the input lines.  
10. The input common-mode voltage of either input signal voltage should not be allowed to become negative by more than 0.3V (@ +25°C). The upper end  
of the common-mode voltage range is V  
-1.5V (@ +25°C), but either or both inputs can go to +36V without damage, independent of the magnitude of  
CC  
V
.
CC  
11. Due to proximity of external components, ensure that coupling is not originating via stray capacitance between these external parts. This typically  
can be detected as this type of capacitance increases at higher frequencies.  
12. Typical values are all at T = +25°C conditions and represent the most likely parametric norm as determined at the time of characterization. Actual  
A
typical values may vary over time and will also depend on the application and configuration. The typical values are not tested and are not guaranteed  
on shipped production material.  
13. All limits are guaranteed by testing or statistical analysis. Limits over the full temperature (-40 T +125°C) are guaranteed by design, but not  
A
tested in production.  
4 of 16  
www.diodes.com  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Electrical Characteristics (continued) (Notes 12 & 13) (@ VCC = +5.0V, TA = +25°C, unless otherwise specified.)  
LM2904Q, LM2904AQ  
Unit  
Parameter  
Conditions  
Min  
Typ  
2
Max  
7
TA  
TA = +25°C  
Full Range  
TA = +25°C  
Full Range  
VIC = VCMR Min,  
Non-A Device  
1
10  
2
VO = 1.4V,  
Input Offset Voltage  
mV  
VIO  
VCC = 5V to MAX  
RS = 0Ω  
A-Suffix Device  
4
Input Offset Voltage Temperature  
Drift  
Full Range  
7
VIO/T  
RS = 0Ω  
µV/℃  
-20  
2
-250  
-500  
50  
TA = +25°C  
Full Range  
TA = +25°C  
Full Range  
IIN+ or IIN− with OUT in Linear Range,  
VCMR = 0V (Note 9)  
Input Bias Current  
Input Offset Current  
nA  
IB  
nA  
IIO  
IIN+ - IIN−, VCM = 0V  
150  
Input Offset Current Temperature  
Drift  
Full Range  
TA = +25°C  
Full Range  
10  
IIO/T  
pA/℃  
0 to  
VCC -1.5  
0 to  
Input Common-Mode Voltage  
Range  
V
VCMR  
VCC = 30V (Note 10)  
VCC -2.0  
Full Range  
Full Range  
25  
15  
60  
70  
0.7  
0.5  
100  
2.0  
1.2  
VO = 0.5 VCC, No Load  
VO = 0.5 VCC, No Load  
VCC = 30V  
VCC = 5V  
Supply Current  
(Two Amplifiers)  
mA  
ICC  
TA = +25°C  
Full Range  
TA = +25°C  
TA = +25°C  
TA = +25°C  
VCC = 15V, VOUT = 1V to 11V,  
Voltage Gain  
V/mV  
AV  
RL 2k,  
CMRR Common Mode Rejection Ratio  
PSRR Power Supply Rejection Ratio  
Amplifier to Amplifier Coupling  
70  
dB  
dB  
dB  
DCVCMR = 0V to VCC-1.5V  
VCC = 5V to 30V  
100  
120  
f = 1kHz to 20kHz (Note 11)  
VIN- = 1V, VIN+ = 0V, VCC = 15V,  
VO = 200mV  
12  
50  
µA  
TA = +25°C  
Sink  
ISINK  
10  
5
20  
TA = +25°C  
Full Range  
TA = +25°C  
Full Range  
TA = +25°C  
VIN- = 1V, VIN+ = 0V, VCC = 15V,  
VO = 15V  
Output Current  
mA  
-20  
-10  
-40  
-60  
VIN+ = 1V, VIN- = 0V, VCC = 15V,  
VO = 0V  
Source  
ISOURCE  
ISC  
Short-Circuit to Ground  
±40  
±60  
mA  
V
VCC = 5V, GND = -5V, VO = 0V  
RL = 10kΩ  
TA = +25°C VCC -1.5  
High-Level Output Voltage Swing  
26  
Full Range  
27  
VOH  
RL = 2kΩ  
VCC = 30V  
28  
5
RL 10kΩ  
Low-Lever Output Voltage Swing RL 10kΩ  
Full Range  
20  
mV  
VOL  
AC Electrical Characteristics (Notes 12 & 13) (@ VCC = ±15.0V, TA = +25°C, unless otherwise specified.)  
