Allicdata Part #: | LLSD101C-13DI-ND |
Manufacturer Part#: |
LLSD101C-13 |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Diodes Incorporated |
Short Description: | DIODE SCHOTTKY 40V 15MA MINIMELF |
More Detail: | Diode Schottky 40V 15mA (DC) Surface Mount Mini ME... |
DataSheet: | LLSD101C-13 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Diode Type: | Schottky |
Voltage - DC Reverse (Vr) (Max): | 40V |
Current - Average Rectified (Io): | 15mA (DC) |
Voltage - Forward (Vf) (Max) @ If: | 900mV @ 15mA |
Speed: | Small Signal = |
Reverse Recovery Time (trr): | 1ns |
Current - Reverse Leakage @ Vr: | 200nA @ 30V |
Capacitance @ Vr, F: | 2.2pF @ 0V, 1MHz |
Mounting Type: | Surface Mount |
Package / Case: | DO-213AA |
Supplier Device Package: | Mini MELF |
Operating Temperature - Junction: | -55°C ~ 125°C |
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Today, semiconductor diodes are widely used in many fields. The device in question is the LLSD101C-13, a single, rectifying diode. It has many applications and a unique working principle that is integral to a variety of systems. Understanding the many uses and basic operations of the LLSD101C-13 can lead to better implementations and more efficient systems.
Applications
The LLSD101C-13 is a rectifying diode, and its main application is to convert AC signals to DC signals. This device is used in power supplies, rectifiers, and voltage regulators. Its simple construction makes it suitable for use with minimal voltage drops, making it a great choice for high frequency power supplies. It can also be used as a current rectifying diode with its low forward voltage drop and fast switching speed, which is great for circuit protection applications as it can detect sudden voltage drops. It is often used in automotive systems and electronic circuits as a rectifying element.
Furthermore, the LLSD101C-13 is a popular choice for load switching applications. Its low voltage drop characteristics allow for efficient loading and unloading of power. This diode can also act as a temperature shift device and can be used for switching applications in high temperature environments as it can handle temperatures up to 150°C. It is also suitable for use in noise filtering circuits, enabling them to eliminate noise from AC signals accurately.
Working Principle
A diode is a device that conducts current in one direction and blocks it in the opposite direction. A rectifying diode is specially designed to conduct current in only one direction, allowing it to convert AC signals to DC signals. The structure of a rectifying diode consists of two terminals, the anode and cathode. The LLSD101C-13 is a single rectifying diode, meaning it only has one anode and one cathode.
The working principle of the LLSD101C-13 begins when a voltage is applied across the terminals. When the anode is connected to the positive current and the cathode connected to the negative current, the diode’s N-type material becomes positively charged and attracts electrons, allowing the current to flow through the diode. This is called forward-bias, and the current that flows through the diode is referred to as the forward current. Conversely, when the anode is connected to the negative current, the diode’s P-type material becomes negatively charged and does not allow the current to flow through. This is called reverse-bias, and the current that flows through the diode is referred to as the reverse current.
This polarized effect of the LLSD101C-13 allows AC signals to be converted to DC signals. As the voltage alternates between positive and negative, the diode switches between forward-bias and reverse-bias accordingly. When forward-bias, the diode conducts current and when reverse-bias, the diode blocks current. This alternating conductivity allows the diode to convert an AC signal to a near sinusoidal DC signal, which is necessary in many systems.
Conclusion
The LLSD101C-13 single rectifying diode is a popular choice for a variety of applications from load switching to noise filtering. Its unique working principle of forward-bias and reverse-bias enables it to convert AC signals to DC signals accurately and efficiently. A better understanding of the many applications and working principle of the LLSD101C-13 can lead to more efficient implementations and better systems.
The specific data is subject to PDF, and the above content is for reference
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