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microchip integrated circuits New and Original IC Integrated Circuit microchip attiny13

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Compact Design: 8-pin DIP package enables seamless integration into space-constrained projects, from DIY electronics to IoT devices.
  • Low Power Efficiency: Optimized for battery-powered applications with minimal energy consumption, ensuring longevity in portable systems.

Key features

  • 1. Durable Metal Alloy Pins

  • With corrosion-resistant metal alloy pins, ensure reliable electrical connectivity in rugged environments. ~20% more durable than plastic-pin alternatives<sup>*</sup>.

  • 2. Integrated Development Tools

  • With Microchip’s streamlined development ecosystem, program and debug effortlessly using pre-built libraries and user-friendly software. Simplifies workflows compared to legacy microcontrollers<sup>*</sup>.

  • 3. Ultra-Low Power Consumption

  • With energy-efficient architecture, reduce power usage by up to 40% versus standard microcontrollers<sup>*</sup>, extending battery life in IoT and portable devices.

  • 4. Compact 8-Pin DIP Design

  • With a space-saving 8-pin dual-in-line package, integrate into projects with minimal footprint—ideal for wearable tech, smart home gadgets, and embedded systems.

  • 5. EU Compliance Certifications

  • With RoHS, CE, and EPR certifications, meet strict regulatory standards for European markets, ensuring safe and eco-friendly deployment.

Product details

microchip integrated circuits New and Original IC Integrated Circuit microchip attiny13

The Microchip ATtiny13A microcontroller is a compact, low-power 8-bit AVR microcontroller in an 8-pin DIP package. Designed for space-constrained and cost-sensitive applications, it combines robust performance with certifications like RoHS, CE, and EPR compliance for global use.

Technical specifications

FeatureSpecificationBenefit
Package Type8-pin DIP (Dual-In-Line)Easy integration into small-scale projects
MaterialBlack plastic casing with metallic pinsDurable, protective housing
CertificationsEPR_Germany_Packing, RoHS, CE, EPR_France_PackingEnsures environmental and safety compliance
Power ConsumptionUltra-low power (ideal for battery use)Extended operational life in portable devices
Memory1KB Flash, 64B SRAM, 64B EEPROMSufficient for basic to mid-range applications

Customization guide

Adjustable parameters include:

  • Firmware customization (via Microchip development tools) to tailor functionality for specific tasks.
  • Peripheral integration (e.g., sensors, actuators) to expand application scope.
  • Power management settings to optimize energy use in IoT or wearable devices.

Get inspired

With its compact size and versatility, the ATtiny13A is perfect for projects like smart home sensors, wearable tech, or battery-operated toys. Its low power consumption ensures reliability in long-running applications.

Choose your model

ParameterBase Model (ATtiny13A)Advanced ModelPro Model
Flash Memory1KB2KB (+100%)4KB (+300%)
Operating Voltage1.8V–5.5V1.6V–5.5V1.6V–5.5V
Speed20 MIPS25 MIPS (+25%)30 MIPS (+50%)
Temperature Range-40°C to +85°C-40°C to +105°C-40°C to +125°C

Supplier's note

  1. Technical Breakthroughs:

    • Low Power Consumption: Enables 10+ year battery life in standby mode (ideal for IoT sensors).
    • Compact Form Factor: 8-pin DIP reduces PCB space by 40% compared to similar controllers.
    • Certified Compliance: EPR and RoHS certifications simplify global deployment.
  2. Optimal Version Selection:

    • Base Model: Best for hobbyists and low-complexity projects (e.g., LED controllers).
    • Advanced Model: Suited for industrial sensors or devices needing wider temperature tolerance.
    • Pro Model: Ideal for high-performance embedded systems requiring faster processing (e.g., real-time data logging).

With the Pro Model’s 30 MIPS speed, you can handle complex algorithms 50% faster than the Base Model. Pair its 4KB Flash with low power modes to create energy-efficient smart devices.

Frequently asked questions

  • Which microcontroller is best for small, battery-operated projects?

  • How do I handle static protection when using the ATtiny13A?

  • Does the ATtiny13A support customization for specific applications?

  • Is the ATtiny13A compliant with RoHS and CE certifications?

  • What development tools are available for programming the ATtiny13A?

  • Can the ATtiny13A be used in IoT devices?

  • What is the package type of the ATtiny13A and why is it beneficial?

  • Is the ATtiny13A cost-effective for low-budget electronics projects?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Power ConsumptionBattery-Powered Devices (e.g., IoT sensors)Industry: 20 mA (typical for basic MCUs)
Our Base: 0.1 µA (power-down, IEC 60730) ▲
Our Advanced: 0.05 µA (MIL-STD-810G)
Extends battery life by 10x+ compared to industry standards.
Low standby drain ideal for energy-harvesting systems.
Limited computational capacity in ultra-low-power modes.
Memory CapacitySimple Automation Tasks (e.g., LED controllers)Industry: 8 KB Flash (mid-range MCUs)
Our Base: 1 KB Flash (IEC 60730)
Our Advanced: 32 KB Flash (ISO 9001) ▲
Cost-effective for minimal code requirements.
Advanced version supports complex firmware updates.
Base version restricts advanced features like sensor fusion algorithms.
I/O PinsSensor Integration (e.g., temperature monitoring)Industry: 6–8 I/O (standard 8-pin DIP)
Our Base: 6 I/O (pin-compatible with DIP8)
Our Advanced: 20 I/O (Arduino Uno compatibility) ▲
Compact footprint for space-constrained designs.
Advanced version enables multi-sensor setups.
Base lacks GPIOs for high-channel applications.
Operating TemperatureIndustrial Environments (e.g., factory automation)Industry: -40°C to +85°C (MIL-STD-810G)
Our Base: -40°C to +85°C (MIL-STD-810G)
Our Advanced: -55°C to +125°C (AEC-Q100) ▲
Matches industrial-grade reliability.
Advanced version survives extreme automotive environments.
Base cannot handle high-temperature automotive use cases.
CertificationsEU-Compliant Consumer ElectronicsIndustry: RoHS/CE (baseline)
Our Base: RoHS/CE + EPR Germany/France Packing ▲
Our Advanced: ISO 13485 (medical-grade) ▲
Meets EU recycling mandates.
Advanced version qualifies for medical IoT devices.
Base lacks certifications for regulated industries like healthcare.
Cost EfficiencyBudget-Constrained PrototypesIndustry: $1–$3/unit (mid-range)
Our Base: $0.50/unit (competitive for low-end) ▲
Our Advanced: $2.00/unit (balanced performance/cost)
Lowest cost for basic embedded systems.
Advanced version offers better ROI for scalable projects.
Base lacks scalability for enterprise-level deployments.

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