NJL5193K

Reflective optical switches with phototransistor output for sensing applications

Manufacturer: njr

series introduction

# NJL5193K Product Series Introduction

## 1. Overview
The NJL5193K product series is a cutting - edge offering in the field of electronic components, specifically designed to meet the diverse and demanding requirements of modern electronic systems. These components are engineered with high precision and advanced technology, making them suitable for a wide range of applications across various industries.

## 2. Key Features

### 2.1 High - Performance Operation
- **Low Power Consumption**: The NJL5193K series is optimized for energy efficiency. It consumes minimal power during operation, which is crucial for battery - powered devices. This low power consumption not only extends the battery life of portable electronics but also reduces the overall energy costs in larger systems.
- **High - Speed Processing**: With its advanced internal architecture, the NJL5193K can handle high - speed data processing tasks. It is capable of quickly executing complex algorithms and operations, enabling real - time data analysis and response in applications such as industrial automation and high - speed communication systems.

### 2.2 Excellent Signal Quality
- **Low Noise**: The components in the NJL5193K series are designed to minimize electrical noise. This results in a clean and stable signal output, which is essential for accurate data transmission and reception. In audio applications, for example, low noise ensures high - fidelity sound reproduction.
- **High Signal - to - Noise Ratio (SNR)**: A high SNR means that the desired signal is much stronger than the background noise. The NJL5193K series achieves a high SNR, which enhances the reliability and performance of the system, especially in noisy environments.

### 2.3 Robustness and Reliability
- **Wide Operating Temperature Range**: These components can operate effectively over a wide temperature range, from extremely cold to very hot environments. This makes them suitable for use in outdoor applications, automotive electronics, and industrial settings where temperature variations are common.
- **High ESD Tolerance**: Electrostatic discharge (ESD) can damage electronic components. The NJL5193K series has a high ESD tolerance, which protects the components from sudden electrostatic shocks, increasing their lifespan and reducing the risk of system failures.

## 3. Technical Specifications

### 3.1 Electrical Characteristics
- **Supply Voltage**: The NJL5193K typically operates within a specific supply voltage range, for example, from 2.7V to 5.5V. This wide voltage range allows for compatibility with different power sources and system requirements.
- **Output Current**: It can provide a certain amount of output current, which is sufficient to drive various loads. The output current rating is carefully designed to meet the needs of different applications, such as powering small sensors or driving LEDs.

### 3.2 Package and Dimensions
- **Compact Package**: The NJL5193K is available in a compact package, which saves board space. This is particularly important in modern electronic devices where miniaturization is a key trend. The small package size also allows for easy integration into existing circuit designs.
- **Standard Pin Configuration**: The pin configuration of the NJL5193K follows industry - standard practices, making it easy to connect and interface with other components on the printed circuit board (PCB).

## 4. Applications

### 4.1 Consumer Electronics
- **Smartphones and Tablets**: In mobile devices, the NJL5193K can be used for power management, signal processing, and sensor interfaces. Its low power consumption and high - speed processing capabilities help to improve the performance and battery life of these devices.
- **Wearable Devices**: Wearable electronics such as smartwatches and fitness trackers require components that are small, energy - efficient, and reliable. The

Partlist

NJL5193K
NJL5193K-F1
NJL5193K-F10
NJL5193K-F2
NJL5193K-F3