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S-1131B18UC-N4DTFG from SEIKO

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S-1131B18UC-N4DTFG

Manufacturer: SEIKO

HIGH RIPPLE-REJECTION LOW DROPOUT MIDDLE OUTPUT CURRENT CMOS VOLTAGE REGULATOR

Partnumber Manufacturer Quantity Availability
S-1131B18UC-N4DTFG,S1131B18UCN4DTFG SEIKO 12000 In Stock

Description and Introduction

HIGH RIPPLE-REJECTION LOW DROPOUT MIDDLE OUTPUT CURRENT CMOS VOLTAGE REGULATOR **Introducing the S-1131B18UC-N4DTFG: A High-Performance Voltage Regulator for Precision Applications**  

In today’s fast-evolving electronics landscape, reliable voltage regulation is critical for ensuring optimal performance in a wide range of applications. The **S-1131B18UC-N4DTFG** stands out as a high-efficiency, low-dropout (LDO) voltage regulator designed to meet the demands of power-sensitive devices.  

Engineered for precision, this component delivers a stable **1.8V output** with an ultra-low dropout voltage, making it ideal for battery-powered systems, IoT devices, and portable electronics where energy efficiency is paramount. Its advanced design minimizes power loss, extending battery life while maintaining consistent performance under varying load conditions.  

Key features of the **S-1131B18UC-N4DTFG** include:  
- **Low Quiescent Current**: Optimized for energy efficiency, reducing standby power consumption.  
- **High Ripple Rejection**: Ensures clean, stable output even in noisy environments.  
- **Compact Package**: The small form factor makes it suitable for space-constrained PCB designs.  
- **Built-in Protection**: Overcurrent and thermal shutdown safeguards enhance reliability.  

With a wide input voltage range and fast transient response, this regulator excels in applications such as wireless communication modules, embedded systems, and sensor networks. Its robust performance under varying temperatures further ensures reliability in industrial and automotive environments.  

For engineers seeking a dependable voltage regulation solution, the **S-1131B18UC-N4DTFG** combines efficiency, precision, and durability—making it a top choice for next-generation electronic designs.

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