Parameter  
Conditions  
RL = 1M, CL = 30pF, VI = ±10V  
RL = 1M, CL = 20pF  
Typ  
0.3  
0.7  
40  
Unit  
V/µs  
SR  
B1  
Vn  
Slew Rate at Unity Gain  
Unity Gain Bandwidth  
Equivalent Input Noise Voltage  
MHz  
nV/√Hz  
RS = 100, VI = 0V, f = 1kHz  
Notes:  
9. The direction of the input current is out of the IC due to the PNP input stage. This current is essentially constant, independent of the state of the  
output so that no loading change exists on the input lines.  
10. The input common-mode voltage of either input signal voltage should not be allowed to become negative by more than 0.3V (@ +25°C). The upper end  
of the common-mode voltage range is V  
-1.5V (@ +25°C), but either or both inputs can go to +36V without damage, independent of the magnitude of  
CC  
V
.
CC  
11. Due to proximity of external components, ensure that coupling is not originating via stray capacitance between these external parts. This typically  
can be detected as this type of capacitance increases at higher frequencies.  
12. Typical values are all at T = +25°C conditions and represent the most likely parametric norm as determined at the time of characterization. Actual  
A
typical values may vary over time and will also depend on the application and configuration. The typical values are not tested and are not guaranteed  
on shipped production material.  
13. All limits are guaranteed by testing or statistical analysis. Limits over the full temperature (-40 T +125°C) are guaranteed by design, but not  
A
tested in production.  
5 of 16  
www.diodes.com  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Performance Characteristics  
20  
18  
16  
14  
12  
10  
8
6
4
2
0
-40  
-20  
0
20  
40  
60  
80  
100  
120  
Temperature (oC)  
Input Voltage Range  
Input Current  
0.7  
1.00  
Quad OPAs  
Dual OPAs  
0.95  
0.90  
0.85  
0.80  
0.75  
0.70  
0.65  
0.60  
0.55  
0.50  
0.45  
TA=-40OC  
TA=25OC  
TA=85OC  
TA=125OC  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
TA=-40OC  
TA=25OC  
TA=85OC  
TA=125OC  
3
6
9
12  
15  
18  
21  
24  
27  
30  
33  
36  
3
6
9
12  
15  
18  
21  
24  
27  
30  
33  
36  
Supply Voltage (V)  
Supply Voltage (V)  
Supply Current vs. Supply Voltage (LM2904Q/4AQ)  
Supply Current vs. Supply Voltage (LM2902Q/AQ)  
1.2  
1.1  
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
Quad OPAs  
Dual OPAs  
VCC=5.0V  
VCC=15V  
VCC=30V  
VCC=5.0V  
VCC=15V  
VCC=30V  
-40  
-25  
-10  
5
20  
35  
50  
65  
80  
95  
110 125  
-40  
-25  
-10  
5
20  
35  
50  
65  
80  
95  
110 125  
Temperature (OC)  
Temperature (OC)  
Supply Current vs. Temperature (LM2902Q/AQ)  
Supply Current vs. Temperature (LM2904Q/AQ)  
6 of 16  
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LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Performance Characteristics (continued)  
2
2.0  
1.8  
1.6  
1.4  
VCC=30V  
VCC=5.0V  
TA=125OC  
1
TA=85OC  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0.0  
TA=+125OC  
TA=+85OC  
0
-1  
TA=+25OC  
-0.2  
-0.4  
-0.6  
-0.8  
-1.0  
-1.2  
-1.4  
-1.6  
-1.8  
-2.0  
-2  
TA=-40OC  
TA=+25OC  
TA=-40OC  
-3  
-4  
-5  
0
2
4
6
8
10 12 14 16 18 20 22 24 26 28  
0.0  
0.5  
1.0  
1.5  
2.0  
2.5  
3.0  
3.5  
Input Commond Mode Voltage(V)  
Input Commond Mode Voltage(V)  
Open Loop Frequency Response  
Voltage Gain  
Current Limit  
Large Signal Frequency Response  
7 of 16  
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LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Performance Characteristics (cont.)  
