BAR 65-02L E6327 Overview
The BAR 65-02L E6327 is a dual Silicon PIN diode array designed for high-frequency switching and signal attenuation applications. Engineered for surface-mount assembly, it offers reliable performance in RF circuits and signal processing modules. The device delivers low forward voltage and fast switching times, supporting efficient signal routing and attenuation in demanding industrial and communication systems. Its compact SOT-23-3L package enables straightforward integration into densely populated PCBs. For sourcing and design support, visit IC Manufacturer.
BAR 65-02L E6327 Technical Specifications
| Parameter | Value |
|---|---|
| Diode Type | Silicon PIN Diode Array |
| Configuration | Dual Series |
| Package / Case | SOT-23-3L (Surface Mount) |
| Forward Current (IF) | 100 mA (Max) |
| Reverse Voltage (VR) | 70 V (Max) |
| Forward Voltage (VF) | 1.0 V at 100 mA |
| Reverse Recovery Time (trr) | 3 ns (Typical) |
| Operating Temperature Range | -65??C to +150??C |
BAR 65-02L E6327 Key Features
- Dual PIN diode structure enables efficient high-frequency signal switching, reducing signal distortion and loss in RF paths.
- Low forward voltage drop minimizes power dissipation, enhancing overall system efficiency for sensitive signal applications.
- Ultra-fast reverse recovery time supports rapid switching operations, ideal for modern communication and test equipment.
- Compact SOT-23-3L surface-mount package streamlines PCB layout and supports automated assembly processes.
BAR 65-02L E6327 Advantages vs Typical Alternatives
This PIN diode array stands out with its low forward voltage and rapid recovery, allowing for precise high-frequency signal control with reduced power loss. Its dual configuration supports more integration and flexibility in compact layouts, while robust operating temperature tolerance ensures reliable performance in demanding environments compared to standard discrete diode solutions.
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Typical Applications
- RF switching networks, where rapid and reliable signal routing is critical for minimizing insertion loss and ensuring consistent system performance over a wide frequency range.
- Attenuator circuits for variable signal strength control in wireless infrastructure, test equipment, and signal conditioning modules.
- Phase shifters in communication systems, enabling accurate phase adjustment for antenna arrays and signal alignment.
- High-speed signal routing and protection applications within industrial automation, instrumentation, and other precision electronics.
BAR 65-02L E6327 Brand Info
The BAR 65-02L E6327 PIN diode array reflects a commitment to high-frequency performance and integration ease. Designed for advanced RF and signal processing tasks, the product leverages silicon technology to deliver fast, low-loss switching in a space-saving package. Its robust electrical parameters and compact form factor make it a preferred choice for engineers seeking reliable and efficient diode solutions in modern electronics design.
FAQ
What are the main benefits of using the BAR 65-02L E6327 in RF switching applications?
The device offers low insertion loss and fast switching capability, thanks to its PIN diode construction and rapid reverse recovery. This ensures minimal signal degradation, making it ideal for high-frequency RF routing and signal conditioning tasks.
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Is the BAR 65-02L E6327 suitable for surface-mount assembly?
Yes, it is provided in a SOT-23-3L package specifically designed for surface-mount technology (SMT), enabling automated assembly and compact PCB layouts in modern electronic devices.
What is the recommended maximum forward current for this diode array?
The maximum forward current rating is 100 mA, allowing the component to handle moderate signal and switching currents typical in RF and attenuator circuits without compromising reliability.
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Can the BAR 65-02L E6327 operate in extreme temperature environments?
With an operating temperature range from -65??C to +150??C, this device is highly suitable for industrial and communication systems that demand robust performance across wide environmental conditions.
Which types of applications are most appropriate for this dual PIN diode?
It is especially well-suited for RF switching, attenuation, phase shifting, and fast signal routing in telecommunications, instrumentation, and automation applications where precise high-frequency control is required.





