SCES640J january   2007  – july 2023 TXS0102

PRODUCTION DATA  

  1.   1
  2. Features
  3. Applications
  4. Description
  5. Revision History
  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  Electrical Characteristics
    6. 6.6  Timing Requirements: VCCA = 1.8 V ±0.15 V
    7. 6.7  Timing Requirements: VCCA = 2.5 V ± 0.2 V
    8. 6.8  Timing Requirements: VCCA = 3.3 V ± 0.3 V
    9. 6.9  Switching Characteristics: VCCA = 1.8 V ± 0.15 V
    10. 6.10 Switching Characteristics: VCCA = 2.5 V ± 0.2 V
    11. 6.11 Switching Characteristics: VCCA = 3.3 V ± 0.3 V
    12. 6.12 Typical Characteristics
  8. Parameter Measurement Information
  9. Detailed Description
    1. 8.1 Overview
    2. 8.2 Functional Block Diagram
    3. 8.3 Feature Description
      1. 8.3.1 Architecture
      2. 8.3.2 Input Driver Requirements
      3. 8.3.3 Output Load Considerations
      4. 8.3.4 Enable and Disable
      5. 8.3.5 Pullup or Pulldown Resistors on I/O Lines
    4. 8.4 Device Functional Modes
  10. 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 Curves
    3. 9.3 Power Supply Recommendations
    4. 9.4 Layout
      1. 9.4.1 Layout Guidelines
      2. 9.4.2 Layout Example
  11. 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 Trademarks
    5. 10.5 Electrostatic Discharge Caution
    6. 10.6 Glossary
  12. 11Mechanical, Packaging, and Orderable Information

Package Options

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

Recommended Operating Conditions

VCCI is the supply voltage associated with the input port. VCCO is the supply voltage associated with the output port.
MINMAXUNIT
VCCASupply voltage(1)1.653.6V
VCCBSupply voltage2.35.5V
VIHHigh-level
input voltage
A-port I/OsVCCA = 1.65 V to 1.95 V
VCCB = 2.3 V to 5.5 V
VCCI  – 0.2VCCIV
VCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
VCCI  – 0.4VCCI
B-port I/OsVCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
VCCI  – 0.4VCCIV
OE inputVCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
VCCA × 0.655.5V
VIL(2) Low-level
input voltage
A-port I/OsVCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
00.15V
B-port I/OsVCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
00.15V
OE inputVCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
0VCCA  × 0.35V
Δt/ΔvInput transition
rise or fall rate
A-port I/Os
push-pull driving
VCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
10ns/V
B-port I/Os
push-pull driving
VCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
10ns/V
Control inputVCCA = 1.65 V to 3.6 V
VCCB = 2.3 V to 5.5 V
10ns/V
TAOperating free-air temperature–4085°C
VCCA must be less than or equal to VCCB, and VCCA must not exceed 3.6 V.
The maximum VIL value is provided to ensure that a valid VOL is maintained. The VOL value is VIL plus the voltage drop across the pass-gate transistor.