Allicdata Part #: | CZRUR3V6B-HF-ND |
Manufacturer Part#: |
CZRUR3V6B-HF |
Price: | $ 0.04 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Comchip Technology |
Short Description: | DIODE ZENER 3.6V 150MW 0603 |
More Detail: | Zener Diode 3.6V 150mW ±2% Surface Mount 0603/SOD-... |
DataSheet: | CZRUR3V6B-HF Datasheet/PDF |
Quantity: | 1000 |
4000 +: | $ 0.03673 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Voltage - Zener (Nom) (Vz): | 3.6V |
Tolerance: | ±2% |
Power - Max: | 150mW |
Impedance (Max) (Zzt): | 90 Ohms |
Current - Reverse Leakage @ Vr: | 15µA @ 1V |
Voltage - Forward (Vf) (Max) @ If: | 900mV @ 10mA |
Operating Temperature: | -55°C ~ 125°C |
Mounting Type: | Surface Mount |
Package / Case: | 2-SMD, No Lead |
Supplier Device Package: | 0603/SOD-523F |
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CZRUR3V6B-HF diode comes in a DO-35 package and is typically used in electronic circuits, particularly in voltage regulation. It is part of the Zener diode family, which provides a specified reverse breakdown voltage and current, meaning that its main purpose is to protect a circuit from high voltage. This CZRUR3V6B-HF in particular has a reverse breakdown voltage of 3.6 volts and a maximum power dissipation of 500mW.
Zener diodes are named for the inventor of the diode, Clarence Zener. These diodes consist of two types of semiconductors, one that is heavily doped and one that is lightly doped. When a voltage is applied to the two semiconductor materials, electrons from the heavily doped side migrate to the lightly doped side. This allows current to flow from the heavily doped side to the lightly doped side. When the reverse voltage is applied, the electrons from the lightly doped material migrate to the heavily doped material. This creates a flow of current from the lightly doped side to the heavily doped side.
This Zener diode works in three major modes: the reverse breakdown voltage mode, a zener mode, and a reverse breakdown current mode. In the reverse breakdown voltage mode, a negative voltage is applied to the diode, and the zener diode conducts a minimum amount of current when the voltage reaches the breakdown voltage, usually between 1 and 5 volts. This reversed voltage can also be called the “clamping voltage.” When this occurs, the diode starts to conduct and the current is limited to the diode\'s specified breakdown current.
The CZRUR3V6B-HF has a rated breakdown voltage of 3.6V and breaks down at that voltage with the current jumping to its specified amount, typically 10mA. When this current is reached, the voltage remains at the breakdown voltage of the diode. This allows for a stable, regulated voltage to be maintained in the circuit.
The Zener diode\'s zener mode occurs when the voltage applied to it is below the breakdown voltage and the current is less than the specified breakdown current. In this mode, the zener diode will act like an open circuit and the current will not flow. This can prevent the voltage of the circuit from dropping too far.
In the breakdown current mode, the current of the diode can act as a current limiter. This prevents an excessive current from flowing through a circuit and causing damage. The CZRUR3V6B-HF can act as a current limiter by setting the voltage at a specified level and restricting the amount of current that is allowed to flow through the diode.
The CZRUR3V6B-HF is used for many applications, such as in the protection of integrated circuits (ICs) and transistors from electric spikes, in the filtering of power supplies, and in the regulation of voltages in various circuits. In addition, diodes like this can also be used as a switching element for various digital circuits.
The CZRUR3V6B-HF is a high-performance single Zener diode with a reverse breakdown voltage of 3.6V and a maximum power dissipation of 500mW. This diode can be used in a wide range of electronic applications and has a variety of features, including its ability to regulate and protect circuits from high voltages and its function as a current limiter.
The specific data is subject to PDF, and the above content is for reference
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