Output Characteristics: Current Sinking  
Output Characteristics: Current Sourcing  
Voltage Follower Pulse Response  
Voltage Follower Pulse Response (Small Signal)  
8 of 16  
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LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Application Information  
General Information  
The LM2902Q/2904Q series op amps which operate with only a single power supply voltage, have true-differential inputs and remain in the linear  
mode with an input common-mode voltage of 0 VDC. These amplifiers operate over a wide range of power supply voltage with little change in  
performance characteristics. At +25°C, amplifier operation is possible down to a minimum supply voltage of 2.3 VDC  
.
Precautions should be taken to ensure that the power supply for the integrated circuit never becomes reversed in polarity, or that the unit is not  
inadvertently installed backwards in a test socket. If precaution is not taken, an unlimited current surge through the resulting forward diode within  
the IC may occur and could cause fusing of the internal conductors, destroying the unit.  
Large differential input voltages can be easily accommodated and, as input differential voltage protection diodes are not needed, no large input  
currents result from large differential input voltages. The differential input voltage may be larger than V+ without damaging the device. Protection  
should be provided to prevent the input voltages from becoming negative more than -0.3 VDC (@ +25°C). An input clamp diode with a resistor to the  
IC input terminal can be used.  
To reduce the power supply current drain, the amplifiers have a class A output stage for small signal levels which converts to class B in a large  
signal mode. This allows the amplifiers to both source and sink large output currents. Therefore both NPN and PNP external current boost  
transistors can be used to extend the power capability of the basic amplifiers. The output voltage needs to raise approximately 1 diode drop above  
ground to bias the on-chip vertical PNP transistor for output current sinking applications.  
For AC applications where the load is capacitive coupled to the output of the amplifier, a resistor should be used from the output of the amplifier to  
ground to increase the class A bias current, and prevent crossover distortion. Where the load is directly coupled, as in DC applications, there is no  
crossover distortion.  
Capacitive loads which are applied directly to the output of the amplifier reduce the loop stability margin. Values of 50pF can be accommodated  
using the worst-case non-inverting unity gain connection. Large closed loop gains or resistive isolation should be used if larger load capacitance  
must be driven by the amplifier.  
The bias network of the LM2902Q/2904Q series establishes a quiescent current which is independent of the magnitude of the power supply voltage  
over the range of 3 VDC to 30 VDC  
.
Output short circuits either to ground or to the positive power supply should be of short time duration. Units can be destroyed, not as a result of the  
short circuit current causing metal fusing, but rather due to the large increase in IC chip dissipation which will cause eventual failure due to  
excessive function temperatures. Putting direct short-circuits on more than one amplifier at a time will increase the total IC power dissipation to  
destructive levels, if not properly protected with external dissipation limiting resistors in series with the output leads of the amplifiers. The larger  
value of output source current which is available at +25°C provides a larger output current capability at elevated temperatures (see Typical  
Performance Characteristics) than a standard IC op amp.  
The circuits presented in Typical Applications section emphasize operation on a single power supply voltage. If complementary power supplies are  
available, all of the standard op amp circuits can be used. In general, introducing a pseudo-ground (a bias voltage reference of VCC/2) will allow  
operation above and below this value in single power supply systems. Many application circuits are shown which take advantage of the wide input  
common-mode voltage range which includes ground. In most cases, input biasing is not required and input voltages which range to ground can  
easily be accommodated.  
9 of 16  
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Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Application Information (continued)  
Power Supply Bypassing and Layout  
The LM2902Q/04Qxx family operates from both single supply voltage range 3 to 36V, or dual supply voltage ±1.5V to ±18V.  
As with any operation amplifier, proper supply bypassing is critical for low noise performance and high power supply rejection. For single supply  
operation system, a minimum 0.1µF bypass capacitor should be recommended to place as close as possible between VCC pin and GND. For dual  
supply operation, both the positive supply pin and negative supply pin should be bypassed to ground with a separate 0.1µF ceramic capacitor.  
2.2µF tantalum capacitor can be added for better performance. Keep the length of leads and traces that connect capacitors between LM29xx power  
supply pin and ground as short as possible.  
