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ASC 100% Original MPU Embedded Processors Controllers NFBGA-196 TMS320C5514AZCHA12

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Performance Processing: Leverages the ASC 100% Original MPU architecture for real-time data processing and embedded control in complex systems.
  • Versatile Control Capabilities: Designed to manage industrial automation, telecommunications, and consumer electronics with precision and reliability.

Key features

  • 1. Advanced Silicon Semiconductor Material Technology

  • With a silicon-based semiconductor core, you can achieve high-performance computing and thermal efficiency, outperforming older-generation materials in durability and heat dissipation*.

  • 2. Programmable Multi-Function Embedded Design

  • With a flexible DSP (Digital Signal Processor) architecture, you can customize algorithms and I/O configurations to suit diverse embedded applications, unlike rigid single-purpose chips*.

  • 3. High-Speed 166MHz Processing Performance

  • With a 166MHz clock speed, you can process complex data tasks 30% faster than legacy DSP models, enabling real-time responsiveness in critical systems*.

  • 4. Versatile Scenario Adaptability

  • With NFBGA-196 packaging and low-power design, you can deploy this chip in compact devices for industrial automation, automotive systems, or consumer electronics, offering broader application flexibility than bulkier alternatives*.

  • 5. 100% Original Manufacturer Certification

  • With ASC’s authenticity certification, you can ensure unmatched reliability and compatibility with TI’s TMS320C551x series standards, avoiding counterfeit risks common in unverified ICs*.

Product details

ASC 100% Original  MPU Embedded Processors  Controllers NFBGA-196 TMS320C5514AZCHA12

The ASC 100% Original MPU Embedded Processors Controllers (NFBGA-196 TMS320C5514AZCHA12) are high-performance integrated circuits designed for embedded systems. Built with silicon semiconductor technology, these chips offer robust processing capabilities in compact NFBGA-196 packaging, ideal for applications requiring real-time data processing, control systems, and signal processing.

Technical specifications

FeatureSpecificationBenefit
MaterialSilicon semiconductorEnsures efficient thermal and electrical performance.
PackagingNFBGA-196 (Non-Leaded Fine Pitch BGA)Enables high-density integration and miniaturized designs.
Performance16-bit fixed-point DSP coreDelivers real-time signal processing for industrial and consumer electronics.
ApplicationEmbedded systems, control unitsVersatile for IoT devices, automotive systems, and industrial automation.

Customization guide

Adjustable parameters include pin configuration and thermal interface materials to meet specific thermal management or space constraints. For instance, custom pin layouts can optimize PCB routing, while enhanced thermal pads improve heat dissipation in high-power scenarios.

Get inspired

Leverage the ASC MPU’s precision and adaptability to design smarter, faster embedded systems—from smart sensors to advanced robotics. With its modular architecture, it’s a cornerstone for innovation in next-gen automation.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Processing Power16-bit core (150MHz)16-bit core (225MHz)16-bit core (300MHz)
Memory16KB ROM, 16KB RAM32KB ROM, 32KB RAM64KB ROM, 64KB RAM
Thermal EfficiencyStandard cooling20% improved heat dissipation30% enhanced thermal performance*

*Compared to industry benchmarks.

Supplier's note

  1. Key Breakthroughs:

    • Silicon Semiconductor Material: Enables lower power consumption and higher reliability under extreme conditions.
    • NFBGA-196 Packaging: Reduces footprint by 25% compared to legacy QFP packages, ideal for compact devices.
    • Enhanced DSP Core: The Pro model’s 300MHz clock speed outperforms competitors by 40%, ideal for real-time signal processing in radar or audio systems.
  2. Version Selection Guide:

    • Base Model: Best for cost-sensitive applications like basic sensors or low-power IoT nodes.
    • Advanced Model: Suitable for mid-tier industrial control systems requiring expanded memory for firmware updates.
    • Pro Model: Tailored for high-demand scenarios like automotive ADAS or medical imaging, where thermal stability and speed are critical. With its tripled memory capacity, it ensures seamless multitasking in complex embedded systems.

Frequently asked questions

  • Which MPU embedded processor model is best for real-time signal processing applications?

  • How does the NFBGA-196 package enhance thermal performance compared to other packages?

  • What certifications does the TMS320C5514AZCHA12 MPU meet for industrial use?

  • Can the ASC MPU embedded processors be customized for specific IoT applications?

  • How does the silicon material in the ASC MPU ensure reliability in harsh environments?

  • What distinguishes the ASC MPU embedded processors from FPGA-based solutions?

  • How does the TMS320C5514AZCHA12 handle high-speed data processing in embedded systems?

  • What are the key features of the ASC MPU embedded processors for automotive applications?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Digital Signal Processors (DSP)Real-time audio/video processingClock Speed: 150MHz (Industry)200MHz (Base) ▲▲ 250MHz (Advanced)
(TMS320C5514 spec)
▲▲▲ Superior computational efficiency for signal processing tasksHigher power consumption vs. microcontrollers (2.5W vs. 0.8W)
Embedded MicrocontrollersIoT devices, automotive control systemsFlash Memory: 128KB (Industry)256KB (Base) ▲▲ 512KB (Advanced)Low power (0.5W) + cost-effective for simple tasksLimited processing power for complex algorithms (e.g., machine learning)
Memory ICs (SDRAM)Data storage in embedded systemsStorage Capacity: 1GB (Industry)2GB (Base) ▲▲ 4GB (Advanced)High density storage for temporary data cachingVolatile (data lost on power loss)
Analog-to-Digital ConvertersSensor data acquisitionResolution: 12-bit (Industry)14-bit (Base) ▲▲ 16-bit (Advanced)▲▲▲ Precision up to ±0.01% error (ideal for medical devices)Higher cost for high-resolution models (e.g., $25/unit for 16-bit)
FPGA-based ProcessorsCustom logic applicationsLogic Cells: 10k (Industry)20k (Base) ▲▲ 40k (Advanced)Reconfigurable for rapid prototyping (e.g., AI accelerators)Complex programming (requires VHDL/Verilog expertise)
Power Management ICs (PMIC)Battery-operated devicesEfficiency: 85% (Industry)90% (Base) ▲▲ 95% (Advanced)▲▲▲ Extends battery life by 20% (meets Energy Star standards)Larger footprint vs. standard regulators

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