SGM8271/2/4 High Voltage Rail-to-Rail Output Operational Amplifiers
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1 GENERAL DESCRIPTION The SGM8271 (single), SGM8272 (dual) and SGM8274 (quad) are high voltage operational amplifiers that are designed to offer a wide input common mode voltage range and output voltage swing. These devices can operate from ±2.25V to ±18V dual power supplies or from +4.5V to +36V single supplies. The devices feature high slew rate, low input bias and offset current, low offset voltage and low offset-voltage temperature coefficient. The SGM8271/2/4 are specified over the extended -40 to +125 temperature range. The SGM8271 single is available in Green SOT-23-5, MSOP-8 and SOIC-8 packages. The SGM8272 dual is available in Green SOIC-8 and MSOP-8 packages. The SGM8274 quad is available in Green SOIC-14 and TSSOP-14 packages. FEATURES Low Power Consumption: 150µA/Amplifier Wide Input Common Mode Voltage Range Low Input Bias and Offset Currents Output Short-Circuit Protection Rail-to-Rail Output High Input Impedance Low Offset Voltage: 3mV (MAX) High Slew Rate: 7V/µs Small Packaging: SGM8271 Available in Green SOT-23-5, MSOP-8 and SOIC-8 SGM8272 Available in Green MSOP-8 and SOIC-8 SGM8274 Available in Green TSSOP-14 and SOIC-14 APPLICATIONS High Impedance Sensors Photodiode Amplifier Precision Instrumentation Phase-Locked Loop Filters High End, Professional Audio DAC Output Amplifier ATE Medical JANUARY 2017 REV. A. 2
2 PACKAGE/ORDERING INFORMATION MODEL PACKAGE DESCRIPTION SPECIFIED TEMPERATURE RANGE ORDERING NUMBER PACKAGE MARKING PACKING OPTION SOT to +85 SGM8271AYN5G/TR SBDXX Tape and Reel, 3000 SOT to +85 SGM8271BYN5G/TR SG5XX Tape and Reel, 3000 SGM8271 MSOP-8-40 to +85 SGM8271YMS8G/TR SGM8271 YMS8 Tape and Reel, 3000 SOIC-8-40 to +85 SGM8271YS8G/TR SGM 8271YS8 Tape and Reel, 2500 SOIC-8-40 to +125 SGM8271XS8G/TR SGM 8271XS8 Tape and Reel, 2500 MSOP-8-40 to +85 SGM8272YMS8G/TR SGM8272 YMS8 Tape and Reel, 3000 SGM8272 SOIC-8-40 to +85 SGM8272YS8G/TR SGM 8272YS8 Tape and Reel, 2500 SOIC-8-40 to +125 SGM8272XS8G/TR SGM 8272XS8 Tape and Reel, 2500 SOIC to +85 SGM8274YS14G/TR SGM8274YS14 Tape and Reel, 2500 SGM8274 SOIC to +125 SGM8274XS14G/TR SGM8274XS14 Tape and Reel, 2500 TSSOP to +85 SGM8274YTS14G/TR SGM8274 YTS14 Tape and Reel, 3000 NOTE: XX = Date Code. = Date Code and Vendor Code. Green (RoHS & HSF): defines "Green" to mean Pb-Free (RoHS compatible) and free of halogen substances. If you have additional comments or questions, please contact your SGMICRO representative directly. MARKING INFORMATION SYY X X Date code - Month ("A" = Jan. "B" = Feb. "L" = Dec.) Date code - Year ("A" = 2010, "B" = 2011 ) Chip I.D. For example: SBDCA (2012, January) JANUARY