Ordering Information  
Qualification  
(Note 15)  
13” Tape and Reel  
Package  
Code  
Packaging  
(Note 14)  
Part Number  
Quantity  
Part Number Suffix  
LM2902QT14-13  
LM2902AQT14-13  
LM2902QS14-13  
LM2902AQS14-13  
LM2904QS-13  
T14  
T14  
S14  
S14  
S
TSSOP-14  
TSSOP-14  
SO-14  
2,500/Tape & Reel  
2,500/Tape & Reel  
2,500/Tape & Reel  
2,500/Tape & Reel  
2,500/Tape & Reel  
2,500/Tape & Reel  
2,500/Tape & Reel  
2,500/Tape & Reel  
2,500/Tape & Reel  
2,500/Tape & Reel  
-13  
-13  
-13  
-13  
-13  
-13  
-13  
-13  
-13  
-13  
Automotive Compliant  
Automotive Compliant  
Automotive Compliant  
Automotive Compliant  
Automotive Compliant  
Automotive Compliant  
Automotive Compliant  
Automotive Compliant  
Automotive Compliant  
Automotive Compliant  
SO-14  
SO-8  
LM2904AQS-13  
LM2904QTH-13  
LM2904AQTH-13  
LM2904QM8-13  
LM2904AQM8-13  
S
SO-8  
TH  
TH  
M8  
M8  
TSSOP-8  
TSSOP-8  
MSOP-8  
MSOP-8  
Notes: 14. For packaging details, go to our website at http://www.diodes.com/products/packages.html.  
15. LM2902Q/2904Q have been qualified to AEC-Q100 grade 1 and are classified as “Automotive Compliantwhich supports PPAP documentation.  
See LM2902/2904 datasheet for commercial qualified versions.  
10 of 16  
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Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Marking Information  
(1) TSSOP-14 and SO-14  
(2) SO-8  
(3) MSOP-8 and TSSOP-8  
11 of 16  
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LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Package Outline Dimensions  
Please see http://www.diodes.com/package-outlines.html for the latest version.  
SO-14  
SO-14  
Dim  
A
A1  
A2  
B
Min  
1.47  
0.10  
Max  
1.73  
0.25  
H
E
Gauge Plane  
1.45 Typ  
L
0.33  
8.53  
3.80  
0.51  
8.74  
3.99  
D
E
Detail “A”  
e
1.27 Typ  
D
H
L
  
5.80  
0.38  
0°  
6.20  
1.27  
8°  
A2  
A
All Dimensions in mm  
e
B
Detail “A”  
A1  
SO-8  
SO-8  
Dim  
A
A1  
A2  
A3  
b
Min  
0.10  
1.30  
0.15  
0.3  
Max  
1.75  
0.20  
1.50  
0.25  
0.5  
E1  
E
Gauge Plane  
Seating Plane  
A1  
L
D
E
E1  
e
4.85  
5.90  
3.85  
4.95  
6.10  
3.95  
Detail ‘A’  
1.27 Typ  
7°~9°  
h
h
L
  
0.62  
0°  
0.35  
0.82  
8°  
°
45  
Detail ‘A’  
A2  
A3  
A
All Dimensions in mm  
b
e
D
TSSOP-14  
TSSOP-14  
Dim  
a1  
a2  
A
B
C
Min  
Max  
7° (4X)  
Gauge Plane  
Seating Plane  
Pin#1Indent  
B
8°  
0  
4.9  
4.30  
  
L
F1  
5.10  
4.50  
1.2  
2
a
F
Detail ‘A’  
D
0.8  
1.05  
F
F1  
G
1.00 Typ  
G
K
0.45  
0.75  
A
0.65 Typ  
K
L
0.19  
6.40 Typ  
0.30  
a
1
D
C
All Dimensions in mm  
Detail ‘A’  
12 of 16  
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Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Package Outline Dimensions (continued)  
Please see http://www.diodes.com/package-outlines.html for the latest version.  
MSOP-8  
D
MSOP-8  
Dim Min Max Typ  
A
-
1.10  
-
A1 0.05 0.15 0.10  
A2 0.75 0.95 0.86  
A3 0.29 0.49 0.39  
0.25  
E
Gauge Plane  
Seating Plane  
x
b
c
D
E
0.22 0.38 0.30  
0.08 0.23 0.15  
2.90 3.10 3.00  
4.70 5.10 4.90  
y
a
L
Detail C  
E1 2.90 3.10 3.00  
E3 2.85 3.05 2.95  
1
b
E3  
E1  
A3  
e
L
a
x
y
-
-
0.65  
A2  
0.40 0.80 0.60  
0°  
-
A
8°  
-
-
4°  
0.750  
0.750  
e
c
A1  
-
See Detail C  
All Dimensions in mm  
TSSOP-8  
D
TSSOP-8  
Dim Min Max Typ  
a
0.09  
A
1.20  
  
  
See Detail C  
E
A1 0.05 0.15  
E1  
A2 0.825 1.025 0.925  
b
c
0.19 0.30  
0.09 0.20  
D
2.90 3.10 3.025  
e
0.65  
e
c
b
E
6.40  
Gauge plane  
E1 4.30 4.50 4.425  
L
All Dimensions in mm  
a
A2  
A1  
A
0.45 0.75 0.60  
L
D
Detail C  
13 of 16  
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LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Suggested Pad Layout  
Please see http://www.diodes.com/package-outlines.html for the latest version.  
