BAS70KFILM Overview
The BAS70KFILM is a high-speed dual diode designed to deliver efficient switching performance in compact surface-mount packages. Ideal for high-frequency and switching applications, this device offers low forward voltage drop and fast recovery times, ensuring minimal power loss and improved circuit reliability. The dual diode configuration allows for versatile use in complex signal processing and rectification tasks. Manufactured with advanced semiconductor processes, the BAS70KFILM ensures consistent electrical characteristics and thermal stability, making it a reliable choice for engineers and sourcing specialists aiming to optimize performance in industrial and consumer electronics. Available through IC Manufacturer, it supports integration in modern high-density PCB layouts.
BAS70KFILM Technical Specifications
| Parameter | Specification |
|---|---|
| Device Type | Dual High-Speed Switching Diode |
| Package | SMB (DO-214AA) Surface Mount |
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 70 V |
| Maximum Average Forward Current (IF(AV)) | 200 mA |
| Forward Voltage (VF) at IF = 100 mA | 1.2 V (typical) |
| Reverse Recovery Time (trr) | 8 ns (typical) |
| Junction Temperature Range (Tj) | -65??C to +150??C |
| Storage Temperature Range (Tstg) | -65??C to +150??C |
BAS70KFILM Key Features
- High-speed switching: Enables fast signal processing and efficient operation in switching circuits, reducing switching losses and improving overall circuit speed.
- Dual diode configuration: Provides flexibility for various circuit designs, such as clamping, protection, and rectification, within a compact footprint.
- Low forward voltage drop: Minimizes power dissipation, enhancing energy efficiency and reducing heat generation in the final application.
- SMB surface-mount package: Supports high-density PCB layouts and automated assembly, which improves manufacturing throughput and reduces space requirements.
Typical Applications
- High-frequency switching power supplies, where fast recovery diodes are critical to minimize switching losses and improve efficiency.
- Signal rectification and clipping circuits in communication devices, benefiting from low forward voltage and rapid switching.
- Protection circuits for sensitive electronics, using the dual diode configuration to safeguard against voltage spikes and transients.
- High-speed logic circuits requiring reliable, fast switching diodes for signal integrity and noise reduction.
BAS70KFILM Advantages vs Typical Alternatives
The BAS70KFILM offers superior switching speeds and lower forward voltage drop compared to many standard diodes in similar voltage and current classes. This translates to higher energy efficiency and reduced thermal stress in applications. Its dual diode design in a compact SMB package enables space-saving integration while maintaining reliable performance, making it advantageous for engineers focused on miniaturization and cost-effective manufacturing without compromising on electrical characteristics.
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BAS70KFILM Brand Info
The BAS70KFILM is part of the BAS series of switching diodes typically produced by well-established semiconductor manufacturers specializing in discrete components. These diodes are widely recognized for their reliability and consistent performance in industrial and consumer electronics. The product is offered in a surface-mount SMB package suitable for automated assembly and designed to meet stringent quality and testing standards, supporting a broad range of high-speed switching applications.
FAQ
What is the maximum repetitive peak reverse voltage rating of the BAS70KFILM?
The maximum repetitive peak reverse voltage (VRRM) rating of the device is 70 volts. This means the diode can safely block reverse voltages up to 70 V repeatedly without breakdown, making it suitable for many low to medium voltage switching circuits.
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How fast is the reverse recovery time for this diode?
The reverse recovery time is typically 8 nanoseconds, indicating very fast switching capability. This fast recovery is essential in high-frequency applications, minimizing switching losses and improving circuit efficiency.