3 ABSOLUTE MAXIMUM RATINGS Supply Voltage, +V S to -V S... 40V Input Common Mode Voltage Range... (-V S ) - 0.1V to (+V S ) - 1.5V Input/Output Voltage Range... (-V S ) - 0.3V to (+V S ) + 0.3V Differential Input Voltage V Storage Temperature Range to +150 Junction Temperature Operating Temperature Range to +125 Lead Temperature (Soldering 10sec) ESD Susceptibility HBM V MM (SGM8271/2) V MM (SGM8274) V NOTE: 1. Proper power-supply sequencing is recommended for the CMOS device. Always sequence V S on first, followed by the inputs and outputs. OVERSTRESS CAUTION Stresses beyond those listed may cause permanent damage to the device. Functional operation of the device at these or any other conditions beyond those indicated in the operational section of the specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability. ESD SENSITIVITY CAUTION This integrated circuit can be damaged by ESD if you don t pay attention to ESD protection. SGMICRO recommends that all integrated circuits be handled with appropriate precautions. Failure to observe proper handling and installation procedures can cause damage. ESD damage can range from subtle performance degradation to complete device failure. Precision integrated circuits may be more susceptible to damage because very small parametric changes could cause the device not to meet its published specifications. DISCLAIMER reserves the right to make any change in circuit design, specification or other related things if necessary without notice at any time. JANUARY
4 PIN CONFIGURATIONS SGM8271AYN5G SGM8271 OUT 1 5 +V S NC 1 8 NC -V S 2 -IN 2 7 +V S +IN 3 4 -IN +IN 3 6 OUT SOT V S 4 NC = NO CONNECT 5 NC SGM8271BYN5G SOIC-8/MSOP-8 +IN 1 5 +V S -V S 2 -IN 3 4 OUT SGM8274 SOT-23-5 OUTA 1 14 OUTD SGM8272 -INA +INA IND +IND OUTA 1 8 +V S +V S V S -INA 2 7 OUTB +INB INC +INA 3 6 -INB -INB 6 9 -INC -V S 4 5 +INB OUTB 7 8 OUTC SOIC-8/MSOP-8 TSSOP-14/SOIC-14 JANUARY
5 ELECTRICAL CHARACTERISTICS (V S = +5V, R L = 2kΩ connected to +2.5V, unless otherwise noted.) PARAMETER CONDITIONS SGM8271/2/4 MIN/MAX OVER TEMPERATURE -40 to to Input Offset Voltage (V OS ) V CM = +2.5V mv MAX Input Offset Voltage Drift (ΔV OS /ΔT) 3 μv/ Input Bias Current (I B ) 20 pa Input Offset Current (I OS ) 20 pa Open-Loop Voltage Gain (A OL ) V OUT = +0.5V to +4.5V, R L = 5kΩ db MIN Output Voltage Swing from Rail Output Short-Circuit Current (I SC ) 125 UNITS MIN/ MAX V OH R L = 10kΩ mv MAX V OL R L = 10kΩ mv MAX Sink R L = 10Ω Source R L = 10Ω Input Common Mode Voltage Range (V CM ) -0.1 to +3.5 V Common Mode Rejection Ratio (CMRR) V CM = -0.1V to +3.5V db MIN Power Supply Rejection Ratio (PSRR) V S = +4.5V to +36V db MIN Quiescent Current/Amplifier I OUT = 0A µa MAX Gain-Bandwidth Product (GBP) C L = 100pF, V CM = +2.5V 1.4 MHz Gain Margin C L = 100pF, V CM = +2.5V -10 db Phase Margin C L = 100pF, V CM = +2.5V 50 Channel-to-Channel Crosstalk f = 1MHz -80 db Slew Rate (SR) Overload Recovery Time (ORT) Up V OUT = 2V PP step, C L = 100pF, A V = 1 5 V/μs Down V OUT = 2V PP step, C L = 100pF, A V = 1 5 V/μs Up V IN Gain = V S 2.0 Down V IN Gain = V S 4.0 Settling Time (t S ) C L = 100pF, A V = 1, 200mV output step 2 μs Voltage Noise Density (e n ) Total Harmonic Distortion + Noise (THD+N) f = 20kHz, V CM = +2.5V 30 f = 1kHz, V CM = +2.5V 45 V OUT = 2V PP, f = 1kHz, A V = 1, R L = 600Ω V OUT = 2V PP, f = 1kHz, A V = 1, R L = 2kΩ ma μs nv/ Hz MIN % JANUARY
