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LM358AN from ST, ST Microelectronics 1416pcs , DIP-8,Dual Operational Amplifier
Partno Mfg Dc Qty Available
LM358AN ST N/a 1416
LM358AN from PHI, Philips 80pcs , DIP-8,Dual Operational Amplifier
LM358AN from SGS-THOMSON, 45pcs , DIP8,Dual Operational Amplifier
LM358AN from ST/NS, ST Microelectronics 54pcs , DIP8,Dual Operational Amplifier
LM358AN from PHILIP, Philips 1631pcs , SOP-8,Dual Operational Amplifier
LM358AN from NS, National Semiconductor 476pcs , DIP,Dual Operational Amplifier
LM358AN from NSC, National Semiconductor 1227pcs , DIP8,Dual Operational Amplifier
LM358AN from PHILIPS, Philips 181pcs , DIP,Dual Operational Amplifier
ABSOLUTE MAXIMUM RATINGS Symbol Parameter LM158,A LM258,A LM358,A UnitV Supply voltage +32 VCCV Input Voltage -0.3 to +32 ViVDifferential Input Voltage +32 Vid1)P500 mWtot Power Dissipation 2)InfiniteOutput Short-circuit Duration 3)I50 mAin Input Current TOpearting Free-air Temperature Range -55 to +125 -40 to +105 0 to +70 °CoperT Storage Temperature Range -65 to +150 °Cstg1. Power dissipation must be considered to ensure maximum junction temperature (Tj) is not exceeded.2. Short-circuits from the output to V can cause excessive heating if V > 15V. The maximum output current is approximately 40mA independentCC CC of the magnitude of V . Destructive dissipation can result from simultaneous short-circuit on all amplifiers.CC3. This input current only exists when the voltage at any of the input leads is driven negative. It is due to the collector-base junction of the input PNPtransistor becoming forward biased and thereby acting as input diodes clamps. In addition to this diode action, there is also NPN parasitic action onthe IC chip. this transistor action can cause the output voltages of the Op-amps to go to the V voltage level (or to ground for a large overdrive) CCfor the time duration than an input is driven negative.This is not destructive and normal output will set up again for input voltage higher than -0.3V.2/12LM158,A-LM258,A-LM358,ABlock DiagramOUT1 V1 8 CCIN1 (-) 2 OUT27-+IN2 (-)IN1 (+) 3 6-+IN2 (+)45GNDRev. 1.0.22002 Fairchild Semiconductor CorporationLM2904,LM358/LM358A,LM258/LM258ASchematic Diagram(One section only)VCCQ5 Q6 Q12Q17Q19Q20Q3R1Q2C1Q18Q4IN(-)Q1R2IN(+)Q11OUTPUTQ21Q15Q10Q7Q13Q14Q8 Q9Q16GNDAbsolute Maximum RatingsParameter Symbol LM258/LM258A LM358/LM358A LM2904 UnitSupply Voltage V ±16 or 32 ±16 or 32 ±13 or 26 VCCDifferential Input Voltage V 32 32 26 VI(DIFF)Input Voltage VI -0.3 to +32 -0.3 to +32 -0.3 to +26 VOutput Short Circuit to GND- Continuous Continuous Continuous -V ≤15V, T = 25°C(One Amp)CC AOperating Temperature Range T -25 ~ +85 0 ~ +70 -40 ~ +85 °COPRStorage Temperature Range TSTG -65 ~ +150 -65 ~ +150 -65 ~ +150 °C2LM2904,LM358/LM358A,LM258/LM258ALM158,A-LM258,ALM358,ALOW POWER DUAL OPERATIONAL AMPLIFIERS■ INTERNALLY FREQUENCY COMPENSATED ■ LARGE DC VOLTAGE GAIN: 100dB ■ WIDE BANDWIDTH (unity gain): 1.1MHz(temperature compensated)■ VERY LOW SUPPLY CURRENT/OP (500μA) ESSENTIALLY INDEPENDENT OF SUPPLY NVOLTAGEDIP8■ LOW INPUT BIAS CURRENT: 