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Zener Diodes

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1N4753A
LUMIMAX OPTOELECTRONIC TECHNOLOGY
±5% 36V 50Ω DO-41G Through hole mounting
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1N4729A
LUMIMAX OPTOELECTRONIC TECHNOLOGY
±5% 3.6V 10Ω DO-41G Through hole mounting
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1N4733A
LUMIMAX OPTOELECTRONIC TECHNOLOGY
DIODE ZENER 5.1V 1W DO41G
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1N4734A
LUMIMAX OPTOELECTRONIC TECHNOLOGY
±5% 5.6V DO-41
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1N4728A
LUMIMAX OPTOELECTRONIC TECHNOLOGY
DIODE ZENER 3.3V 1W DO41G
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1N4730A
LUMIMAX OPTOELECTRONIC TECHNOLOGY
±5%
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Ship Date: 7-12 working days
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MOQ: 10
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1N4746A
LUMIMAX OPTOELECTRONIC TECHNOLOGY
±5% 18V 20Ω DO-41G Through hole mounting
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Ship Date: 7-12 working days
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x $0.2132
Ext. Price: $2.13
MOQ: 10
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1N4738A
LUMIMAX OPTOELECTRONIC TECHNOLOGY
±5% 8.2V 4.5Ω DO-41G Through hole mounting
Quantity: 0
Ship Date: 7-12 working days
10+ $0.2132
100+ $0.0972
500+ $0.0676
2500+ $0.0416
5000+ $0.0369
10000+ $0.0312
- +
x $0.2132
Ext. Price: $2.13
MOQ: 10
Mult: 10
SPQ: 1

Zener Diodes

Zener diodes are a special type of diode designed to operate in a reverse-biased condition, allowing current to flow in the reverse direction when the voltage across the diode reaches a specific threshold known as the Zener voltage. This unique property makes them indispensable in various electronic circuits.

Definition:
A Zener diode is a semiconductor device that, unlike a standard diode, is designed to operate in its breakdown region. It maintains a constant voltage across its terminals when current flows in the reverse direction, making it an excellent voltage regulator.

Function:
The primary function of a Zener diode is voltage regulation. It can be used to stabilize voltage levels in a circuit, protecting sensitive components from voltage spikes and ensuring a consistent power supply. Zener diodes are also used in voltage reference circuits, voltage clamping, and as a voltage-controlled resistor.

Applications:
1. Voltage regulation: To maintain a constant voltage level in power supplies and other electronic systems.
2. Voltage reference: In circuits that require a stable reference voltage for comparison or calibration.
3. Clamping: To limit the voltage across sensitive components to prevent damage from overvoltage conditions.
4. Waveform shaping: In circuits where the diode's breakdown voltage is used to create a specific voltage level or to shape an electrical signal.
5. Voltage-controlled resistor: In applications where resistance needs to be adjusted based on the voltage across the diode.

Selection Criteria:
When selecting a Zener diode, consider the following:
1. Zener Voltage (Vz): The voltage at which the diode starts conducting in the reverse direction.
2. Power Rating (Pd): The maximum power the diode can dissipate without overheating, which is a function of the current and the Zener voltage.
3. Current Rating (Iz): The maximum reverse current the diode can handle without damage.
4. Tolerance: The allowable variation in the Zener voltage, which affects the accuracy of voltage regulation.
5. Reverse Voltage (Vr): The maximum reverse voltage the diode can withstand without breaking down.
6. Lead Form: The physical configuration of the diode's leads, which can affect its physical integration into a circuit.
7. Package Type: The physical package of the diode, which can range from small surface-mount devices to larger through-hole components.

In summary, Zener diodes are essential components in electronic design, providing voltage regulation and protection in a variety of applications. When choosing a Zener diode, it's crucial to match its specifications to the requirements of the circuit to ensure proper operation and reliability.
Please refer to the product rule book for details.