Kuva saattaa olla esitys.
Katso tuotteen tekniset tiedot.
MF52F503F3950

MF52F503F3950

Product Overview

Category

The MF52F503F3950 belongs to the category of NTC thermistors.

Use

It is commonly used for temperature sensing and control in various electronic devices and systems.

Characteristics

  • High sensitivity to temperature changes
  • Wide operating temperature range
  • Small size for easy integration into electronic circuits

Package

The MF52F503F3950 is typically available in a small, cylindrical package.

Essence

This NTC thermistor is essential for precise temperature measurement and regulation in electronic applications.

Packaging/Quantity

The MF52F503F3950 is usually packaged in reels or trays, with quantities varying based on manufacturer specifications.

Specifications

  • Resistance at 25°C: 50kΩ ±1%
  • B Value: 3950K ±1%
  • Maximum Operating Temperature: 150°C
  • Dissipation Factor: 2.5mW/°C
  • Thermal Time Constant: 7s

Detailed Pin Configuration

The MF52F503F3950 typically has two leads, with the resistance value measured across these leads.

Functional Features

  • Precise temperature measurement
  • Fast response to temperature changes
  • Compatibility with various electronic circuits

Advantages

  • High sensitivity
  • Wide operating temperature range
  • Compact size

Disadvantages

  • Non-linear response at extreme temperatures
  • Sensitivity to self-heating effects

Working Principles

The MF52F503F3950 operates based on the negative temperature coefficient (NTC) principle, where its resistance decreases as the temperature increases.

Detailed Application Field Plans

The MF52F503F3950 is widely used in: - Temperature monitoring in consumer electronics - Thermal management in automotive systems - Temperature compensation in industrial control systems

Detailed and Complete Alternative Models

Some alternative models to the MF52F503F3950 include: - MF52E103F3470 - MF52E503F3950 - MF52E104F3950

In conclusion, the MF52F503F3950 NTC thermistor offers high sensitivity and wide temperature range, making it suitable for diverse temperature sensing and control applications in electronic systems.

[Word count: 298]

Luettele 10 yleistä kysymystä ja vastausta, jotka liittyvät MF52F503F3950 :n soveltamiseen teknisissä ratkaisuissa

  1. What is the operating temperature range of MF52F503F3950?

    • The operating temperature range of MF52F503F3950 is typically -55°C to +155°C.
  2. What is the resistance tolerance of MF52F503F3950?

    • The resistance tolerance of MF52F503F3950 is typically ±1% or ±2%.
  3. Can MF52F503F3950 be used in automotive applications?

    • Yes, MF52F503F3950 is suitable for automotive applications due to its wide operating temperature range and reliability.
  4. What is the power rating of MF52F503F3950?

    • The power rating of MF52F503F3950 is typically 50mW at +25°C.
  5. Is MF52F503F3950 suitable for temperature compensation in electronic circuits?

    • Yes, MF52F503F3950 is commonly used for temperature compensation in electronic circuits due to its stable characteristics over a wide temperature range.
  6. What are the typical applications of MF52F503F3950 in technical solutions?

    • MF52F503F3950 is often used in temperature measurement, control systems, battery management, and industrial equipment where precise temperature sensing is required.
  7. Does MF52F503F3950 require any special handling during assembly?

    • MF52F503F3950 should be handled with care to avoid mechanical stress on the leads, and it is recommended to follow standard industry practices for surface mount device (SMD) assembly.
  8. Can MF52F503F3950 be used in harsh environments?

    • Yes, MF52F503F3950 is designed to withstand harsh environments and is suitable for use in rugged industrial or outdoor applications.
  9. What are the key advantages of using MF52F503F3950 in technical solutions?

    • The key advantages of MF52F503F3950 include its high accuracy, stability over a wide temperature range, and reliability in demanding conditions.
  10. Are there any specific precautions to consider when designing with MF52F503F3950?

    • Designers should ensure proper thermal management to maintain accurate temperature sensing and consider the effects of self-heating when integrating MF52F503F3950 into their technical solutions.