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MC33079DG Electronic IC Chips Low Noise Dual/Quad Operational Amplifiers

Anterwell Technology Ltd.
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    Buy cheap MC33079DG Electronic IC Chips Low Noise Dual/Quad Operational Amplifiers from wholesalers
     
    Buy cheap MC33079DG Electronic IC Chips Low Noise Dual/Quad Operational Amplifiers from wholesalers
    • Buy cheap MC33079DG Electronic IC Chips Low Noise Dual/Quad Operational Amplifiers from wholesalers

    MC33079DG Electronic IC Chips Low Noise Dual/Quad Operational Amplifiers

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    Brand Name : Anterwell
    Model Number : MC33079DG
    Certification : new & original
    Price : Negotiate
    Payment Terms : T/T, Western Union, Paypal
    Supply Ability : 7200pcs
    Delivery Time : 1 day
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    MC33079DG Electronic IC Chips Low Noise Dual/Quad Operational Amplifiers


    Stock Offer (Hot Sell)

    Part No.QuantityBrandD/CPackage
    IRFP064NPBF13257IR15+TO-247
    IRFP150NPBF3754IR15+TO-247
    IRFP240PBF6364VISHAY16+TO-247
    IRFP26N60L4590VISHAY11+TO-247
    IRFP2907PBF3962IR15+TO-247
    IRFP460APBF5016VISHAY15+TO-247
    IRFP4668PBF4165IR16+TO-247
    IRFP9240PBF2375VISHAY13+TO-247
    IRFPC50APBF4918VISHAY06+TO-247
    IRFR024NTRPBF10083IR12+TO-252
    IRFR1018ETR7234IR13+TO-252
    IRFR3411TR4797IR14+TO-252
    IRFR3607TRPBF6094IR13+TO-252
    IRFR3910TRPBF12197IR16+TO-252
    IRFR420ATRLPBF9002VISHAY09+TO-252
    IRFR5410TR26000IR16+TO-252
    IRFR9014TRPBF12907IR08+TO-252
    IRFR9120NTRPBF9018IR14+TO-252
    IRFRC20TRLPBF21285IR08+TO-252
    IRFS640B4032FSC02+TO-220F
    IRFS75304561IR15+TO-263-7
    IRFS7734TRLPBF453216+TO-263
    IRFU210PBF15534VISHAY14+TO-251
    IRFU9110PBF10154IR05+TO-251
    IRFZ44NPBF13775IR15+TO-220
    IRFZ44S21356IR10+TO-263
    IRFZ46NPBF8150IR16+TO-220
    IRFZ48NPBF4963IR16+TO-220
    IRG4BC30UD4673IR13+TO-220
    IRG4PC50S9467IR13+TO-247

    MC33078, MC33079

    Low Noise Dual/Quad Operational Amplifiers


    The MC33078/9 series is a family of high quality monolithic amplifiers employing Bipolar technology with innovative high performance concepts for quality audio and data signal processing applications. This family incorporates the use of high frequency PNP input transistors to produce amplifiers exhibiting low input voltage noise with high gain bandwidth product and slew rate.


    The all NPN output stage exhibits no deadband crossover distortion, large output voltage swing, excellent phase and gain margins, low open loop high frequency output impedance and symmetrical source and sink AC frequency performance.


    The MC33078/9 family offers both dual and quad amplifier versions and is available in the plastic DIP and SOIC packages (P and D suffixes).


    Features

    • Dual Supply Operation: 5.0 V to 18 V

    • Low Voltage Noise: 4.5 nV/ Hz

    • Low Input Offset Voltage: 0.15 mV

    • Low T.C. of Input Offset Voltage: 2.0 V/°C


    • Low Total Harmonic Distortion: 0.002%

    • High Gain Bandwidth Product: 16 MHz

    • High Slew Rate: 7.0 V/s

    • High Open Loop AC Gain: 800 @ 20 kHz


    • Excellent Frequency Stability

    • Large Output Voltage Swing: +14.1 V/ −14.6 V

    • ESD Diodes Provided on the Inputs

    • Pb−Free Packages are Available Fig


    MAXIMUM RATINGS

    RatingSymbolValueUnit
    Supply Voltage (VCC to VEE)VS+36V
    Input Differential Voltage RangeVIDRNote 1V
    Input Voltage RangeVIRNote 1V
    Output Short Circuit Duration (Note 2)tSCIndefinitesec
    Maximum Junction TemperatureTJ+150°C
    Storage TemperatureTstg−60 to +150°C

    ESD Protection at any Pin

    MC33078 − Human Body Model

    − Machine Model

    MC33079 − Human Body Model

    − Machine Model

    Vesd

    600

    200

    550

    150

    V
    Maximum Power DissipationPDNote 2mW
    Operating Temperature RangeTA−40 to +85°C

    Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.

    1. Either or both input voltages must not exceed the magnitude of VCC or VEE.

    2. Power dissipation must be considered to ensure maximum junction temperature (TJ) is not exceeded (see Figure 2).


    Figure 1. Representative Schematic Diagram (Each Amplifier)


    Figure 2. Maximum Power Dissipation versus Temperature


    MARKING DIAGRAMS


    Quality MC33079DG Electronic IC Chips Low Noise Dual/Quad Operational Amplifiers for sale
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