ACAL2R5S471E09, AP-CAP | Reliable Polymer Capacitors with Eco-Friendly Technology – APAQ's Expertise Since 2005

Our 2.5V 470μF ESR9 Aluminum Electrolytic Capacitors is designed to meet the DC-DC converters, voltage regulators and decoupling application. | APAQ has been dedicated to researching high-conductivity polymer material capacitors and has amassed extensive production experience.

2.5V, 470μF Conductive Polymer Aluminum Electrolytic Capacitors-ACAL - Our 2.5V 470μF ESR9 Aluminum Electrolytic Capacitors is designed to meet the DC-DC converters, voltage regulators and decoupling application.
  • 2.5V, 470μF Conductive Polymer Aluminum Electrolytic Capacitors-ACAL - Our 2.5V 470μF ESR9 Aluminum Electrolytic Capacitors is designed to meet the DC-DC converters, voltage regulators and decoupling application.

2.5V, 470μF Conductive Polymer Aluminum Electrolytic Capacitors-ACAL

ACAL2R5S471E09, AP-CAP

Miniaturization、Low ESR、High-temperature、Long life

Our 2.5V 470μF ESR 9 Conductive Polymer Aluminum Electrolytic Capacitors offer the advantages of both low equivalent series resistance (ESR) and a low profile, making them well-suited for applications demanding efficient power delivery within limited space.

This Conductive Polymer Aluminum Electrolytic Capacitor has a long lifespan, high reliability, and large capacity, ensuring high-performance operation while reducing energy consumption. It is ideal for DC-DC converters, voltage regulators, and decoupling applications. It finds wide application in the Computing field and meets various computing application requirements.

Part No. ACAL2R5S471E09 Capacitance Tolerance ±20%
Type CAP ESR(mΩmax) 9
Application Standard RC-1(mA) 6,300@105C
AEC-Q200 N RC-2(mA) -
Temp(℃) -55 to 105℃ LC(μA) 117.5
Endurance(h) 2000 DF(δ) 0.06
Vdc(V) 2.5 L(D)/W/H(mm) 7.3*4.3*1.9(+/-0.1)
Cap.(µF) 470

This Conductive Polymer Aluminum Electrolytic Capacitor has a long lifespan, high reliability, and large capacity, ensuring high-performance operation while reducing energy consumption. It is ideal for DC-DC converters, voltage regulators, and decoupling applications. It finds wide application in the Computing field and meets various computing application requirements.

Features
  • Low ESR, surface mounting, reduced height, Wide temperature, suitable for DC-DC converters, voltage regulators and decoupling application.
  • Rate voltage: 2.5 Vdc.
  • Endurance : 2000hrs at 105℃
  • RoHS Compliant, Halogen free
Specification
  • Category Temperature Range: -55 to +105 ℃.
  • Rate voltage: 2.5 Vdc.
  • Capacitance: 470μF
  • Impendence: 9 mΩ
  • Ripple Current: 6,300@105C (mArms)
  • Endurance: 105℃, rated voltage applied,2000 hrs.
  • Damp Heat, Steady State: 60℃, 90 to 95%RH, 500 hrs.
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2.5V, 470μF Conductive Polymer Aluminum Electrolytic Capacitors-ACAL | APAQ: World’s Largest Producer of Radial Lead Polymer Capacitors

Founded in 2005, APAQ TECHNOLOGY CO., LTD. is a world leader in the production of ultra-compact, high-performance 2.5V, 470μF Conductive Polymer Aluminum Electrolytic Capacitors-ACAL and polymer solid capacitors. Specializing in high-temperature-resistant and long-life capacitor solutions, APAQ serves a global customer base, including major electronics manufacturers. With an annual R&D budget of over 3.5% of revenue, APAQ drives continuous innovation in the capacitor industry. Our products are RoHS-compliant, eco-friendly, and incorporate lead-free materials, positioning APAQ as a forward-thinking, environmentally conscious leader in the market.

APAQ’s advanced automated production lines and global-scale manufacturing ensure high-quality, large-volume production with reduced lead times. As the world’s largest producer of radial lead-type solid capacitors (AP-CON), APAQ provides reliable, cost-effective solutions tailored to the evolving needs of the electronics industry.

Since 2005, APAQ has been delivering high-quality polymer capacitors, backed by 20 years of industry experience and cutting-edge technology. APAQ is dedicated to meeting each customer's unique needs with precision and reliability.