UCZ1V470MCL6GS Nichicon Capacitor (Capacitor Al Electrolytic) In Stock
Nichicon UCZ1V470MCL6GS is a 47 µF, 35 V aluminum electrolytic capacitor in a compact 6.3 mm x 7.7 mm SMD chip form factor with 450 mΩ ESR. Designed for surface mount power supply filtering and decoupling. Available from stock with worldwide shipping.
- Manufacturer
- Nichicon
- Package
- Capacitor Al Electrolytic
- Pin Count
- 2
- Lifecycle
- ACTIVE
- Datasheet
- UCZ1V470MCL6GS Datasheet PDF
- Category
- Capacitor
- Temp Range
- -40.0°C to 125.0°C
- RoHS
- Compliant
- Lead Time
- 3–7 business days
- Shipping
- DHL Express · Worldwide
Key Features
- 47 µF capacitance at 35 V rated voltage in a compact 6.3 mm diameter x 7.7 mm height SMD package
- Low 450 mΩ ESR measured at 100 kHz for effective high-frequency ripple current suppression
- Aluminum wet electrolytic construction optimized for long service life in power supply filtering applications
Applications
The UCZ1V470MCL6GS is designed for bulk energy storage and ripple filtering in switched-mode power supplies, DC-DC converters, and motor drive circuits operating up to 35 V. Its 47 µF capacitance and 450 mΩ ESR at 100 kHz make it effective for smoothing output voltage ripple on power rails in consumer electronics and industrial equipment. The compact 6.3 mm x 7.7 mm SMD form factor fits into space-constrained board designs without sacrificing bulk capacitance.
Specifications
| Pbfree Code | Yes |
| Reach Compliance Code | Not Compliant |
| YTEOL | 7 |
| Additional Feature | ESR IS MEASURED AT 100 KHZ |
| Capacitance | 47 µF |
| Capacitor Type | ALUMINUM ELECTROLYTIC CAPACITOR |
| Diameter | 6.3mm |
| Dielectric Material | ALUMINUM (WET) |
| ESR | 450mΩ |
| Height | 7.7mm |
| JESD-609 Code | e6 |
| Leakage Current | 0.01645mA |
| Mounting Feature | SURFACE MOUNT |
| Negative Tolerance | 20% |
| Package Shape | CYLINDRICAL PACKAGE |
| Package Style | SMT |
| Packing Method | TR, 15 INCH |
| Polarity | POLARIZED |
| Positive Tolerance | 20% |
| Rated (DC) Voltage (URdc) | 35V |
| Reference Standard | AEC-Q200 |
| Ripple Current | 98.5mA |
| Size Code | 2626 |
| Surface Mount | YES |
| Tan Delta | 0.16 |
| Terminal Finish | Tin/Bismuth (Sn/Bi) |
| Terminal Shape | FLAT |
| Package | Capacitor Al Electrolytic |
Compliance & Regulatory
| RoHS Status | Compliant |
| Lead-Free | Yes (Pb-Free) |
| ECCN | EAR99 |
| HTS Code | 8532.22.00 |
| Country of Origin | Japan |
Alternate & Equivalent Parts
No known alternates. Submit an RFQ and our team can suggest alternatives.
Frequently Asked Questions
What is the voltage and capacitance rating of the UCZ1V470MCL6GS?
The UCZ1V470MCL6GS is rated at 35 V with a capacitance of 47 µF. This combination provides adequate bulk energy storage for power rail filtering in circuits operating below 35 V, such as 24 V industrial bus supplies or 12 V to 5 V converter output stages.
How does the 450 mΩ ESR of UCZ1V470MCL6GS affect its suitability for switching power supply output filters?
The 450 mΩ ESR, measured at 100 kHz, determines how much voltage ripple appears across the capacitor during switching transients. For a 1 A ripple current, this ESR contributes 450 mV of resistive ripple; designers should verify this against their ripple budget. Lower-ESR polymer alternatives can be paralleled when tighter regulation is required.
What are the physical dimensions of UCZ1V470MCL6GS and how do they compare to larger variants?
The UCZ1V470MCL6GS measures 6.3 mm in diameter and 7.7 mm in height. Compared to higher-capacitance variants in the same series, this compact size allows placement in tight board areas, making it well-suited for power supply stages on 4-layer boards where component height is constrained by enclosure clearance below 10 mm.
Which circuit topologies benefit most from using UCZ1V470MCL6GS as an output filter capacitor?
Buck converters, flyback supplies, and linear regulator bypass circuits operating at up to 35 V benefit from the 47 µF capacitance of UCZ1V470MCL6GS. In a typical 100 kHz buck converter, a 47 µF output capacitor helps limit output voltage deviation to under 50 mV during a 500 mA load step, depending on inductor value and control loop bandwidth.
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