LM110 LM210 LM310 Voltage Follower
November 1994
LM110 LM210 LM310 Voltage Follower
General Description
The LM110 series are monolithic operational amplifiers internally connected as unity-gain non-inverting amplifiers They use super-gain transistors in the input stage to get low bias current without sacrificing speed Directly interchangeable with 101 741 and 709 in voltage follower applications these devices have internal frequency compensation and provision for offset balancing The LM110 series are useful in fast sample and hold circuits active filters or as general-purpose buffers Further the frequency response is sufficiently better than standard IC amplifiers that the followers can be included in the feedback loop without introducing instability They are plug-in replacements for the LM102 series voltage followers offering lower offset voltage drift bias current and noise in addition to higher speed and wider operating voltage range The LM110 is specified over a temperature range b55 C s TA s a 125 C the LM210 from b25 C s TA s a 85 C and the LM310 from 0 C s TA s a 70 C
Features
Y Y Y Y
Input current Small signal bandwidth Slew rate Supply voltage range
10 nA max over temperature 20 MHz 30 V ms g 5V to g 18V
Schematic Diagram
TL H 7761 – 1
C1995 National Semiconductor Corporation
TL H 7761
RRD-B30M115 Printed in U S A
Absolute Maximum Ratings
If Military Aerospace specified devices are required please contact the National Semiconductor Sales Office Distributors for availability and specifications (Note 6) g 18V Supply Voltage Power Dissipation (Note 1) Input Voltage (Note 2) Output Short Circuit Duration (Note 3) Operating Temperature Range LM110 LM210 LM310 500 mW g 15V Indefinite
b 55 C to a 125 C b 25 C to a 85 C 0 C to a 70 C
Storage Temperature Range Lead Temperature (Soldering 10 sec ) Soldering Information Dual-In-Line Package Soldering (10 sec ) Small Outline Package Vapor Phase (60 sec ) Infrared (15 sec )
b 65 C to a 150 C
260 C
260 C
215 C 220 C See AN-450 ‘‘Surface Mounting Methods and Their Effect on Product Reliability’’ for other methods of soldering surface mount devices ESD rating to be determined
Electrical Characteristics (Note 4)
Parameter Input Offset Voltage Input Bias Current Input Resistance Input Capacitance Large Signal Voltage TA e 25 C VS e g 15V Gain VOUT e g 10V RL e 8 kX Output Resistance Supply Current Input Offset Voltage Offset Voltage Temperature Drift Input Bias Current Large Signal Voltage VS e g 15V VOUT e g 10V Gain RL e 10 kX Output Voltage Swing (Note 5) Supply Current Supply Voltage Rejection Ratio VS e g 15V RL e 10 kX TA e 125 C
g 5V s VS s g 18V
Conditions Min TA e 25 C TA e 25 C TA e 25 C 1010
LM110 Typ 15 10 1012 15 0 999 0 9999 0 75 39 25 55 60 Max 40 30 1010 Min
LM210 Typ 15 10 1012 15 0 999 0 9999 0 75 39 25 55 60 6 Max 40 30 1010 Min
LM310 Typ 25 20 1012 15 0 999 0 9999 0 75 39 25 55 10 Max 75 70
Units mV nA X pF VV X mA mV mV C mV C mV C 10 nA VV V mA
TA e 25 C TA e 25 C
b 55 C s TA s a 85 C a 85 s TA s 125 C 0 C s TA s a 70 C
6 12 10 0 999
g 10
10 10 0 999
g 10
0 999
g 10
20 70 80
40 70
20 80
40 70 80
dB
Note 1 The maximum junction temperature of the LM110 is 150 C of the LM210 is 100 C and of the LM310 is 85 C For operating at elevated temperatures devices in the HO8 package must be derated based on a thermal resistance of 165 C W junction to ambient or 22 C W junction to case The thermal resistance of the dual-in-line package is 100 C W junction to ambient Note 2 For supply voltages less than g 15V the absolute maximum input voltage is equal to the supply voltage Note 3 Continuous short circuit for the LM110 and LM210 is allowed for case temperatures to 125 C and ambient temperatures to 70 C and for the LM310 70 C case temperature or 55 C ambient temperature It is necessary to insert a resistor greater than 2 kX in series with the input when the amplifier is driven from low impedance sources to prevent damage when the output is shorted RS e 5k min 10k typical is recommended for dynamic stability in all applications Note 4 These specifications apply for g 5V s VS s g 18V and b 55 C s TA 125 C for the LM110 b 25 C s TA s 85 C for the LM210 and 0 C s TA s 70 C for the LM310 unless otherwise specified Note 5 Increased output swing under load can be obtained by connecting an external resistor between the booster and V Note 6 Refer to RETS110X for LM110H LM110J military specifications
b
terminals See curve
Application Hint
The input must be driven from a source impedance of typically 10 kX (5 kX min ) to maintain stability The total source impedance will be reduced at high frequencies if there is stray capacitance at the input pin In these cases a 10 kX resistor should be inserted in series with the input physically close to the input pin to minimize the stray capacitance and prevent oscillation
