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LM13700N Dual Operational Transconductance amplifier ic chip with Linearizing Diodes / Buffers

Anterwell Technology Ltd.
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    Buy cheap LM13700N Dual Operational Transconductance amplifier ic chip with Linearizing Diodes / Buffers from wholesalers
     
    Buy cheap LM13700N Dual Operational Transconductance amplifier ic chip with Linearizing Diodes / Buffers from wholesalers
    • Buy cheap LM13700N Dual Operational Transconductance amplifier ic chip with Linearizing Diodes / Buffers from wholesalers

    LM13700N Dual Operational Transconductance amplifier ic chip with Linearizing Diodes / Buffers

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    Brand Name : NSC
    Model Number : LM13700N
    Certification : Original Factory Pack
    Price : Negotiate
    Payment Terms : T/T, Western Union,Paypal
    Supply Ability : 20000
    Delivery Time : 1
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    LM13700N Dual Operational Transconductance amplifier ic chip with Linearizing Diodes / Buffers


    LM13700N Dual Operational Transconductance amplifier ic chip with Linearizing Diodes / Buffers


    General Description


    The LM13700 series consists of two current controlled transconductance amplifiers, each with differential inputs and a push-pull output. The two amplifiers share common supplies but otherwise operate independently. Linearizing diodes are provided at the inputs to reduce distortion and allow higher input levels. The result is a 10 dB signal-to-noise improvement referenced to 0.5 percent THD. High impedance buffers are provided which are especially designed to complement the dynamic range of the amplifiers. The output buffers of the LM13700 differ from those of the LM13600 in that their input bias currents (and hence their output DC levels) are independent of IABC. This may result in performance superior to that of the LM13600 in audio applications.


    Connection Diagram

    Features

    ♦gm adjustable over 6 decades

    ♦Excellent gm linearity

    ♦Excellent matching between amplifiers

    ♦Linearizing diodes

    ♦High impedance buffers

    ♦High output signal-to-noise ratio


    Applications

    ♦Current-controlled amplifiers

    ♦Current-controlled impedances

    ♦Current-controlled filters

    ♦Current-controlled oscillators

    ♦Multiplexers

    ♦Timers

    ♦Sample-and-hold circuits


    Typical Performance Characteristics

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