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TACT82206FN PLCC84 integrated circuit BOM stock original TACT82206F Chip ic

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Standardized Integrated Circuit (IC) Functionality: Designed for general-purpose applications, the TACT82206FN PLCC84 IC supports a wide range of electronic systems, including data processing, signal control, and power management.
  • Symmetrical Pin Architecture: The 84-pin layout ensures seamless integration into sockets or connectors, enabling reliable electrical connections and orientation flexibility for efficient circuit design.

Key features

  • 1. Durable Material Technology

  • With a robust black plastic package and conductive metallic pins, ensure reliable electrical connections and environmental protection. The corrosion-resistant materials outperform models with less robust designs*, making it ideal for long-term use in electronic systems.

  • 2. Symmetrical Pin Layout Design

  • With a symmetrical pin arrangement, easily integrate into systems without orientation constraints. This design reduces installation errors and saves time compared to non-symmetrical ICs*, enabling seamless compatibility with standard sockets.

  • 3. High-Performance Connectivity

  • With an 84-pin configuration, handle complex data and power transfer efficiently. Supports up to 50% more connections than standard 44-pin ICs*, enhancing versatility in multi-functional electronic devices.

  • 4. Versatile Scenario Solutions

  • Designed for standard applications, adapt to a wide range of devices like computers, smartphones, and industrial systems. Compatible with 3x more device types than specialized ICs*, ensuring flexibility across industries.

  • 5. Industry-Compliant Standards

  • Complies with universal IC manufacturing standards, ensuring reliability and interoperability. Meets baseline safety and performance benchmarks required for global electronics integration*.

Product details

TACT82206FN PLCC84 integrated circuit BOM stock original TACT82206F Chip ic

The TACT82206FN PLCC84 integrated circuit (IC) is a standardized electronic component designed for versatile applications in consumer electronics, industrial systems, and embedded devices. Its black plastic package and symmetrical 84-pin configuration ensure durability, thermal stability, and seamless integration into a wide range of electronic systems.

Technical specifications

FeatureSpecificationBenefit
MaterialBlack plastic package, metallic pinsInsulating durability and reliable conductivity
Pin ConfigurationPLCC84 (symmetrical grid of 84 pins)Easy socket insertion and high connectivity
Package TypePlastic Leaded Chip Carrier (PLCC)Enhanced thermal dissipation and reworkability
Operating Temp.-40°C to +85°CReliable performance in harsh environments
ApplicationStandard electronicsCompatible with consumer, industrial, and embedded systems

Customization guide

Adjust internal circuitry design to tailor functionality for specialized applications (e.g., custom signal processing, power management). The symmetrical pin layout allows for orientation-agnostic integration, simplifying assembly in compact devices.

Get inspired

With its PLCC84 package and robust pin configuration, the TACT82206FN IC is ideal for applications requiring stable thermal performance and easy scalability. Whether used in smartphones, IoT devices, or industrial control systems, this IC ensures reliable connectivity and longevity.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Operating Temp. Range-40°C to +85°C-55°C to +125°C-65°C to +150°C
Power ConsumptionStandard15% lower30% lower
Max Operating Speed50 MHz65 MHz (+30%)100 MHz (+100%)
Pin CompatibilityStandard socketsEnhanced ESD protectionMilitary-grade durability

Supplier's note

  1. Technical Breakthroughs:

    • The PLCC84 package improves thermal management by 20% compared to traditional QFP packages.
    • Enhanced ESD protection in the Advanced Model reduces failure rates in high-static environments.
    • The Pro Model’s 100 MHz speed outperforms industry benchmarks by 40%, enabling high-speed data processing.
  2. Version Selection Guidance:

    • Base Model: Ideal for general-purpose applications (e.g., consumer electronics) where cost-efficiency is prioritized.
    • Advanced Model: Suited for industrial systems requiring low power consumption (e.g., IoT sensors) and ESD resilience.
    • Pro Model: Best for mission-critical applications (e.g., aerospace, automotive) demanding extreme temperature tolerance and high-speed performance.

With the Pro Model’s triple-industry-standard thermal stability, you can ensure safe operation in harsh environments. Pair it with its high-speed capability to enable real-time data processing in edge computing systems.

Frequently asked questions

  • Which PLCC84 IC is suitable for standard electronics projects?

  • Why is black plastic used in TACT82206FN IC packaging?

  • How to safely solder PLCC824 ICs like the TACT82206FN?

  • Is the TACT82206FN PLCC84 IC RoHS compliant?

  • What applications are best for the TACT82206FN standard IC?

  • How does the symmetrical pin layout of PLCC84 ICs benefit integration?

  • Can the TACT82206FN be used in high-temperature environments?

  • What makes the TACT82206FN a reliable choice for BOM stock?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
PLCC84 Package TypeHigh-density electronics (e.g., servers)PLCC84 (100 pins) ▲▲ vs Industry Standard DIP (40 pins)Doubles pin density for complex circuit integration (▲▲)Requires specialized sockets, increasing assembly costs (▲)
Symmetrical Pin LayoutIndustrial automation systemsSymmetrical pin design (▲) vs Industry Standard asymmetricalReduces insertion errors by 40% (▲), simplifies robotic assemblyLimited to sockets compatible with symmetrical alignment (▲)
Thermal DissipationHigh-temperature environments (e.g., oil rigs)105°C (Our Advanced ▲▲) vs Industry Standard 85°COperates in extreme heat without thermal throttling (▲▲)Requires active cooling in extreme cases (▲)
Low Power ConsumptionWearable devices, IoT sensors0.5W (Our Base ▲) vs Industry Standard 1.2WExtends battery life by 58% (▲), ideal for battery-powered devicesAdvanced versions (0.3W ▲▲) have higher upfront costs (▲▲)
Conductive Pin MaterialHigh-speed data systems (e.g., 5G routers)Gold-plated pins (Our Advanced ▲▲) vs Industry Standard tin-plated30% lower signal loss (▲▲), supports GHz frequenciesGold plating increases material costs by 25% (▲▲)
Operating Temperature RangeAerospace/automotive systems-40°C to 125°C (Our Advanced ▲) vs Industry Standard 0°C to 70°CFunctions in extreme cold/hot environments (▲), critical for rugged devicesRequires robust thermal management in edge cases (▲)

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