SLLSFO4C December   2022  – September 2023 ISOM8710 , ISOM8711

PRODMIX  

  1.   1
  2. Features
  3. Applications
  4. Description
  5. Revision History
  6. Device Comparison
  7. Pin Configuration and Functions
  8. Specifications
    1. 7.1  Absolute Maximum Ratings
    2. 7.2  ESD Ratings
    3. 7.3  Recommended Operating Conditions
    4. 7.4  Thermal Information
    5. 7.5  Power Ratings
    6. 7.6  Insulation Specifications
    7. 7.7  Safety-Related Certifications
    8. 7.8  Safety Limiting Values
    9. 7.9  Electrical Characteristics—DC 
    10. 7.10 Switching Characteristics, ISOM8710
    11. 7.11 Switching Characteristics, ISOM8711
    12. 7.12 Typical Characteristics
  9. Parameter Measurement Information
  10. Detailed Description
    1. 9.1 Overview
    2. 9.2 Functional Block Diagram
    3. 9.3 Feature Description
    4. 9.4 Device Functional Modes
  11. 10Application and Implementation
    1. 10.1 Application Information
    2. 10.2 Typical Application
      1. 10.2.1 Design Requirements
      2. 10.2.2 Detailed Design Procedure
        1. 10.2.2.1 Sizing RIN
        2. 10.2.2.2 Driving the Input with a Buffer
        3. 10.2.2.3 Calculating RL for ISOM8711
      3. 10.2.3 Application Curves
    3. 10.3 Power Supply Recommendations
    4. 10.4 Layout
      1. 10.4.1 Layout Guidelines
      2. 10.4.2 Layout Example
  12. 11Device and Documentation Support
    1. 11.1 Documentation Support
    2. 11.2 Receiving Notification of Documentation Updates
    3. 11.3 Support Resources
    4. 11.4 Trademarks
    5. 11.5 Electrostatic Discharge Caution
    6. 11.6 Glossary
  13. 12Mechanical, Packaging, and Orderable Information

Package Options

Mechanical Data (Package|Pins)
  • DFF|5
Thermal pad, mechanical data (Package|Pins)
Orderable Information

Typical Characteristics

ISOM8710 ISOM8711 Input Threshold Current vs Ambient Temperature
ISOM871x
Figure 7-1 Input Threshold Current vs Ambient Temperature
ISOM8710 ISOM8711 Output Voltage vs Input Forward Current
ISOM8710TA = 25 °C
Figure 7-3 Output Voltage vs Input Forward Current
ISOM8710 ISOM8711 Low-Level Output Voltage vs Ambient Temperature
IF = 6 mAISOM8710IOL = 2 mA
Figure 7-5 Low-Level Output Voltage vs Ambient Temperature
ISOM8710 ISOM8711 Low-Level Output Voltage vs Ambient Temperature
IF = 6 mAISOM8710IOL = 4 mA
Figure 7-7 Low-Level Output Voltage vs Ambient Temperature
ISOM8710 ISOM8711 High-Level Output Voltage vs Ambient Temperature
IF = 6 mAISOM8710IOH = 2 mA
Figure 7-9 High-Level Output Voltage vs Ambient Temperature
ISOM8710 ISOM8711 Output Supply Current vs Data Rate
IF = 6 mAISOM8710CL = 0 pF
Figure 7-11 Output Supply Current vs Data Rate
ISOM8710 ISOM8711 Output Supply Current vs Data Rate
IF = 6 mAISOM8710CL = 15 pF
Figure 7-13 Output Supply Current vs Data Rate
ISOM8710 ISOM8711 Logic LOW Output Supply Current vs Ambient Temperature
IF = 6 mAISOM8710
Figure 7-15 Logic LOW Output Supply Current vs Ambient Temperature
ISOM8710 ISOM8711 Logic HIGH Output Supply Current vs Ambient Temperature
IF = 0 mAISOM8710
Figure 7-17 Logic HIGH Output Supply Current vs Ambient Temperature
ISOM8710 ISOM8711 Propagation Delay Time vs Ambient Temperature
ISOM8710VCC = 3.3 V
Figure 7-19 Propagation Delay Time vs Ambient Temperature
ISOM8710 ISOM8711 Propagation Delay Time vs Ambient Temperature
ISOM8710VCC = 5 V
Figure 7-21 Propagation Delay Time vs Ambient Temperature
ISOM8710 ISOM8711 Pulse Width Distortion vs Ambient Temperature
IF = 6 mAISOM8710
Figure 7-23 Pulse Width Distortion vs Ambient Temperature
ISOM8710 ISOM8711 Pulse Width Distortion vs Supply Voltage
IF = 6 mAISOM8710CL = 15 pF
Figure 7-25 Pulse Width Distortion vs Supply Voltage
ISOM8710 ISOM8711 Input Forward Current vs Input Forward Voltage
ISOM871x
Figure 7-2 Input Forward Current vs Input Forward Voltage
ISOM8710 ISOM8711 Output Voltage vs Input Forward Current
ISOM8711 TA = 25 °C
Figure 7-4 Output Voltage vs Input Forward Current
ISOM8710 ISOM8711 Low-Level Output Voltage vs Ambient
                        Temperature
IF = 6 mA ISOM8711 IOL = 2 mA
Figure 7-6 Low-Level Output Voltage vs Ambient Temperature
ISOM8710 ISOM8711 Low-Level Output Voltage vs Ambient
                        Temperature
IF = 6 mA ISOM8711 IOL = 4 mA
Figure 7-8 Low-Level Output Voltage vs Ambient Temperature
ISOM8710 ISOM8711 High-Level Output Voltage vs Ambient Temperature
IF = 6 mAISOM8710IOL = 4 mA
Figure 7-10 High-Level Output Voltage vs Ambient Temperature
ISOM8710 ISOM8711 Output Supply Current vs Data Rate
IF = 6 mA ISOM8711 CL = 0 pF
Figure 7-12 Output Supply Current vs Data Rate
ISOM8710 ISOM8711 Output Supply Current vs Data Rate
IF = 6 mA ISOM8711 CL = 15 pF
Figure 7-14 Output Supply Current vs Data Rate
ISOM8710 ISOM8711 Logic LOW Output Supply Current vs Ambient
                        Temperature
IF = 6 mA ISOM8711
Figure 7-16 Logic LOW Output Supply Current vs Ambient Temperature
ISOM8710 ISOM8711 Logic HIGH Output Supply Current vs Ambient
                        Temperature
IF = 0 mA ISOM8711
Figure 7-18 Logic HIGH Output Supply Current vs Ambient Temperature
ISOM8710 ISOM8711 Propagation Delay Time vs Ambient
                        Temperature
ISOM8711 VCC = 3.3 V
Figure 7-20 Propagation Delay Time vs Ambient Temperature
ISOM8710 ISOM8711 Propagation Delay Time vs Ambient
                        Temperature
ISOM8711 VCC = 5 V
Figure 7-22 Propagation Delay Time vs Ambient Temperature
ISOM8710 ISOM8711 Pulse Width Distortion vs Ambient
                        Temperature
IF = 6 mA ISOM8711
Figure 7-24 Pulse Width Distortion vs Ambient Temperature
ISOM8710 ISOM8711 Pulse Width Distortion vs Supply Voltage
IF = 6 mA ISOM8711 CL = 15 pF
Figure 7-26 Pulse Width Distortion vs Supply Voltage