BAR6702VH6327XTSA1 Overview
The BAR6702VH6327XTSA1 is a dual Schottky barrier diode array designed for high-speed switching and signal routing in demanding industrial and commercial applications. This device offers low forward voltage and fast recovery, making it an excellent choice for circuits requiring efficient rectification and signal integrity. Housed in a small SOT-666 package, it is well-suited for space-constrained designs. Sourcing specialists and design engineers can rely on its robust performance and integration capabilities to streamline circuit layouts and improve overall system efficiency. For more information, visit IC Manufacturer.
BAR6702VH6327XTSA1 Technical Specifications
| Attribute | Value |
|---|---|
| Device Type | Dual Schottky Barrier Diode Array |
| Configuration | Common Cathode |
| Reverse Voltage (VR) | 40 V |
| Forward Current (IF) | 100 mA |
| Forward Voltage (VF) | 0.52 V (typ) |
| Reverse Current (IR) | 2 ??A (max) |
| Package | SOT-666 (6-pin) |
| Operating Temperature Range | -55??C to +150??C |
BAR6702VH6327XTSA1 Key Features
- Low forward voltage drop ensures minimal power loss, maximizing efficiency in high-frequency switching circuits.
- Fast recovery time supports high-speed operation, which is critical for signal routing and rectifying applications.
- Miniature SOT-666 package allows for high-density PCB layouts, ideal for compact and portable electronic devices.
- Low leakage current enhances reliability by reducing unwanted current paths and improving signal integrity.
- Dual diode configuration with common cathode simplifies design and minimizes component count in multi-channel circuits.
BAR6702VH6327XTSA1 Advantages vs Typical Alternatives
This Schottky diode array stands out due to its combination of low forward voltage, high-speed performance, and compact SOT-666 package. Compared to standard diodes, it offers superior efficiency, reduced power consumption, and enhanced integration potential for densely packed circuit boards. Its fast switching and low leakage contribute to consistent, reliable operation in demanding environments.
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Typical Applications
- High-speed switching circuits where fast response and low power dissipation are essential, such as in power management modules and signal conditioning networks.
- Signal routing and protection in communication devices, supporting efficient data transfer and safeguarding sensitive components from transients.
- Rectification in low-voltage DC-DC converters, where minimizing voltage drop and maximizing conversion efficiency are critical for portable electronics.
- Clamping and voltage protection in automotive and industrial control systems, ensuring circuit safety and longevity under varying load conditions.
BAR6702VH6327XTSA1 Brand Info
The BAR6702VH6327XTSA1 is part of a reputable lineup of Schottky barrier diode solutions, engineered with a focus on quality and performance. This product reflects the brand??s commitment to delivering compact, efficient, and reliable discrete semiconductors for modern circuit designs. Its robust design and adherence to industry standards make it a trusted choice for engineers seeking optimal performance in fast-switching and space-constrained applications.
FAQ
What are the key benefits of using a dual Schottky diode array in compact circuit designs?
Dual Schottky diode arrays like this device offer higher integration by combining two diodes in a single package, reducing board space and simplifying circuit layouts. Their low forward voltage and fast switching enhance efficiency and reliability in modern electronics.
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How does the SOT-666 package contribute to PCB design flexibility?
The ultra-small SOT-666 package enables higher component density on printed circuit boards. This is especially valuable in mobile, handheld, or densely populated electronic assemblies where saving space is crucial.
Why is low forward voltage important in Schottky diodes?
A low forward voltage drop reduces power loss during rectification and switching, improving overall system efficiency. This is particularly beneficial for battery-powered or energy-sensitive applications where every milliwatt counts.
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Can this device be used for signal protection in communication circuits?
Yes, its fast recovery and low leakage make it well-suited for protecting sensitive communication lines from voltage spikes and transients, while maintaining signal integrity in high-speed data environments.
What is the typical operating temperature range, and why does it matter?
This diode array supports a wide temperature range from -55??C to +150??C, making it suitable for industrial, automotive, and commercial environments where thermal stability and reliability over varying conditions are required.





