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1N4758A-TP: Semiconductor Diode
Basic Information Overview
- Category: Semiconductor Diode
- Use: Voltage Regulation
- Characteristics: Zener Diode, 22V, 1W, Axial Package
- Package: Axial Lead, DO-41
- Essence: Regulates voltage by maintaining a constant output voltage under varying load conditions.
- Packaging/Quantity: Typically available in reels of 2000 units.
Specifications
- Voltage: 22V
- Power Dissipation: 1W
- Tolerance: ±5%
- Operating Temperature Range: -65°C to +200°C
- Forward Voltage: 1.5V
- Reverse Leakage Current: 5µA
Detailed Pin Configuration
The 1N4758A-TP has two leads, with the cathode being shorter than the anode. The cathode is marked with a band around the diode body.
Functional Features
- Zener Effect: Exhibits the Zener effect, allowing it to maintain a constant voltage drop across its terminals.
- Stability: Provides stable voltage regulation even under varying load conditions.
- Protection: Offers protection against voltage spikes and surges.
Advantages and Disadvantages
Advantages
- Reliable voltage regulation
- Protection against voltage spikes
- Wide operating temperature range
Disadvantages
- Limited power dissipation capability
- Tolerance of ±5% may not be suitable for precision applications
Working Principles
The 1N4758A-TP operates based on the Zener effect, which causes it to maintain a nearly constant voltage drop across its terminals when reverse-biased at or above its breakdown voltage.
Detailed Application Field Plans
The 1N4758A-TP is commonly used in various electronic circuits requiring stable voltage regulation, such as:
- Power supplies
- Voltage regulators
- Overvoltage protection circuits
Detailed and Complete Alternative Models
- 1N4728A-TP (3.3V, 1W)
- 1N4733A-TP (5.1V, 1W)
- 1N4742A-TP (12V, 1W)
In conclusion, the 1N4758A-TP semiconductor diode is a reliable component for voltage regulation in various electronic applications, offering stable performance and protection against voltage spikes. Its characteristics, specifications, and application field plans make it a valuable component in electronic circuit design.
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Перелічіть 10 типових запитань і відповідей, пов’язаних із застосуванням 1N4758A-TP у технічних рішеннях
Sure, here are 10 common questions and answers related to the application of 1N4758A-TP in technical solutions:
What is the 1N4758A-TP diode used for?
- The 1N4758A-TP is a Zener diode commonly used for voltage regulation and protection in electronic circuits.
What is the voltage rating of the 1N4758A-TP diode?
- The 1N4758A-TP has a nominal Zener voltage of 56 volts.
How does the 1N4758A-TP diode regulate voltage?
- The 1N4758A-TP operates in the reverse-biased breakdown region, maintaining a nearly constant voltage across its terminals.
Can the 1N4758A-TP be used for overvoltage protection?
- Yes, the 1N4758A-TP can be used to protect sensitive components from overvoltage conditions by shunting excess voltage to ground.
What is the power rating of the 1N4758A-TP diode?
- The 1N4758A-TP has a power dissipation rating of 1 watt.
In what type of circuits is the 1N4758A-TP commonly used?
- The 1N4758A-TP is commonly used in voltage regulator circuits, power supplies, and overvoltage protection circuits.
What is the temperature coefficient of the 1N4758A-TP diode?
- The temperature coefficient of the 1N4758A-TP is typically around -2 mV/°C, indicating a relatively stable voltage reference over a range of temperatures.
Can multiple 1N4758A-TP diodes be connected in series or parallel?
- Yes, multiple 1N4758A-TP diodes can be connected in series to create higher voltage references, or in parallel to increase current-handling capability.
What are the typical applications of the 1N4758A-TP in electronic circuits?
- Typical applications include voltage regulation in power supplies, voltage references in instrumentation, and overvoltage protection in sensitive circuits.
Are there any special considerations for using the 1N4758A-TP in high-frequency circuits?
- In high-frequency circuits, the parasitic capacitance of the 1N4758A-TP should be taken into account to avoid unintended effects on circuit performance.
I hope these questions and answers are helpful! Let me know if you need further assistance.