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BYV26E
+BOMDIODE AVALANCHE 1000V 1A DO41
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ManufacturerEIC SEMICONDUCTOR INC.
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Mfr. Part #BYV26E
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Package DO-204AL, DO-41, Axial
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In Stock7432
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Specifications
| Attribute | Value |
| Supplier | EIC SEMICONDUCTOR INC. |
| Package | Bag |
| ProductStatus | Active |
| DiodeType | Avalanche |
| Voltage-DCReverse(Vr)(Max) | 1000 V |
| Current-AverageRectified(Io) | 1A |
| Voltage-Forward(Vf)(Max)@If | 2.5 V @ 1 A |
| Speed | Fast Recovery =< 500ns, > 200mA (Io) |
| ReverseRecoveryTime(trr) | 75 ns |
| Current-ReverseLeakage@Vr | 5 µA @ 1000 V |
| MountingType | Through Hole |
| Package/Case | DO-204AL, DO-41, Axial |
| SupplierDevicePackage | DO-41 |
Overview
Description
Key specifications of the BYV26E include a reverse voltage rating of 1000 volts and a forward current capability of 1 ampere, with a fast recovery time that enhances efficiency by reducing switching losses. The low forward voltage drop of the BYV26E helps in minimizing power dissipation, leading to better thermal management and reliability in operation.
The BYV26E is typically housed in a DO-41 package, which is a standard axial-lead package allowing for easy integration into circuits. Its robust design and efficient performance make it a popular choice among engineers for applications requiring high-speed and efficient rectification.
Equivalent
Features
1. Reverse Voltage: It can handle a peak reverse voltage of up to 1000V, making it suitable for high-voltage applications.
2. Forward Current: The maximum continuous forward current is typically 3A, allowing it to efficiently manage moderate power levels.
3. Recovery Time: The diode boasts a fast recovery time, often in the range of nanoseconds, which is ideal for high-frequency switching applications.
4. Package Type: It is usually available in the DO-201AD (also known as DO-27) package, which provides robust mechanical stability and efficient thermal management.
5. Temperature Range: Operates effectively over a wide temperature range, which is essential for ensuring reliability in various environments.
6. Low Forward Voltage Drop: This characteristic minimizes power loss and improves efficiency.
These features make the BYV26E suitable for use in power supply circuits, inverters, and as a freewheeling diode in various electronic applications.
Pinout
The primary function of the BYV26E diode is to allow current to flow in one direction while blocking current in the opposite direction. This makes it suitable for applications such as power rectification in power supplies, voltage clamping, and as a freewheeling diode in circuits. The BYV26E is designed to handle high-speed switching and has a reverse recovery time suitable for high-frequency applications. It is capable of handling a maximum repetitive peak reverse voltage (VRRM) of around 1,000 volts and a maximum average forward current (IF(AV)) of approximately 1 ampere.
Ensure to check the specific datasheet for the exact characteristics and ratings, as they can slightly vary depending on the manufacturer.
Manufacturer
NXP is known for developing technologies in areas such as secure connectivity solutions for embedded applications. The company is headquartered in Eindhoven, Netherlands, and operates in over 30 countries. NXP is recognized for its advancements in the semiconductor industry, particularly in the automotive sector with its development of chips that support advanced driver assistance systems (ADAS), vehicle-to-everything (V2X) communication, and secure car access. Their focus spans across several sectors, emphasizing innovation, security, and operational excellence in the semiconductor market.
Application
1. Power Supplies: Used in AC to DC conversion in power supply circuits due to its high efficiency and fast recovery time.
2. Switching Power Supplies: Ideal for use in switch-mode power supplies (SMPS) where rapid switching is required.
3. Freewheeling Diodes: Acts as a freewheeling diode in motor control applications, protecting circuits from voltage spikes.
4. Snubber Circuits: Utilized in snubber circuits to suppress voltage transients.
5. Voltage Clamping: Provides voltage clamping in various electronic devices.
6. Protection Circuits: Used in protection circuits for voltage regulation and transient suppression.
These features make it suitable for high-frequency and high-efficiency applications.