Manufacturer Part Number
TL7709ACD
Manufacturer
Texas Instruments
Introduction
The TL7709ACD from Texas Instruments is a Power Management (PMIC) Supervisor, specifically designed for monitoring voltage thresholds and providing reset signals to ensure proper operation of microprocessor systems.
Product Features and Performance
Integrates simple reset/power-on reset functionalities.
Monitors one voltage level with a 7.6V threshold.
Features open drain or open collector output for versatile interfacing.
Offers reset functionalities in both active high and active low configurations.
Ensures rapid response with a maximum propagation delay of 1µs.
Operable within a 0°C to 70°C temperature range.
Surface mountable 8-SOIC packaging for space-efficient design.
Product Advantages
Simplifies power management in microprocessor systems.
High precision voltage monitoring improves system reliability.
Dual reset options increase compatibility with various circuit designs.
Fast response time minimizes system downtime.
Small footprint facilitates integration into space-constrained designs.
Key Technical Parameters
Voltage Threshold: 7.6V
Output Type: Open Drain or Open Collector
Reset Type: Active High/Active Low
Reset Timeout: 1µs Maximum Propagation Delay
Operating Temperature Range: 0°C ~ 70°C
Mounting Type: Surface Mount
Package: 8-SOIC
Quality and Safety Features
Manufactured by Texas Instruments, a leader in semiconductor solutions.
Rigorous quality control and testing ensure reliable operation.
Compatibility
Compatible with microprocessor systems requiring precise voltage monitoring.
Flexible output and reset options for broader application use.
Application Areas
Microprocessor Systems
Embedded Systems
Power Management Circuits
Product Lifecycle
Status: Active
Indicates ongoing production and support, with no current sign of discontinuation.
Availability of replacements or upgrades is typically ensured for active products.
Several Key Reasons to Choose This Product
Proven reliability from a trusted semiconductor manufacturer.
High precision voltage monitoring enhances system stability.
Versatile output and reset configurations support varied design requirements.
Quick response to fault conditions minimizes potential system damage.
Compact and efficient design simplifies incorporation into existing and new designs.