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Added value distributor and development

Snap-in electrolytic capacitors

Our official sales partner: Hongda Capacitors and AIC Europe

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Hongda Capacitors is one of the leading manufacturers of chip capacitors with decades of experience and state-of-the-art production technology. The company is ISO9001:2015 and IATF16949 certified and stands for the highest quality standards in the automotive, electronics and industrial sectors.

As an official distribution partner of Hongda Capacitors, we offer our customers high-performance capacitors that are characterized by reliability, durability and innovative technology.
AIC Europe is a leading supplier of electrolytic and film capacitors with over 30 years of experience in the industry. With an impressive production capacity of 90 million capacitors per year and an FIT rate of less than 0.5, AIC Europe stands for the highest quality and reliability

Together with AIC Europe, we focus on innovative technologies and sustainable practices to ensure the success of your applications.

Product range of our snap-in electrolytic capacitors

Our snap-in electrolytic capacitors offer the highest quality and reliability for industrial applications. Thanks to our direct partnership with AIC Europe, we can offer a wide range of high-performance capacitors with different capacitances, voltage ranges and service life classes.

Whether for switching power supplies, frequency converters or UPS systems - our capacitors are designed for high load capacity and long service life. In the following tables you will find detailed technical specifications and data sheets to download to help you find the right product for your application.

HP3

Rated | Voltage Code | (Surge Voltage) | Vr | [V DC]16 VDC, Code: 1C, Surge Voltage, 20 VDC, , 25 VDC, Code: 1E, 32 VDC, 35 VDC, Code: 1V, 44 VDC, 50 VDC, Code: 1H, 63 VDC, Code: 1J, 79 VDC, 80 VDC, Code: 1K, 100 VDC, Code: 2A, 125 VDC, 160 VDC, Code: 2C, 200 VDC, 180 VDC, Code: 2P, 225 VDC, Code: 2D, 250 VDC, Code: 2E, 300 VDC, 350 VDC, Code: 2V, 400 VDC, Code: 2G, 450 VDC, 420 VDC, Code: 420V, 470 VDC, Code: 2W, 500 VDC, Code: 2H, 550 VDC
Capacitance | Cr | [µF]1-6 800, 1-100 000, 2-4 700, 2-3 300, 1-8 200, 1 500, 3 900, 1-5 600, 56-870, 1-2 100, 1 400
Ripple Current | at | 85°C/120Hz | Ir | [A RMS]0,65-9,58
Ripple Current | at | 40°C/120Hz | [A RMS]1,23-18,21
ESR (typ) | at | 20°C/100Hz | [mΩ]10-2135
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,15-1,2
DxL | [mm]20-35x25, 20-35x30, 22-35x40, 22-35x45, 20-40x35, 30-40x60, 22-41x50, 30-40x80, 40-41x61, 35-40x36, 40x41, 30-40x51, 30-40x85, 30-46x100, 30-40x75, 40x71, 40x110, 30x55, 35-40x81, 40x56, 40-46x76, 40x101, 40x86, 35-40x70, 50x90
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HU3

Rated | Voltage Code | (Surge Voltage) | Vr | [V DC]16 VDC, Code: 1C, Surge Voltage, 20 VDC, , 25 VDC, Code: 1E, 32 VDC, 35 VDC, Code: 1V, 44 VDC, 50 VDC, Code: 1H, 63 VDC, 63 VDC, Code: 1J, 79 VDC, 80 VDC, Code: 1K, 100 VDC, 100 VDC, Code: 2A, 125 VDC, 160 VDC, Code: 2C, 200 VDC, 180 VDC, Code: 2P, 225 VDC, 200 VDC, Code: 2D, 250 VDC, Code: 2E, 300 VDC, Code: 300V, 350 VDC, 350 VDC, Code: 2V, 400 VDC, Code: 2G, 450 VDC, 420 VDC, Code: 420V, 470 VDC, Code: 2W, 500 VDC, Code: 2H, 550 VDC
Capacitance | Cr | [µF]4 700, 1-6 800, 1-47 000, 1-3 300, 1-8 200, 5 600, 1 500, 39-820
Ripple Current | at | 105°C/120Hz | Ir | [A RMS]0,39-7,13
Ripple Current | at | 40°C/120Hz | [A RMS]1,04-19,25
ESR (typ) | at | 20°C/100Hz | [mΩ]15-2440
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,15-0,5
DxL | [mm]22-35x25, 22-35x35, 22-35x45, 22-35x30, 22-35x50, 22-35x40, 35-40x51, 40x36, 40x41, 30-40x60, 35-50x85, 35-40x100, 40x110, 30-35x55, 40x61, 40x76, 35-41x81, 35-40x75, 40-41x86, 35x70, 35x80, 40x91, 40x96, 40x101
More information

