Panasonic HD RADIAL Series Capacitor, 3300 μF Capacitance, 25V DC Voltage - EEUHD1E332
This capacitor is a high-quality aluminium electrolytic component, perfect for a wide range of electronic applications. Designed for versatility, it features a capacitance of 3300μF and operates at a voltage of 25V DC. This radial through-hole capacitor measures 12.5mm in diameter and 25mm in height, making it suitable for various circuit designs while adhering to stringent industry standards.
Features & Benefits
• Polarised design ensuring correct orientation during installation
• Aluminium electrolytic technology delivers stable performance over time
• Rated for -55°C to +105°C operating temperatures ensuring reliability
• 1.4 A ripple current capability enhances capacitance efficiency
• Long lifetime of 2000 hours under specified conditions provides durability
• Low leakage current of 3μA maintains energy efficiency
Applications
• Used for energy storage in power supply circuits
• Ideal for filtering and smoothing in audio electronics
• Can be used in industrial automation systems for signal processing
• Utilised in motor control to enhance performance
• Suitable for use in consumer electronics requiring Compact design
What temperature range can it operate in effectively?
This component operates reliably within a temperature range of -55°C to +105°C, making it suitable for various environmental conditions.
How does polarisation affect installation and performance?
The polarised design ensures that it must be installed in the correct orientation, promoting optimal function and reducing the risk of failure during operation.
What benefits does electrolytic technology provide?
Electrolytic technology allows for higher capacitance values in a smaller size, making it advantageous for space-constrained applications without compromising performance.
Can it handle varying loads during operation?
Yes, with a ripple current rating of 1.4 A, it effectively manages varying loads, making it suitable for applications that experience fluctuations in current requirements.