SO-14  
X
Dimensions Value (in mm)  
X
Y
C1  
C2  
0.60  
1.50  
5.4  
C1  
1.27  
C2  
Y
SO-8  
X
Dimensions Value (in mm)  
X
Y
C1  
C2  
0.60  
1.55  
5.4  
1.27  
C1  
C2  
Y
TSSOP-14  
X
Dimensions Value (in mm)  
X
Y
C1  
C2  
0.45  
1.45  
5.9  
0.65  
C1  
C2  
Y
MSOP-8  
X
C
Dimensions Value (in mm)  
Y
C
X
0.650  
0.450  
1.350  
5.300  
Y
Y1  
Y1  
14 of 16  
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Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
Suggested Pad Layout (continued)  
Please see http://www.diodes.com/package-outlines.html for the latest version.  
TSSOP-8  
Y
Dimensions Value (in mm)  
X
X
Y
C1  
C2  
C3  
G
0.45  
1.78  
7.72  
0.65  
4.16  
0.20  
C3  
C1  
C2  
G
15 of 16  
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Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  
LM2902Q/LM2902AQ/LM2904Q/LM2904AQ  
IMPORTANT NOTICE  
DIODES INCORPORATED MAKES NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARDS TO THIS DOCUMENT,  
INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE  
(AND THEIR EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION).  
Diodes Incorporated and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other changes  
without further notice to this document and any product described herein. Diodes Incorporated does not assume any liability arising out of the  
application or use of this document or any product described herein; neither does Diodes Incorporated convey any license under its patent or  
trademark rights, nor the rights of others. Any Customer or user of this document or products described herein in such applications shall assume  
all risks of such use and will agree to hold Diodes Incorporated and all the companies whose products are represented on Diodes Incorporated  
website, harmless against all damages.  
Diodes Incorporated does not warrant or accept any liability whatsoever in respect of any products purchased through unauthorized sales channel.  
Should Customers purchase or use Diodes Incorporated products for any unintended or unauthorized application, Customers shall indemnify and  
hold Diodes Incorporated and its representatives harmless against all claims, damages, expenses, and attorney fees arising out of, directly or  
indirectly, any claim of personal injury or death associated with such unintended or unauthorized application.  
Products described herein may be covered by one or more United States, international or foreign patents pending. Product names and markings  
noted herein may also be covered by one or more United States, international or foreign trademarks.  
This document is written in English but may be translated into multiple languages for reference. Only the English version of this document is the  
final and determinative format released by Diodes Incorporated.  
LIFE SUPPORT  
Diodes Incorporated products are specifically not authorized for use as critical components in life support devices or systems without the express  
written approval of the Chief Executive Officer of Diodes Incorporated. As used herein:  
A. Life support devices or systems are devices or systems which:  
1. are intended to implant into the body, or  
2. support or sustain life and whose failure to perform when properly used in accordance with instructions for use provided in the  
labeling can be reasonably expected to result in significant injury to the user.  
B. A critical component is any component in a life support device or system whose failure to perform can be reasonably expected to cause the  
failure of the life support device or to affect its safety or effectiveness.  
Customers represent that they have all necessary expertise in the safety and regulatory ramifications of their life support devices or systems, and  
acknowledge and agree that they are solely responsible for all legal, regulatory and safety-related requirements concerning their products and any  
use of Diodes Incorporated products in such safety-critical, life support devices or systems, notwithstanding any devices- or systems-related  
information or support that may be provided by Diodes Incorporated. Further, Customers must fully indemnify Diodes Incorporated and its  
representatives against any damages arising out of the use of Diodes Incorporated products in such safety-critical, life support devices or systems.  
Copyright © 2016, Diodes Incorporated  
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Document number: DS37815 Rev. 3 - 2  
June 2016  
© Diodes Incorporated  

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