Panasonic 47 μF Polymer Capacitor 63V, Surface - EEHZV1J470P
- RS-stocknr.:
- 434-026
- Fabrikantnummer:
- EEHZV1J470P
- Fabrikant:
- Panasonic
Bulkkorting beschikbaar
Bekijk bulkkortingSubtotaal (1 verpakking van 5 eenheden)*
€ 12,42
(excl. BTW)
€ 15,03
(incl. BTW)
GRATIS bezorging voor bestellingen vanaf € 90,00
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Aantal stuks | Per stuk | Per verpakking* |
|---|---|---|
| 5 - 45 | € 2,484 | € 12,42 |
| 50 - 245 | € 2,008 | € 10,04 |
| 250 - 495 | € 1,54 | € 7,70 |
| 500 + | € 1,366 | € 6,83 |
*prijsindicatie
- RS-stocknr.:
- 434-026
- Fabrikantnummer:
- EEHZV1J470P
- Fabrikant:
- Panasonic
Specificaties
Datasheets
Wetgeving en conformiteit
Productomschrijving
Zoek vergelijkbare producten door een of meer kenmerken te selecteren.
Alles selecteren | Attribuut | Waarde |
|---|---|---|
| Merk | Panasonic | |
| Capacitance | 47μF | |
| Product Type | Polymer Capacitor | |
| Voltage | 63V | |
| Mount Type | Surface | |
| Height | 10.2mm | |
| Polarity | Negative | |
| Minimum Operating Temperature | -55°C | |
| Diameter | 8mm | |
| Maximum Operating Temperature | 135°C | |
| Lifetime | 4000 h | |
| Lead Pitch | 3.1mm | |
| Automotive Standard | AEC-Q200 | |
| Series | ZV | |
| Tolerance | ±20 % | |
| Ripple Current | 3.3A | |
| Dissipation Factor | 0.08% | |
| Alles selecteren | ||
|---|---|---|
Merk Panasonic | ||
Capacitance 47μF | ||
Product Type Polymer Capacitor | ||
Voltage 63V | ||
Mount Type Surface | ||
Height 10.2mm | ||
Polarity Negative | ||
Minimum Operating Temperature -55°C | ||
Diameter 8mm | ||
Maximum Operating Temperature 135°C | ||
Lifetime 4000 h | ||
Lead Pitch 3.1mm | ||
Automotive Standard AEC-Q200 | ||
Series ZV | ||
Tolerance ±20 % | ||
Ripple Current 3.3A | ||
Dissipation Factor 0.08% | ||
- Land van herkomst:
- JP
Panasonic Polymer Capacitor, 47μF Capacitance, 63V Voltage - EEHZV1J470P
This polymer capacitor is a surface-mount hybrid aluminium electrolytic device designed for electronic and automotive environments. It provides energy storage and smoothing in power circuits, functioning across a wide temperature range for demanding applications. The component is supplied in a taped SMD package for automated placement and is polarised for correct orientation on assemblies.
Features and Benefits:
• Rated for 63V operation enabling higher-voltage designs
• Capacitance 47μF with ±20% tolerance for predictable filtering
• Ripple handling 3.3A supports high-current decoupling
• Maximum temperature 135°C allows elevated-temperature use
• Minimum temperature -55°C secures low-temperature performance
• Leakage current 29.6μA reduces standby losses in circuits
• Capacitance 47μF with ±20% tolerance for predictable filtering
• Ripple handling 3.3A supports high-current decoupling
• Maximum temperature 135°C allows elevated-temperature use
• Minimum temperature -55°C secures low-temperature performance
• Leakage current 29.6μA reduces standby losses in circuits
Applications
• Suitable for automotive control units requiring high-temperature parts
• Ideal for power-supply smoothing in industrial automation
• Used for decoupling in motor drive and inverter modules
• Can be used for bulk storage on Compact SMD power boards
• Used with high-reliability electronics needing AEC‑Q200 components
• Ideal for power-supply smoothing in industrial automation
• Used for decoupling in motor drive and inverter modules
• Can be used for bulk storage on Compact SMD power boards
• Used with high-reliability electronics needing AEC‑Q200 components
What mounting method is required for assembly?
The device is intended for surface mounting and is supplied in a taped package for reel-based pick-and-place assembly.
How long can the capacitor be expected to operate under continuous use?
The specified operational lifetime is 4000h under rated conditions.
What mechanical footprint should designers allow on the PCB?
The component has a circular body with an 8mm diameter and a height of 10.2 mm, lead pitch measures 3.1mm for solder pad alignment.
Which electrolyte technology is used and what impact does it have?
A hybrid aluminium electrolytic design is used, combining polymer characteristics for low impedance with traditional electrolytic behaviour.
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