Panasonic 220 μF Polymer Capacitor 25V dc, Surface - EEHZC1E221P
- RS Stock No.:
- 758-1067
- Mfr. Part No.:
- EEHZC1E221P
- Manufacturer:
- Panasonic
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PHP158.75
(exc. VAT)
PHP177.80
(inc. VAT)
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- Plus 7,134 unit(s) shipping from August 24, 2026
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Units | Per Unit | Per Pack* |
|---|---|---|
| 2 - 18 | PHP79.375 | PHP158.75 |
| 20 - 98 | PHP73.19 | PHP146.38 |
| 100 - 198 | PHP68.135 | PHP136.27 |
| 200 - 498 | PHP64.39 | PHP128.78 |
| 500 + | PHP62.43 | PHP124.86 |
*price indicative
- RS Stock No.:
- 758-1067
- Mfr. Part No.:
- EEHZC1E221P
- Manufacturer:
- Panasonic
Specifications
Technical data sheets
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | Panasonic | |
| Product Type | Polymer Capacitor | |
| Capacitance | 220μF | |
| Voltage | 25V dc | |
| Mount Type | Surface | |
| Height | 10.2mm | |
| Polarity | Polar | |
| Length | 7.7mm | |
| Minimum Operating Temperature | -55°C | |
| Diameter | 8mm | |
| Maximum Operating Temperature | 125°C | |
| Lifetime | 1000 h, 4000 h | |
| Lead Pitch | 3.1mm | |
| Automotive Standard | AEC-Q200 | |
| Tolerance | ±20 % | |
| Leakage Current | 55μA | |
| Ripple Current | 1.6Arms | |
| Series | ZC | |
| Dissipation Factor | 14% | |
| Select all | ||
|---|---|---|
Brand Panasonic | ||
Product Type Polymer Capacitor | ||
Capacitance 220μF | ||
Voltage 25V dc | ||
Mount Type Surface | ||
Height 10.2mm | ||
Polarity Polar | ||
Length 7.7mm | ||
Minimum Operating Temperature -55°C | ||
Diameter 8mm | ||
Maximum Operating Temperature 125°C | ||
Lifetime 1000 h, 4000 h | ||
Lead Pitch 3.1mm | ||
Automotive Standard AEC-Q200 | ||
Tolerance ±20 % | ||
Leakage Current 55μA | ||
Ripple Current 1.6Arms | ||
Series ZC | ||
Dissipation Factor 14% | ||
Panasonic Series ZC Polymer Capacitor, 220 μF Capacitance, 25V DC Voltage - EEHZC1E221P
This polymer capacitor is a hybrid device designed for surface mount applications, featuring a capacitance of 220μF and a voltage rating of 25 V DC. With an 8mm diameter and a height of 10.2mm, it is Ideal for various electronic components, particularly in automotive contexts. The capacitor is engineered to withstand a maximum operating temperature of +125°C and a minimum operating temperature of -55°C, ensuring reliability across a wide temperature range.
Features & Benefits
• Low Equivalent Series Resistance (27 mΩ) improves efficiency
• High ripple current rating of 1.6Arms supports robust performance
• Polarised design enables specific orientation in circuit applications
• Tolerance of ±20 % for precise capacitance management
• Long lifetime rated at up to 4000 hours for enhanced durability
• High ripple current rating of 1.6Arms supports robust performance
• Polarised design enables specific orientation in circuit applications
• Tolerance of ±20 % for precise capacitance management
• Long lifetime rated at up to 4000 hours for enhanced durability
Applications
• Used with automotive electronics compliant with AEC-Q200 standards
• Effective in high-temperature environments to ensure stability
• Suitable for Advanced electronic circuits requiring low ESR performance
• Ideal for Compact designs due to its small footprint
• Effective in high-temperature environments to ensure stability
• Suitable for Advanced electronic circuits requiring low ESR performance
• Ideal for Compact designs due to its small footprint
What environmental conditions can this capacitor endure?
The capacitor is designed to function in a wide temperature range from -55°C to +125°C, making it suitable for both harsh and standard environments.
How does the construction of this capacitor contribute to its performance?
The hybrid construction allows for better thermal stability and efficiency, reducing losses while maintaining high capacitance levels under various loads.
What are the implications of the specified tolerance on circuit design?
A tolerance of ±20 % enables better adaptability in circuit designs, allowing for flexibility in applications where EXACT capacitance is not critical.
How does a low ESR benefit circuit performance?
A low ESR leads to reduced heat generation during operation, enhancing the overall efficiency and longevity of the electronic device in which it is used.
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