RS-470uF-50V
Standard radial capacitor with 470uF capacitance and 50V rating for medium-voltage applications.
Product Overview
Description
The RS-470uF-50V is a standard radial aluminum electrolytic capacitor designed for medium-voltage applications. With 470uF capacitance and 50V rating, it provides reliable filtering for 24V and 48V power supply circuits.
This capacitor features a 10mm diameter case with standard 5mm lead spacing. The optimized electrode design provides good ripple current capability for its size.
Rated for 2000 hours at 85C, this capacitor is suitable for industrial and consumer applications. The standard form factor ensures compatibility with existing designs.
Product Series
RS
Primary Application
Industrial power supplies
Key Features
- Medium voltage 50V rating
- 470uF capacitance
- Standard 5mm lead spacing
- Compact 10mm diameter
- Cost-effective design
Specifications
| Capacitance | 470uF +/-20% |
|---|---|
| Voltage Rating | 50V DC |
| Ripple Current | 0.9A @ 85C, 120Hz |
| Temperature Range | -40C to +85C |
| Lifetime | 2,000 hours @ 85C |
| Lead Spacing | 5mm |
| Dimensions | 10mm dia x 20mm L |
Applications
Industrial power supplies
Industrial automation and control
24V DC circuits
Electronic system design
Motor drives
Motor drive and control systems
Control systems
Industrial automation and control
FAE Expert Insights
"RS-470uF-50V is an excellent choice for industrial applications."
— Field Application Engineer, BeiLuo
Frequently Asked Questions
What is the maximum ripple current for the RS-470uF-50V?
The rated ripple current is 0.9A at 85C and 120Hz. This rating ensures reliable operation in power supply applications with moderate switching frequencies. At lower temperatures, the capacitor can handle higher ripple currents - approximately 1.1A at 65C. For high-frequency applications above 100kHz, the effective ripple current capability may be reduced due to increased ESR. Always verify the actual operating temperature and frequency conditions in your application to ensure the capacitor operates within its safe operating area.
For applications exceeding 0.9A ripple current, consider using multiple capacitors in parallel or upgrading to a higher capacitance model. Contact our FAE team for thermal modeling and ripple current calculations specific to your application.
What is the expected lifetime of the RS-470uF-50V at typical operating conditions?
The rated lifetime is 2,000 hours at 85C. Using the Arrhenius equation, we can calculate the expected lifetime at different operating temperatures. At 65C, the expected lifetime extends to 8,000 hours. At 45C, lifetime increases to 32,000 hours. At 25C ambient, you can achieve up to 128,000 hours. Every 10C reduction in operating temperature approximately doubles the capacitor lifetime. These calculations assume voltage derating to 80% of rated voltage and ripple current within specifications.
For maximum capacitor lifetime, operate at the lowest practical temperature with 80% voltage derating. Contact our FAE team for lifetime calculations specific to your application conditions.
What voltage derating is recommended for reliable operation of the RS-470uF-50V?
Industry best practice recommends operating aluminum electrolytic capacitors at no more than 80% of their rated voltage. For this 50V rated capacitor, the maximum recommended operating voltage is 40V. This 20% derating significantly improves reliability and extends operational lifetime. For critical applications or high-temperature environments, 50% derating is recommended, limiting operating voltage to 25V. The voltage derating also provides margin for voltage transients and line regulation variations. Operating above 80% of rated voltage will significantly reduce capacitor lifetime.
Design your circuit to operate the capacitor at 80% or less of rated voltage for optimal reliability. Contact our FAE team for voltage derating recommendations specific to your application requirements.
What is the operating temperature range of the RS-470uF-50V and how does it affect performance?
This capacitor is rated for operation from -40C to +85C. At the maximum rated temperature of 85C, the capacitor achieves its rated lifetime of 2,000 hours. As operating temperature decreases, capacitor lifetime increases exponentially following the Arrhenius relationship - approximately doubling for every 10C reduction. Capacitance and ESR also vary with temperature, with capacitance typically increasing 10-15% at low temperatures and decreasing slightly at high temperatures. ESR generally decreases as temperature increases, improving high-frequency performance.
For extended capacitor lifetime, minimize operating temperature through proper thermal design and ventilation. Contact our FAE team for thermal management recommendations specific to your application.
What is the ESR of the RS-470uF-50V and how does it affect circuit performance?
The Equivalent Series Resistance (ESR) at 100Hz is approximately 0.02 Ohm. ESR is the resistive losses in the capacitor and directly affects ripple voltage, power dissipation, and filtering effectiveness. Lower ESR results in lower ripple voltage for a given ripple current, reduced self-heating, and improved filtering at high frequencies. This capacitor's ESR characteristics make it suitable for switching power supplies and industrial controls. ESR typically decreases with increasing temperature and increases at higher frequencies. For switching power supplies operating at 100kHz, consider the frequency characteristics of ESR.
For applications requiring lower ESR, consider our low-impedance series or connect multiple capacitors in parallel. Contact our FAE team for ESR optimization recommendations.
Can multiple RS-470uF-50V capacitors be connected in parallel for increased capability?
Yes, multiple capacitors can be connected in parallel to increase total capacitance and share ripple current. When connecting RS-470uF-50V in parallel, the total capacitance adds linearly while ESR reduces proportionally. For example, two capacitors in parallel provide 940uF capacitance and approximately 0.010 Ohm ESR (half the single capacitor ESR). This configuration also improves ripple current capability to 1.8A. Important considerations include: using identical part numbers for balanced current sharing, maintaining symmetrical PCB layout, ensuring adequate spacing for thermal management, and verifying the total inrush current doesn't exceed circuit limitations.
For high-current applications, consider parallel connection of multiple capacitors. Contact our FAE team for parallel capacitor bank design assistance and current sharing analysis.