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TCSCN1V334MAAR

Part No TCSCN1V334MAAR
Manufacturer Samsung
Catalog Tantalum Capacitors
Sample
Rohs State rohs
ECAD Module
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Category Capacitors
Family Tantalum Capacitors
Manufacturer Samsung Electro-Mechanics America, Inc.
Win Source Part Number 215518-TCSCN1V334MAAR
Popularity Low
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian TCSCN1V334MAAR CAD Model

Description

The TCSCN1V334MAAR is a multilayer ceramic capacitor (MLCC) manufactured by Samsung Electro-Mechanics. As a fundamental component in modern electronics, MLCCs serve various essential roles, including decoupling, bypassing, filtering, and energy storage. The TCSCN1V334MAAR is distinguished by its specific capacitance value, voltage rating, temperature coefficient, and physical dimensions, making it well-suited for applications demanding these characteristics.

Applications:

  • Decoupling Capacitors in Digital Circuits: Provides a local charge reservoir for integrated circuits (ICs) such as microcontrollers, processors, and memory chips, effectively minimizing voltage fluctuations and noise during switching operations.
  • Bypassing Capacitors in Power Supplies: Filters out unwanted AC noise and ripple from DC power supply lines, ensuring a clean and stable voltage supply for sensitive electronic components.
  • Filtering in Audio Circuits: Employed in low-pass, high-pass, and band-pass filters to shape the frequency response of audio signals, removing undesirable noise and interference.
  • Timing Circuits: Used in conjunction with resistors to create RC timing circuits for oscillators, timers, and delay circuits.
  • Smoothing Capacitors in DC-DC Converters: Reduces output voltage ripple and enhances the stability of DC-DC converters, resulting in a more consistent and reliable output voltage.

Features:

  • Capacitance Value: Boasts a capacitance of 0.33 µF (microfarads), making it appropriate for applications requiring a moderate level of charge storage.
  • Compact Size: Designed for use in space-constrained applications, enabling high-density printed circuit board (PCB) layouts.
  • High Reliability: Ceramic capacitors are known for their stable performance and extended lifespan, even under demanding operating conditions.
  • Low ESR (Equivalent Series Resistance): Minimizes energy losses and heat generation, resulting in more efficient circuit operation.
  • Surface Mount Technology (SMT): Facilitates automated assembly processes, reducing manufacturing costs and improving overall product consistency.

Benefits:

  • Improved Circuit Stability: Decoupling and bypassing functions effectively minimize noise and voltage fluctuations, enhancing the reliability and overall performance of electronic circuits.
  • Enhanced Signal Quality: Filtering capabilities remove unwanted frequency components from signals, enhancing signal clarity and reducing noise.
  • Reduced Board Space: The compact size of the capacitor enables a higher density of components to be placed on a PCB, minimizing the overall size of electronic devices.
  • Increased Circuit Efficiency: Low ESR reduces power dissipation and heat generation, improving circuit efficiency and extending operational lifespan.
  • Long-Term Stability: Ceramic capacitors demonstrate excellent stability over time and temperature, ensuring reliable and consistent performance throughout the product's lifespan.

Additional Details:

The TCSCN1V334MAAR likely has a voltage rating of 35V. The temperature coefficient is probably X5R or X7R, indicating stable capacitance over a wide temperature range (typically -55°C to +85°C or -55°C to +125°C). It is RoHS compliant, signifying adherence to environmental regulations by restricting the use of hazardous substances. The terminals are generally nickel-barrier with tin plating for proper solderability. Always consult the official Samsung datasheet for the TCSCN1V334MAAR to confirm precise specifications and application guidelines. Operating the capacitor beyond its specified voltage or temperature limits can compromise its performance and lifespan.

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