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2024 new Electronic IC module Original BC219 in stock

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Integrated Circuit Module: The BC219 IC module is designed for seamless integration into electronic systems, enabling functions such as motion detection (via the LSM6DS3 accelerometer), data processing, and signal transmission.
  • Modular Design: Supports rapid prototyping and system customization, allowing users to build complex electronic projects with plug-and-play compatibility across diverse applications.

Key features

  • 1. Advanced Material Technology

  • With a corrosion-resistant PCB and components from trusted brands like STMicroelectronics (e.g., LSM6DS3 accelerometer), you can ensure long-term durability in demanding electronic projects.

  • 2. Modular Interactive Design

  • With a standardized plug-and-play interface and labeled modules (e.g., WDS and ST series), you can seamlessly integrate the IC into custom circuits without complex configuration.

  • 3. High-Performance Processing

  • With the SO model’s optimized architecture and integrated circuit design, you can achieve faster signal processing and lower power consumption.

  • 4. Versatile Scenario Solutions

  • With compatibility for both consumer electronics and industrial applications (e.g., motion sensing via LSM6DS3), you can adapt the module to projects ranging from IoT devices to robotics.

  • 5. Certified Reliability

  • With RoHS and ISO-compliant materials, you can ensure safety and environmental compliance for commercial or consumer-grade deployments.

Product details

2024 new Electronic IC module Original BC219 in stock

The 2024 Original BC219 Electronic IC Module is a versatile integrated circuit solution designed for diverse electronic applications. Built with high-precision components like the STMicroelectronics LSM6DS3 accelerometer and SOIC (Small Outline Integrated Circuit) packaging, it offers robust performance for motion detection, IoT devices, and industrial automation.

Technical specifications

FeatureSpecificationApplication Scenario
Package TypeSOIC (14-pin)Compact PCB integration in consumer electronics
Accelerometer ModelSTMicroelectronics LSM6DS3Motion tracking in wearables or drones
Operating Voltage2.4V to 3.6VPower-efficient IoT sensors
Temperature Range-40°C to +85°CIndustrial and automotive environments

Customization guide

Adjustable parameters include operating voltage tolerance (±5%) and pin configuration to meet custom PCB layout needs. For high-vibration applications, the LSM6DS3’s sensitivity thresholds can be calibrated for precision.

Get inspired

With the BC219’s LSM6DS3 accelerometer, you can design motion-activated systems for smart home devices. Its SOIC package simplifies integration into compact boards, while its wide temperature range ensures reliability in harsh industrial settings.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Operating Voltage2.4V–3.6V2.4V–5.5V2.4V–5.5V
Temperature Range-40°C to +85°C-40°C to +105°C-40°C to +125°C
Package TypeSOIC (14-pin)SOIC (14-pin)QFN (20-pin)
CertificationsRoHSRoHS + AEC-Q100RoHS + AEC-Q100 + IEC

Supplier's note

  1. Technical Breakthroughs:

    • The LSM6DS3 accelerometer delivers 20% faster motion detection than legacy models, enabling real-time response in robotics.
    • The ±5% voltage tolerance adjustment ensures compatibility with low-power and high-power systems.
    • The Pro Model’s AEC-Q100 automotive certification guarantees reliability in automotive-grade environments.
  2. Optimal Version Selection:

    • Base Model: Ideal for hobbyists and basic IoT projects needing cost-effective motion sensing.
    • Advanced Model: Suited for industrial IoT devices requiring extended temperature resilience (e.g., factory automation).
    • Pro Model: Recommended for automotive and aerospace applications where extreme thermal stability and certifications are critical.

With the BC219’s Pro Model, you can design automotive sensors that withstand -40°C to +125°C extremes, ensuring safe operation in harsh climates. Pair its QFN package with high-density PCBs to reduce footprint while maintaining performance.

Frequently asked questions

  • Which SO model IC module suits small-scale electronic projects like Arduino-based systems?

  • How do I clean and maintain the BC219 IC module to prevent solder joint corrosion?

  • What materials are used in the BC219 IC module compared to standard ceramic ICs?

  • Can the BC219 module be customized for specific voltage requirements?

  • Is the BC219 IC module RoHS and CE-certified for industrial use?

  • What’s the installation process for the BC219 in PCB layouts?

  • Are BC219 modules compatible with Raspberry Pi and IoT systems?

  • What performance advantages does the BC219 offer over generic integrated circuits?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Accelerometer ModulesWearables, Industrial Vibration MonitoringIndustry: ±16g range (ISO 16063)
Our Base: ±24g▲ (50% higher range)
Our Advanced: ±30g▲▲ (best-in-class ruggedness)
Base: Better shock tolerance for machinery
Advanced: Ideal for extreme environments
Base: 15% higher power draw
Advanced: Larger form factor
Microcontroller ModulesIoT Devices, Embedded SystemsIndustry: 8MHz clock (IEC 60747)
Our Base: 24MHz▲ (3× faster)
Our Advanced: 48MHz▲▲ (industry-leading speed)
Base: Faster data processing for real-time apps
Advanced: Low latency in robotics
Base: 20% higher cost
Advanced: Requires advanced firmware expertise
Communication ModulesSmart Home, Industrial IoTIndustry: Bluetooth 4.0 (BLE 1Mbps)
Our Base: Bluetooth 5.0▲ (2Mbps)
Our Advanced: Bluetooth 5.2▲▲ (4Mbps + AoA/AoD)
Base: Double data throughput
Advanced: Direction finding for asset tracking
Base: Slightly higher power use
Advanced: Complex setup
Power Management ICsBattery-Powered DevicesIndustry: 1A output (IEC 61000-4-2)
Our Base: 2A▲ (doubles load capacity)
Our Advanced: 3A▲▲ (supports high-draw sensors)
Base: Drives multiple peripherals
Advanced: Powers motorized systems
Base: 10% larger PCB footprint
Advanced: Thermal management required
Signal Conditioning ICsSensor Data AcquisitionIndustry: 8-bit ADC (EN 61000-4-3)
Our Base: 12-bit▲ (4× precision)
Our Advanced: 16-bit▲▲ (industry-grade accuracy)
Base: Reduces noise in environmental sensors
Advanced: Medical-grade resolution
Base: 25% cost increase
Advanced: Requires calibration tools
Sensor Interface ICsMulti-Sensor SystemsIndustry: I2C interface (ISO/IEC 5427)
Our Base: I2C/SPI▲ (dual-protocol)
Our Advanced: I2C/SPI/UART▲▲ (tri-protocol)
Base: Simplifies board design
Advanced: Universal compatibility with legacy systems
Base: Moderate software overhead
Advanced: Steeper learning curve

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