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PIC16LF1933-I/SO

Updated: 2026-07-23

Overview

The PIC16LF1933-I/SO is an 8-bit microcontroller from Microchip Technology, designed for low-power and high-performance applications. It is part of the PIC16F193x family, which is known for its enhanced mid-range core with 49 instructions, 16 stack levels, and a wide operating voltage range (1.8V to 5.5V). The microcontroller is housed in a SOIC (Small Outline Integrated Circuit) package, making it suitable for space-constrained designs. This MCU is particularly well-suited for battery-powered and energy-efficient applications due to its nanoWatt XLP (eXtreme Low Power) technology. It offers a variety of peripherals, including timers, communication interfaces (UART, SPI, I2C), and analog-to-digital converters (ADC), making it versatile for different embedded system needs.

Structure and Working Principle

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The PIC16LF1933-I/SO features a Harvard architecture with separate program and data memory spaces, allowing for efficient instruction execution. It includes 28 KB of Flash program memory, 1 KB of RAM, and 256 bytes of EEPROM for data storage. The enhanced core supports a 49-instruction set, with hardware multiplier and divider for faster arithmetic operations. The microcontroller operates on a wide voltage range, making it adaptable to various power supply conditions. Its low-power modes, such as Sleep and Idle, significantly reduce power consumption, which is critical for battery-operated devices. The integrated peripherals, including ADC, PWM, and communication interfaces, enable seamless interaction with external sensors, actuators, and other devices.

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Key Features

One of the standout features of the PIC16LF1933-I/SO is its nanoWatt XLP technology, which ensures ultra-low power consumption in active and sleep modes. This makes it ideal for applications where energy efficiency is paramount, such as wireless sensors and portable devices. The microcontroller also boasts a robust set of peripherals, including multiple timers, communication interfaces (UART, SPI, I2C), and a 10-bit ADC with up to 24 channels. Its enhanced core provides improved performance with hardware multiplier and divider, enabling faster computation. Additionally, the SOIC package offers a compact footprint, making it suitable for designs with limited board space.

Application Areas

The PIC16LF1933-I/SO is widely used in various industries due to its low-power and high-performance characteristics. In consumer electronics, it is commonly found in remote controls, smart home devices, and wearable technology. Its energy efficiency makes it a popular choice for battery-powered applications. In industrial automation, this microcontroller is used for control systems, sensor interfacing, and data logging. Its robust peripheral set and reliable performance make it suitable for harsh industrial environments. Additionally, the PIC16LF1933-I/SO is employed in IoT devices, where low power consumption and connectivity features are essential for seamless operation.

Maintenance and Precautions

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To ensure the longevity and reliability of the PIC16LF1933-I/SO, proper handling and maintenance are crucial. Always use ESD (Electrostatic Discharge) precautions when handling the microcontroller to prevent damage from static electricity. Proper power supply decoupling is also essential to minimize noise and ensure stable operation. When designing the PCB, ensure adequate grounding and thermal management to avoid overheating. Follow the manufacturer's guidelines for voltage levels and current requirements to prevent damage to the device. Regularly update the firmware to leverage the latest features and bug fixes provided by Microchip Technology.

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B2B Procurement Guide

When procuring the PIC16LF1933-I/SO in bulk, it is important to consider factors such as lead time, supplier reliability, and pricing. Microchip Technology and authorized distributors are the most reliable sources for genuine components. Bulk pricing typically ranges from approximately $1.50 to $3.00 per unit, depending on order volume and market conditions. Ensure that the supplier provides proper documentation, including datasheets and compliance certificates. It is also advisable to request samples for testing before placing large orders. Consider long-term availability and alternative sources to mitigate supply chain risks. For custom requirements, consult with Microchip's technical support for tailored solutions.

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