2
Typical Performance Characteristics (LM110
Input Current
LM210) Large Signal Pulse Response
Output Noise Voltage
Voltage Gain and Phase Lag
Voltage Gain and Phase Lag
Voltage Gain
Output Resistance
Symmetrical Output Swing
Positive Output Swing
Large Signal Frequency Response
Power Supply Rejection
Supply Current
TL H 7761 – 28
3
Typical Performance Characteristics (LM310)
Input Current Output Noise Voltage Large Signal Pulse Response
Voltage Gain and Phase Lag
Voltage Gain and Phase Lag
Voltage Gain
Output Resistance
Symmetrical Output Swing
Positive Output Swing
Large Signal Frequency Response
Power Supply Rejection
Supply Current
TL H 7761 – 29
4
Auxiliary Circuits
Offset Balancing Circuit Increasing Negative Swing Under Load
TL H 7761 – 3 TL H 7761 – 2
May be added to reduce internal dissipation
Typical Applications
Differential Input Instrumentation Amplifier
R4 R5 e R2 R3 AV e R4 R2
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Fast Integrator with Low Input Current
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5
Typical Applications (Continued)
Fast Inverting Amplifier with High Input Impedance
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Comparator for Signals of Opposite Polarity
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Zero Crossing Detector
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6
Typical Applications (Continued)
Driver for A D Ladder Network
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Buffer for Analog Switch
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Switch substrates are boot-strapped to reduce output capacitance of switch
7
Typical Applications (Continued)
Comparator for AC Coupled Signals
TL H 7761 – 11
High Input Impedance AC Amplifier
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Comparator for A D Converter Using a Binary-Weighted Network
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8
Typical Applications (Continued)
Bilateral Current Source
IOUT e
R3 VIN R1 R5
R3 e R4 a R5 R1 e R2
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Comparator for A D Converter Using a Ladder Network
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Sine Wave Oscillator
fo e 10 kHz
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9
Typical Applications (Continued)
Low Pass Active Filter
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Values are for 10 kHz cutoff Use silvered mica capacitors for good temperature stability
High Pass Active Filter
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Values are for 100 Hz cutoff Use metalized polycarbonate capacitors for good temperature stability
Simulated Inductor
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10
Typical Applications (Continued)
Adjustable Q Notch Filter
fo e
1 2qR1C1
R1 e R2 e 2R3 C1 e C2 e C3 2
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Bandpass Filter
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Sample and Hold
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Use capacitor with polycarbonate teflon or polythylene dietetric
11
Typical Applications (Continued)
Buffered Reference Source
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Low Drift Sample and Hold
Teflon polyethylene or polycarbonate dielectric capacitor Worst case drift less than 3 mV sec
TL H 7761 – 26
Variable Capacitance Multiplier
Ce
1
a
Rb Ra
JC
1
TL H 7761 – 27
12
Connection Diagrams
Metal Can Package
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Package is connected to Pin 4 (V )
b
Top View Order Number LM110H LM210H or LM310H LM110H 883 See NS Package Number H08C
Dual-In-Line Package
Dual-In-Line Package
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Top View
TL H 7761 – 31
Top View Order Number LM110J LM210J LM310J or LM110J 883 See NS Package Number J14A
Order Number LM310M LM310N or LM110J-8 883 See NS Package Number J08A M08A or N08E
Available per SMD
5962-8760601
13
Physical Dimensions inches (millimeters)
Metal Can Package (H) Order Number LM110H LM110H 883 LM210H or LM310H NS Package Number H08C
Dual-In-Line Package (J) Order Number LM110J-8 883 NS Package Number J08A
14
Physical Dimensions inches (millimeters) (Continued)
Ceramic Dual-In-Line Package (J) Order Number LM110J 883 NS Package Number J14A
S O Package (M) Order Number LM310M NS Package Number M08A
15
LM110 LM210 LM310 Voltage Follower
Physical Dimensions inches (millimeters) (Continued)
Molded Dual-In-Line Package (N) Order Number LM310N NS Package Number N08E
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