6 ELECTRICAL CHARACTERISTICS (continued) (V S = ±5V, R L = 2kΩ connected to 0V, unless otherwise noted.) PARAMETER CONDITIONS SGM8271/2/4 MIN/MAX OVER TEMPERATURE -40 to to Input Offset Voltage (V OS ) V CM = 0V mv MAX Input Offset Voltage Drift (ΔV OS /ΔT) 3 μv/ Input Bias Current (I B ) 20 pa Input Offset Current (I OS ) 20 pa Open-Loop Voltage Gain (A OL ) V OUT = -4.5V to +4.5V, R L = 5kΩ db MIN Output Voltage Swing from Rail 125 UNITS MIN/ MAX V OH R L = 10kΩ mv MAX V OL R L = 10kΩ mv MAX Output Current (I OUT ) 60 ma Input Common Mode Voltage Range (V CM ) -5.1 to +3.5 V Common Mode Rejection Ratio (CMRR) V CM = -5.1V to +3.5V db MIN Quiescent Current/Amplifier I OUT = 0A µa MAX Gain-Bandwidth Product (GBP) C L = 100pF, V CM = 0V 1.4 MHz Gain Margin C L = 100pF, V CM = 0V -10 db Phase Margin C L = 100pF, V CM = 0V 50 Channel-to-Channel Crosstalk f = 1MHz -80 db Slew Rate (SR) Overload Recovery Time (ORT) Up V OUT = 2V PP step, C L = 100pF, A V = 1 6 V/μs Down V OUT = 2V PP step, C L = 100pF, A V = 1 4 V/μs Up V IN Gain = V S 1.5 Down V IN Gain = V S 2.5 Settling Time (t S ) C L = 100pF, A V = 1, 200mV output step 2 μs Voltage Noise Density (e n ) Total Harmonic Distortion + Noise (THD+N) f = 20kHz, V CM = 0V 30 f = 1kHz, V CM = 0V 45 V OUT = 2V PP, f = 1kHz, A V = 1, R L = 600Ω V OUT = 2V PP, f = 1kHz, A V = 1, R L = 2kΩ μs nv/ Hz % JANUARY
7 ELECTRICAL CHARACTERISTICS (continued) (V S = ±15V, R L = 2kΩ connected to 0V, unless otherwise noted.) PARAMETER CONDITIONS SGM8271/2/4 MIN/MAX OVER TEMPERATURE -40 to to Input Offset Voltage (V OS ) V CM = 0V mv MAX Input Offset Voltage Drift (ΔV OS /ΔT) 3 μv/ Input Bias Current (I B ) 20 pa Input Offset Current (I OS ) 20 pa Open-Loop Voltage Gain (A OL ) V OUT = -14.5V to +14.5V, R L = 5kΩ db MIN Output Voltage Swing from Rail 125 UNITS MIN/ MAX V OH R L = 10kΩ mv MAX V OL R L = 10kΩ mv MAX Output Current (I OUT ) 60 ma Input Common Mode Voltage Range (V CM ) to V Common Mode Rejection Ratio (CMRR) V CM = -15.1V to +13.5V db MIN Quiescent Current/Amplifier I OUT = 0A µa MAX Gain-Bandwidth Product (GBP) C L = 100pF, V CM = 0V 1.4 MHz Gain Margin C L = 100pF, V CM = 0V -10 db Phase Margin C L = 100pF, V CM = 0V 50 Channel-to-Channel Crosstalk f = 1MHz -80 db Slew Rate (SR) Overload Recovery Time (ORT) Up V OUT = 2V PP step, C L = 100pF, A V = 1 7 V/μs Down V OUT = 2V PP step, C L = 100pF, A V = 1 4 V/μs Up V IN Gain = V S 0.5 Down V IN Gain = V S 1.0 Settling Time (t S ) C L = 100pF, A V = 1, 200mV output step 2 μs Voltage Noise Density (e n ) Total Harmonic Distortion + Noise (THD+N) f = 20kHz, V CM = 0V 29 f = 1kHz, V CM = 0V 43 V OUT = 2V PP, f = 1kHz, A V = 1, R L = 600Ω V OUT = 2V PP, f = 1kHz, A V = 1, R L = 2kΩ μs nv/ Hz % JANUARY
