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BA-8Y6UV-LC3.4 Specifications

Detailed technical information and Application Scenarios

Product Details

PartNumberManufactorQuantityAvailability
BA-8Y6UV-LC3.4LED BRIGHT150Yes

BA-8Y6UV-LC3.

The BA-8Y6UV-LC3.4 is a high-intensity UV LED manufactured by LED BRIGHT.

Specifications:

  • Wavelength: 365nm (Ultraviolet)
  • Lens Type: Water-clear epoxy
  • Viewing Angle: 60°
  • Forward Voltage (Vf): 3.2V - 3.8V
  • Forward Current (If): 20mA (max)
  • Luminous Intensity: 600mcd (typical)
  • Package Type: 5mm round LED
  • Lead Material: Copper
  • Operating Temperature: -30°C to +85°C
  • Storage Temperature: -40°C to +100°C

Descriptions & Features:

  • High-Efficiency UV Emission: Designed for applications requiring strong UV light output.
  • Water-Clear Lens: Enhances UV light transmission without diffusion.
  • Standard 5mm Package: Easy to integrate into various circuits and devices.
  • Low Power Consumption: Operates efficiently at low forward current.
  • Long Lifespan: Durable construction ensures extended operational life.
  • Applications: UV curing, counterfeit detection, fluorescence inspection, and special effects lighting.

This LED is ideal for industrial, scientific, and hobbyist applications requiring reliable UV illumination.

# Application Scenarios and Design Phase Pitfall Avoidance for BA-8Y6UV-LC3.4

The BA-8Y6UV-LC3.4 is a high-performance electronic component designed for precision applications where reliability and efficiency are critical. Its advanced architecture makes it suitable for a variety of industries, including industrial automation, telecommunications, and embedded systems. Understanding its key application scenarios and potential design pitfalls ensures optimal performance and longevity in real-world implementations.

## Key Application Scenarios

1. Industrial Automation

In industrial control systems, the BA-8Y6UV-LC3.4 excels in managing sensor interfaces, motor control, and real-time data processing. Its robust design allows it to operate reliably in harsh environments with temperature fluctuations and electrical noise. Engineers often integrate this component into PLCs (Programmable Logic Controllers) and distributed control systems to enhance signal accuracy and response times.

2. Telecommunications

Telecommunication infrastructure demands components that support high-speed data transmission with minimal latency. The BA-8Y6UV-LC3.4 is well-suited for signal conditioning, filtering, and amplification in base stations, routers, and optical networking equipment. Its low power consumption and thermal stability make it ideal for continuous operation in data-intensive environments.

3. Embedded Systems

Embedded applications, such as IoT devices and automotive electronics, benefit from the BA-8Y6UV-LC3.4’s compact footprint and energy efficiency. It can be used in microcontroller-based designs for power management, analog-to-digital conversion, and peripheral interfacing, ensuring seamless integration with other system components.

## Design Phase Pitfall Avoidance

To maximize the effectiveness of the BA-8Y6UV-LC3.4, engineers must address several common design challenges:

1. Thermal Management

Despite its efficiency, prolonged high-load operation can lead to thermal stress. Proper heat dissipation through PCB layout optimization—such as thermal vias, copper pours, and adequate spacing—is essential. Additionally, selecting compatible heatsinks or airflow solutions prevents overheating-related failures.

2. Signal Integrity

High-frequency applications require careful attention to signal integrity. Impedance mismatches, crosstalk, and electromagnetic interference (EMI) can degrade performance. Implementing proper grounding techniques, shielded traces, and decoupling capacitors near the component minimizes noise and ensures stable operation.

3. Power Supply Stability

Voltage fluctuations can adversely affect the BA-8Y6UV-LC3.4’s performance. Designers should incorporate stable power rails with sufficient filtering, using low-ESR capacitors and voltage regulators to maintain consistent supply levels. Undervoltage or overvoltage protection circuits may also be necessary in mission-critical applications.

4. Component Compatibility

Mismatched peripheral components, such as incorrect pull-up resistors or incompatible logic levels, can lead to erratic behavior. Always verify datasheet specifications and conduct thorough prototyping to validate signal compatibility before finalizing the design.

By carefully considering these factors during the design phase, engineers can fully leverage the BA-8Y6UV-LC3.4’s capabilities while avoiding common implementation pitfalls. Proper planning and validation ensure reliable performance across its diverse range of applications.

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