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4N35VM

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This THT optocoupler features one channel with a transistor output, offering an isolation voltage of 4.17kV. It has a current transfer ratio (CTR) of 100% at an input current of 10mA, ensuring reliable performance for various applications.

SKU: 298897725661 Category:
Weight:
0.45g

0,95 

/

pcs

298 in stock

Estimated delivery time: 7-14 days
* Please note that delivery times may vary based on supplier availability and shipping location.

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298 in stock

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Packing Information:
  • Packing Detail: TB1, ST, , 50
  • Packing Detail: CT1, ST, , 1000
Description

When it comes to ensuring efficient and reliable electrical isolation in your circuits, the 4N35VM optocoupler stands out as a premier choice for both professionals and hobbyists alike. This state-of-the-art component combines an infrared light-emitting diode (LED) with a phototransistor, allowing for seamless signal transfer while maintaining high voltage isolation.

Understanding the 4N35VM Optocoupler

The 4N35VM is designed specifically for through-hole technology (THT) applications, making it easy to integrate into a wide range of electronic designs. It features a channel configuration of 1, providing a dedicated path for signal transmission, which translates into improved circuit reliability and performance.

Key Features of the 4N35VM

  • High Voltage Rating: With a maximum voltage of 4.17kV, the 4N35VM can handle high-voltage applications without compromising performance. This makes it suitable for industrial controls, medical devices, and other high-voltage environments.
  • Current Transfer Ratio (CTR): The 4N35VM boasts a current transfer ratio of 100% at an input current (If) of 10mA. This means that for every 100mA flowing through the LED, the output transistor can conduct 100mA, ensuring reliable signal transfer.
  • Electrical Isolation: With its remarkable isolation voltage, the 4N35VM provides robust protection against electrical surges and noise, safeguarding delicate components within your circuit.
  • Durable Design: This optocoupler is built to withstand the rigors of daily use, featuring a sturdy housing that provides mechanical stability and reliable operation in various environments.

Applications of the 4N35VM Optocoupler

The versatility of the 4N35VM allows it to be utilized in numerous applications across various sectors. Here are some common uses:

  • Microcontroller Interfacing: The 4N35VM serves as an excellent interface between microcontrollers and high-voltage systems, protecting sensitive components from voltage spikes.
  • Signal Isolation: It provides effective signal isolation in communications equipment, ensuring that noise and interference do not affect performance.
  • Switching Power Supplies: Use the 4N35VM in switching power supply circuits to isolate the control signals from power circuits, increasing safety and reliability.
  • Industrial Controls: Ideal for applications in industrial automation, the 4N35VM protects sensitive control electronics from high-voltage conditions.
  • Medical Equipment: In the medical field, electrical isolation is crucial for patient safety. The high isolation voltage of the 4N35VM makes it a reliable choice for medical device designs.

Why Choose the 4N35VM Optocoupler?

In a rapidly evolving technological landscape, choosing the right components is essential for achieving optimal performance. The 4N35VM is engineered to meet stringent performance standards, offering increased reliability and functionality. Here’s why this optocoupler should be in your toolkit:

  • High-Performance Characteristics: With its robust specifications, including a high CTR and voltage tolerance, the 4N35VM stands up to demanding applications. This ensures that your circuits perform consistently, even under stress.
  • User-Friendly Design: The THT design of the 4N35VM is easy to work with, making it suitable for a variety of prototyping and testing environments. You can effortlessly solder it onto a PCB without the need for specialized tools.
  • Cost-Effectiveness: The 4N35VM provides excellent value for money. From hobbyist projects to industrial applications, its affordability without compromising quality is a significant advantage.
  • Wide Application Range: Its flexibility in application—ranging from consumer electronics to industrial automation—means you can rely on the 4N35VM for a variety of projects without looking for additional components.

How to Integrate the 4N35VM into Your Project

Integrating the 4N35VM into your project requires careful consideration of its specifications and how it interfaces with other components. Here are steps to effectively utilize this optocoupler:

  1. Identify Input and Output Requirements: Determine the input current required to activate the LED and the output current capabilities of the phototransistor based on your application needs.
  2. Design PCB Layout: Ensure that your PCB layout accommodates the footprint of the 4N35VM and provides sufficient trace width for current-carrying capability.
  3. Use Appropriate Resistors: Place resistors in series with the input LED to control current and protect both the LED and the driving circuit.
  4. Test Your Circuit: Once assembled, rigorously test the circuit to ensure the 4N35VM is functioning correctly and provides the required isolation and signal integrity.

Conclusion

The 4N35VM optocoupler is not just another component; it’s a vital part of advanced electronic designs where reliability and safety are paramount. With its impressive specifications and versatility, it supports a wide range of applications—from consumer electronics to high-end industrial systems. Invest in the 4N35VM to elevate your designs and ensure optimum performance in your projects. For more optocoupler options with analog output, check out our optocouplers category.

Additional information
Weight 0,00045 kg
Manufacturer

Mounting

Type-of-optocoupler

Case

Turn-on-time

Turn-off-time

Number-of-channels

Kind-of-output

Insulation-voltage

Ctrif

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