SBOSAM6 January   2000  – December 2024 LMC6035-Q1

PRODUCTION DATA  

  1.   1
  2. 1 Features
  3. 2 Applications
  4. 3 Description
  5. 4 Pin Configuration and Functions
  6. 5 Specifications
    1. 5.1 Absolute Maximum Ratings
    2. 5.2 ESD Ratings
    3. 5.3 Recommended Operating Conditions
    4. 5.4 Thermal Information
    5. 5.5 Electrical Characteristics
    6. 5.6 Typical Characteristics
  7. 6 Detailed Description
    1. 6.1 Overview
    2. 6.2 Functional Block Diagram
  8. 7 Application and Implementation
    1. 7.1 Application Information
      1. 7.1.1 Capacitive Load Tolerance
    2. 7.2 Typical Applications
      1. 7.2.1 Differential Driver
      2. 7.2.2 Low-Pass Active Filter
        1. 7.2.2.1 Low-Pass Frequency Scaling Procedure
      3. 7.2.3 High-Pass Active Filter
        1. 7.2.3.1 High-Pass Frequency Scaling Procedure
      4. 7.2.4 Dual-Amplifier Bandpass Filter
        1. 7.2.4.1 DABP Component Selection Procedure
    3. 7.3 Layout
      1. 7.3.1 Layout Guidelines
        1. 7.3.1.1 Printed Circuit Board (PCB) Layout for High-Impedance Work
      2. 7.3.2 Layout Example
  9. 8 Device and Documentation Support
    1. 8.1 Receiving Notification of Documentation Updates
    2. 8.2 Support Resources
    3.     Trademarks
    4. 8.3 Electrostatic Discharge Caution
    5. 8.4 Glossary
  10. 9 Revision History
  11. 10Mechanical, Packaging, and Orderable Information

Typical Characteristics

at VS = 2.7V, single supply, and TA = 25°C (unless otherwise noted)

LMC6035-Q1 Supply Current vs Supply
                        Voltage (Per Amplifier)Figure 5-1 Supply Current vs Supply Voltage (Per Amplifier)
LMC6035-Q1 Sourcing Current vs Output
                        VoltageFigure 5-3 Sourcing Current vs Output Voltage
LMC6035-Q1 Sinking Current vs  Output
                        VoltageFigure 5-5 Sinking Current vs Output Voltage
LMC6035-Q1 Output Voltage Swing vs  Supply
                        VoltageFigure 5-7 Output Voltage Swing vs Supply Voltage
LMC6035-Q1 Input Noise vs 
                        FrequencyFigure 5-9 Input Noise vs Frequency
LMC6035-Q1 Amp to Amp Isolation vs 
                        FrequencyFigure 5-11 Amp to Amp Isolation vs Frequency
LMC6035-Q1 −PSRR vs 
                        FrequencyFigure 5-13 −PSRR vs Frequency
LMC6035-Q1 CMRR vs Input
                        VoltageFigure 5-15 CMRR vs Input Voltage
LMC6035-Q1 Input Voltage vs  Output
                        VoltageFigure 5-17 Input Voltage vs Output Voltage
LMC6035-Q1 Frequency Response vs 
                        TemperatureFigure 5-19 Frequency Response vs Temperature
LMC6035-Q1 Gain and Phase vs  Capacitive
                        LoadFigure 5-21 Gain and Phase vs Capacitive Load
LMC6035-Q1 Slew Rate vs  Supply
                        VoltageFigure 5-23 Slew Rate vs Supply Voltage
LMC6035-Q1 Non-Inverting Large Signal
                        ResponseFigure 5-25 Non-Inverting Large Signal Response
LMC6035-Q1 Non-Inverting Small Signal
                        ResponseFigure 5-27 Non-Inverting Small Signal Response
LMC6035-Q1 Non-Inverting Large Signal
                        ResponseFigure 5-29 Non-Inverting Large Signal Response
LMC6035-Q1 Inverting Large Signal
                        ResponseFigure 5-31 Inverting Large Signal Response
LMC6035-Q1 Inverting Small Signal
                        ResponseFigure 5-33 Inverting Small Signal Response
LMC6035-Q1 Inverting Small Signal
                        ResponseFigure 5-35 Inverting Small Signal Response
LMC6035-Q1 Stability vs  Capacitive
                        LoadFigure 5-37 Stability vs Capacitive Load
LMC6035-Q1 Stability vs  Capacitive
                        LoadFigure 5-39 Stability vs Capacitive Load
LMC6035-Q1 Stability vs  Capacitive
                        LoadFigure 5-41 Stability vs Capacitive Load
LMC6035-Q1 Input Bias Current vs
                        TemperatureFigure 5-2 Input Bias Current vs Temperature
LMC6035-Q1 Sourcing Current vs  Output
                        VoltageFigure 5-4 Sourcing Current vs Output Voltage
LMC6035-Q1 Sinking Current vs  Output
                        VoltageFigure 5-6 Sinking Current vs Output Voltage
LMC6035-Q1 Input Noise vs 
                        FrequencyFigure 5-8 Input Noise vs Frequency
LMC6035-Q1 Amp to Amp Isolation vs 
                        FrequencyFigure 5-10 Amp to Amp Isolation vs Frequency
LMC6035-Q1 +PSRR vs 
                        FrequencyFigure 5-12 +PSRR vs Frequency
LMC6035-Q1 CMRR vs 
                        FrequencyFigure 5-14 CMRR vs Frequency
LMC6035-Q1 CMRR vs Input
                        VoltageFigure 5-16 CMRR vs Input Voltage
LMC6035-Q1 Input Voltage vs  Output
                        VoltageFigure 5-18 Input Voltage vs Output Voltage
LMC6035-Q1 Frequency Response vs 
                        TemperatureFigure 5-20 Frequency Response vs Temperature
LMC6035-Q1 Gain and Phase vs  Capacitive
                        LoadFigure 5-22 Gain and Phase vs Capacitive Load
LMC6035-Q1 Non-Inverting Large Signal
                        ResponseFigure 5-24 Non-Inverting Large Signal Response
LMC6035-Q1 Non-Inverting Large Signal
                        ResponseFigure 5-26 Non-Inverting Large Signal Response
LMC6035-Q1 Non-Inverting Small Signal
                        ResponseFigure 5-28 Non-Inverting Small Signal Response
LMC6035-Q1 Inverting Large Signal
                        ResponseFigure 5-30 Inverting Large Signal Response
LMC6035-Q1 Inverting Large Signal
                        ResponseFigure 5-32 Inverting Large Signal Response
LMC6035-Q1 Inverting Small Signal
                        ResponseFigure 5-34 Inverting Small Signal Response
LMC6035-Q1 Stability vs  Capacitive
                        LoadFigure 5-36 Stability vs Capacitive Load
LMC6035-Q1 Stability vs  Capacitive
                        LoadFigure 5-38 Stability vs Capacitive Load
LMC6035-Q1 Stability vs  Capacitive
                        LoadFigure 5-40 Stability vs Capacitive Load