Panasonic 100 μF Surface Polymer Capacitor, 63V dc
- RS Stock No.:
- 210-5956
- Mfr. Part No.:
- EEHZS1J101V
- Manufacturer:
- Panasonic
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PHP239.12
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PHP267.82
(inc. VAT)
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- 1,040 unit(s) ready to ship from another location
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Units | Per Unit | Per Tape* |
|---|---|---|
| 2 - 8 | PHP119.56 | PHP239.12 |
| 10 - 48 | PHP115.975 | PHP231.95 |
| 50 - 98 | PHP109.015 | PHP218.03 |
| 100 - 198 | PHP99.20 | PHP198.40 |
| 200 + | PHP87.30 | PHP174.60 |
*price indicative
- RS Stock No.:
- 210-5956
- Mfr. Part No.:
- EEHZS1J101V
- 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 | |
| Technology | Hybrid | |
| Product Type | Polymer Capacitor | |
| Capacitance | 100μF | |
| Voltage | 63V dc | |
| Mount Type | Surface | |
| Polarity | Polar | |
| Tolerance | ±20 % | |
| Maximum Operating Temperature | 135°C | |
| Dimensions | 10 x 12.8 mm | |
| Length | 12.8mm | |
| Height | 11mm | |
| Series | ZS | |
| Electrolyte Type | Hybrid | |
| Dissipation Factor | 12% | |
| Automotive Standard | AEC-Q200 | |
| Lifetime | 4000 h | |
| Diameter | 10mm | |
| Ripple Current | 3000mA | |
| Leakage Current | 63μA | |
| Minimum Operating Temperature | -55°C | |
| Select all | ||
|---|---|---|
Brand Panasonic | ||
Technology Hybrid | ||
Product Type Polymer Capacitor | ||
Capacitance 100μF | ||
Voltage 63V dc | ||
Mount Type Surface | ||
Polarity Polar | ||
Tolerance ±20 % | ||
Maximum Operating Temperature 135°C | ||
Dimensions 10 x 12.8 mm | ||
Length 12.8mm | ||
Height 11mm | ||
Series ZS | ||
Electrolyte Type Hybrid | ||
Dissipation Factor 12% | ||
Automotive Standard AEC-Q200 | ||
Lifetime 4000 h | ||
Diameter 10mm | ||
Ripple Current 3000mA | ||
Leakage Current 63μA | ||
Minimum Operating Temperature -55°C | ||
- COO (Country of Origin):
- JP
Panasonic Series ZS Polymer Capacitor, 100 μF Capacitance, 63V DC Voltage - EEHZS1J101V
This polymer capacitor offers a capacitance of 100μF, designed for performance in high-temperature applications. With dimensions of 10 x 12.8mm, it features a surface mount design that allows for easy integration into Compact electronic systems. Engineered using conductive polymer hybrid aluminium technology, this component is optimal for tasks requiring a reliable electrical response under demanding conditions.
Features & Benefits
• High-temperature operation up to +135°C ensures suitability for rigorous environments
• Low equivalent series resistance of 19 mΩ enhances efficiency in circuits
• Polarised design aids in stability and performance in DC applications
• Ripple current rating of 3000 mA supports smooth performance under load
• Extended lifetime of 4000 hours promises longevity in usage
• Tolerance rating of ±20% provides reliability in various conditions
• Low equivalent series resistance of 19 mΩ enhances efficiency in circuits
• Polarised design aids in stability and performance in DC applications
• Ripple current rating of 3000 mA supports smooth performance under load
• Extended lifetime of 4000 hours promises longevity in usage
• Tolerance rating of ±20% provides reliability in various conditions
Applications
• Used for power supply circuits to maintain voltage stability
• Ideal for filtration in heavy-duty electrical systems
• Effective in automation systems for enhanced reliability
• Suitable for DC link in renewable energy systems
• Ideal for filtration in heavy-duty electrical systems
• Effective in automation systems for enhanced reliability
• Suitable for DC link in renewable energy systems
What are the advantages of using a low ESR capacitor in my circuits?
A low ESR capacitor minimises energy losses during operation, enhancing overall efficiency and thermal performance, particularly significant in high-frequency applications. It allows for improved ripple handling and reduces stress on the power supply.
In what scenarios is a high-temperature capacitor beneficial?
Utilising a high-temperature capacitor is beneficial in applications where excess heat is generated, such as in power modules or automotive electronics, ensuring consistent performance without degradation.
What makes this component suitable for use in automation systems?
Its robust design and Ability to handle high ripple currents make it reliable in automation applications, where consistent power supply is critical for operational success. The high-temperature capAbility ensures performance under varying workload conditions.
Related links
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