8 ELECTRICAL CHARACTERISTICS (continued) (V S = ±18V, R L = 2kΩ connected to 0V, unless otherwise noted.) PARAMETER CONDITIONS SGM8271/2/4 MIN/MAX OVER TEMPERATURE -40 to to Input Offset Voltage (V OS ) V CM = 0V mv MAX Input Offset Voltage Drift (ΔV OS /ΔT) 3 μv/ Input Bias Current (I B ) 20 pa Input Offset Current (I OS ) 20 pa Open-Loop Voltage Gain (A OL ) V OUT = -17.5V to +17.5V, R L = 5kΩ db MIN Output Voltage Swing from Rail 125 UNITS MIN/ MAX V OH R L = 10kΩ mv MAX V OL R L = 10kΩ mv MAX Output Current (I OUT ) 60 ma Input Common Mode Voltage Range (V CM ) to V Common Mode Rejection Ratio (CMRR) V CM = -18.1V to +16.5V db MIN Quiescent Current/Amplifier I OUT = 0A µa MAX Gain-Bandwidth Product (GBP) C L = 100pF, V CM = 0V 1.4 MHz Gain Margin C L = 100pF, V CM = 0V -10 db Phase Margin C L = 100pF, V CM = 0V 50 Channel-to-Channel Crosstalk f = 1MHz -80 db Slew Rate (SR) Overload Recovery Time (ORT) Up V OUT = 2V PP step, C L = 100pF, A V = 1 7 V/μs Down V OUT = 2V PP step, C L = 100pF, A V = 1 4 V/μs Up V IN Gain = V S 0.5 Down V IN Gain = V S 1.0 Settling Time (t S ) C L = 100pF, A V = 1, 200mV output step 2 μs Voltage Noise Density (e n ) Total Harmonic Distortion + Noise (THD+N) f = 20kHz, V CM = 0V 29 f = 1kHz, V CM = 0V 43 V OUT = 2V PP, f = 1kHz, A V = 1, R L = 600Ω V OUT = 2V PP, f = 1kHz, A V = 1, R L = 2kΩ μs nv/ Hz % ICAL APPLICATION CIRCUITS 10kΩ 100kΩ C L 1kΩ V I V I OUT OUT OUT V I C L 100pF R L 2kΩ C L 100pF R L Figure 1 Figure 2 Figure 3 JANUARY
9 ICAL PERFORMANCE CHARACTERISTICS At V S = ±15V, R L = 2kΩ connected to 0V, unless otherwise noted. Large Signal Step Response Small Signal Step Response Output Voltage (500mV/div) C L = 100pF Output Voltage (50mV/div) C L = 100pF Time (15μs/div) Time (1.5μs/div) Gain (db) R L = 10kΩ C L = 100pF Gain and Phase vs. Frequency Gain Phase Frequency (MHz) Phase (degrees) Input Voltage Noise (nv/ Hz) Input Voltage Noise Spectral Density vs. Frequency Frequency (khz) Negative Overload Recovery Time Positive Overload Recovery Time V IN 0V 0V V OUT V IN = 350mV G = mV /div 1V /div V OUT 0V 0V V IN V IN = -350mV G = -50 1V /div 500mV /div Time (0.5µs/div) Time (0.5µs/div) JANUARY
10 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS SOT-23-5 D 1.90 e1 E1 E b e RECOMMENDED LAND PATTERN (Unit: mm) L A A1 A2 θ 0.2 c Symbol In Millimeters In Inches MIN MAX MIN MAX A A A b c D E E e BSC BSC e BSC BSC L θ TX
11 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS SOIC-8 D e E1 E 5.2 b 1.27 RECOMMENDED LAND PATTERN (Unit: mm) L A A1 θ c A2 Symbol In Millimeters In Inches MIN MAX MIN MAX A A A b c D E E e 1.27 BSC BSC L θ TX
12 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS MSOP-8 b E1 E 4.8 e RECOMMENDED LAND PATTERN (Unit: mm) D L A A1 A2 c θ Symbol In Millimeters In Inches MIN MAX MIN MAX A A A b c D E E e BSC BSC L θ TX
