SNOSDM1 December   2025 TLV6722

PRODUCTION DATA  

  1.   1
  2. Features
  3. Applications
  4. Description
  5. Device Comparison
  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 Switching Characteristics
    7. 6.7 Typical Characteristics
  8. Parameter Measurement Information
  9. Detailed Description
    1. 8.1 Overview
    2. 8.2 Functional Block Diagram
    3. 8.3 Feature Description
    4. 8.4 Device Functional Modes
      1. 8.4.1 Separate Power Supplies (H_VCC, M_VCC)
      2. 8.4.2 Low Supply Reset Deassertion
      3. 8.4.3 Power-On Reset (POR)
      4. 8.4.4 Inputs (INT/RSTn, LPWn/PRSn(/ePPS), M_INT)
      5. 8.4.5 Outputs (M_RSTn, M_LPWn, M_CLK)
      6. 8.4.6 Switching Thresholds and Hysteresis
  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 Receiving Notification of Documentation Updates
    2. 10.2 Support Resources
    3. 10.3 Trademarks
    4. 10.4 Electrostatic Discharge Caution
    5. 10.5 Glossary
  12. 11Revision History
  13. 12Mechanical, Packaging, and Orderable Information

Typical Characteristics

TA = 25°C, H_VCC = 3.3V, M_VCC = 3.3V, RPU = 10kΩ on M_RSTn to M_VCC, CL = 15pF on M_RSTn, CL= 15pF on M_LPWn (unless otherwise noted).

TLV6722 TLV6723 TLV6724 VIT+ vs. TemperatureFigure 6-1 VIT+ vs. Temperature
TLV6722 TLV6723 TLV6724 VHYST vs. TemperatureFigure 6-3 VHYST vs. Temperature
TLV6722 TLV6723 TLV6724 R2
                        Resistance vs. TemperatureFigure 6-5 R2 Resistance vs. Temperature
TLV6722 TLV6723 TLV6724 R3
                        Resistance vs. TemperatureFigure 6-7 R3 Resistance vs. Temperature
TLV6722 TLV6723 TLV6724 R13
                        Resistance vs. TemperatureFigure 6-9 R13 Resistance vs. Temperature
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output SInking Current, M_LPWn
M_VCC = 3.3V  
Figure 6-11 Output Voltage vs. Output SInking Current, M_LPWn
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output SInking Current, M_LPWn
M_VCC = 1.8V  
Figure 6-13 Output Voltage vs. Output SInking Current, M_LPWn
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output Sourcing Current, M_LPWn
M_VCC = 3.3V  
Figure 6-15 Output Voltage vs. Output Sourcing Current, M_LPWn
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output Sourcing Current, M_LPWn
M_VCC = 1.8V  
Figure 6-17 Output Voltage vs. Output Sourcing Current, M_LPWn
TLV6722 TLV6723 TLV6724 Quiescent Current vs. H_VCCFigure 6-19 Quiescent Current vs. H_VCC
TLV6722 TLV6723 TLV6724 VIT- vs. TemperatureFigure 6-2 VIT- vs. Temperature
TLV6722 TLV6723 TLV6724 R2
                        Resistance HistogramFigure 6-4 R2 Resistance Histogram
TLV6722 TLV6723 TLV6724 R3
                        Resistance HistogramFigure 6-6 R3 Resistance Histogram
TLV6722 TLV6723 TLV6724 R13
                        Resistance HistogramFigure 6-8 R13 Resistance Histogram
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output Sinking Current, M_RSTnFigure 6-10 Output Voltage vs. Output Sinking Current, M_RSTn
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output SInking Current, M_LPWn
M_VCC = 2.5V  
Figure 6-12 Output Voltage vs. Output SInking Current, M_LPWn
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output SInking Current, M_LPWn
M_VCC = 1.1V  
Figure 6-14 Output Voltage vs. Output SInking Current, M_LPWn
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output Sourcing Current, M_LPWn
M_VCC = 2.5V  
Figure 6-16 Output Voltage vs. Output Sourcing Current, M_LPWn
TLV6722 TLV6723 TLV6724 Output Voltage vs. Output Sourcing Current, M_LPWn
M_VCC = 1.1V  
Figure 6-18 Output Voltage vs. Output Sourcing Current, M_LPWn