LMC6464QML

Manufacturer Part NumberLMC6464QML
ManufacturerTexas Instruments
LMC6464QML datasheet
 


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LMC6464QML
LMC6464QML Quad Micropower, Rail-to-Rail Input and Output CMOS Operational
Amplifier
Literature Number: SNOSAR8

LMC6464QML Summary of contents

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    ... LMC6464QML LMC6464QML Quad Micropower, Rail-to-Rail Input and Output CMOS Operational Amplifier Literature Number: SNOSAR8 ...

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    ... CMRR maintain accuracy in battery-powered sys- tems. Ordering Information NS Part Number SMD Part Number LMC6464AMJ-QML 5962–9560302QCA © 2010 National Semiconductor Corporation LMC6464QML Quad Features (Typical unless otherwise noted) ■ Low offset voltage. 500µV ■ Ultra Low Supply Current  23 μA/Amplifier ■ ...

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    Ceramic DIP Top View Low-Power Two-Op-Amp Instrumentation Amplifier 2 20160602 20160621 ...

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    Absolute Maximum Ratings Supply Voltage (V + − V − ) Differential Input Voltage Voltage at Input/Output Pin Current at Input Pin (Note 8) Current at Output Pin (Note 4), (Note 6) Current at Power Supply Pin Junction Temperature (Note ...

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    LMC6464 Electrical Characteristics DC Parameters: 3 Volt The following conditions apply, unless otherwise specified. Symbol Parameter V Input Offset Voltage IO I Input Bias Current IB I Input Offset Current IO CMRR Common Mode Rejection Ratio V Input Common Mode ...

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    DC Parameters: 15 Volt The following conditions apply, unless otherwise specified. Symbol Parameter V Input Offset Voltage IO I Input Bias Current IB I Input Offset Current IO CMRR Common Mode Rejection Ratio V Input Common Mode Voltage CM Range ...

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    Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is functional, but do not guarantee specific performance limits. For guaranteed specifications and test conditions, see the ...

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    Typical Performance Characteristics Supply Current vs. Supply Voltage Sourcing Current vs. Output Voltage Sinking Current vs. Output Voltage V = +5V, Single Supply Sourcing Current vs. Output Voltage 20160630 Sourcing Current vs. Output Voltage 20160632 Sinking Current vs. ...

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    Sinking Current vs. Output Voltage Input Voltage Noise vs. Input Voltage Input Voltage Noise vs. Input Voltage www.national.com Input Voltage Noise vs Frequency 20160636 Input Voltage Noise vs. Input Voltage 20160638 20160640 8 20160637 20160639 ΔV vs CMR OS 20160641 ...

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    Input Voltage vs. Output Voltage Open Loop Frequency Response vs. Temperature Slew Rate vs. Supply Voltage Open Loop Frequency Response 20160642 Gain and Phase vs. Capacitive Load 20160644 Non-Inverting Large Signal Pulse Response 20160646 9 20160643 20160645 20160647 www.national.com ...

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    Non-Inverting Large Signal Pulse Response Non-Inverting Small Signal Pulse Response Non-Inverting Small Signal Pulse Response www.national.com Non-Inverting Large Signal Pulse Response 20160648 Non-Inverting Small Signal Pulse Response 20160650 Inverting Large Signal Pulse Response 20160652 10 20160649 20160651 20160653 ...

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    Inverting Large Signal Pulse Response 20160654 Inverting Small Signal Pulse Response 20160656 Inverting Small Signal Pulse Response 20160658 Inverting Large Signal Pulse Response Inverting Small Signal Pulse Response 11 20160655 20160657 www.national.com ...

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    Application Information 1.0 INPUT COMMON-MODE VOLTAGE RANGE The LMC6464 has a rail-to-rail input common-mode voltage range. Figure 1 shows an input voltage exceeding both sup- plies with no resulting phase inversion on the output. FIGURE 1. An Input Voltage Signal ...

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    FIGURE 6. LMC6464 Non-Inverting Amplifier, Compensated to Handle a 300 pF Capacitive and 100 KΩ Resistive Load FIGURE 7. Pulse Response of LMC6464 Circuit in Figure 6 The pulse response of the circuit shown in in Figure 7. 4.0 COMPENSATING ...

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    PRINTED-CIRCUIT-BOARD LAYOUT FOR HIGH- IMPEDANCE WORK It is generally recognized that any circuit which must operate with less than 1000 pA of leakage current requires special layout of the PC board. When one wishes to take advantage of the ...

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    INSTRUMENTATION CIRCUITS The LMC6464 has the high input impedance, large common- mode range and high CMRR needed for designing instru- mentation circuits. Instrumentation circuits designed with the LMC6464 can reject a larger range of common-mode signals than most in-amps. ...

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    Typical Single-Supply Applications TRANSDUCER INTERFACE CIRCUITS FIGURE 16. Photo Detector Circuit Photocells can be used in portable light measuring instru- ments. The LMC6464, which can be operated off a battery excellent choice for this circuit because of its ...

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    For single supply 5V operation, the output of the circuit will swing from 0V to 5V. The voltage divider set will cause the non-inverting input of the LMC6464 to move 4 from 1.67V ( of 5V) to ...

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    Revision History Released Revision 12/08/2010 A New Release, Corporate format www.national.com Section 1 MDS data sheets converted into one Corp. data sheet format. MNLMC6464AM-X Rev 1A1 will be archived. 18 Changes ...

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    Physical Dimensions inches (millimeters) unless otherwise noted 14-Pin Ceramic DIP NS Package Number J14A 19 www.national.com ...

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    For more National Semiconductor product information and proven design tools, visit the following Web sites at: www.national.com Products Amplifiers www.national.com/amplifiers Audio www.national.com/audio Clock and Timing www.national.com/timing Data Converters www.national.com/adc Interface www.national.com/interface LVDS www.national.com/lvds Power Management www.national.com/power Switching Regulators www.national.com/switchers LDOs ...

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    ... Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should obtain the latest relevant information before placing orders and should verify that such information is current and complete. All products are sold subject to TI’ ...