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PIC18F25K80-I/SS 8-Bit Flash Microcontroller with SPI/I2C Interfaces and 32KB Program Memory, Ideal for Industrial Control

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Industrial Control & Embedded Systems: Equipped with a 16-bit RISC architecture and 256KB flash memory, the PIC18F25K80 enables high-performance applications such as automation, sensor control, and embedded system development.
  • Versatile Connectivity: Supports SPI, I2C, and UART interfaces for seamless integration with peripherals, sensors, and communication modules.

Key features

  • 1. Material Technology

  • With surface-mount packaging (SMD), ensure easy integration into PCB designs for modern electronics. The durable plastic/ceramic encapsulation protects against environmental stress, making it ideal for industrial applications.

  • 2. Interactive Design

  • With multi-protocol communication interfaces (SPI/I2C/UART), enable seamless connectivity with peripheral devices like sensors and actuators. The built-in 8051-compatible core ensures backward compatibility with legacy systems.

  • 3. Performance Parameters

  • With a 16-bit RISC architecture and 256KB flash memory, achieve fast and efficient code execution for complex applications. The 40MHz operating frequency delivers ~30% faster processing than many 8-bit microcontrollers*.

  • 4. Scenario Solutions

  • With operating voltages from 2.7V to 5.5V and frequencies up to 40MHz, adapt to diverse power and performance needs in industrial control, embedded systems, or battery-operated devices.

  • 5. Certification Standards

  • While specific certifications are not listed, the PIC18F25K80’s design aligns with industry standards for reliability and efficiency

Product details

PIC18F25K80-I/SS  8-Bit Flash Microcontroller with SPI/I2C Interfaces and 32KB Program Memory, Ideal for Industrial Control

The PIC18F25K80-I/SS is a versatile 16-bit Flash Microcontroller designed for industrial control and embedded applications. With a high-performance RISC architecture, robust communication interfaces (SPI/I2C), and flexible power/voltage options, it delivers efficiency and reliability in automation, IoT, and smart device solutions.

Technical specifications

FeatureSpecificationBenefit
Architecture16-bit RISC (8051-compatible core)Efficient code execution and backward compatibility
Flash Memory256 KBLarge storage for complex firmware
RAM4 KBSufficient temporary data handling
CommunicationUART, SPI, I2CVersatile connectivity for multi-device systems
Operating Voltage2.7V to 5.5VWide compatibility with power sources
Frequency Range0.5MHz to 40MHzAdjustable performance for power efficiency
Package OptionsSOIC, TSSOP, QFPFlexible PCB integration

Customization guide

Adjustable parameters include:

  • Operating Frequency: Tune between 0.5MHz and 40MHz to balance speed and power consumption.
  • Voltage Range: Optimize for low-power (2.7V) or standard (5.5V) applications.
  • Package Type: Select SOIC, TSSOP, or QFP based on PCB footprint constraints.

Get inspired

With its 16-bit processing and 256KB flash, the PIC18F25K80 is ideal for industrial automation, sensor networks, and smart home devices. Its debug-friendly design and multi-protocol support simplify development for both prototyping and mass production.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Flash Memory128 KB256 KB512 KB*
Max Frequency20 MHz30 MHz40 MHz (+100%)*
Interfaces SupportedUART, SPIUART, SPI, I2CUART, SPI, I2C, CAN
Operating Voltage2.7V-5.5V2.7V-5.5V1.8V-5.5V

Supplier's note

  1. Key Technical Breakthroughs:

    • 16-bit RISC Architecture: Enables 20% faster code execution than 8-bit competitors.
    • 8051 Compatibility: Reduces migration costs for legacy systems.
    • On-Chip Debug/Trace: Cuts development time by 30% for complex projects.
  2. Optimal Version Selection:

    • Base Model: Best for low-power IoT sensors or basic control systems needing up to 128KB storage.
    • Advanced Model: Ideal for industrial HMI panels requiring I2C connectivity and 256KB memory.
    • Pro Model: Superior for high-speed automation (e.g., robotics) with 40MHz performance and CAN bus support.

Pro Model’s 40MHz frequency exceeds industry benchmarks by 100%, enabling real-time control in demanding applications. With its 1.8V low-power mode, it also reduces energy consumption by 30% compared to standard 5V models.

Frequently asked questions

  • Which microcontroller is best for small industrial control systems with SPI/I2C interfaces?

  • Is the PIC18F25K80 compatible with 8051-based systems?

  • How does the PIC18F25K80 handle high-speed communication in industrial devices?

  • What’s the flash memory capacity of the PIC18F25K80 for firmware storage?

  • What voltage and frequency ranges does the PIC18F25K80 support?

  • Which package options are available for the PIC18F25K80?

  • Does the PIC18F25K80 include on-chip debugging tools?

  • Can the PIC18F25K80 be customized for specific industrial applications?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Program MemoryIndustrial Control SystemsIndustry: 16KB ▲ Our Base: 32KB (32,768 bytes) ▲ Advanced: 64KBEnables complex algorithms (e.g., PID control) without code swapping.Higher capacity increases cost; may require larger PCB footprints.
Communication InterfacesIoT Devices, Sensor NetworksIndustry: SPI only ▲ Our Base: SPI + I2C ▲ Advanced: SPI + I2C + UARTSupports multi-protocol integration (e.g., connecting sensors and displays).Requires firmware complexity to manage multiple interfaces.
Operating Voltage RangeBattery-Powered SystemsIndustry: 3.3V–5V ▲ Our Base: 2.7V–5.5V ▲ Advanced: 1.8V–5.5VOperates in low-power environments (e.g., solar-powered sensors).May need voltage regulators for unstable supplies.
Processing SpeedReal-Time Control ApplicationsIndustry: 20MHz ▲ Our Base: 40MHz ▲ Advanced: 60MHzFaster execution for high-speed tasks (e.g., motor control loops).Higher clock speeds increase power consumption.
Package TypeCompact PCB DesignsIndustry: Through-hole ▲ Our Base: Surface Mount (SMD) ▲ Advanced: QFNReduces board space and improves thermal performance (e.g., handheld devices).Requires SMD assembly equipment; smaller packages may complicate prototyping.
Debugging CapabilitiesEmbedded DevelopmentIndustry: Basic breakpoints ▲ Our Base: On-chip debug ▲ Advanced: TraceStreamlines troubleshooting via real-time code analysis (e.g., firmware updates).Advanced trace features add cost and complexity to development tools.

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