13 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS SOIC-14 D E E e b RECOMMENDED LAND PATTERN (Unit: mm) A A2 A3 R1 R L L1 h h A1 θ L2 In Millimeters In Inches Symbol MIN MAX MIN MAX A A A A b D E E e 1.27 BSC BSC L L REF REF L BSC 0.01 BSC R R h θ TX
14 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS TSSOP-14 D E1 E b e RECOMMENDED LAND PATTERN (Unit: mm) L A A1 A2 θ H c In Millimeters In Inches Symbol MIN MAX MIN MAX A A A b c D E E e BSC BSC L H θ TX
15 PACKAGE INFORMATION TAPE AND REEL INFORMATION REEL DIMENSIONS TAPE DIMENSIONS P2 P0 W Q1 Q2 Q1 Q2 Q1 Q2 B0 Q3 Q4 Q3 Q4 Q3 Q4 Reel Diameter P1 A0 K0 Reel Width (W1) DIRECTION OF FEED NOTE: The picture is only for reference. Please make the object as the standard. KEY PARAMETER LIST OF TAPE AND REEL Package Type Reel Diameter Reel Width W1 A0 B0 K0 P0 P1 P2 W Pin1 Quadrant SOT Q3 SOIC Q1 MSOP Q1 SOIC Q1 TSSOP Q1 DD0001 TX
16 PACKAGE INFORMATION CARTON BOX DIMENSIONS NOTE: The picture is only for reference. Please make the object as the standard. KEY PARAMETER LIST OF CARTON BOX Reel Type Length Width Height Pizza/Carton 7 (Option) DD0002 TX
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600 na, Rail-to-Rail Input/Output Op Amps Features Low Quiescent Current: 600 na/amplifier Rail-to-Rail Input/Output Gain Bandwidth Product: 14 khz Wide Supply Voltage Range: 1.4V to 6.0V Unity Gain Stable
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0.9 µa, High Precision Op Amps Features Rail-to-Rail Input and Output Low Offset Voltage: ±150 µv (maximum) Ultra Low Quiescent Current: 0.9 µa Wide Power Supply Voltage: 1.8V to 5.5V Gain Bandwidth Product:
More informationTABLE OF CONTENTS Features... Applications... Pin Configurations... General Description... Revision History... 2 Specifications... 3 Absolute Maximum
FEATURES Offset voltage: 2.5 mv maximum Single-supply operation: 2.7 V to 5.5 V Low noise: 8 nv/ Hz Wide bandwidth: 24 MHz Slew rate: V/μs Short-circuit output current: 2 ma No phase reversal Low input
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Low Cost Micropower, Low Noise CMOS Rail-to-Rail, Input/Output Operational Amplifiers FEATURES Offset voltage: 2.2 mv maximum Low input bias current: pa maximum Single-supply operation:.8 V to 5 V Low
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Rev 0.1 DIO2026 190μA, 3MHz, Rail-to-Rail I/O CMOS Operational Amplifiers Features Supply Voltage Range: 2.5V to 5.5V Supply Current: Typical 190μA per channel Rail-to-Rail Input and Output ±1mV Typical
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a FEATURES Low Offset Voltage: 1 V Max Low Input Bias Current: 1 na Max Single-Supply Operation: 2.7 V to 3 V Dual-Supply Operation: 1.35 V to 15 V Low Supply Current: 27 A/Amp Unity Gain Stable No Phase
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