The B57620C5103K062 is a type of capacitor that belongs to the category of electronic components. This entry provides an overview of its basic information, specifications, detailed pin configuration, functional features, advantages and disadvantages, working principles, detailed application field plans, and alternative models.
The B57620C5103K062 follows a standard surface mount capacitor pin configuration with two terminals for soldering onto the PCB.
The B57620C5103K062 operates based on the principle of storing electrical energy in its ceramic dielectric material. When connected in a circuit, it can store and release energy as required, providing filtering, coupling, or timing functions.
The B57620C5103K062 is suitable for various applications, including: - Power supply decoupling - Signal coupling and filtering - Timing circuits - Voltage regulation - Oscillator circuits
Some alternative models to the B57620C5103K062 include: - B57236S0100M000: Similar capacitance and voltage rating, but with a different package and temperature coefficient. - C0805C103K5RACTU: Comparable capacitance and voltage rating, but with a different dielectric material and tolerance.
In conclusion, the B57620C5103K062 capacitor offers high capacitance, low ESR, and a compact form factor, making it suitable for a wide range of electronic applications. Its stable performance over a wide temperature range and compatibility with SMT technology make it a versatile choice for designers seeking reliable energy storage and filtering solutions.
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What is the B57620C5103K062 component used for in technical solutions?
What are the key specifications of the B57620C5103K062?
How does the B57620C5103K062 contribute to noise suppression in electronic circuits?
Can the B57620C5103K062 be used for high-frequency applications?
What are the temperature characteristics of the B57620C5103K062?
In what types of circuits is the B57620C5103K062 commonly employed?
Does the B57620C5103K062 have any special handling or mounting requirements?
What are the potential failure modes of the B57620C5103K062?
Are there any recommended alternatives or substitutes for the B57620C5103K062?
Where can I find detailed application notes or reference designs utilizing the B57620C5103K062?