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B57891M0103J052

B57891M0103J052

Product Overview

Category

The B57891M0103J052 belongs to the category of passive electronic components.

Use

It is used as a ceramic capacitor in electronic circuits for various applications.

Characteristics

  • High capacitance
  • Low equivalent series resistance (ESR)
  • Stable performance over a wide temperature range

Package

The B57891M0103J052 is typically available in surface mount technology (SMT) packages.

Essence

This component serves as a crucial element in filtering and decoupling circuits, contributing to the overall stability and functionality of electronic devices.

Packaging/Quantity

The B57891M0103J052 is commonly packaged in reels or trays, with quantities varying based on manufacturer specifications.

Specifications

  • Capacitance: 0.01µF
  • Voltage Rating: 50V
  • Tolerance: ±5%
  • Temperature Coefficient: X7R

Detailed Pin Configuration

The B57891M0103J052 has two terminals, typically labeled as positive (+) and negative (-).

Functional Features

  • Excellent high-frequency characteristics
  • Low self-inductance
  • High reliability and long operational lifespan

Advantages

  • Compact size
  • Wide operating temperature range
  • Suitable for high-speed digital and analog applications

Disadvantages

  • Limited voltage rating compared to some other capacitors
  • Sensitive to mechanical stress due to its ceramic composition

Working Principles

The B57891M0103J052 operates based on the principles of energy storage and charge/discharge cycles within the dielectric material.

Detailed Application Field Plans

The B57891M0103J052 is widely used in: - Power supply circuits - Signal coupling and decoupling - Filtering applications in communication equipment - Automotive electronics - Industrial control systems

Detailed and Complete Alternative Models

Some alternative models to the B57891M0103J052 include: - B57891M0103J050 - B57891M0103J051 - B57891M0103J053

In conclusion, the B57891M0103J052 ceramic capacitor offers high performance and reliability, making it an essential component in various electronic applications.

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Lista 10 Vanliga frågor och svar relaterade till tillämpningen av B57891M0103J052 i tekniska lösningar

  1. What is B57891M0103J052?

    • B57891M0103J052 is a specific type of electronic component, specifically a capacitor, commonly used in technical solutions.
  2. What are the key specifications of B57891M0103J052?

    • B57891M0103J052 is a 10nF (nanofarad) capacitor with a voltage rating of 630V.
  3. In what technical applications is B57891M0103J052 commonly used?

    • B57891M0103J052 is often used in high-voltage and high-frequency applications such as power supplies, lighting ballasts, and electronic ballasts.
  4. What are the temperature and frequency characteristics of B57891M0103J052?

    • B57891M0103J052 has a wide operating temperature range and is suitable for high-frequency applications.
  5. Are there any specific handling or mounting considerations for B57891M0103J052?

    • B57891M0103J052 should be handled carefully to avoid damage, and proper soldering techniques should be used during mounting.
  6. Can B57891M0103J052 be used in automotive applications?

    • Yes, B57891M0103J052 is suitable for use in automotive electronics due to its high voltage rating and reliability.
  7. What are the alternatives to B57891M0103J052 if it's not available?

    • Alternatives to B57891M0103J052 include similar capacitors from other manufacturers with comparable specifications.
  8. Does B57891M0103J052 have any special storage requirements?

    • B57891M0103J052 should be stored in a dry environment at room temperature to maintain its performance.
  9. Is B57891M0103J052 suitable for use in AC or DC circuits?

    • B57891M0103J052 can be used in both AC and DC circuits, but its high voltage rating makes it particularly well-suited for AC applications.
  10. What are the typical failure modes of B57891M0103J052?

    • Typical failure modes of B57891M0103J052 include short circuits, open circuits, and degradation of capacitance over time due to aging or excessive voltage stress.