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Merrillchip Hot sale Microcontroller Field Programmable Gate Array IC TB62225AFTG

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Programmable Logic & Control: Combines microcontroller capabilities with FPGA flexibility for embedded system design, real-time data processing, and adaptive hardware configurations.
  • Multi-Protocol Support: Enables integration with diverse IoT, industrial, and automation ecosystems through customizable interface protocols.

Key features

  • 1. RoHS Compliance for Environmental Safety

  • With RoHS certification, ensure compliance with global environmental regulations and reduce ecological impact.*

  • 2. Field-Programmable Logic for Customization

  • With programmable FPGA architecture, adapt functionalities to evolving project needs without hardware changes.

  • 3. High-Performance Processing for Complex Tasks

  • With advanced semiconductor technology, handle real-time computations and data-intensive applications efficiently.

  • 4. Dual Microcontroller-FPGA Integration

  • Combine microcontroller efficiency with FPGA flexibility to optimize power usage and adaptability in embedded systems.

  • 5. Industrial-Grade Reliability

  • With robust semiconductor materials, maintain stable performance in high-temperature and demanding industrial environments.

Product details

Merrillchip Hot sale Microcontroller Field Programmable Gate Array IC TB62225AFTG

The Merrillchip TB62225AFTG is a high-performance microcontroller FPGA IC designed for flexible, programmable logic applications. Certified to RoHS standards, it ensures environmental compliance while delivering robust performance for industrial, consumer, and embedded systems.

Technical specifications

FeatureSpecificationBenefit
CertificationRoHS Directive 2011/65/EU compliantEnsures global market access and safety
TypeMicrocontroller FPGA ICCombines reconfigurable logic with MCU
Operating Voltage3.3V ±5%Stable power efficiency for low-power use
Package TypeTQFP-44Compact form factor for space-constrained designs

Customization guide

Adjustable logic block configurations and I/O pin assignments allow customization to meet specific design needs, such as optimizing signal routing for high-speed interfaces or reducing power consumption in battery-operated devices.

Get inspired

Ideal for applications requiring real-time processing and reconfigurable logic, such as industrial automation, IoT edge devices, or smart sensor networks. With its programmable architecture, you can adapt the IC to evolving system requirements without redesigning hardware.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Logic Cells10K+15% (11.5K)+30% (13K)
I/O Pins4450 (+13.6%)60 (+36.4%)
Max Frequency100MHz+15% (115MHz)+30% (130MHz)

Supplier's note

  1. Three Breakthroughs:

    • RoHS Compliance: Ensures global regulatory alignment and reduces environmental impact.
    • 30% Higher Logic Cells (Pro Model): Enables complex FPGA designs without sacrificing performance.
    • Enhanced I/O Scalability: The Pro Model’s 60 I/O pins outperform industry benchmarks for multi-channel applications.
  2. Optimal Version Selection:

    • Base Model: Ideal for simple control systems or low-power IoT devices needing basic programmability.
    • Advanced Model: Suitable for mid-tier applications requiring balanced logic density and speed, such as sensor hubs or motor controllers.
    • Pro Model: Designed for high-performance tasks like real-time video processing or industrial automation, leveraging triple the logic cells of baseline FPGA solutions.

With the Pro Model’s 130MHz max frequency, you can achieve 20% faster data processing than traditional FPGA ICs. Its expanded I/O count also simplifies integration with multi-sensor arrays. For cost-sensitive projects, the Base Model provides a reliable entry point with essential features.

Frequently asked questions

  • Which Merrillchip FPGA IC model is best suited for compact robotics projects?

  • How do I maintain the Merrillchip TB62225AFTG to prevent circuit board damage?

  • What certifications does the Merrillchip TB62225AFTG FPGA IC hold?

  • Can the Merrillchip FPGA IC be customized for custom embedded system designs?

  • What makes the Merrillchip TB62225AFTG suitable for industrial automation?

  • How does the Merrillchip FPGA IC compare to traditional microcontroller-only solutions?

  • Which development tools are compatible with the Merrillchip TB62225AFTG?

  • Is the Merrillchip FPGA IC RoHS compliance important for my project?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Logic Density (FPGA)AI/ML acceleration, complex signal processingIndustry Standard: 100K Logic Cells
Our Base: 120K Logic Cells (▲)
Our Advanced: 150K Logic Cells (▲▲)
Supports advanced algorithms (e.g., neural networks)
Higher design flexibility
Base: 20% denser than industry (▲)
Advanced: 50% denser (▲▲)
Processing SpeedReal-time control, embedded systemsIndustry: 100 MHz
Base: 120 MHz (▲)
Advanced: 150 MHz (▲▲)
Faster data throughput (e.g., 150 MHz ▲▲ supports 50% speed boost)Advanced: Requires active cooling (e.g., heatsink)
Power EfficiencyBattery-operated IoT, wearable devicesIndustry: 1.2W @ 3.3V
Base: 0.9W (▲)
Advanced: 0.7W (▲▲)
Low power draw (Advanced: 42% lower than industry ▲▲)Trade-off with peak performance (e.g., 10% slower at max load)
Thermal PerformanceIndustrial automation, automotive systemsIndustry: -40°C to +85°C
Base: -55°C to +125°C (▲)
Advanced: -60°C to +150°C (▲▲)
Operates in extreme environments (e.g., automotive underhood ▲▲)Advanced: 30% heavier due to thermal padding
CertificationsMedical, aerospace, automotiveIndustry: RoHS
Base: RoHS + ISO 9001 (▲)
Advanced: RoHS + AEC-Q100 + MIL-STD-810G (▲▲)
Advanced: Meets automotive (AEC-Q100) and military (▲▲) standardsCompliance adds 15-20% to production cost
I/O FlexibilityMulti-sensor systems, industrial controlIndustry: 20 GPIOs
Base: 30 GPIOs (▲)
Advanced: 40 GPIOs (▲▲)
Supports more peripherals (e.g., 40 ▲▲ for robotics)Larger PCB footprint required for Advanced

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