3EZ16D10/TR12 Allicdata Electronics
Allicdata Part #:

3EZ16D10/TR12-ND

Manufacturer Part#:

3EZ16D10/TR12

Price: $ 0.55
Product Category:

Discrete Semiconductor Products

Manufacturer: Microsemi Corporation
Short Description: DIODE ZENER 16V 3W DO204AL
More Detail: Zener Diode 16V 3W ±10% Through Hole DO-204AL (DO-...
DataSheet: 3EZ16D10/TR12 datasheet3EZ16D10/TR12 Datasheet/PDF
Quantity: 1000
4000 +: $ 0.50009
Stock 1000Can Ship Immediately
$ 0.55
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Voltage - Zener (Nom) (Vz): 16V
Tolerance: ±10%
Power - Max: 3W
Impedance (Max) (Zzt): 5.5 Ohms
Current - Reverse Leakage @ Vr: 500nA @ 12.2V
Voltage - Forward (Vf) (Max) @ If: 1.2V @ 200mA
Operating Temperature: -65°C ~ 150°C
Mounting Type: Through Hole
Package / Case: DO-204AL, DO-41, Axial
Supplier Device Package: DO-204AL (DO-41)
Base Part Number: 3EZ16
Description

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3EZ16D10/TR12 Application Field and Working Principle

3EZ16D10/TR12 is a single Zener diode component typically used in junction circuits to regulate the voltage in products like rectifiers, amplifiers, and power supplies. The component works by controlling the current depending on the voltage applied to the component, and it is designed to transition from a forward-biased state to a reverse-biased state when the voltage reaches a certain level.

Application Field

The 3EZ16D10/TR12 component is typically used in junction circuits where current regulation is required for rectifier, amplifier, and power supply applications. The component is designed to handle a power rating of 600mW and voltages up to 1000V. It is also designed to transition from a forward-biased state to a reverse-biased state when the voltage reaches a certain level, allowing the component to control the current which is then used to regulate the voltage in the circuit.

This component is also commonly used in automotive and radio frequency applications. Automotive applications typically require higher voltages up to 25V, and radio frequency applications need the component to be able to handle higher current ratings. The component is designed to handle these higher voltage and current ratings with ease.

Working Principle

A 3EZ16D10/TR12 component works by regulating the current applied to the component. The component is typically connected to a junction circuit, and the current flowing through the component is determined by the voltage applied to the component. When the voltage applied to the component reaches a certain level, the component transitions from a forward-biased state to a reverse-biased state. This transition changes the current flowing through the component, and this current is used to regulate the voltage in the junction circuit.

In order to regulate the current, the component has two terminals, an anode and a cathode. The anode is connected to a higher voltage, and the cathode is connected to a lower voltage. When the voltage at the anode reaches a certain level, the component will transition from a forward-biased state to a reverse-biased state. This transition changes the current flowing through the component, and this current is used to regulate the voltage in the junction circuit.

The component is also designed to handle current ratings up to 600mW, which makes it ideal for use in automotive and radio frequency applications. The component is also designed to transition from a forward-biased state to a reverse-biased state when the voltage reaches a certain level, allowing the component to control the current which is then used to regulate the voltage in the junction circuit.

Conclusion

The 3EZ16D10/TR12 component is a single Zener diode typically used in junction circuits to regulate the voltage. The component works by controlling the current depending on the voltage applied to the component, and it is designed to transition from a forward-biased state to a reverse-biased state when the voltage reaches a certain level. The component is ideal for use in automotive and radio frequency applications due to its high current rating and its ability to transition from a forward-biased state to a reverse-biased state when the voltage reaches a certain level.

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

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