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LM317DCYR 3-Terminal Adjustable Regulator Electronics Ic Chip

    Buy cheap LM317DCYR 3-Terminal Adjustable Regulator Electronics Ic Chip from wholesalers
     
    Buy cheap LM317DCYR 3-Terminal Adjustable Regulator Electronics Ic Chip from wholesalers
    • Buy cheap LM317DCYR 3-Terminal Adjustable Regulator Electronics Ic Chip from wholesalers

    LM317DCYR 3-Terminal Adjustable Regulator Electronics Ic Chip

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    Brand Name : anterwell
    Model Number : LM317DCYR
    Certification : new & original
    Price : Negotiate
    Payment Terms : Western Union, T/T, MoneyGram
    Supply Ability : 5000pcs
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    LM317DCYR 3-Terminal Adjustable Regulator Electronics Ic Chip


    LM317DCYR 3-TERMINAL ADJUSTABLE REGULATOR


    FEATURES


    Output Voltage Range Adjustable From 1.25 V

    Thermal Overload Protection to 37 V

    Output Safe-Area Compensation

    Output Current Greater Than 1.5 A

    Internal Short-Circuit Current Limiting



    DESCRIPTION/ORDERING INFORMATION


    LM317 3-TERMINAL ADJUSTABLE REGULATOR SLVS044R–SEPTEMBER 1997–REVISED APRIL 2007 • Output Voltage Range Adjustable From 1.25 V • Thermal Overload Protection to 37 V • Output Safe-Area Compensation • Output Current Greater Than 1.5 A • Internal Short-Circuit Current Limiting The LM317 is an adjustable three-terminal positive-voltage regulator capable of supplying more than 1.5 A over an output-voltage range of 1.25 V to 37 V. It is exceptionally easy to use and requires only two external resistors to set the output voltage. Furthermore, both line and load regulation are better than standard fixed regulators.


    In addition to having higher performance than fixed regulators, this device includes on-chip current limiting, thermal overload protection, and safe operating-area protection. All overload protection remains fully functional, even if the ADJUST terminal is disconnected.


    The LM317 is versatile in its applications, including uses in programmable output regulation and local on-card regulation. Or, by connecting a fixed resistor between the ADJUST and OUTPUT terminals, the LM317 can function as a precision current regulator. An optional output capacitor can be added to improve transient response. The ADJUST terminal can be bypassed t


    ORDERING INFORMATION(1)


    TAPACKAGE(2)ORDERABLE PART NUMBERTOP-SIDE MARKING
    0°C to 125°CPowerFLEX™ – KTEReel of 2000LM317KTERLM317
    SOT-223 – DCYTube of 80LM317DCYL3
    Reel of 2500LM317DCYR
    TO-220– KCTube of 50LM317KCLM317
    TO-220, short shoulder – KCSTube of 20LM317KCS
    TO-263 – KTTReel of 500LM317KTTRLM317


    Absolute Maximum Ratings (1)

    over virtual junction temperature range (unless otherwise noted)


    MIN MAXUNIT
    VI – VO Input-to-output differential voltage40V
    TJ Operating virtual junction temperature150°C
    Lead temperature 1,6 mm (1/16 in) from case for 10 s260°C
    Tstg Storage temperature range150°C

    (1) Stresses beyond those listed under "absolute maximum ratings" may cause permanent damage to the device. These are stress ratings only, and 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.


    Package Thermal Data (1)


    PACKAGEBOARDθJAθJCθJP (2)
    PowerFLEX™ (KTE)High K, JESD 51-523°C/W3°C/W
    SOT-223 (DCY)High K, JESD 51-753°C/W30.6°C/W
    TO-220 (KC/KCS)High K, JESD 51-519°C/W17°C/W3°C/W
    TO-263 (KTT)High K, JESD 51-525.3°C/W18°C/W1.94°C/W

    (1) Maximum power dissipation is a function of TJ(max), θJA, and TA. The maximum allowable power dissipation at any allowable ambient temperature is PD = (TJ(max) – TA)/θJA. Operating at the absolute maximum TJ of 150°C can affect reliability.

    (2) For packages with exposed thermal pads, such as QFN, PowerPAD™, or PowerFLEX™, θJP is defined as the thermal resistance between the die junction and the bottom of the exposed pad


    Recommended Operating Conditions


    MIN MAXUNIT
    VO Input-to-output differential voltage3 40V
    IO Output current1.5A
    TJ Operating virtual junction temperature0 125°C

    Electrical Characteristics

    over recommended ranges of operating virtual junction temperature (unless otherwise noted)


    PARAMETERTEST CONDITIONS(1)MIN TYP MAXUNIT
    Line regulation(2)VI – VO = 3 V to 40 VTJ = 25°C0.01 0.04%/V
    TJ = 0°C to 125°C0.02 0.07
    Load regulationO = 10 mA to 1500 mATJ = 25°CVO ≤ 5 V25mV
    VO ≥ 5 V0.1 0.5%VO
    TJ = 0°C to 125°CVO ≤ 5 V20 70mV
    VO ≥ 5 V0.3 1.5%VO
    Thermal regulation20-ms pulse, TJ = 25°C0.03 0.07%VO/W
    ADJUST terminal current50 100µA

    Change in

    ADJUST terminal current

    VI – VO = 2.5 V to 40 V, PD ≤ 20 W, IO = 10 mA to 1500 mA0.2 5µA
    Reference voltageVI – VO = 3 V to 40 V, PD ≤ 20 W, IO = 10 mA to 1500 mA1.2 1.25 1.3V

    Output-voltage

    temperature stability

    TJ = 0°C to 125°C0.7%VO

    Minimum load current

    to maintain regulation

    VI – VO = 40 V3.5 10mA
    Maximum output currentVI – VO ≤ 15 V, PD < PMAX (4)1.5 2.2A
    VI – VO ≤ 40 V, PD < PMAX (4) , TJ = 25°C0.15 0.4
    RMS output noise voltage(% of VO)= 10 Hz to 10 kHz, TJ = 25°C0.003%VO
    Ripple rejectionVO = 10 V, f = 120 HzCADJ = 0 µF(3)57dB
    CADJ = 10 µF(3)62 64
    Long-term stabilityTJ = 25°C0.3 1%/1k hr

    (1) Unless otherwise noted, the following test conditions apply: |VI – VO| = 5 V and IOMAX = 1.5 A, TJ = 0°C to 125°C. Pulse testing techniques are used to maintain the junction temperature as close to the ambient temperature as possible. (2) Line regulation is expressed here as the percentage change in output voltage per 1-V change at the input. (3) CADJ is connected between the ADJUST terminal and GND. (4) Maximum power dissipation is a function of TJ(max), θJA, and TA. The maximum allowable power dissipation at any allowable ambient temperature is PD = (TJ(max) – TA)/θJA. Operating at the absolute maximum TJ of 150°C can affect reliability.


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