MM5Z36V Allicdata Electronics

MM5Z36V Discrete Semiconductor Products

Allicdata Part #:

MM5Z36VTR-ND

Manufacturer Part#:

MM5Z36V

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: ON Semiconductor
Short Description: DIODE ZENER 36V 200MW SOD523F
More Detail: Zener Diode 36V 200mW ±6% Surface Mount SOD-523F
DataSheet: MM5Z36V datasheetMM5Z36V Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Voltage - Zener (Nom) (Vz): 36V
Tolerance: ±6%
Power - Max: 200mW
Impedance (Max) (Zzt): 90 Ohms
Current - Reverse Leakage @ Vr: 50nA @ 25.2V
Operating Temperature: -55°C ~ 150°C
Mounting Type: Surface Mount
Package / Case: SC-79, SOD-523F
Supplier Device Package: SOD-523F
Base Part Number: MM5Z36
Description

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MM5Z36V is a single zener diode from popular electronic component manufacturer, ON Semiconductor. This component is utilized in a wide range of applications and provides a dependable performance over a variety of conditions. MM5Z36V has special features and operating characteristics which make it suitable for use in a number of applications. In this article, we will discuss the application field and working principle of MM5Z36V.

Applications of MM5Z36V

The MM5Z36V component is typically used in DC and AC converter applications, high frequency low-dropout regulators, and audio protection applications. It is also often used in voltage clamping circuits, such as surge protectors, to protect against transient voltage overshoots. Additionally, MM5Z36V is also suitable for use in industrial temperature-sensing circuits and display circuits, as well as other similar applications.

A few examples of applications for the MM5Z36V are the following: AC/DC converter applications, where the component is used to boost voltage output at low input voltage levels; audio protection applications, where it is used to protect-circuits from destructive transient voltage overshoots; and industrial temperature-sensing circuits, where it is used to quickly convert temperature readings into a voltage signal.

Working Principle of MM5Z36V

The main principle behind the MM5Z36V is that it can regulate voltage over varying conditions. This regulation is made possible thanks to its special characteristics, which include its low leakage current, breakdown voltage, and fast response time. The component is designed with a voltage regulator and zener breakdown technology, which enables it to be used in a range of applications.

The MM5Z36V works by using the breakdown voltage of the component, which is predetermined during the design process. This breakdown voltage is set in order to create a constant voltage when there are a variety of input voltages present. This process requires the component to be placed in parallel with the source. When the source voltage exceeds the breakdown voltage of the component, it quickly shunts the excess voltage away, thereby regulating the voltage.

The MM5Z36V also features an internal current limiter, which helps to control excessive current conditions. In most cases, the component is able to protect itself from the effects of an excessive or constant current, allowing it to work longer and at improved performance levels.

Finally, the MM5Z36V has a fast response time and low leakage current. This means that it is able to quickly respond to changing input voltages and provide a stable output without losing any energy due to leakage current. This is particularly beneficial in applications such as voltage regulation, where reliable performance is essential.

Conclusion

The MM5Z36V is a single zener diode from ON Semiconductor, which is used in a variety of applications, such as AC/DC converter, voltage clamping, audio protection and industrial temperature-sensing. Its main principle is to regulate the voltage over varying conditions due to its low leakage current, breakdown voltage, and fast response time. By combining these characteristics, the MM5Z36V is able to offer a wide range of applications and dependable performance over a variety of conditions.

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

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