Manufacturer Part Number
S-1133B30-U5T1G
Manufacturer
ablic
Introduction
The ablic S-1133B30-U5T1G is a high-performance, low-dropout (LDO) linear voltage regulator designed for a wide range of power management applications. This device offers a fixed 3V output with a maximum output current of 300mA, making it suitable for various electronic devices that require a stable and efficient power supply.
Product Features and Performance
Fixed 3V output voltage
Maximum output current of 300mA
Low dropout voltage of 0.19V at 100mA
Ultra-low quiescent current of 1μA
High power supply rejection ratio (PSRR) of 65dB at 1kHz
Enable control feature
Over-current and thermal shutdown protection
Product Advantages
Efficient power management with low power consumption
Stable and reliable output voltage regulation
Compact surface-mount package (SOT-89-5/6) for space-saving design
Robust protection features for increased safety and reliability
Key Reasons to Choose This Product
Optimized for low-power applications with its ultra-low quiescent current
Provides a reliable and regulated power supply for a wide range of electronic devices
Compact size and surface-mount packaging enable efficient integration into small form factor designs
Robust protection features ensure the safety and longevity of the device and the overall system
Quality and Safety Features
Thermal shutdown protection to prevent overheating and damage
Over-current protection to safeguard the device and the connected load
Compatibility
The ablic S-1133B30-U5T1G is compatible with a variety of electronic devices and systems that require a 3V fixed-output voltage regulator.
Application Areas
Portable electronics
Industrial automation equipment
Sensor and control systems
IoT devices
Wearable electronics
Product Lifecycle
The ablic S-1133B30-U5T1G is currently an active product and is not designated as 'Not For New Designs'. However, customers are advised to contact our website's sales team for the latest product information and availability, as product lifecycles can change over time.