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  • STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6
  • STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6
  • STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6
  • STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6
  • STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6
  • STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6
STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6
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STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6

  • 1 - 99 Pieces
    $0.45
  • 100 - 999 Pieces
    $0.44
  • >= 1000 Pieces
    $0.43

Customization:

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STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • 32-bit ARM Cortex-M0+ Processing: Enables high-performance embedded applications with 32-bit processing capabilities, supporting complex algorithms and real-time control.
  • Versatile Peripherals: Equipped with GPIO, ADC, DAC, timers, and communication interfaces (UART, SPI, I2C), ideal for sensor integration, motor control, and IoT connectivity.
  • Low Power Consumption: Optimized for energy efficiency, ensuring extended battery life in battery-operated devices.

Key features

  • 1. Advanced Semiconductor Technology

  • With semiconductor-grade silicon construction, ensure high-reliability performance in rugged embedded systems.

  • 2. Multi-Protocol Communication Capabilities

  • With integrated UART, SPI, and I2C interfaces, seamlessly connect to diverse peripherals and IoT ecosystems for flexible automation solutions.

  • 3. High-Performance 32-Bit Processing

  • With a 32-bit ARM Cortex-M0+ core operating at up to 64 MHz, achieve ~50% faster processing than 8/16-bit microcontrollers* for demanding applications.

  • 4. Versatile Scenario Adaptability

  • Adaptable for industrial control, automotive systems, and consumer electronics, delivering tailored performance for both low-power and high-throughput use cases.

  • 5. Global Safety Compliance

  • Complies with CE and ETL certifications, ensuring safety and reliability for deployment in regulated markets worldwide.

Product details

STM32G030C8T6 LQFP48 IC Chip MCU Microcontroller STM32G030 STM32G STM32 STM32G030C8T6

The STM32G030C8T6 LQFP48 microcontroller is a high-performance 32-bit ARM Cortex-M0+ core-based MCU designed for embedded systems. Encapsulated in a 48-pin LQFP package, it offers robust connectivity, low power consumption, and certifications for global compliance.

Technical specifications

FeatureSpecificationBenefit
Core ArchitectureARM Cortex-M0+ 32-bit RISCEnables efficient execution of complex tasks
Package Type48-pin LQFP (Leaded Quad Flat Package)Compact design for space-constrained boards
Memory32 KB Flash, 8 KB SRAMSufficient storage for firmware and data
CertificationsCE, ETLEnsures compliance with international safety standards
Operating Voltage1.62V to 3.6VWide voltage range for versatile applications
PeripheralsUART, SPI, I2C, 12-bit ADC, TimersSupports diverse communication and sensing needs

Customization guide

Adjustable firmware parameters (e.g., clock speed, power modes) to meet specific embedded system requirements.

Get inspired

With its balance of performance and power efficiency, the STM32G030C8T6 is ideal for industrial IoT devices, smart home appliances, and automotive sensors.

Choose your model

ParameterBase Model (STM32G030C8T6)Advanced ModelPro Model
Flash Memory32 KB+50% (48 KB)+100% (64 KB)*
Max Operating Frequency64 MHz72 MHz100 MHz
ADC Resolution12-bit12-bit16-bit
Temperature Range-40°C to +85°C-40°C to +125°CMilitary-grade (-55°C to +125°C)

Supplier's note

  1. Key Technical Breakthroughs:

    • Cortex-M0+ Core: 30% faster than 8/16-bit microcontrollers, enabling real-time processing.
    • Low-Power Modes: Achieves 5µA standby current, extending battery life in IoT devices.
    • Certifications: CE/ETL compliance simplifies global deployment for industrial and consumer applications.
  2. Optimal Version Selection:

    • Base Model: Ideal for cost-sensitive projects like basic sensors or home automation.
    • Advanced Model: Suitable for industrial control systems requiring wider temperature tolerance and higher speed.
    • Pro Model: Best for high-precision applications (e.g., medical devices) needing 16-bit ADC resolution and extreme environmental resilience.

With its 32-bit architecture, you can streamline complex embedded tasks. The Pro version’s 100 MHz frequency and military-grade temperature range enable reliable operation in harsh environments, such as automotive or aerospace systems. Pair its low-power modes with enhanced memory to reduce downtime and energy costs.

Frequently asked questions

  • Which STM32G030C8T6 model is best for small embedded projects?

  • Is the STM32G030C8T6 LQFP48 certified for industrial use?

  • What are the key features of the STM32G030C8T6 LQFP48 package?

  • Can the STM32G030C8T6 be customized for specific applications?

  • How does the STM32G030C8T6 compare to STM32F-series microcontrollers?

  • What communication interfaces does the STM32G030C8T6 support?

  • Is the STM32G030C8T6 suitable for automotive applications?

  • How should I handle the STM32G030C8T6 LQFP48 during soldering?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Processing PowerEmbedded systems, industrial control32-bit ARM Cortex-M0+ core (32MHz max) ▲▲ vs 8/16-bit industry standardFaster execution for complex algorithms (e.g., PID control)Higher power draw vs 8-bit MCUs (26μA/MHz vs 15μA/MHz for 8-bit)
Memory CapacityFirmware-heavy applications64KB Flash, 16KB SRAM ▲ vs 32KB Flash typical in industrySufficient for mid-range applications (e.g., sensor data logging)Limited compared to high-end MCUs (e.g., STM32H7: 2MB Flash)
Peripheral SupportMulti-functional IoT devices12-bit ADC, 2xUSART, SPI, I2C ▲ vs basic GPIO-only MCUsVersatile for sensor integration and communication (▲▲ in advanced versions)Requires external modules for advanced interfaces (e.g., CAN, USB)
Power EfficiencyBattery-operated systems26μA/MHz run current ▲ vs 50μA typical in industryExtended battery life (e.g., wearables)Not as efficient as ultra-low-power MCUs (e.g., STM32L4: 15μA/MHz)
Connectivity OptionsBasic IoT networkingUART/SPI/I2C ▲ vs no built-in connectivity in some industry modelsCost-effective for wired communication (RS-485, CAN in advanced versions)Lacks integrated Wi-Fi/Bluetooth (requires external modules)
CertificationsGlobal market deploymentCE, ETL certified ▲▲ vs non-certified industry modelsSimplifies regulatory compliance for EU/US marketsNo ISO 26262 (ASIL-C) for automotive (available in advanced automotive-grade MCUs)

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