Panasonic 470 μF Polymer Capacitor 35V dc, Surface - EEHZS1V471V

Sous-total (1 bobine de 250 unités)*

319,50 €

(TVA exclue)

386,50 €

(TVA incluse)

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  • Expédition à partir du 30 août 2027
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la bobine*
250 +1,278 €319,50 €

*Prix donné à titre indicatif

N° de stock RS:
181-2280
Référence fabricant:
EEHZS1V471V
Fabricant:
Panasonic
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Marque

Panasonic

Product Type

Polymer Capacitor

Capacitance

470μF

Voltage

35V dc

Mount Type

Surface

Height

16.5mm

Polarity

Polar

Length

11mm

Minimum Operating Temperature

-55°C

Diameter

10mm

Maximum Operating Temperature

125°C

Lead Pitch

11mm

Lifetime

4000 h

Tolerance

±20 %

Automotive Standard

AEC-Q200

Ripple Current

4A

Leakage Current

164.5μA

Series

ZS

Dissipation Factor

12%

Pays d'origine :
JP

Panasonic Series ZS Polymer Capacitor, 470μF Capacitance, 35V DC Voltage - EEHZS1V471V


This polymer capacitor offers reliable performance in various electronic applications. With a capacitance of 470 μF and a voltage rating of 35V DC, it ensures stability and efficiency in surface mount configurations. Designed for robust performance, it features dimensions of 11 x 10.3 x 16.5mm and operates effectively within a wide temperature range, making it suitable for demanding environments.

Features & Benefits


• Hybrid technology enhances efficiency in Compact applications

• Low Equivalent Series Resistance (11 mΩ) reduces energy loss

• High operating temperature rating (+125 °C) ensures durability

• Polarised design for reliable circuit integration

• Tolerance of ±20% allows for versatile usage

• Lifetime rating of 4000 hours guarantees long-term reliability

Applications


• Ideal for automotive electronic systems requiring high capacitance

• Frequently used in power supply circuits within automation equipment

• Suitable for use in Compact electronic devices with space constraints

• Employed in control systems that demand stable performance

What performance advantages does the low ESR provide in energy-efficient designs?


The low Equivalent Series Resistance contributes significantly to reduced energy loss, enhancing overall efficiency and thermal management in energy-sensitive applications.

How does the high-temperature rating influence usage in automotive environments?


The high-temperature capability allows it to function effectively in extreme conditions typically found in automotive environments, ensuring reliability and long-term stability.

What effects do the polarised characteristics have on circuit design?


The polarised design necessitates careful integration within circuits to prevent reverse polarity applications, ensuring optimal function and preventing component failure.

Can the capacitor maintain performance in sub-zero temperatures?


With a minimum operating temperature of -55 °C, it is designed to maintain performance in extremely low temperatures, making it suitable for various applications in cold environments.

How does the tolerance of ±20% impact circuit functionality?


The tolerance allows for flexibility in design, accommodating variations in capacitance without compromising circuit stability, enabling greater design freedom.

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