BAT 63-02V E6327 Overview
The BAT 63-02V E6327 is a high-performance Schottky diode optimized for surface-mount applications in modern electronic systems. Designed with low forward voltage drop and fast switching capabilities, this device addresses demanding requirements in signal detection, high-frequency rectification, and RF circuitry. Its compact SOD-323 package ensures efficient board utilization and streamlined assembly, making it a popular choice for both volume manufacturing and precision analog circuits. For sourcing and product details, visit IC Manufacturer.
BAT 63-02V E6327 Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | Schottky Diode |
| Package | SOD-323 |
| Reverse Voltage (VR) | 35 V |
| Forward Current (IF) | 0.03 A (30 mA) |
| Forward Voltage (VF) @ IF | 1 V @ 30 mA |
| Reverse Current (IR) @ VR | 2 ??A @ 25 V |
| Power Dissipation (Ptot) | 150 mW |
| Operating Temperature Range | -65??C to +125??C |
BAT 63-02V E6327 Key Features
- Ultra-low forward voltage drop minimizes power losses, increasing efficiency in sensitive analog and RF circuits.
- Fast switching speed enables precise signal rectification and detection, benefiting high-frequency designs.
- Extremely low reverse leakage current enhances reliability and signal integrity in low current applications.
- Compact SOD-323 surface-mount package is ideal for space-constrained PCBs and automated assembly processes.
BAT 63-02V E6327 Advantages vs Typical Alternatives
This Schottky diode stands out thanks to its combination of low forward voltage and fast switching, which reduces energy loss and supports high-speed operation. Its minimal reverse leakage current ensures superior reliability, while the SOD-323 footprint offers a space-saving advantage compared to bulkier discrete packages. These related function words highlight performance and design benefits over standard alternatives.
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Typical Applications
- High-frequency signal detection in RF front-ends, where fast response and low voltage drop are essential for accurate demodulation and low power loss.
- Voltage clamping and protection circuits, providing effective transient suppression with minimal leakage and fast recovery for sensitive loads.
- Switch-mode power supply rectification for low power rails, where efficiency and size are critical design factors.
- General-purpose surface-mount rectification in portable or battery-powered electronics, optimizing energy efficiency and board space usage.
BAT 63-02V E6327 Brand Info
The BAT 63-02V E6327 is produced by a globally recognized semiconductor manufacturer known for its dedication to quality, reliability, and advanced component design. This Schottky diode is part of a robust lineup engineered for precision signal processing and power management tasks. Its SOD-323 package reflects the brand??s commitment to supporting modern, miniaturized electronic assemblies, making it a trusted solution among engineers and procurement specialists worldwide.
FAQ
What makes the BAT 63-02V E6327 suitable for RF applications?
The device??s fast switching characteristics and low forward voltage drop are key attributes for RF signal detection and rectification. These qualities help maintain signal integrity and reduce losses, which are critical for high-frequency circuit performance.
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How does the SOD-323 package benefit electronic designs?
This compact surface-mount package minimizes the PCB footprint, allowing for higher component density and more flexible layout options. It also simplifies automated assembly, supporting efficient large-scale manufacturing.
Is the BAT 63-02V E6327 reliable for low-leakage applications?
Yes, its extremely low reverse leakage current ensures stable operation in applications where minimal current loss is required, such as precision analog and battery-powered systems. This enhances both circuit reliability and energy efficiency.
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Can this Schottky diode be used in temperature-sensitive environments?
With an operating temperature range from -65??C to +125??C, the device is well-suited for use in both commercial and industrial environments where robust thermal performance is necessary.
What typical currents and voltages should designers observe when using this part?
Designers should note the maximum reverse voltage of 35 V and a forward current rating of 30 mA. Observing these limits ensures optimal performance and long-term reliability in target applications.





