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N87C196KJ PLCC84 integrated circuit BOM stock original N87C196K Chip ic

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Integrated Circuit Processing: The N87C196KJ PLCC84 IC is designed for high-performance processing and memory management in electronic systems, supporting applications such as data processing, control systems, and embedded solutions.
  • Surface-Mount Technology (SMT) Compatibility: Its PLCC84 (Plastic Leaded Chip Carrier) package with symmetrical metallic pins enables seamless integration into compact circuit boards using SMT, ensuring reliable electrical connectivity.

Key features

  • 1. Material Technology

  • With a durable ceramic/plastic composite body and corrosion-resistant metallic pins, you can ensure long-term reliability in high-stress electronic systems.*

  • 2. Interactive Design

  • With a symmetrical pin layout optimized for surface-mount technology (SMT), you can achieve precise, error-free assembly in automated production lines.*

  • 3. Performance Parameters

  • With a PLCC84 package design, you can achieve high-speed signal transmission and low-power operation, outperforming DIP packages in compact systems.*

  • 4. Scenario Solutions

  • With a balance of performance and space efficiency, you can deploy this IC in compact devices like smartphones, IoT gadgets, or industrial controllers.*

  • 5. Certification Standards

  • With compliance to industry-standard manufacturing protocols (e.g., RoHS, IPC), you can ensure seamless adoption in globally regulated electronics markets.*

Product details

N87C196KJ PLCC84 integrated circuit BOM stock original N87C196K Chip ic

The N87C196KJ PLCC84 integrated circuit is a high-reliability semiconductor component designed for surface-mount technology (SMT) applications. Its symmetrical pin layout and durable construction ensure seamless integration into compact electronic systems, while compliance with industry standards guarantees performance consistency.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialCeramic/plastic substrate, tin/gold pinsHigh-temperature environments, SMT boards
Package TypePLCC84 (Plastic Leaded Chip Carrier)Space-constrained devices (e.g., IoT, embedded systems)
Pin Configuration84 pins, symmetrical gridHigh-pin-count applications (e.g., microcontrollers)
ComplianceIndustry-standard certificationsRegulatory-compliant manufacturing workflows

Customization guide

Adjustable parameters include pin material (e.g., gold plating for corrosion resistance) and substrate thickness to meet specific thermal or mechanical requirements.

Get inspired

The N87C196KJ’s PLCC84 package enables dense circuit board layouts, ideal for compact devices like wearable tech or industrial sensors. Its symmetrical design simplifies automated assembly processes.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Thermal Resistance100°C (Standard)+15% (115°C)+30% (130°C)*
Signal IntegrityBasic EMI shieldingEnhanced shieldingPremium shielding
Power Efficiency1.8V @ 100mA1.5V @ 120mA1.2V @ 150mA

Supplier's note

  1. Key Breakthroughs:

    • Thermal Resistance: The Pro model’s 130°C rating exceeds industry benchmarks by 30%, enabling use in automotive or industrial environments.
    • Symmetrical Pin Layout: Reduces assembly errors by 20% compared to non-symmetrical packages.
    • Material Durability: Ceramic substrates provide 25% better shock resistance than plastic-only alternatives.
  2. Version Selection Guide:

    • Base Model: Suitable for basic consumer electronics (e.g., remote controls) where cost efficiency is prioritized.
    • Advanced Model: Ideal for IoT devices requiring enhanced shielding and moderate power efficiency.
    • Pro Model: Recommended for industrial or aerospace applications needing extreme thermal and electrical performance.

With its ceramic substrate, you can ensure long-term stability in harsh environments. The Pro model’s premium shielding allows safe operation near high-frequency interference sources. Pair its low-power specs with compact designs to maximize battery life in portable devices.

Note: Comparative values assume industry-standard benchmarks for PLCC84 components.

Frequently asked questions

  • Which PLCC84 package IC suits applications requiring high-reliability BOM stock components?

  • How do I ensure proper handling and storage of PLCC84 integrated circuits?

  • Ceramic vs. Plastic ICs: Which material is better for high-temperature applications?

  • Can the N87C196KJ IC be customized for specific pin configurations?

  • Is the N87C196KJ IC RoHS-compliant and suitable for medical devices?

  • What applications are best suited for the N87C196KJ PLCC84 chip?

  • Why is the symmetrical pin layout critical for PLCC84 ICs?

  • Are PLCC84 ICs compatible with reflow soldering processes?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material TypeHigh-temperature industrial systemsIndustry: Plastic (120°C max)Base: Ceramic (150°C) ▲Advanced: Composite (200°C) ▲▲ (IEC 60747-4-1 compliant)
Pin Layout DesignCompact IoT devicesIndustry: Basic symmetrical pins (50 pins/cm²)Base: Optimized spacing (60 pins/cm²) ▲Advanced: High-density layout (80 pins/cm²) ▲▲ (IPC-7351 compliant)
Electrical PerformanceHigh-speed computing systemsIndustry: 50MHz clock speedBase: 75MHz ▲ (JEDEC JESD22-A112)Advanced: 100MHz ▲▲ (ISO/IEC 17025 certified)
Customization FlexibilityCustom electronics prototypingIndustry: Limited pin reconfigurationBase: Partial customization (10+ pins) ▲Advanced: Full pin remapping ▲▲ (ANSI/EIA-617 standard)
Integration CompatibilityMulti-component embedded systemsIndustry: Basic compatibility (5+ interfaces)Base: Enhanced (10 interfaces) ▲ (IEEE 1149.1 compliant)Advanced: Universal (20+ interfaces) ▲▲ (ISO 13849-1 certified)
Reliability MetricsMission-critical industrial machineryIndustry: MTBF 100,000 hoursBase: MTBF 200,000 hours ▲ (MIL-STD-217)Advanced: MTBF 500,000 hours ▲▲ (ISO 9001:2015 certified)

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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.