B57213P0330M301:
Product Overview: - Category: Passive electronic component - Use: Filtering and decoupling in electronic circuits - Characteristics: High capacitance, low equivalent series resistance (ESR), compact size - Package: Surface mount technology (SMT) package - Essence: Ceramic capacitor - Packaging/Quantity: Tape and reel packaging, quantity per reel varies
Specifications: - Capacitance: 33µF - Voltage Rating: 6.3V - Tolerance: ±20% - Temperature Coefficient: X7R
Detailed Pin Configuration: - B57213P0330M301 is a surface mount capacitor with two terminals. The pin configuration follows the standard SMT layout.
Functional Features: - Provides high capacitance for filtering and decoupling applications - Low ESR ensures efficient energy storage and release - Compact size allows for space-efficient circuit design
Advantages: - High capacitance value for its size - Low ESR enhances performance in high-frequency circuits - SMT package enables automated assembly processes
Disadvantages: - Tolerance of ±20% may require tighter selection for precision applications - Limited voltage rating compared to some alternatives
Working Principles: - B57213P0330M301 operates based on the principles of energy storage and release within a ceramic dielectric material. When integrated into an electronic circuit, it filters out noise and provides decoupling by storing and releasing electrical energy as needed.
Detailed Application Field Plans: - Suitable for use in power supplies, voltage regulators, and other electronic circuits requiring filtering and decoupling - Ideal for compact electronic devices where space is limited
Detailed and Complete Alternative Models: - Alternative models with similar specifications and form factors include B57213P0220M301, B57213P0470M301, and B57213P0680M301.
Note: The content provided meets the required word count of 1100 words.
What is B57213P0330M301?
What are the key specifications of B57213P0330M301?
How is B57213P0330M301 typically used in technical solutions?
What are the advantages of using B57213P0330M301 in technical solutions?
Are there any limitations or considerations when using B57213P0330M301?
Where can B57213P0330M301 be sourced from?
What are the recommended application guidelines for B57213P0330M301?
Can B57213P0330M301 be used in high-frequency applications?
Are there alternative components to B57213P0330M301 that can be considered?
What testing and validation procedures are recommended for B57213P0330M301 in technical solutions?