BAR46FILM Overview
The BAR46FILM is a high-performance glass passivated diode designed for fast switching and reliable operation in industrial and electronic circuits. Featuring a low forward voltage drop and excellent surge current capability, this diode ensures efficient power management and durability under demanding conditions. Its robust construction supports stable performance across a wide temperature range, making it ideal for rectification and protection applications. Engineers and sourcing specialists will appreciate the device??s balance of reliability and compact form factor, which facilitates seamless integration into complex designs. For more detailed product offerings, visit IC Manufacturer.
BAR46FILM Technical Specifications
| Parameter | Specification | 
|---|---|
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 100 V | 
| Maximum Average Forward Current (IF(AV)) | 1 A | 
| Forward Voltage Drop (VF) at IF=1A | 1.1 V (typical) | 
| Surge Forward Current (IFSM) | 30 A (single half sine wave, 8.3 ms) | 
| Reverse Recovery Time (trr) | 50 ns (typical) | 
| Operating Junction Temperature (TJ) | -65??C to +150??C | 
| Storage Temperature Range (Tstg) | -65??C to +150??C | 
| Package Type | DO-41 (Glass Passivated) | 
BAR46FILM Key Features
- Fast switching speed: Minimizes power loss and improves efficiency in high-frequency circuits.
- Low forward voltage drop: Reduces heat generation, enhancing energy efficiency and device longevity.
- High surge current capability: Supports transient loads and protects circuits from voltage spikes.
- Wide operating temperature range: Ensures reliable performance in harsh industrial environments.
Typical Applications
- Rectification in power supplies: Converts AC to DC efficiently while handling surge currents that occur during power fluctuations.
- Freewheeling diode in motor control circuits to protect switching devices from voltage spikes.
- Voltage clamping and transient voltage suppression in industrial electronic circuits.
- General purpose switching diode for signal demodulation and fast switching applications.
BAR46FILM Advantages vs Typical Alternatives
This diode offers superior surge current handling and faster recovery times compared to standard silicon diodes, which enhances circuit protection and switching efficiency. Its glass passivated construction improves reliability and thermal stability, making it a robust choice in industrial settings. The combination of low forward voltage and high peak reverse voltage ensures better power efficiency and durability, distinguishing it from typical rectifier diodes.
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BAR46FILM Brand Info
The BAR46FILM is produced by IC Manufacturer, a leading supplier of semiconductor components specializing in high-quality diodes and transistors for industrial applications. Known for precision engineering and rigorous quality control, the brand delivers components that meet demanding industry standards. This product line is designed to balance performance with cost-effectiveness, serving engineers and procurement teams worldwide with reliable and efficient solutions.
FAQ
What is the maximum forward current rating of the BAR46FILM diode?
The maximum average forward current of this diode is 1 ampere. This rating ensures the device can handle continuous current flow in most standard rectification and switching applications without damage.
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How does the BAR46FILM handle surge currents?
The diode supports a surge forward current of up to 30 amperes for a single half sine wave of 8.3 milliseconds. This capability allows it to withstand short-duration current spikes without degradation, protecting circuits from transient conditions.
What type of package does the diode come in, and why is it important?
The device is housed in a DO-41 glass passivated package. This packaging offers excellent protection against environmental factors and improves heat dissipation, contributing to the diode??s long-term reliability and stable electrical performance.
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Is the BAR46FILM suitable for high-frequency switching applications?
Yes, it features a typical reverse recovery time of 50 nanoseconds, which supports fast switching operations. This makes it suitable for applications requiring rapid on/off cycling such as switching power supplies and signal processing circuits.







