DFLZ43-TP Allicdata Electronics
Allicdata Part #:

DFLZ43-TP-ND

Manufacturer Part#:

DFLZ43-TP

Price: $ 0.08
Product Category:

Discrete Semiconductor Products

Manufacturer: Micro Commercial Co
Short Description: DIODE ZENER 1W SOD123
More Detail: Zener Diode 43V 1W ±5% Surface Mount SOD-123FL
DataSheet: DFLZ43-TP datasheetDFLZ43-TP Datasheet/PDF
Quantity: 1000
2500 +: $ 0.06906
Stock 1000Can Ship Immediately
$ 0.08
Specifications
Series: --
Part Status: Active
Voltage - Zener (Nom) (Vz): 43V
Tolerance: ±5%
Power - Max: 1W
Impedance (Max) (Zzt): 70 Ohms
Current - Reverse Leakage @ Vr: 5µA @ 32.7V
Voltage - Forward (Vf) (Max) @ If: 1.2V @ 200mA
Operating Temperature: -55°C ~ 150°C (TJ)
Mounting Type: Surface Mount
Package / Case: SOD-123F
Supplier Device Package: SOD-123FL
Description

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The DFLZ43-TP Zener single diode is designed for high-speed switching applications. The device combines low capacitance typical values, high reverse capability, excellent temperature stability and low leakage current. This makes the DFLZ43-TP ideal for a variety of applications including digital logic circuits, pulse shaping and waveform generation, and high-speed switching. This article will provide an overview of the DFLZ43-TP\'s application field, working principle and its typical characteristics.

Application Field

The DFLZ43-TP Zener single diode is suitable for high-speed switching operations and is a popular choice for digital logic circuits, pulse shaping and waveform generation, and high-speed switching. It is also used in power converter and switching power supply applications to smoothen out voltage variations.

The device offers several features which make it suitable for a variety of applications. Its fast switching speeds make it ideal for high-speed switching applications. The device also offers excellent temperature stability and extremely low leakage current. Its low capacitance ensures that the device can operate at high frequencies without capacitive losses. Additionally, the device also provides a high reverse capability and excellent temperature stability.

Working Principle

The DFLZ43-TP Zener single diode works on the principle of Zener breakdown. When the voltage across the diode exceeds a particular value, the diode exhibits a sharp increase in current. This phenomenon is known as Zener breakdown. Zener breakdown is a process in which electrons from the N-side of the diode avalanche across the depletion region to the P-side of the diode. This avalanche of electrons causes an increase of current through the diode.

The DFLZ43-TP offers an extremely low leakage current, which is beneficial in most applications. It is important to keep in mind that the device\'s performance can be affected by an increase in temperature. Therefore, it is important to make sure that the device is not operating in an environment that is too hot.

Typical Characteristics

The DFLZ43-TP offers a wide range of typical characteristics which make it suitable for a variety of applications. It has a maximum reverse avalanche current of 5.5A, a maximum zener breakdown voltage of 8V, a maximum capacitance of 30pF, a maximum leakage current of 12µA, an operating temperature range of -55°C to +125°C, and a maximum power dissipation of 5W.

In addition to these features, the DFLZ43-TP also offers excellent temperature stability and extremely low leakage current. These features are important for applications that require precision control over voltage or current. The device also has a fast switching time, which makes it ideal for high-speed switching applications.

Conclusion

The DFLZ43-TP Zener single diode is designed for high-speed switching operations and is a popular choice for digital logic circuits, pulse shaping and waveform generation, and high-speed switching. The device offers excellent temperature stability and extremely low leakage current, making it suitable for applications that require precision control. Additionally, its fast switching speeds make it ideal for high-speed switching applications and its low capacitance ensures that the device can operate at high frequencies without capacitive losses.

The specific data is subject to PDF, and the above content is for reference

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