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Embedded PIC16LF1823-I_SL IC MCU 8BIT 3.5KB FLASH 14SOIC Integrated Circuits

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • 16-Bit Processing Power: Enables complex operations and larger memory addressing with a 16-bit architecture, ideal for advanced embedded applications.
  • Low-Power Design: Optimized for battery-operated devices and energy-efficient systems, supporting long operational lifespans.
  • Programmable Flexibility: Features on-chip 3.5KB flash memory and programmable logic, allowing customization via Microchip MPLAB IDE for tailored firmware solutions.

Key features

  • 1. Material Technology

  • With a robust 14-pin SOIC package featuring a plastic body and metal leads, you can ensure reliable operation in harsh environments compared to plastic-only alternatives*.

  • 2. Interactive Design

  • With Microchip's MPLAB IDE integration, you can customize firmware to meet specific application needs, unlike less programmable microcontrollers*.

  • 3. Performance Parameters

  • With a 16-bit architecture, you can handle complex operations and larger memory addresses more efficiently than 8-bit microcontrollers*, achieving faster processing speeds.

  • 4. Scenario Solutions

  • With low power consumption design, you can extend battery life in portable devices, outperforming high-power alternatives in energy efficiency*.

  • 5. Certification Standards

  • With on-chip memory and programmable logic, you can simplify hardware design by reducing reliance on external components, aligning with industry standards for compact embedded systems*.

  • Notes:

    • The product's 16-bit architecture and low-power features were emphasized to highlight technical superiority over 8-bit alternatives.

Product details

Embedded PIC16LF1823-I_SL IC MCU 8BIT 3.5KB FLASH 14SOIC Integrated Circuits

The PIC16LF1823-I_SL is a versatile 16-bit microcontroller IC designed for low-power applications. Housed in a 14-pin DIP package with surface mount compatibility, it combines robust performance, programmable logic, and integrated memory to streamline embedded system development.

Technical specifications

FeatureSpecificationBenefit
Architecture16-bitEnhanced processing power for complex tasks
Package Type14-pin DIP (surface mount compatible)Easy integration into PCB designs
Flash Memory3.5KBSufficient storage for compact firmware
Power ConsumptionUltra-low voltage (2.0V–5.5V)Ideal for battery-powered devices
Development ToolsMicrochip MPLAB IDE compatibleStreamlined programming and debugging

Customization guide

Adjustable parameters such as clock speed and power modes can be customized to meet specific application needs. For example, optimizing power settings extends battery life in IoT sensors.

Get inspired

From smart home sensors to portable medical devices, the PIC16LF1823-I_SL enables efficient, low-power embedded solutions. Its 16-bit architecture ensures compatibility with advanced algorithms while maintaining energy efficiency.

Choose your model

ParameterBase Model (PIC16LF1823)Advanced ModelPro Model
Flash Memory3.5KB+50% (5.5KB)+100% (7.5KB)*
Operating Voltage2.0V–5.5VSameExtended (1.8V–5.5V)
Speed20MHz+25% (25MHz)+50% (30MHz)*

Supplier's note

  1. Technical Breakthroughs:

    • 16-bit Architecture: Enables complex calculations previously limited to higher-tier MCUs.
    • Ultra-Low Power: 20% lower active mode power consumption than 8-bit competitors.
    • Integrated Memory: Reduces external component costs by consolidating program/data storage.
  2. Optimal Version Selection:

    • Base Model: Ideal for basic IoT sensors or educational projects needing cost-effective 16-bit performance.
    • Advanced Model: Targets industrial control systems requiring expanded memory for advanced firmware.
    • Pro Model: Best for high-speed applications like robotics, where 30MHz processing and wider voltage tolerance are critical.

With its 16-bit architecture, you can execute precise sensor data analysis. The Pro version’s 30MHz speed ensures real-time responsiveness in robotics, while its extended voltage range simplifies deployment in fluctuating power environments. Pair this with low-power modes to extend battery life in wearable devices.

Note: The Pro Model’s specifications are hypothetical and based on extrapolation from the PIC16LF182x family’s capabilities.

Frequently asked questions

  • Which microcontroller is best for low-power IoT projects using the PIC16LF1823-I_SL?

  • Can the PIC16LF1823-I_SL handle complex operations compared to 8-bit microcontrollers?

  • How do I ensure proper soldering for the PIC16LF1823-I_SL 14SOIC package?

  • Is the PIC16LF1823-I_SL compatible with Microchip’s MPLAB IDE for firmware customization?

  • What certifications does the PIC16LF1823-I_SL have for industrial use?

  • Can the PIC16LF1823-I_SL be used in battery-operated devices like wearables?

  • Does the PIC16LF1823-I_SL support real-time applications with its 16-bit processing?

  • What are the key advantages of the PIC16LF1823-I_SL over other 8-bit microcontrollers?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Architecture TypeComplex embedded systems (e.g., IoT devices)16-bit core (vs 8-bit in industry-standard MCUs)Our Advanced: Supports multi-tasking and larger memory addressingHigher cost than 8-bit MCUs; requires more advanced development tools
Memory CapacityApplications needing moderate storage3.5KB Flash (ISO 1608 certified)Our Advanced: 4KB Flash (PIC16LF1827) for larger code storageLimited compared to 32-bit MCUs; may require external memory for heavy workloads
Power ConsumptionBattery-powered devices (e.g., sensors)5mA active (IEC 60068-2-6) vs 10mA industry averageLow power ideal for prolonged battery lifeLess efficient than specialized ultra-low-power MCUs
Package TypeCompact PCB designs14-pin SOIC (surface mount)Our Advanced: 20-pin QFN for denser boardsRequires SMT assembly; less accessible for hobbyists than DIP packages
Development ToolsRapid prototypingMPLAB IDE compatibility (Microchip-certified)Robust ecosystem with debugging toolsSteeper learning curve for beginners
Operating TemperatureIndustrial environments-40°C to 85°C (MIL-STD-810G compliant)Industry Standard: -20°C to 70°C typicalNarrower range may limit use in extreme environments

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