20nA(Plastic Package)(temperature compensated)■ LOW INPUT OFFSET VOLTAGE: 2mV■ LOW INPUT OFFSET CURRENT: 2nA■ INPUT COMMON-MODE VOLTAGE RANGE INCLUDES GROUND■ DIFFERENTIAL INPUT VOLTAGE RANGE D & SEQUAL TO THE POWER SUPPLY VOLTAGESO8 & miniSO8■ LARGE OUTPUT VOLTAGE SWING 0V TO (Plastic Micropackage)(Vcc - 1.5V)DESCRIPTIONThese circuits consist of two independent, highgain, internally frequency compensated whichPwere designed specifically to operate from a sin-TSSOP8gle power supply over a wide range of voltages.(Thin Shrink Small Outline Package)The low power supply drain is independent of themagnitude of the power supply voltage. ORDER CODE Application areas include transducer amplifiers,dc gain blocks and all the conventional op-ampPackagePart Temperature circuits which now can be more easily implement-Number RangeNS D Ped in single power supply systems. For example,these circuits can be directly supplied with theLM158,A -55°C, +125°C•••standard +5V which is used in logic systems andLM258,A -40°C, +105°C•••will easily provide the required interface electron-LM358,A 0°C, +70°C •• • •ics without requiring any additional power supply.Example : LM258NInthe linear mode the input common-mode voltageN = Dual in Line Package (DIP)range includes ground and the output voltage canD = Small Outline Package (SO) - also available in Tape & Reel (DT)also swing to ground, even though operated from S = Small Outline Package (miniSO) only available in Tape & Reel (DT)P = Thin Shrink Small Outline Package (TSSOP) - only available in Tapeonly a single power supply voltage. &Reel (PT)PIN CONNECTIONS (top view) 1 - Output 12 - Inverting input1 83 - Non-inverting input- 4 - V2 7CC-5 - Non-inverting input 2+ 6 - Inverting input 23 6- 7 - Output 2+ +458 - VCCJanuary 2002 1/12LM158,A-LM258,A-LM358,ASCHEMATIC DIAGRAM (1/2 LM158) VCC6μA4μA 100μAQ5Q6CCQ3Q2InvertingQ7Q1 Q4inputRSCQ11Non-invertingOutputinputQ13Q10 Q12Q8 Q950μAGNDElectrical Characteristics+V = +5.0V, unless otherwise statedParameter Conditions LM358 LM2904 UnitsMin Typ Max Min Typ MaxInput Offset Voltage (Note 5) , T = 25˚C 2 7 2 7 mVAInput Bias Current I or I ,T = 25˚C, 45 250 45 250 nAIN(+) IN(−) AV = 0V, (Note 6)CMInput Offset Current I −I ,V = 0V, T = 25˚C 5 50 5 50 nAIN(+) IN(−) CM A+ + +Input Common-Mode V = 30V, (Note 7) 0 V −1.5 0 V −1.5 V+Voltage Range (LM2904, V = 26V), T = 25˚CASupply Current Over Full Temperature Range∞R = on All Op AmpsL+ +V = 30V (LM2904 V = 26V) 1 2 1 2 mA+V = 5V 0.5 1.2 0.5 1.2 mAElectrical Characteristics+V = +5.0V, unless otherwise statedParameter Conditions LM358 LM2904 UnitsMin Typ Max Min Typ MaxInput Offset Voltage (Note 5) , T = 25˚C 2 7 2 7 mVAInput Bias Current I or I ,T = 25˚C, 45 250 45 250 nAIN(+) IN(−) AV = 0V, (Note 6)CMInput Offset Current I −I ,V = 0V, T = 25˚C 5 50 5 50 nAIN(+) IN(−) CM A+ + +Input Common-Mode V = 30V, (Note 7) 0 V −1.5 0 V −1.5 V+Voltage Range (LM2904, V = 26V), T = 25˚CASupply Current Over Full Temperature Range∞R = on All Op AmpsL+ +V = 30V (LM2904 V = 26V) 1 2 1 2 mA+V = 5V 0.5 1.2 0.5 1.2 mA

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