Panasonic 47 μF Surface Mount Polymer Capacitor, 63V dc
- RS Stock No.:
- 210-5989
- Mfr. Part No.:
- EEHZT1J470P
- Brand:
- Panasonic
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- RS Stock No.:
- 210-5989
- Mfr. Part No.:
- EEHZT1J470P
- 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 | Hybrid | |
| Product Type | Polymer Capacitor | |
| Capacitance | 47μF | |
| Voltage | 63V dc | |
| Mount Type | Surface Mount | |
| Polarity | Polar | |
| Lead Pitch | 3.1mm | |
| Tolerance | ±20 % | |
| Maximum Operating Temperature | 135°C | |
| Dimensions | 8 x 10.2 mm | |
| Height | 10mm | |
| Length | 10.2mm | |
| Series | ZT | |
| Electrolyte Type | Solid | |
| Automotive Standard | AEC-Q200 | |
| Lifetime | 4000 h | |
| Diameter | 8mm | |
| Leakage Current | 29.6μA | |
| Ripple Current | 1500mA | |
| Minimum Operating Temperature | -55°C | |
| Dissipation Factor | 8% | |
| Select all | ||
|---|---|---|
Brand Panasonic | ||
Technology Hybrid | ||
Product Type Polymer Capacitor | ||
Capacitance 47μF | ||
Voltage 63V dc | ||
Mount Type Surface Mount | ||
Polarity Polar | ||
Lead Pitch 3.1mm | ||
Tolerance ±20 % | ||
Maximum Operating Temperature 135°C | ||
Dimensions 8 x 10.2 mm | ||
Height 10mm | ||
Length 10.2mm | ||
Series ZT | ||
Electrolyte Type Solid | ||
Automotive Standard AEC-Q200 | ||
Lifetime 4000 h | ||
Diameter 8mm | ||
Leakage Current 29.6μA | ||
Ripple Current 1500mA | ||
Minimum Operating Temperature -55°C | ||
Dissipation Factor 8% | ||
- COO (Country of Origin):
- JP
Panasonic Series ZT Polymer Capacitor, 47 μF Capacitance, 63V DC Voltage - EEHZT1J470P
This polymer capacitor is a high-performance electronic component designed for surface mount applications. With dimensions of 8 x 10.2mm, this low ESR capacitor offers a capacitance of 47 μF and operates at a maximum voltage of 63 V dc. Constructed from a conductive polymer hybrid aluminium dielectric material, it ensures stability across a wide temperature range from -55°C to +135°C, making it Ideal for various demanding environments.
Features & Benefits
• Hybrid technology enhances performance and efficiency
• High voltage rating supports various electrical applications
• Low equivalent series resistance promotes energy saving
• Solid electrolyte design reduces leakage current significantly
• Polarised structure ensures correct installation and reliability
• Extended lifetime of up to 4000 hours enhances durability
• High voltage rating supports various electrical applications
• Low equivalent series resistance promotes energy saving
• Solid electrolyte design reduces leakage current significantly
• Polarised structure ensures correct installation and reliability
• Extended lifetime of up to 4000 hours enhances durability
Applications
• Used with power supplies in automation systems
• Suitable for decoupling in circuit boards
• Implemented in power conditioning equipment
• Ideal for audio and telecommunications equipment
• Frequently used in consumer electronics for power management
• Suitable for decoupling in circuit boards
• Implemented in power conditioning equipment
• Ideal for audio and telecommunications equipment
• Frequently used in consumer electronics for power management
What is the significance of the capacitance rating for efficient circuit design?
The capacitance rating of 47 μF enables the component to store and release a substantial amount of energy, which is Crucial for smooth operation in power regulation and filtering within circuits.
How does the temperature tolerance benefit performance stability?
Operating between -55°C and +135°C ensures consistent performance in extreme conditions, thereby reducing the risk of failure in high-temperature environments common in industrial applications.
What role does the low equivalent series resistance play in device efficiency?
The low equivalent series resistance of 32 mΩ minimises power losses during operation, enhancing the overall efficiency of the circuit and contributing to longer battery life in portable devices.
Why is the solid electrolyte construction preferred in this capacitor?
Solid electrolyte construction offers lower leakage current compared to traditional electrolytic designs, providing increased reliability and reduced power wastage, ultimately enhancing circuit performance.
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