SLLSFV3B December   2025  – August 2026 ISO6040 , ISO6041 , ISO6042

PRODMIX  

  1.   1
  2. 1 Features
  3. 2 Applications
  4. 3 Description
  5.   5
  6. 4 Device Comparison
  7. 5 Pin Configuration and Functions
  8. 6 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-5V Supply
    10. 6.10 Supply Current Characteristics-5V Supply
    11. 6.11 Electrical Characteristics-3.3V Supply
    12. 6.12 Supply Current Characteristics-3.3V Supply
    13. 6.13 Electrical Characteristics-2.5V Supply 
    14. 6.14 Supply Current Characteristics-2.5V Supply
    15. 6.15 Electrical Characteristics-1.8V Supply 
    16. 6.16 Supply Current Characteristics-1.8V Supply
    17. 6.17 Switching Characteristics-5V Supply
    18. 6.18 Switching Characteristics-3.3V Supply
    19. 6.19 Switching Characteristics-2.5V Supply
    20. 6.20 Switching Characteristics-1.8V Supply
    21. 6.21 Insulation Characteristics Curves
    22. 6.22 Typical Characteristics
  9.   31
  10. 7 Parameter Measurement Information
  11. 8 Detailed Description
    1. 8.1 Overview
    2. 8.2 Functional Block Diagram
    3. 8.3 Feature Description
      1. 8.3.1 Electromagnetic Compatibility (EMC) Considerations
    4. 8.4 Device Functional Modes
    5. 8.5 Device I/O Schematics
    6. 8.6 Overvoltage Tolerant Input
  12. 9 Application and Implementation
    1. 9.1 Application Information
    2. 9.2 Typical Application
      1. 9.2.1 Design Requirements
      2. 9.2.2 Detailed Design Procedure
      3. 9.2.3 Application Curve
    3. 9.3 Power Supply Recommendations
    4. 9.4 Layout
      1. 9.4.1 Layout Guidelines
      2. 9.4.2 Layout Example
  13. 10Device and Documentation Support
    1. 10.1 Documentation Support
      1. 10.1.1 Related Documentation
    2. 10.2 Receiving Notification of Documentation Updates
    3. 10.3 Support Resources
    4. 10.4 Device Nomenclature
    5. 10.5 Trademarks
    6. 10.6 Electrostatic Discharge Caution
    7. 10.7 Glossary
  14. 11Revision History
  15. 12Mechanical, Packaging, and Orderable Information
    1.     62
    2.     63
    3.     64

Recommended Operating Conditions

over operating free-air temperature range (unless otherwise noted)
MIN NOM MAX UNIT
VCC_RO(1) Supply Voltage Side 1 and Side 2 (Recommended Operating Range) VCC1 = 1.8V to 5V (3) 1.71 5.5 V
VCC_UVLO+ VCC UVLO threshold when supply voltage is rising    1.52 1.70 V
VCC_UVLO– VCC UVLO threshold when supply voltage is falling    1.2 1.41
VCC_UVLO_HYS VCC Supply voltage UVLO hysteresis 0.075 0.09
VIH(ENx) Enable (ENx): High level input voltage   0.7 × VCCI (2) VCCI V
VIL(ENx) Enable (ENx): High level input voltage   0 0.3 × VCCI
VIMAX(ENx) Enable (ENx): maximum input voltage   0 5.5
VIH(INx) Input (INx): High level input voltage 0.7 × VCCI (2) VCCI V
VIL(INx) Input (INx): Low level input voltage 0 0.3 × VCCI
VIMAX(INx) Input (INx): maximum input voltage 0 5.5
IOH Output (OUTx): High level output current VCCO = 5V (2) -4 mA
VCCO = 3.3V (2) -2
VCCO = 2.5V (2) -1
VCCO = 1.8V (2) -1
IOL Output (OUTx): Low level output current VCCO = 5V (2) 4 mA
VCCO = 3.3V (2) 2
VCCO = 2.5V (2) 1
VCCO = 1.8V (2) 1
DR Data Rate 2.25V ≤ VCCx ≤ 5.5V
and CL≤15pF(4)
0 200 Mbps
1.71V ≤ VCCx < 2.25V
and CL≤10pF(4)
0 200
1.71V ≤ VCCx < 2.25V
and 10pF < CL≤ 15pF(4)
0 150
TA Ambient temperature -40 25 125 °C
VCC1 and VCC2 can be set independent of one another
VCCI = Input-side VCC; VCCO = Output-side VCC
The channel outputs are in undetermined state when VCC_UVLO– ≤ VCC1, VCC2 < VCC_RO(MIN).
See Section 7 .