Panasonic 330 μF Aluminium Electrolytic Capacitor 35V dc, Radial - EEHAZK1V331B

This image is representative of the product range

Bulk discount available
View bulk pricing options

Subtotal (1 tape of 2 units)*

PHP242.94

(exc. VAT)

PHP272.10

(inc. VAT)

Add to Basket
Select or type quantity
In Stock
  • Plus 186 unit(s) shipping from October 05, 2026
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.

Units
Per Unit
Per Tape*
2 - 8PHP121.47PHP242.94
10 - 48PHP109.315PHP218.63
50 - 98PHP98.39PHP196.78
100 - 248PHP88.55PHP177.10
250 +PHP79.695PHP159.39

*price indicative

Packaging Options:
RS Stock No.:
210-5736
Mfr. Part No.:
EEHAZK1V331B
Manufacturer:
Panasonic
Find similar products by selecting one or more attributes.
Select all

Brand

Panasonic

Product Type

Aluminium Electrolytic Capacitor

Capacitance

330μF

Voltage

35V dc

Construction

Radial Can

Mount Type

Radial

Packaging

Ammo Pack

Polarity

Polar

Length

9.5mm

Minimum Operating Temperature

-55°C

Diameter

10mm

Termination Type

Radial Lead

Pin Count

2

Maximum Operating Temperature

125°C

Lead Pitch

5mm

Width

10mm

Standards/Approvals

RoHS

Lifetime

4000 h

Equivalent Series Resistance ESR

20mΩ

Series

ZK-A

Tolerance

±20 %

Automotive Standard

AEC-Q200

Leakage Current

115.5μA

Dissipation Factor

8%

COO (Country of Origin):
JP

Panasonic ZK-A Series Aluminium Electrolytic Capacitor, 330 μF Capacitance, 35V DC Voltage - EEHAZK1V331B


This aluminium electrolytic capacitor is a reliable component designed for various electronic applications. Featuring a capacitance of 330μF and a voltage rating of 35 V DC, this through-hole radial capacitor offers versatility in mounting. With dimensions of 10mm in diameter and a height of 9.5mm, this product maintains a Compact design while ensuring optimal performance within temperature ranges of -55°C to +125°C.

Features & Benefits


• Hybrid capacitor technology enhances performance and efficiency
• Polarised design ensures correct orientation and functionality
• Capable of handling high ripple currents up to 2800mA
• Low leakage current of 115.5μA improves circuit reliability
• Automotive standard AEC-Q200 ensures suitability for vehicle applications
• Tolerance of ±20% allows for flexibility in circuit design

Applications


• Utilised in automotive electronics and systems
• Fitted in power supply circuits for stabilisation
• Effective in audio for improved sound quality
• Integrated into signal processing devices for enhanced performance
• Commonly used in control circuits within machinery

What are the advantages of the hybrid capacitor technology used?


The hybrid technology combines the benefits of both solid and liquid electrolytes, allowing for improved performance, stability, and heat resistance in various applications, making it suitable for demanding environments.

How does the low leakage current impact circuit design?


A low leakage current minimises power losses in circuits, enhancing overall efficiency and reliability, which is particularly important for battery-operated devices and sensitive electronic equipment.

What challenges can be addressed with this capacitor's high ripple current capacity?


The capacitor’s Ability to handle high ripple currents prevents overheating and potential failure in applications with fluctuating loads, ensuring consistent operation and longevity for critical electronic systems.

In which environments is this component most effective?


This component performs best in harsh environments, such as automotive settings or industrial machinery, due to its wide temperature range and robust construction, ensuring functionality in extreme conditions.

How does the polarised design affect installation?


The polarised design requires proper orientation during installation, ensuring correct polarity to avoid circuit damage. This feature helps secure reliable connections within electronic assemblies.

Related links

Be the first to know about our latest products and offers

Email address

The personal information you provide to us when signing up to this mailing list will be processed in line with the Privacy Policy