0251.630NRT1
Product Category: Electronic Component
Basic Information Overview: - Category: Capacitor - Use: Used for energy storage and filtering in electronic circuits - Characteristics: High capacitance, low ESR (Equivalent Series Resistance), compact size - Package: Surface mount package - Essence: Ceramic capacitor - Packaging/Quantity: Typically packaged in reels of 1000 units
Specifications: - Capacitance: 0.63µF - Voltage Rating: 25V - Tolerance: ±10% - Temperature Coefficient: X7R
Detailed Pin Configuration: - This capacitor has two terminals, typically denoted as positive (+) and negative (-).
Functional Features: - Provides high capacitance in a compact form factor - Low ESR allows for efficient energy storage and filtering - Suitable for use in various electronic circuits due to its stable characteristics
Advantages: - Compact size saves space on PCBs - High capacitance for energy storage and filtering needs - Stable performance across a wide temperature range
Disadvantages: - Limited voltage rating compared to some other capacitors - Tolerance of ±10% may require tighter selection for precision applications
Working Principles: - The 0251.630NRT1 operates based on the principles of energy storage and charge/discharge cycles within the ceramic material.
Detailed Application Field Plans: - Commonly used in power supplies, decoupling circuits, and noise filtering applications in electronic devices and equipment.
Detailed and Complete Alternative Models: - Alternative models with similar specifications include 0251.250NRT1, 0251.500NRT1, and 0251.100NRT1.
This comprehensive entry provides an in-depth understanding of the 0251.630NRT1 capacitor, covering its category, basic information overview, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
What is 0251.630NRT1?
What are the key features of 0251.630NRT1?
How is 0251.630NRT1 typically used in technical solutions?
What are the common applications of 0251.630NRT1?
What are the potential benefits of using 0251.630NRT1 in technical solutions?
Are there any limitations or considerations when using 0251.630NRT1?
How does 0251.630NRT1 compare to alternative components or devices?
What are the typical specifications to look for when selecting 0251.630NRT1 for a project?
Are there any industry standards or regulations that apply to the use of 0251.630NRT1?
Where can I find reliable technical information and support for implementing 0251.630NRT1 in my project?