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Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB

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    Buy cheap Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB from wholesalers
     
    Buy cheap Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB from wholesalers
    • Buy cheap Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB from wholesalers
    • Buy cheap Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB from wholesalers
    • Buy cheap Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB from wholesalers
    • Buy cheap Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB from wholesalers
    • Buy cheap Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB from wholesalers
    • Buy cheap Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB from wholesalers

    Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB

    Ask Lasest Price
    Brand Name : Texas Instruments
    Model Number : LMV762MMX/NOPB
    Certification : /
    Price : Negotiation
    Payment Terms : T/T
    Supply Ability : 9999999+PCS
    Delivery Time : 2-7 work days
    • Product Details
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    Amplifier CD7388CZ IC 225ns Automotive Texas Instruments LMV762MMX/NOPB

    Amplifier IC Chips Texas Instruments/TI LMV762MMX/NOPB

    ECAD ModulePCB Symbol,Footprint & 3D Model
    Estimated EOL Date2028
    PopularityMedium
    Fake Threat In the Open Market30 pct.
    Supply and Demand StatusBalance
    Alternative Parts
    (Cross-Reference)
    LMV762QMM/NOPB; HA1631D03MMEL-E; HA1631D01MMEL-E;
    Halogen FreeCompliant
    Country of OriginMalaysia
    ECCNEAR99
    Manufacturer Package8-VSSOP
    MountingSMD
    Package8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
    Operating Temperature Range-40°C ~ 125°C
    Family NameLMV762
    Introduction DateJuly 17, 2002
    Current - Input Bias (Maximum)50pA @ 5V
    Voltage - Input Offset (Maximum)0.2mV @ 5V
    Maximum Quiescent Current700μA
    Output TypePush-Pull
    Number of Elements2
    PackagingReel - TR
    ManufacturerTexas Instruments
    CategoriesIntegrated Circuits (ICs)
    Propagation Delay (Maximum)225ns
    CMRR, PSRR (Typ)100dB CMRR, 110dB PSRR
    Dual Supply Voltage (±)2.7 V ~ 5 V

    Features for the LMV762

    • VS = 5 V, TA = 25°C, Typical Values Unless
      Specified
    • Input Offset Voltage 0.2 mV
    • Input Offset Voltage (Maximum Over Temp) 1 mV
    • Input Bias Current 0.2 pA
    • Propagation Delay (OD = 50 mV) 120 ns
    • Low Supply Current 300 µA
    • CMRR 100 dB
    • PSRR 110 dB
    • Extended Temperature Range −40°C to +125°C
    • Push-Pull Output
    • Ideal for 2.7-V and 5-V Single-Supply Applications
    • Available in Space-Saving Packages:
      •  6-Pin SOT-23 (Single With Shutdown)
      •  8-Pin SOIC (Single With Shutdown)
      •  8-Pin SOIC and VSSOP (Dual Without
        Shutdown)
    • LMV762Q-Q1 is Qualified for Automotive
      Applications
    • AEC-Q100 Qualified With the Following Results:
      • Device Temperature Grade 1: –40°C to
        +125°C Ambient Operating Temperature
        Range
      • Device HBM ESD Classification Level 1C
      • Device CDM ESD Classification Level M2

    Description for the LMV762

    The LMV76x devices are precision comparators intended for applications requiring low noise and low input offset voltage. The LMV761 single has a shutdown pin that can be used to disable the device and reduce the supply current. The LMV761 is available in a space-saving 6-pin SOT-23 or 8-Pin SOIC package. The LMV762 dual is available in 8-pin SOIC or VSSOP package. The LMV762Q-Q1 is available VSSOP and SOIC packages.

    These devices feature a CMOS input and push-pull output stage. The push-pull output stage eliminates the need for an external pullup resistor.

    The LMV76x are designed to meet the demands of small size, low power and high performance required by portable and battery-operated electronics.

    The input offset voltage has a typical value of 200 µV at room temperature and a 1-mV limit over temperature.

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