BAR 50-02L E6327 Overview
The BAR 50-02L E6327 is a high-performance Schottky barrier diode, engineered for fast-switching and low forward voltage drop applications. Designed for demanding signal processing tasks, it delivers reliable rectification and signal clamping in compact SOT-23 packaging. Its low capacitance and fast recovery characteristics make it suitable for high-speed circuits where efficiency and signal integrity are critical. As a discrete semiconductor component, it offers robust operation and versatility for a wide range of industrial and commercial electronics. For more information, visit IC Manufacturer.
BAR 50-02L E6327 Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | Schottky Barrier Diode Array |
| Configuration | Dual, Common Cathode |
| Package | SOT-23 |
| Reverse Voltage (VR) | Up to 35 V |
| Forward Current (IF) | Up to 30 mA (per diode) |
| Forward Voltage (VF) | Max 410 mV (at 1 mA) |
| Reverse Current (IR) | Max 100 nA (at 25 V, 25??C) |
| Capacitance (Cd) | Typ. 2.0 pF (at 1 MHz, VR = 1 V) |
| Operating Temperature Range | -65??C to +125??C |
BAR 50-02L E6327 Key Features
- Ultra-fast switching speed enables high-frequency operation, ensuring signal clarity in RF and digital circuits.
- Low forward voltage drop minimizes power loss and heat generation, which is critical for energy-efficient designs.
- Low capacitance supports minimal signal distortion, making it ideal for sensitive analog and high-speed digital applications.
- Common cathode configuration offers design flexibility, allowing for compact circuit layouts in space-constrained environments.
BAR 50-02L E6327 Advantages vs Typical Alternatives
Compared to standard diodes, this Schottky barrier array provides superior switching speed and a significantly lower forward voltage drop, reducing energy loss and heat buildup. Its low capacitance enhances signal fidelity, making it a preferred choice for high-frequency and precision circuits where conventional diodes may introduce unacceptable delay or distortion. The compact SOT-23 package further simplifies PCB integration.
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Typical Applications
- High-speed signal clamping: Used in digital communication interfaces to protect sensitive IC inputs from voltage transients and reduce signal overshoot without degrading bandwidth.
- RF and microwave circuits: Ideal for low-loss signal routing, detection, and mixing in wireless transmitters, receivers, and test equipment.
- Voltage rectification in switching power supplies: Ensures efficient conversion and minimal power dissipation in compact, high-frequency DC-DC converters.
- Logic level shifting: Useful in mixed-voltage logic systems for fast, reliable level translation with minimal propagation delay.
BAR 50-02L E6327 Brand Info
The BAR 50-02L E6327 is a precision Schottky diode array produced by a reputable semiconductor manufacturer, recognized for quality and innovation in discrete component design. Its dual-diode, common cathode structure and SOT-23 packaging reflect a commitment to compactness and application flexibility. This product is designed to meet the needs of engineers seeking reliable, high-speed switching performance in demanding environments, supporting both prototyping and mass production requirements.
FAQ
What key benefits does the BAR 50-02L E6327 offer for high-frequency designs?
This Schottky barrier diode array delivers ultra-fast switching and low capacitance, ensuring minimal signal distortion and delay. These features make it highly suitable for RF, microwave, and high-speed digital circuits where timing and signal integrity are paramount.
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How does the SOT-23 package benefit board-level integration?
The SOT-23 form factor allows for a compact PCB footprint, enabling dense component placement and efficient use of board space. It also supports automated assembly processes, reducing manufacturing time and cost for high-volume applications.
What is the maximum continuous forward current per diode?
Each diode in the array supports a forward current of up to 30 mA. This rating is well-suited for signal-level rectification and protection tasks in most low-power and high-speed electronic systems.
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Can this device be used for input protection in digital circuits?
Yes, the low forward voltage and fast response make it effective for clamping and protecting digital inputs from voltage spikes, without introducing significant delay or loading effects on the signal lines.
What is the typical reverse leakage current at room temperature?
The reverse leakage current is typically limited to 100 nA at 25 V and 25??C. This low leakage ensures the device will not introduce unwanted bias or noise into sensitive analog or digital circuitry.






