EEAGA1HR10 Panasonic Capacitor (Capacitor, Polarized Radial Diameter) In Stock
The EEAGA1HR10 by Panasonic is a 100 nF 50 V aluminum electrolytic through-hole capacitor in a 4 mm diameter × 7 mm tall radial package rated to +105°C. It features ultra-low leakage of 0.003 mA and RoHS lead-free construction, making it a reliable decoupling and bypass component for consumer, industrial, and power supply circuit boards.
- Manufacturer
- Panasonic
- Package
- Capacitor, Polarized Radial Diameter
- Pin Count
- 2
- Lifecycle
- OBSOLETE
- Datasheet
- EEAGA1HR10 Datasheet PDF
- Category
- Capacitor
- Temp Range
- -55.0°C to 105.0°C
- RoHS
- Compliant
- Lead Time
- 3–7 business days
- Shipping
- DHL Express · Worldwide
Key Features
- 100 nF at 50 V in a compact 4 mm × 7 mm radial through-hole package with +105°C temperature rating for high-temperature board environments
- Ultra-low leakage current of 0.003 mA minimizing idle power loss in low-power and battery-operated circuit applications
- Lead-free RoHS and REACH compliant construction with JESD-609 e3 qualification meeting global environmental regulatory requirements
Applications
The EEAGA1HR10 is well suited as a bypass and decoupling capacitor on low-voltage DC power rails in consumer electronics, audio equipment, and industrial control boards operating up to 50 V. Its compact 4 mm diameter radial form factor fits standard 1.5 mm lead pitch through-hole footprints, enabling easy placement near IC power pins. The +105°C temperature rating makes it reliable in power supply circuits where elevated ambient temperatures are expected near heat-generating components.
Specifications
| Pbfree Code | Yes |
| Reach Compliance Code | Compliant |
| YTEOL | 0 |
| Capacitance | 0.1 µF |
| Capacitor Type | ALUMINUM ELECTROLYTIC CAPACITOR |
| Diameter | 4mm |
| Dielectric Material | ALUMINUM (WET) |
| JESD-609 Code | e3 |
| Leakage Current | 0.003mA |
| Mounting Feature | THROUGH HOLE MOUNT |
| Negative Tolerance | 20% |
| Package Shape | CYLINDRICAL PACKAGE |
| Package Style | Radial |
| Packing Method | BULK |
| Polarity | POLARIZED |
| Positive Tolerance | 20% |
| Rated (DC) Voltage (URdc) | 50V |
| Ripple Current | 1.1mA |
| Surface Mount | NO |
| Tan Delta | 0.10 |
| Terminal Finish | Tin (Sn) |
| Terminal Pitch | 1.5mm |
| Terminal Shape | WIRE |
| Package | Capacitor, Polarized Radial Diameter |
Compliance & Regulatory
| RoHS Status | Compliant |
| Lead-Free | Yes (Pb-Free) |
| ECCN | EAR99 |
| HTS Code | 8532.22.00.20 |
Alternate & Equivalent Parts
No known alternates. Submit an RFQ and our team can suggest alternatives.
Frequently Asked Questions
What are the key electrical specifications of the EEAGA1HR10 capacitor for use in a 48 V bypass circuit?
The EEAGA1HR10 is rated at 100 nF capacitance and 50 V maximum DC voltage, making it suitable for bypass and decoupling applications on rails up to 48 V with adequate derating. Its leakage current is just 0.003 mA, and the aluminum wet electrolytic construction provides stable capacitance with a +105°C operating temperature limit, covering the majority of industrial and consumer power supply bypass requirements.
How does the EEAGA1HR10's 100 nF capacitance and 50 V rating compare to ceramic alternatives for decoupling?
At 100 nF and 50 V, the EEAGA1HR10 occupies a 4 mm × 7 mm through-hole footprint, whereas a 100 nF 50 V X7R ceramic capacitor can achieve the same capacitance in an 0402 SMD footprint. However, the aluminum electrolytic construction is significantly lower cost at this voltage level and avoids the voltage derating effect seen in ceramic capacitors above 25 V, where effective capacitance may drop by 50% or more at rated voltage.
For a PCB that operates in an enclosure reaching 95°C, why is the EEAGA1HR10 an appropriate component choice?
The EEAGA1HR10 is rated for continuous operation up to +105°C, providing a 10°C thermal margin above the 95°C enclosure temperature. Aluminum electrolytic capacitors operating within their rated temperature range maintain specified capacitance and ESR values, whereas capacitors operated above their temperature rating experience accelerated electrolyte evaporation, which reduces capacitance, increases ESR, and shortens service life below the 1000-hour minimum expected for industrial designs.
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