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Microcontroller The IC inventory LINDY 40463 Electronic chips

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Microcontroller Integration: A versatile integrated circuit (IC) designed for embedded systems, enabling control and processing in electronic devices.
  • Surface-Mount Technology (SMT): Rectangular design with metal pins for seamless integration into printed circuit boards (PCBs), supporting connectivity for power, data, and control signals.

Key features

  • 1. Durable Material Construction

  • With a robust plastic casing and conductive metal pins, you can ensure reliable connectivity and protection against environmental stress in electronic systems.

  • 2. Surface-Mount Technology (SMT) Design

  • With an SMT design optimized for compact assembly, you can seamlessly integrate this component into PCB layouts for efficient circuit board manufacturing.

  • 3. Standardized Compatibility

  • With compatibility for standard SMT applications, you can ensure smooth integration with a wide range of electronic systems and components.

  • 4. Versatile Application Suitability

  • Designed for diverse scenarios, you can deploy this component in consumer electronics, automotive systems, or industrial controls for reliable performance.

  • 5. Industry-Standard Quality

  • Manufactured to meet industry standards for electronic components, you can trust consistent quality and safety in operation.

Product details

Microcontroller The IC inventory 	LINDY 40463	 Electronic chips

The LINDY 40463 Microcontroller IC is a compact, surface-mount integrated circuit (IC) designed for versatile embedded system applications. Built with a plastic housing and metal pins for durability and conductivity, this component is ideal for electronics manufacturing requiring reliable connectivity and space-saving design.

Technical specifications

FeatureSpecificationApplication Scenario
Material CompositionPlastic housing + metal pins (copper alloy)Ensures thermal stability and corrosion resistance in industrial environments
Package TypeSmall Outline (SO) packageEnables seamless integration into PCBs via SMT assembly
Pin Configuration14 pins (configurable for I/O/data)Supports connectivity in IoT devices and control systems
Operating Voltage3.3V to 5VFlexible power compatibility for diverse hardware setups
CertificationsRoHS-compliantMeets global regulatory standards for electronics manufacturing

Customization guide

Adjustable pin count and package size to meet specific PCB layout requirements. With customizable voltage tolerance ranges, this IC can be adapted for low-power IoT devices or high-stress industrial applications.

Get inspired

With its compact SMT design and multi-voltage support, the LINDY 40463 enables rapid prototyping of smart home systems, robotics, and sensor networks. Its RoHS compliance ensures seamless integration into eco-friendly manufacturing workflows.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Pin Count8 pins14 pins20 pins
Max Operating Temp85°C+15% (98°C)+30% (110°C)*
Power Efficiency200mW180mW (-10%)150mW (-25%)
CertificationsRoHSRoHS + AEC-Q100RoHS + IEC 60730

Supplier's note

  1. Technical Breakthroughs:

    • SMT Design: Enables 40% smaller footprint than through-hole alternatives, ideal for compact devices.
    • Thermal Efficiency: The Pro Model’s 110°C tolerance outperforms industry benchmarks by 20%, supporting harsh industrial environments.
    • Multi-Voltage Flexibility: With 3.3V-5V compatibility, the IC bridges consumer and industrial applications seamlessly.
  2. Version Selection Guidance:

    • Base Model: Best for hobbyists and basic IoT projects (e.g., smart lighting systems).
    • Advanced Model: Suited for automotive or medical devices needing AEC-Q100 compliance and expanded I/O.
    • Pro Model: Optimized for industrial automation, with certifications for safety-critical systems and extreme temperature resilience.

With the Pro Model’s triple-certified chemical resistance, engineers can safely deploy this IC in corrosive factory settings. Pair its high-pin density with low power consumption to create energy-efficient control units for robotics.

Frequently asked questions

  • Which microcontroller IC suits small electronics projects like IoT prototypes?

  • Plastic vs Metal Housing: Which is better for industrial ICs like LINDY 40463?

  • Is the LINDY 40463 IC RoHS-compliant for EU electronics projects?

  • Can I order LINDY 40463 in bulk with custom labeling?

  • How to use LINDY 40463 for IoT device prototyping?

  • Does LINDY 40463 work with Arduino/Raspberry Pi systems?

  • How to store LINDY 40463 to prevent pin oxidation?

  • What makes LINDY 40463’s SMT design advantageous for PCB assembly?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Clock SpeedReal-time systems (e.g., robotics)24 MHz (Our Advanced ▲▲) vs 20 MHz (Our Base ▲) vs 16 MHz (Industry Standard)Enables faster response times for critical applications.Higher power consumption compared to slower speeds (24 MHz ≈ 20% more power).
Flash MemoryFirmware storage-heavy apps512 KB (Our Advanced ▲) vs 256 KB (Our Base) vs 128 KB (Industry Standard)Larger storage accommodates complex code and data (512 KB = 4x Industry).Increased cost with higher capacity.
Operating TemperatureIndustrial automation-40°C to +85°C (Our Base ▲) vs -20°C to +70°C (Industry Standard)Operates reliably in harsh environments (MIL-STD-810G compliant).Requires additional cooling in extreme cold/hot conditions.
Power ConsumptionBattery-powered devices150 mW (Our Advanced ▲) vs 200 mW (Our Base) vs 300 mW (Industry Standard)Extended battery life (150 mW = 50% lower than Industry).Lower power may limit performance in high-demand tasks.
I/O PinsMulti-functional devices28 pins (Our Base ▲) vs 14 pins (Industry Standard)More I/O allows integration with diverse peripherals (2x Industry).Requires more complex circuit design.
Communication InterfacesIoT and industrial networksI2C, SPI, UART (Our Base) vs +CAN (Our Advanced ▲) vs UART only (Industry Standard)Advanced version supports industrial CAN networks for robust connectivity.Additional interfaces may complicate firmware development.

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