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  • 30532  Automotive Computer Vulnerable Chip IC
  • 30532  Automotive Computer Vulnerable Chip IC
  • 30532  Automotive Computer Vulnerable Chip IC
  • 30532  Automotive Computer Vulnerable Chip IC
  • 30532  Automotive Computer Vulnerable Chip IC
  • 30532  Automotive Computer Vulnerable Chip IC
30532  Automotive Computer Vulnerable Chip IC

30532 Automotive Computer Vulnerable Chip IC

$2.00-$10.00/ Piece|10 Piece/Pieces(Min. Order)

30532 Automotive Computer Vulnerable Chip IC

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Automotive Systems: Designed for automotive applications such as engine control, infotainment, and sensor integration, ensuring robust performance in vehicle electronics.
  • Computer Hardware: Supports standard computer systems, enabling reliable data processing, connectivity, and compatibility with diverse electronic devices.

Key features

  • 1. Material Technology

  • With gold-plated metal pins and a durable black plastic casing, ensure corrosion resistance and reliable conductivity in automotive environments. ~30% more corrosion-resistant than standard tin-plated ICs*.

  • 2. Interactive Design

  • With customizable pin configurations, supports multiple automotive functions like engine control and infotainment systems, offering greater versatility than fixed-pin ICs*.

  • 3. Performance Parameters

  • With a peak operating frequency of 2.4 GHz, delivers rapid data processing for real-time automotive applications, outperforming standard ICs by 20%*.

  • 4. Scenario Solutions

  • With a compact design, saves space in automotive electronics, enabling sleeker vehicle designs while maintaining performance, unlike bulkier ICs*.

  • 5. Certification Standards

  • Certified to ISO/TS 16949 standards for automotive electronics, ensuring compliance with industry safety protocols that non-certified ICs may lack*.

Product details

30532  Automotive Computer Vulnerable Chip IC

The 30532 Automotive Computer Vulnerable Chip IC is a high-reliability integrated circuit designed for automotive and computing applications. With a sleek black plastic casing and gold-plated pins, it ensures durability and optimal electrical conductivity. Its compact, standardized design allows seamless integration into automotive systems, industrial computers, and embedded electronics.

Technical specifications

FeatureSpecificationBenefit
MaterialBlack plastic casing, gold-plated pinsEnhanced durability and electrical conductivity
Pin Configuration14-28 pins (adjustable)Flexible connectivity for diverse systems
Operating Temp.-40°C to +125°CReliable performance in extreme environments
CertificationAutomotive-grade AEC-Q100 compliantEnsures ruggedness for automotive use

Customization guide

Adjustable pin count (14–28 pins) and functionality to meet specific automotive or computing system requirements. Customize IC type (e.g., microcontroller, memory) for tailored performance.

Get inspired

With the 30532 IC, you can build robust automotive control systems or high-performance computing devices. Its gold-plated pins ensure stable connections in vibration-heavy environments, while its wide temperature range supports use in engine bays or data centers.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Operating Temp.-40°C to 85°C-40°C to 105°C (+15%)-40°C to 125°C (+30%)
Pin Count14 pins20 pins28 pins
Power EfficiencyStandard15% lower power use30% lower power use

Supplier's note

  1. Technical Breakthroughs:

    • Gold-Plated Pins: Reduces contact resistance by 20% compared to tin-only pins, ensuring longevity in harsh environments.
    • AEC-Q100 Compliance: Tripled stress-test durability over non-certified ICs for automotive reliability.
    • Extended Temp. Range: The Pro model’s +125°C rating outperforms industry benchmarks by 20%, enabling use in engine compartments.
  2. Version Selection Guide:

    • Base Model: Ideal for standard automotive sensors or low-power computing devices where cost efficiency is prioritized.
    • Advanced Model: Best for mid-range applications like dashboard controls or industrial IoT systems needing 20% more pins than base models.
    • Pro Model: Required for high-temperature automotive subsystems (e.g., engine management) or high-pin-count computing clusters.

With the Pro version’s 30% wider temperature tolerance, you can safely deploy ICs in engine bays where thermal stress is extreme. Pair this with its 28-pin configuration to handle complex automotive ECUs, ensuring both performance and safety.

Frequently asked questions

  • Which automotive computer IC model is best suited for high-reliability automotive systems?

  • How do I maintain the gold-plated pins on automotive computer ICs to prevent corrosion?

  • Why is black plastic preferred over metal casings for automotive ICs?

  • Can these automotive ICs be customized for specific automotive functions?

  • Are these automotive computer ICs ISO 26262 or AEC-Q100 certified?

  • How does the compact design of automotive ICs benefit vehicle electronics?

  • What makes these ICs suitable for sensitive automotive computer systems?

  • How do the gold-plated pins enhance performance in automotive environments?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Automotive Control ICsEngine Management SystemsOperating Temperature Range: -40°C to 150°C (Our Advanced)▲▲
Industry: -40°C to 125°C
▲▲ Our Advanced: Withstands extreme engine bay temperatures (ISO 16750-4)
Ensures reliability in harsh environments
Higher cost vs. Industry Standard; Requires specialized cooling for peak performance
Embedded Computing ICsIn-Vehicle Infotainment SystemsPower Consumption: 10W (Our Advanced)▲
Industry: 15W
Our Advanced: Reduces energy draw by 33%
Extends battery life in hybrid/electric vehicles
Lower processing speed compared to non-automotive-grade chips
Signal Processing ICsAutomotive Sensor NetworksSignal-to-Noise Ratio: 85 dB (Our Base)▲
Industry: 75 dB
Our Base: Minimizes interference in sensor data (IEC 61131-2)
Accurate collision detection in ADAS systems
Limited scalability for high-channel-count applications
Power Management ICsEV Battery Management SystemsEfficiency: 98% (Our Advanced)▲▲
Industry: 92%
▲▲ Our Advanced: Cuts energy loss by 6%
Meets ISO 26262 safety standards
Complex integration with legacy battery systems
Communication ICsVehicle-to-Infrastructure (V2X) SystemsData Rate: 1 Gbps (Our Base)▲
Industry: 500 Mbps
Our Base: Supports real-time traffic updates (IEEE 802.11p compliant)
Enables autonomous driving coordination
Higher electromagnetic interference in dense urban areas
Sensor Interface ICsEnvironmental Monitoring SystemsEMI Resistance: Class B (Our Advanced)▲
Industry: Class A
Our Advanced: Passes IEC 61000-4-6 Level 4 testing
Stable in electrically noisy environments
Requires recalibration after firmware updates

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