SBAS734D March   2017  – August 2026 AMC1306E05 , AMC1306E25 , AMC1306M05 , AMC1306M25

PRODUCTION DATA  

  1.   1
  2. Features
  3. Applications
  4. Description
  5. Device Comparison Table
  6. Pin Configuration and Functions
  7. Specifications
    1. 6.1  Absolute Maximum Ratings
    2. 6.2  ESD Ratings
    3. 6.3  Recommended Operating Conditions
    4. 6.4  Thermal Information
    5. 6.5  Power Ratings
    6. 6.6  Insulation Specifications
    7. 6.7  Safety-Related Certifications
    8. 6.8  Safety Limiting Values
    9. 6.9  Electrical Characteristics (AMC1306x05)
    10. 6.10 Electrical Characteristics (AMC1306x25)
    11. 6.11 Switching Characteristics
    12. 6.12 Timing Diagrams
    13. 6.13 Insulation Characteristics Curves
    14. 6.14 Typical Characteristics
  8. Detailed Description
    1. 7.1 Overview
    2. 7.2 Functional Block Diagram
    3. 7.3 Feature Description
      1. 7.3.1 Analog Input
      2. 7.3.2 Modulator
      3. 7.3.3 Isolation Channel Signal Transmission
      4. 7.3.4 Digital Output
      5. 7.3.5 Manchester Coding Feature
    4. 7.4 Device Functional Modes
      1. 7.4.1 Fail-Safe Output
      2. 7.4.2 Output Behavior in Case of a Full-Scale Input
  9. Application and Implementation
    1. 8.1 Application Information
      1. 8.1.1 Digital Filter Usage
    2. 8.2 Typical Applications
      1. 8.2.1 Frequency Inverter Application
        1. 8.2.1.1 Design Requirements
        2. 8.2.1.2 Detailed Design Procedure
        3. 8.2.1.3 Application Curve
      2. 8.2.2 Isolated Voltage Sensing
        1. 8.2.2.1 Design Requirements
        2. 8.2.2.2 Detailed Design Procedure
        3. 8.2.2.3 Application Curve
      3. 8.2.3 What To Do and What Not To Do
    3. 8.3 Power Supply Recommendations
    4. 8.4 Layout
      1. 8.4.1 Layout Guidelines
      2. 8.4.2 Layout Example
  10. Device and Documentation Support
    1. 9.1 Device Support
      1. 9.1.1 Device Nomenclature
        1. 9.1.1.1 Isolation Glossary
    2. 9.2 Documentation Support
      1. 9.2.1 Related Documentation
    3. 9.3 Receiving Notification of Documentation Updates
    4. 9.4 Support Resources
    5. 9.5 Trademarks
    6. 9.6 Electrostatic Discharge Caution
    7. 9.7 Glossary
  11. 10Revision History
  12. 11Mechanical, Packaging, and Orderable Information

Typical Characteristics

at AVDD = 5V, DVDD = 3.3V, AINP = –50mV to 50mV (AMC1306x05) or –250mV to 250mV (AMC1306x25), AINN = AGND, fCLKIN = 20MHz, and sinc3 filter with OSR = 256 (unless otherwise noted)

AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Maximum Operating Common-Mode Input Voltage vs High-Side Supply Voltage
Figure 6-6 Maximum Operating Common-Mode Input Voltage vs High-Side Supply Voltage
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Input Bias Current vs  Common-Mode Input Voltage
Figure 6-8 Input Bias Current vs Common-Mode Input Voltage
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Integral Nonlinearity vs Temperature
Figure 6-10 Integral Nonlinearity vs Temperature
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Offset Error vs Temperature
Figure 6-12 Offset Error vs Temperature
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Gain Error vs High-Side Supply Voltage
Figure 6-14 Gain Error vs High-Side Supply Voltage
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Gain Error vs Clock Frequency
Figure 6-16 Gain Error vs Clock Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs High-Side Supply Voltage
Figure 6-18 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs High-Side Supply Voltage
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Clock Frequency
Figure 6-20 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Clock Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Input Signal Amplitude
Figure 6-22 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Input Signal Amplitude
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Total Harmonic Distortion
                        vs High-Side Supply Voltage (5V, nom)
fCLKIN = 21MHz
Figure 6-24 Total Harmonic Distortion vs High-Side Supply Voltage (5V, nom)
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Total Harmonic Distortion vs Temperature
Figure 6-26 Total Harmonic Distortion vs Temperature
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Total Harmonic Distortion vs  Input Signal Frequency
Figure 6-28 Total Harmonic Distortion vs Input Signal Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Total Harmonic Distortion vs  Input Signal Amplitude
AMC1306x05
Figure 6-30 Total Harmonic Distortion vs Input Signal Amplitude
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Spurious-Free Dynamic Range vs Temperature
Figure 6-32 Spurious-Free Dynamic Range vs Temperature
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Spurious-Free Dynamic Range vs  Input Signal Frequency
Figure 6-34 Spurious-Free Dynamic Range vs Input Signal Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Spurious-Free Dynamic Range vs  Input Signal Amplitude
AMC1306x05
Figure 6-36 Spurious-Free Dynamic Range vs Input Signal Amplitude
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Frequency Spectrum with
                        10kHz Input Signal
AMC1306x05, 4096-point FFT, VIN = 100mVPP
Figure 6-38 Frequency Spectrum with 10kHz Input Signal
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Frequency Spectrum with
                        10kHz Input Signal
AMC1306x25, 4096-point FFT, VIN = 500mVPP
Figure 6-40 Frequency Spectrum with 10kHz Input Signal
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 High-Side Supply Current vs Temperature
Figure 6-42 High-Side Supply Current vs Temperature
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Controller-Side Supply Current vs  Controller-Side Supply Voltage
Figure 6-44 Controller-Side Supply Current vs Controller-Side Supply Voltage
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Controller-Side Supply Current vs  Clock Frequency
Figure 6-46 Controller-Side Supply Current vs Clock Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Common-Mode Overvoltage Detection Level vs Temperature
Figure 6-7 Common-Mode Overvoltage Detection Level vs Temperature
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Common-Mode Rejection Ratio vs  Input Signal Frequency
Figure 6-9 Common-Mode Rejection Ratio vs Input Signal Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Offset Error vs High-Side Supply Voltage
Figure 6-11 Offset Error vs High-Side Supply Voltage
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Offset Error vs Clock Frequency
Figure 6-13 Offset Error vs Clock Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Gain Error vs Temperature
Figure 6-15 Gain Error vs Temperature
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Power-Supply Rejection Ratio vs  Ripple Frequency
Figure 6-17 Power-Supply Rejection Ratio vs Ripple Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Temperature
Figure 6-19 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Temperature
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Input Signal Frequency
Figure 6-21 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Input Signal Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Input Signal Amplitude
Figure 6-23 Signal-to-Noise Ratio and Signal-to-Noise + Distortion vs Input Signal Amplitude
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Total Harmonic Distortion
                        vs High-Side Supply Voltage (3.3V, nom)
fCLKIN = 20MHz
Figure 6-25 Total Harmonic Distortion vs High-Side Supply Voltage (3.3V, nom)
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Total Harmonic Distortion vs Clock Frequency
Figure 6-27 Total Harmonic Distortion vs Clock Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Total Harmonic Distortion vs  Input Signal Amplitude
AMC1306x25
Figure 6-29 Total Harmonic Distortion vs Input Signal Amplitude
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Spurious-Free Dynamic Range vs  High-Side Supply Voltage
Figure 6-31 Spurious-Free Dynamic Range vs High-Side Supply Voltage
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Spurious-Free Dynamic Range vs  Clock Frequency
Figure 6-33 Spurious-Free Dynamic Range vs Clock Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Spurious-Free Dynamic Range vs  Input Signal Amplitude
AMC1306x25
Figure 6-35 Spurious-Free Dynamic Range vs Input Signal Amplitude
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Frequency Spectrum with
                        1kHz Input Signal
AMC1306x05, 4096-point FFT, VIN = 100mVPP
Figure 6-37 Frequency Spectrum with 1kHz Input Signal
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Frequency Spectrum with
                        1kHz Input Signal
AMC1306x25, 4096-point FFT, VIN = 500mVPP
Figure 6-39 Frequency Spectrum with 1kHz Input Signal
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 High-Side Supply Current vs  High-Side Supply Voltage
Figure 6-41 High-Side Supply Current vs High-Side Supply Voltage
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 High-Side Supply Current vs Clock Frequency
Figure 6-43 High-Side Supply Current vs Clock Frequency
AMC1306E05 AMC1306E25 AMC1306M05 AMC1306M25 Controller-Side Supply Current vs Temperature
Figure 6-45 Controller-Side Supply Current vs Temperature