Manufacturer Part Number
VN808SR13TR
Manufacturer
stmicroelectronics
Introduction
The VN808SR13TR from stmicroelectronics is a power management integrated circuit (PMIC), specifically designed for power distribution switches and load drivers, belonging to the VIPOWER™ series.
Product Features and Performance
Part of the VIPOWER™ series, designed for efficient power distribution and load driving.
8 output channels for comprehensive power management solutions.
Supports high side switch configuration using N-Channel outputs.
Features auto-restart and status flag for improved operational efficiency and monitoring.
Equipped with fixed current limiting and over-temperature fault protection for enhanced safety.
Operates over a wide temperature range from -40°C to 125°C.
Product Advantages
Multi-output capability allows for versatile power management applications.
High side switch architecture facilitates simpler design for load switching.
Built-in safety features reduce the risk of damage from over-current and excessive temperature conditions.
Capable of being directly operated without an external power supply (Vcc/Vdd).
Key Technical Parameters
Output Configuration: High Side
Voltage Load: 10.5V to 45V
Current Output (Max): 700mA
Rds On (Typ): 150mOhm
Operating Temperature: -40°C to 125°C
Quality and Safety Features
Features current limiting and over-temperature fault protection.
Auto restart functionality ensures reliability and continuity of operation.
Compatibility
Surface Mount technology for integration in a broad range of PCB designs.
Packaged in PowerSO-36, Bottom Pad for compatibility with modern assembly techniques.
Application Areas
Automotive electronics
Power management systems
Industrial control systems
Product Lifecycle
Classified as Obsolete, indicating end-of-life status with limited availability.
Users should consider planning for replacements or upgrades.
Several Key Reasons to Choose This Product
Comprehensive power management with 8 outputs enhances device functionality.
Built-in safety protections contribute to longer product life and reduced risk of failure.
Wide operating voltage and temperature ranges support diverse application requirements.
Obsolescence status necessitates consideration for future-proofing designs.