Panasonic 470 μF Through Hole Polymer Capacitor, 25V dc

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TWD16,640.00

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TWD17,472.00

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400 - 1600TWD41.60TWD16,640.00
2000 +TWD40.80TWD16,320.00

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RS庫存編號:
210-5946
製造零件編號:
EEHZS1E471V
製造商:
Panasonic
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品牌

Panasonic

Technology

Hybrid

Product Type

Polymer Capacitor

Capacitance

470μF

Voltage

25V dc

Mount Type

Through Hole

Polarity

Polar

Tolerance

±20 %

Maximum Operating Temperature

125°C

Dimensions

10 x 12.8 mm

Height

11mm

Series

ZS

Length

12.8mm

Electrolyte Type

Hybrid

Automotive Standard

AEC-Q200

Dissipation Factor

14%

Minimum Operating Temperature

-55°C

Ripple Current

3.5A

Leakage Current

117.5μA

Diameter

10mm

Lifetime

4000 h

COO (Country of Origin):
JP

Panasonic Polymer Capacitor, 470μF Capacitance, 25V Voltage - EEHZS1E471V


This polymer capacitor is a hybrid electrolytic component designed for surface-mount use in demanding electronic and automotive contexts. It provides bulk capacitance for power smoothing, decoupling and transient suppression in circuits exposed to wide temperature ranges and elevated ripple conditions, while meeting automotive-grade reliability expectations.

Features and Benefits:


• 470μF capacitance delivers substantial energy storage for power rails
• 25V rating supports low-voltage power supply applications
• High ripple capability 3.5A reduces voltage fluctuation under load
• Operating range -55°C to +135°C tolerates extreme thermal environments
• Hybrid electrolyte design offers low ESR for improved efficiency
• Polarised SMD construction enables Compact board-level placement

Applications


• Suitable for automotive power modules requiring AEC‑Q200 qualification
• Ideal for DC to DC converters and point-of-load filtering in automation systems
• Used with motor control electronics to handle high transient currents
• Can be used for backup smoothing in battery management systems

What endurance can I expect under continuous elevated temperature?


The component is rated for a 4000h operational lifetime at the specified conditions, indicating suitability for long-term use in high-temperature applications.

How should I account for leakage when designing a supply rail?


Plan for a leakage current of approximately 117.5 μA when calculating quiescent draw and standby power budgets.

What tolerance should be applied when specifying required capacitance?


The capacitance tolerance is ±20%, so designs must accommodate potential variation in effective capacitance values.

What mounting and polarity considerations apply during assembly?


It is a polarised surface-mount device supplied in taped packaging, ensure correct polarity orientation and pick-and-place compatibility.

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