SLVSKZ2 September   2026 SN74CBTLV3125-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 Switching Characteristics
    7. 5.7 Typical Characteristics
  7. 6 Parameter Measurement Information
  8. 7 Detailed Description
    1. 7.1 Overview
    2. 7.2 Functional Block Diagram
    3. 7.3 Feature Description
    4. 7.4 Device Functional Modes
  9. 8 Application and Implementation
    1. 8.1 Application Information
    2. 8.2 Typical Application
      1. 8.2.1 Design Requirements
      2. 8.2.2 Detailed Design Procedure
    3. 8.3 Power Supply Recommendations
    4. 8.4 Layout
      1. 8.4.1 Layout Guidelines
      2. 8.4.2 Layout Example
  10. 9 Device and Documentation Support
    1. 9.1 Documentation Support
    2. 9.2 Receiving Notification of Documentation Updates
    3. 9.3 Support Resources
    4. 9.4 Trademarks
    5. 9.5 Electrostatic Discharge Caution
    6. 9.6 Glossary
  11. 10Revision History
  12. 11Mechanical, Packaging, and Orderable Information

Electrical Characteristics

over recommended operating free-air temperature range -40 to 125°C (unless otherwise noted)
PARAMETERTEST CONDITIONSMINTYPMAX(1)UNIT
VIKVCC = 3V, II = −18mA-1.2V
IIVCC = 3.6V, VI = VCC or GND±1µA
IoffVCC = 0, VI or VO = 0 to 3.6V10µA
ICCVCC = 3.6V, IO = 0, VI = VCC or GND10µA
∆ICC(2)Control inputsVCC = 3.6V, one input at 3V, other inputs at VCC or GND300µA
CiControl inputsVI = 3V or 02.5pF
Cio(OFF)VO = 3V or 0, OE = VCC7pF
ron(3)VCC = 2.3V,
TYP at VCC = 2.5V
VI = 0II = 64mA510Ω
II = 24mA510
VI = 1.7V, II = 15mA2740
VCC = 3VVI = 0II = 64mA59
II = 24mA59
VI = 2.4V, II = 15mA1020
All typical values are at VCC = 3.3V, TA = 25°C (unless otherwise noted).
This is the increase in supply current for each input that is at the specified voltage level, rather than VCC or GND.
Measured by the voltage drop between the A and B terminals at the indicated current through the switch. On-state resistance is determined by the lower of the voltages of the two (A or B) terminals.