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KL5C80A12CF KL5C80A16CFP KL5C80A20C KL5C80A16CF New Original Chip ic

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Performance Microcontroller Functionality: The KL5C80 series chips are 8-bit microcontrollers designed for embedded systems, industrial control, and IoT applications. They support complex instruction sets for data processing, communication protocols, and real-time task management.
  • Multi-Purpose Circuit Integration: Equipped with built-in memory, timers, and communication interfaces (e.g., UART, SPI), these chips enable seamless integration into systems requiring low-power operation and robust signal processing capabilities.

Key features

  • 1. High-Performance Silicon-Based Construction

  • With a silicon-based integrated circuit design, ensure reliable operation in high-stress environments while maintaining precision and longevity.

  • 2. Programmable Multi-Scenario Adaptability

  • With programmable presets and versatile control capabilities, customize operations for applications ranging from industrial automation to consumer electronics.

  • 3. Energy-Efficient Low-Power Design

  • With optimized power consumption technology, reduce energy use by up to 25% compared to conventional ICs* [*Disclaimer: Based on internal testing; actual results may vary].

  • 4. Industry-Standard Compatibility

  • With compliance to global electronics standards, guarantee seamless integration into existing systems and adherence to safety and quality regulations.

  • 5. Robust Durability for Diverse Applications

  • With corrosion-resistant metal leads and stable material composition, withstand harsh conditions and ensure reliability in both commercial and industrial settings.

Product details

KL5C80A12CF KL5C80A16CFP KL5C80A20C KL5C80A16CF New Original Chip ic

The KL5C80 series of integrated circuits (ICs) delivers high-performance microcontroller solutions for embedded systems, robotics, and industrial applications. Designed to meet rigorous industry standards, these chips combine low power consumption with advanced processing capabilities, making them ideal for both basic and complex electronic systems.

Technical specifications

FeatureSpecificationBenefit
Microcontroller Core8-bit AVR architectureEnsures compatibility with a wide range of applications.
Power Consumption< 0.1mA (sleep mode)With ultra-low power modes, extend battery life in portable devices.
Processing Speed20 MIPS at 20MHz clock speedHandle real-time data processing efficiently.
Memory16KB Flash, 1KB SRAM (varies by model)Store complex algorithms and temporary data.
CertificationsRoHS compliant, ISO 9001 certifiedEnsure safety and reliability for global use.

Customization guide

Adjustable parameters such as clock speed and memory allocation can be tailored to meet specific requirements. For instance, optimizing power settings for low-energy IoT devices or increasing SRAM for high-data-processing tasks.

Get inspired

From automating home systems to industrial control panels, the KL5C80 series empowers engineers to build smarter, more efficient electronics. Whether you’re prototyping a robot or designing a smart sensor, these chips provide the flexibility to innovate.

Choose your model

ParameterBase Model (KL5C80A12CF)Advanced Model (KL5C80A16CFP)Pro Model (KL5C80A20C)
Power EfficiencyBaseline+15% power savings+30% power savings*
Processing Speed15 MIPS18 MIPS20 MIPS
Flash Memory8KB12KB16KB
Operating Temp-20°C to +70°C-40°C to +85°C-40°C to +105°C

Supplier's note

  1. Three Technical Breakthroughs:

    • Low Power Consumption: The Pro model’s sleep mode consumes 30% less power than industry benchmarks, ideal for battery-operated devices.
    • Enhanced Processing Speed: With 20 MIPS, the Pro model outperforms competitors by 25%, enabling real-time data analysis.
    • Wider Temperature Range: The Pro’s -40°C to +105°C tolerance ensures reliability in extreme environments, such as automotive or industrial systems.
  2. Optimal Version Selection:

    • Base Model: Best for hobbyist projects or simple sensors where cost and basic functionality are priorities.
    • Advanced Model: Suitable for moderate applications like smart home devices, balancing power efficiency and memory needs.
    • Pro Model: Recommended for industrial automation or robotics requiring high-speed processing and extreme durability. With its triple-certified chemical resistance (noted in specs), it safely handles corrosive environments when paired with its robust thermal performance.

*Comparative hints: The Pro model’s power savings are 20% faster than traditional 8-bit microcontrollers.

Frequently asked questions

  • Which KL5C80 series IC model is best suited for embedded systems in robotics applications?

  • How do I choose between the KL5C80A16CFP and KL5C80A20C for battery-powered IoT devices?

  • Are KL5C80 ICs RoHS-compliant and suitable for industrial use?

  • Can the KL5C80A16CF be customized for specific circuit designs?

  • What’s the difference between silicon and metal-packaged KL5C80 ICs?

  • How do I ensure proper installation of KL5C80 series transistors in power circuits?

  • Are KL5C80A12CF microcontrollers suitable for high-temperature industrial applications?

  • What applications are best suited for the KL5C80A16CFP’s standard specifications?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Microcontroller Units (MCUs)Embedded systems, IoT devicesClock Speed: 16MHz (Industry Standard) ▲ 20MHz (Base) ▲ 24MHz (Advanced) (IEC 60068-2-32)Enhanced processing for complex algorithms (e.g., real-time data analysis)Higher power consumption than 8-bit MCUs (150mW vs. 80mW for 8-bit)
Memory ICsData logging, configuration storageFlash Memory: 8KB (Standard) ▲ 12KB (Base) ▲ 16KB (Advanced) (ISO/IEC 17025)Stores 50% more data for firmware updates (16KB holds 4,096 bytes)Slower write cycles (500kHz vs. 1MHz for faster flash)
Power Management ICsBattery-operated devicesQuiescent Current: 1µA (Standard) ▲ 0.8µA (Base) ▲ 0.5µA (Advanced) (JEDEC JESD22-A108)Extends battery life by 30% in wearables (tested via IEC 61960)Limited voltage regulation range (2.7V–5.5V vs. 1.8V–5.5V in premium chips)
Signal Processing ICsAudio/video systemsSNR: 70dB (Standard) ▲ 75dB (Base) ▲ 80dB (Advanced) (IEC 60268-17)Crisper audio output (80dB matches studio-grade equipment)Requires precise calibration for optimal performance (±0.5dB tolerance)
Communication ICsWireless sensors, IoT networksTransmission Range: 50m (Standard) ▲ 75m (Base) ▲ 100m (Advanced) (FCC Part 15)Reliable long-distance data transfer (tested in 2.4GHz ISM band)Potential interference in crowded bands (measured at -85dBm sensitivity)
Analog-to-Digital ConvertersIndustrial sensorsResolution: 10-bit (Standard) ▲ 12-bit (Base) ▲ 16-bit (Advanced) (NIST SP 300-20)16-bit resolution captures 65,536 values (ideal for medical devices)Increased power draw with higher resolution (12-bit: 1.2mA vs. 16-bit: 2.5mA)

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.