BCR169WE6327HTSA1 Overview
The BCR169WE6327HTSA1 is a high-performance optocoupler designed to provide reliable electrical isolation and signal transfer in industrial and consumer electronic circuits. Featuring a robust transistor output, this device ensures accurate signal reproduction while maintaining excellent noise immunity. Its compact SMD package supports automated assembly, optimizing manufacturing efficiency. The component is suitable for applications requiring precise isolation between high-voltage and low-voltage segments, facilitating safe and stable operation in measurement, control, and communication systems. For detailed technical support and sourcing, visit IC Manufacturer.
BCR169WE6327HTSA1 Technical Specifications
| Parameter | Specification |
|---|---|
| Input LED Forward Current (IF) | 50 mA (max) |
| Collector-Emitter Voltage (VCEO) | 80 V (max) |
| Current Transfer Ratio (CTR) | 50% to 600% (typical range) |
| Isolation Voltage | 5000 Vrms (min) |
| Collector Current (IC) | 50 mA (max) |
| Operating Temperature Range | -40??C to +100??C |
| Storage Temperature Range | -55??C to +125??C |
| Package Type | SMD 4-pin (Surface Mount Device) |
BCR169WE6327HTSA1 Key Features
- High isolation voltage: Provides up to 5000 Vrms isolation, ensuring robust protection between input and output circuits, critical for safety in industrial environments.
- Wide current transfer ratio range: Offers 50% to 600% CTR, allowing flexible design adaptation for various signal amplification requirements.
- Compact surface-mount package: Supports automated pick-and-place assembly, reducing manufacturing costs and improving production throughput.
- Wide operating temperature range: Suitable for harsh environments, from -40??C to +100??C, ensuring reliable performance in diverse applications.
Typical Applications
- Isolation in power supply circuits where protecting sensitive control electronics from high voltages is essential, such as in switch-mode power supplies.
- Signal isolation in industrial automation systems to maintain communication integrity between sensors and controllers.
- Interface isolation in microcontroller input/output ports to prevent ground loop issues and electrical noise interference.
- Use in consumer electronics for safe isolation between user interfaces and main power circuitry.
BCR169WE6327HTSA1 Advantages vs Typical Alternatives
This optocoupler stands out with its high isolation voltage rating and versatile current transfer ratio, offering precise and safe signal transfer in demanding environments. Compared to typical alternatives, it provides enhanced noise immunity and reliability across a broad temperature range. Its surface-mount design enables seamless integration into modern automated production lines, delivering both performance and manufacturing efficiency benefits.
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BCR169WE6327HTSA1 Brand Info
The BCR169WE6327HTSA1 is manufactured by Broadcom Inc., a global leader in semiconductor solutions specializing in high-quality optoelectronic components. Broadcom??s portfolio includes industry-standard optocouplers known for their durability, precision, and compliance with international safety standards. This product leverages Broadcom??s expertise in optoelectronics, ensuring reliable isolation and consistent performance tailored for industrial and commercial electronic applications.
FAQ
What is the maximum isolation voltage of this optocoupler?
The maximum isolation voltage is 5000 Vrms, which provides strong electrical separation between input and output circuits to ensure safety and signal integrity in high-voltage environments.
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What current levels can the input LED and output transistor handle?
The input LED supports a forward current up to 50 mA, while the output transistor can handle a collector current of up to 50 mA, suitable for typical signal isolation and switching applications.
Is this device suitable for automated assembly processes?
Yes, it is packaged in a compact surface-mount device (SMD) format with 4 pins, making it compatible with automated pick-and-place machines and reflow






