Panasonic 470μF Surface Mount Polymer Capacitor, 2.5V dc
- RS Stock No.:
- 166-6862
- Mfr. Part No.:
- EEFGX0E471R
- Brand:
- Panasonic
Subtotal (1 reel of 3500 units)*
£2,040.50
(exc. VAT)
£2,450.00
(inc. VAT)
FREE delivery for orders over £50.00
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- Shipping from 22 July 2026
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Units | Per unit | Per Reel* |
---|---|---|
3500 + | £0.583 | £2,040.50 |
*price indicative
- RS Stock No.:
- 166-6862
- Mfr. Part No.:
- EEFGX0E471R
- Brand:
- Panasonic
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | Panasonic | |
Technology | Polymer | |
Capacitance | 470µF | |
Voltage | 2.5V dc | |
Mounting Type | Surface Mount | |
Equivalent Series Resistance | 3mΩ | |
Tolerance | ±20% | |
Length | 7.3mm | |
Depth | 4.3mm | |
Maximum Operating Temperature | +105°C | |
Height | 1.9mm | |
Dimensions | 7.3 x 4.3 x 1.9mm | |
Series | SP- CAP GX | |
Leakage Current | 117.5 μA | |
Lifetime | 2000h | |
Ripple Current | 10.2Arms | |
Polarised | Polar | |
Minimum Operating Temperature | -55°C | |
Dissipation Factor | 6% | |
Select all | ||
---|---|---|
Brand Panasonic | ||
Technology Polymer | ||
Capacitance 470µF | ||
Voltage 2.5V dc | ||
Mounting Type Surface Mount | ||
Equivalent Series Resistance 3mΩ | ||
Tolerance ±20% | ||
Length 7.3mm | ||
Depth 4.3mm | ||
Maximum Operating Temperature +105°C | ||
Height 1.9mm | ||
Dimensions 7.3 x 4.3 x 1.9mm | ||
Series SP- CAP GX | ||
Leakage Current 117.5 μA | ||
Lifetime 2000h | ||
Ripple Current 10.2Arms | ||
Polarised Polar | ||
Minimum Operating Temperature -55°C | ||
Dissipation Factor 6% | ||
- COO (Country of Origin):
- JP
Panasonic SP- CAP GX Series Polymer Capacitor, 470μF Capacitance, 2.5V DC Voltage - EEFGX0E471R
This polymer capacitor is designed for surface mount applications, featuring a capacitance of 470 μF and a voltage rating of 2.5V DC. With compact dimensions of 7.3 x 4.3 x 1.9mm, it offers efficient integration into various electronic components, making it suitable for demanding applications in the electrical and automation industries.
Features & Benefits
• Low equivalent series resistance of 3 mΩ enhances efficiency
• Polarised design ensures correct installation for optimal performance
• High temperature rating of +105 °C allows for reliable operation
• Tolerance of ±20% supports diverse circuit requirements
• Lifetime of 2000 hours ensures durability in prolonged use
• Low leakage current of 117.5 μA reduces energy loss
• Polarised design ensures correct installation for optimal performance
• High temperature rating of +105 °C allows for reliable operation
• Tolerance of ±20% supports diverse circuit requirements
• Lifetime of 2000 hours ensures durability in prolonged use
• Low leakage current of 117.5 μA reduces energy loss
Applications
• Utilised in power supply circuits and energy storage
• Ideal for use in circuit boards within electronic devices
• Employed in automation systems for improved performance
• Suitable for high-temperature environments in various designs
• Ideal for use in circuit boards within electronic devices
• Employed in automation systems for improved performance
• Suitable for high-temperature environments in various designs
What considerations should be made regarding installation when using this capacitor?
Proper orientation is crucial due to the polarised design, ensuring the positive and negative leads are connected correctly to prevent circuit failure.
How does the dissipation factor impact circuit performance?
With a dissipation factor of 6%, this component minimises energy loss during operation, enhancing overall circuit efficiency and functionality.
What are the implications of its wide operating temperature range?
The range from -55 °C to +105 °C makes it versatile for applications in extreme environments, accommodating temperature fluctuations without compromising reliability.
In what scenarios would the low ESR feature be particularly beneficial?
The low ESR characteristic is advantageous in high-frequency applications, reducing heat generation and improving overall performance in demanding electronic circuits.