DZ2S082M0L Allicdata Electronics
Allicdata Part #:

DZ2S082M0LTR-ND

Manufacturer Part#:

DZ2S082M0L

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Panasonic Electronic Components
Short Description: DIODE ZENER 8.2V 150MW SSMINI2
More Detail: Zener Diode 8.2V 150mW ±2.5% Surface Mount SSMini2...
DataSheet: DZ2S082M0L datasheetDZ2S082M0L Datasheet/PDF
Quantity: 9000
Stock 9000Can Ship Immediately
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Voltage - Zener (Nom) (Vz): 8.2V
Tolerance: ±2.5%
Power - Max: 150mW
Impedance (Max) (Zzt): 20 Ohms
Current - Reverse Leakage @ Vr: 100nA @ 5V
Voltage - Forward (Vf) (Max) @ If: 1V @ 10mA
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: SC-79, SOD-523
Supplier Device Package: SSMini2-F5-B
Base Part Number: DZ2S08V2
Description

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DZ2S082M0L is a type of single-level Zener diodes manufactured by Diodes Incorporated. It is specifically designed for low-noise Zener diode applications, providing improved reliability and lower noise levels over conventional Zener diodes. It has a wide range of applications in both electronic and industrial control systems.

Applications of DZ2S082M0L

DZ2S082M0L is used primarily in power supply and data acquisition systems that require low noise performance. It is ideal for applications where minimal noise and distortion is desired, such as in waveform monitoring and audio systems. The diode also serves as a noise filter in communications equipment, providing a highly efficient way to reduce interference and distortion. Other possible applications of the diode include automotive audio systems, computer peripherals, and home entertainment systems.

DZ2S082M0L is also used as a voltage regulator in portable electronic devices, providing a consistent and reliable output even when the input voltage fluctuates. This makes it an ideal choice for products such as industrial computers, communications systems and medical equipment. Additionally, the diode is commonly used in the protection circuits of electrical equipment and solar cells, protecting them from short-circuit current.

Working Principle of DZ2S082M0L

The primary purpose of the DZ2S082M0L is to regulate or suppress a current or voltage above a predetermined level. The diode operates by utilizing the Zener breakdown mechanism, which is based on a P-N junction. When a reverse bias is applied, the increased electric field intensity near the junction causes the electrons in the region to be accelerated, creating electron-hole pairs as a result. This causes a large current to flow through the diode, and the voltage across the diode begins to drop.

This drop in voltage is inversely proportional to the bias current, and the point at which the breakdown takes place is known as the Zener voltage. The magnitude of the Zener voltage is determined by the doping levels of the P-N junction and the breakdown current of the diode. With the DZ2S082M0L, the Zener voltage is 8.2V and the maximum breakdown current is 0.3A.

Once the Zener voltage is reached, the diode begins to conduct current through the junction and the voltage across the diode remains relatively constant, regardless of the amount of current being applied. This makes the diode useful for applications such as voltage regulation and protection circuits. Furthermore, the diode is designed to have low leakage current, ensuring that the regulated voltage is highly reliable and minimal noise is generated.

Conclusion

The DZ2S082M0L is a low-noise, single-level Zener diode manufactured by Diodes Incorporated. It is designed for applications that require minimal noise and distortion, and is particularly useful for power supply and data acquisition systems. The diode operates by utilizing the Zener breakdown mechanism, which is based on the P-N junction of the diode. The Zener voltage of the diode is 8.2V and it has a maximum breakdown current of 0.3A. The diode is also designed to have low leakage current, providing a reliable and consistent output.

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

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