HU

Rated | Voltage Code | (Surge Voltage) | Vr | [V DC]200 VDC, Code: 2D, Surge Voltage, 250 VDC, , 250 VDC, Code: 2E, 300 VDC, 400 VDC, Code: 2G, 450 VDC, 420 VDC, Code: 420V, 470 VDC, 450 VDC, Code: 2W, 500 VDC, 500 VDC, Code: 2H, 550 VDC, Code: 2L, 600 VDC
Capacitance | Cr | [µF]56-2200, 1 000, 1-2 200, 1 500, 1 800, 1-2 700, 1 300, 2 100
Ripple Current | at | 105°C/120Hz | Ir | [A RMS]0,42-6
Ripple Current | at | 40°C/120Hz | [A RMS]0,97-13,8
ESR (typ) | at | 20°C/100Hz | [mΩ]45-2920
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,15-0,25
DxL | [mm]20-35x35, 22-35x25, 20-35x30, 22-35x40, 22-35x50, 22-35x45, 22-35x26, 25-35x51, 25-30x61, 25-35x55, 25-35x60, 25-40x56, 35-40x75, 25-35x80, 35-46x100, 40x76, 35-40x90, 40x101, 25-35x36, 22-35x41, 30-35x31, 22-30x20, 22-35x46, 25-35x70, 35x82, 40x81, 46x97
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HL

Rated | Voltage Code | (Surge Voltage) | Vr | [V DC]200 VDC, Code: 2D, Surge Voltage, 250 VDC, , Code: 2E, 300 VDC, 315 VDC, Code: 2F, 365 VDC, 400 VDC, Code: 2G, 450 VDC, 420 VDC, Code: 420V, 470 VDC, Code: 2W, 500 VDC, 500 VDC, Code: 2H, 550 VDC
Capacitance | Cr | [µF]47-2700, 1 000, 1 200
Ripple Current | at | 105°C/120Hz | Ir | [A RMS]0,37-4,07
Ripple Current | at | 40°C/120Hz | [A RMS]0,85-9,36
ESR (typ) | at | 20°C/100Hz | [mΩ]50-2040
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,15-0,2
DxL | [mm]22-35x25, 22-35x30, 22-35x35, 22-35x40, 22-35x45, 22-35x50, 35-40x100, 25-30x31, 25-30x36, 22x51, 25-30x41, 30x56, 30-35x60, 35x80
More information

HL2

Rated | Voltage Code | (Surge Voltage) | Vr | [V DC]200 VDC, Code: 2D, Surge Voltage, 250 VDC, , 250 VDC, Code: 2E, 300 VDC, 400 VDC, Code: 2G, 450 VDC, 420 VDC, Code: 420V, 470 VDC, 450 VDC, Code: 2W, 500 VDC, Code: 2H, 550 VDC
Capacitance | Cr | [µF]47-820, 1 000, 1 200, 1 500
Ripple Current | at | 105°C/120Hz | Ir | [A RMS]0,46-3,48
Ripple Current | at | 40°C/120Hz | [A RMS]1,29-9,73
ESR (typ) | at | 20°C/100Hz | [mΩ]61-1820
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,15-0,2
DxL | [mm]20-30x25, 20-35x30, 20-35x35, 22-40x40, 22-35x45, 22-35x50, 40x31, 35x70, 35x80, 35x60, 40x61
More information

DH

Rated | Voltage Code | (Surge Voltage) | Vr | [V DC]400 VDC, Code: 2G, Surge Voltage, 450 VDC, , 450 VDC, Code: 2W, 500 VDC
Capacitance | Cr | [µF]82-680, 1 500
Ripple Current | at | 105°C/120Hz | Ir | [A RMS]0,64-4,99
Ripple Current | at | 40°C/120Hz | [A RMS]1,47-11,48
ESR (typ) | at | 20°C/100Hz | [mΩ]55-1220
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,2
DxL | [mm]22-35x25, 22-35x30, 22-35x35, 22-35x40, 22-35x45, 22-35x50, 35x80
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ZLR

