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BAT54LP-7
+StücklisteDIODE SCHOTTKY 30V 200MA 2DFN
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HerstellerDioden Incorporated
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Herstellerteil #BAT54LP-7
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Datenblatt BAT54LP-7 DataSheet
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Paket 0402 (1006 Metric)
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Auf Lager6331
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Spezifikationen
| Attribut | Wert |
| Supplier | Diodes Incorporated |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Part Status | Active |
| Diode Type | Schottky |
| Voltage - DC Reverse (Vr) (Max) | 30 V |
| Current - Average Rectified(Io) | 200mA (DC) |
| Voltage - Forward (Vf) (Max) @ If | 1 V @ 100 mA |
| Speed | Small Signal =< 200mA (Io), Any Speed |
| Reverse Recovery Time (trr) | 5 ns |
| Current - Reverse Leakage @ Vr | 2 µA @ 25 V |
| Capacitance @ Vr F | 10pF @ 1V, 1MHz |
| Mounting Type | Surface Mount |
| Supplier Device Package | X1-DFN1006-2 |
Übersicht
Description
Key features of the BAT54LP-7 include:
- Low Forward Voltage Drop: This characteristic minimizes power loss, making the diode efficient in low-voltage applications.
- Fast Switching Speed: The Schottky technology allows for rapid transitions, which is essential in high-frequency applications.
- Low Capacitance: This reduces signal distortion and power loss at higher frequencies.
- Surface-Mount Design: The SOT-23 package facilitates easy integration into printed circuit boards (PCBs).
The BAT54LP-7 is ideal for use in rectification, clamping, and reverse polarity protection in portable devices, telecommunications, and computing applications. Its reliability and performance make it a popular choice for designers seeking efficient, fast-switching diodes.
Equivalent
1. BAT54LP (from other manufacturers)
2. BAS40 series
3. BAT54S
4. RB520S30, RB521S-30 (from ROHM)
5. 1N5817 (for similar applications, although with different package and specs)
These alternatives may vary slightly in specifications, so it's essential to verify compatibility with your specific application needs before substituting.
Features
1. Low Forward Voltage Drop: Offers efficiency in power applications due to reduced voltage loss.
2. Fast Switching Speed: Suitable for high-frequency applications, enhancing performance in switching circuits.
3. Low Reverse Leakage Current: Minimizes power loss, contributing to energy-efficient designs.
4. Compact Package: Comes in a small SOT-363 package, making it ideal for space-constrained applications.
5. Dual Diode Configuration: Provides design flexibility, allowing for various circuit implementations such as voltage clamping and rectification.
6. Wide Operating Temperature Range: Functions effectively across a temperature range of -55°C to +125°C, suitable for diverse environmental conditions.
7. Low Capacitance: Ensures minimal signal distortion, which is crucial for high-speed data and RF applications.
This combination of features makes the BAT54LP-7 an excellent choice for applications requiring efficient, fast, and reliable diode performance.
Pinout
1. Anode 1 (A1): Connected to the anode of the first diode.
2. Cathode 1/Anode 2 (K1/A2): Common connection point which acts as the cathode for the first diode and the anode for the second diode.
3. Cathode 2 (K2): Connected to the cathode of the second diode.
4. Anode 1 (A1): Another connection point for the anode of the first diode, similar to pin 1.
5. Cathode 1/Anode 2 (K1/A2): Duplicate of pin 2.
6. Cathode 2 (K2): Duplicate of pin 3.
The BAT54LP-7 is typically used for switching applications, voltage clamping, and protection circuits due to its low forward voltage drop and high-speed switching capabilities.
Manufacturer
Application
1. Rectification: Used in power supply circuits for AC to DC conversion.
2. Signal Demodulation: Useful in RF applications for detecting and demodulating signals.
3. Voltage Clamping: Protects circuits by clamping voltage spikes.
4. Reverse Polarity Protection: Prevents damage from incorrect power supply connections.
5. Logic Level Shifting: Assists in interfacing different logic level circuits.
6. Switching Applications: Suitable for high-speed switching operations in digital circuits.
These features make it ideal for use in consumer electronics, telecommunications, and automotive applications.