BAR6305E6327HTSA1 Overview
The BAR6305E6327HTSA1 is a high-performance Schottky diode array designed for modern signal processing and protection tasks. Engineered to deliver low forward voltage and fast switching, this device is ideal for high-frequency applications requiring reliable clamping and rectification. Its compact SOT-23-6 package ensures efficient board space usage in dense layouts. Manufactured to stringent quality standards, this component suits automotive, industrial, and consumer electronics environments. For more details on sourcing and supply, visit IC Manufacturer.
BAR6305E6327HTSA1 Technical Specifications
| Parameter | Value |
|---|---|
| Diode Type | Schottky, Dual Series |
| Reverse Voltage (VR) | 35 V |
| Forward Current (IF) | 30 mA |
| Forward Voltage (VF) | 410 mV @ 1 mA |
| Reverse Current (IR) | 2 nA @ 25??C |
| Configuration | 2 Diodes, Series Connection |
| Package / Case | SOT-23-6 |
| Operating Temperature Range | -55??C to +150??C |
| Polarity | Standard |
BAR6305E6327HTSA1 Key Features
- Low forward voltage drop enables efficient signal rectification, minimizing power loss in sensitive circuits.
- High-speed switching capability supports fast data and signal processing, which is critical for modern high-frequency designs.
- Dual-diode series configuration provides enhanced protection and flexibility for voltage clamping and ESD suppression.
- Compact SOT-23-6 surface-mount package ensures easy integration into space-constrained PCB layouts.
BAR6305E6327HTSA1 Advantages vs Typical Alternatives
Compared to standard diode arrays, this Schottky device offers lower forward voltage, resulting in reduced power consumption and heat generation. Its fast switching response and ultra-low leakage current enhance both sensitivity and reliability in demanding signal processing, protection, and rectification tasks. These attributes enable robust integration in compact, high-density electronic assemblies.
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Typical Applications
- High-frequency signal rectification in RF and communication circuits, where minimal signal loss and quick response are essential for maintaining signal integrity.
- Voltage clamping and ESD protection for sensitive microcontroller or logic inputs, preserving device longevity in noisy environments.
- Power rail isolation and reverse polarity protection in industrial control modules, ensuring robust operation and reduced risk of damage.
- Portable consumer electronics requiring low-leakage, fast-acting diodes for battery-powered efficiency and safety.
BAR6305E6327HTSA1 Brand Info
This device is manufactured by Infineon Technologies, a global leader in semiconductor solutions for power, automotive, and industrial applications. The product is part of Infineon’s Schottky diode portfolio, recognized for high efficiency and quality. Designed for reliability and consistent performance, it is supported by extensive documentation and worldwide distribution, making it a preferred choice for designers seeking robust signal management solutions.
FAQ
What distinguishes the BAR6305E6327HTSA1 from standard diode arrays?
This device features a low forward voltage drop and high-speed switching, which together enhance efficiency and response time compared to conventional diodes. Its Schottky construction also reduces leakage current, making it suitable for precision signal management.
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Can this component be used in automotive or industrial environments?
Yes, the operating temperature range from -55??C to +150??C and robust packaging make it appropriate for both automotive and industrial electronics, where reliability and temperature tolerance are crucial.
What is the primary benefit of the dual series diode configuration?
The dual series setup enables enhanced voltage clamping and protection, making it versatile for signal rectification as well as for protecting sensitive circuit inputs from voltage spikes and electrostatic discharge.
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Is the SOT-23-6 package suitable for automated assembly processes?
Absolutely. The SOT-23-6 package is a standard surface-mount footprint, fully compatible with automated pick-and-place and reflow soldering, supporting high-volume manufacturing and compact board layouts.
How does the low reverse current impact circuit performance?
Ultra-low reverse current (2 nA @ 25??C) minimizes leakage and power loss, which is especially important in battery-powered and precision analog circuits, contributing to overall energy efficiency and stability.