Capacitance | Cr | [µF]68-820
Ripple Current | at | 105°C/120Hz | Ir | [A RMS]0,66-3,49
Ripple Current | at | 40°C/120Hz | [A RMS]1,65-8,73
ESR (typ) | at | 20°C/100Hz | [mΩ]45-720
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,2
More information

ZR

Capacitance | Cr | [µF]150-820
Ripple Current | at | 105°C/120Hz | Ir | [A RMS]1,25-4,49
Ripple Current | at | 40°C/120Hz | [A RMS]3-10,78
ESR (typ) | at | 20°C/100Hz | [mΩ]50-285
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,2
More information

ZR2

Capacitance | Cr | [µF]180-820, 1 000, 1 200, 1 500
Ripple Current | at | 105°C/120Hz | Ir | [A RMS]1,87-6,96
Ripple Current | at | 40°C/120Hz | [A RMS]4,68-17,4
ESR (typ) | at | 20°C/100Hz | [mΩ]50-350
Dissipation | Factor | at | 20°C/100Hz | Tan δ0,2
More information

RHP

Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Operating Temperature Range-40 ~ +105℃-25 ~ +105℃
Rated Voltage Range10V ~ 100V DC160V ~ 500V DC
Nominal Capacitance Tolerance47μF ~ 56000μF
Capacitance Tolerance±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40 ~ +105℃-25 ~ +105℃
Nennspannungsbereich10V ~ 100V DC160V ~ 500V DC
Nominale Kapazitätstoleranz47μF ~ 56000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
More information

RIP

Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Operating Temperature Range-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominal Capacitance Tolerance47μF~47000μF
Capacitance Tolerance±20% (120Hzꞏ20℃)
Less than the value under table (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
Betriebstemperaturbereich-40~+105℃-25~+105℃
Rated voltage range10V~100V DC160V~500V DC
Nominale Kapazitätstoleranz47μF~47000μF
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Weniger als der Wert in der Tabelle (% )
More information

RJP

Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Operating Temperature Range-40~+105℃-25~+105℃
Rated Voltage Range16V~100V DC160V~450V DC
Capacitance Tolerance±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
Betriebstemperaturbereich-40~+105℃-25~+105℃
Nennspannungsbereich16V~100V DC160V~450V DC
Kapazitätstoleranz±20% (120Hzꞏ20℃)
More information

Snap-in electrolytic capacitors with high capacitance and low ESR

Buy snap-in electrolytic capacitors

  • Simple installation & compact design
  • High capacity & reliable voltage stabilization
  • Versatile in use
  • Quality through strong partnership

Applications for snap-in electrolytic capacitors

Snap-in electrolytic capacitors are an indispensable part of modern power electronics. Their high capacitance, low impedance and simple assembly make them ideal for industrial applications where reliable voltage stabilization is required.

A classic area of application is switching power supplies, which are used in almost all electronic devices. Here, snap-in capacitors smooth the output voltage and minimize voltage fluctuations. They are also indispensable in frequency converters, as they stabilize the energy flow in electric drives and thus enable efficient motor control.

Other areas of application include UPS systems (uninterruptible power supply), in which they temporarily store energy and compensate for voltage peaks. They also ensure a stable power supply in energy and industrial electronics, for example in photovoltaic inverters or high-performance charging stations.
Thanks to our partnership with AIC Europe, we offer high-performance snap-in electrolytic capacitors that guarantee maximum reliability and longevity in all these applications.
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Snap-in electrolytic capacitors

Electrolytic capacitors

HP3

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Electrolytic capacitors

HU3

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Electrolytic capacitors

HU

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Electrolytic capacitors

HL

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Electrolytic capacitors

HL2

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Electrolytic capacitors

DH

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Electrolytic capacitors

ZLR

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Electrolytic capacitors

ZR

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Electrolytic capacitors

ZR2

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Electrolytic capacitors

RHP

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Electrolytic capacitors

RIP

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Electrolytic capacitors

RJP

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Snap-in electrolytic capacitors - High-performance components for reliable applications

Snap-in electrolytic capacitors are the ideal choice for powerful and space-saving circuits in industrial electronics. These specially developed aluminum electrolytic capacitors are characterized by their high capacitance, low impedance and simple snap-in connection. They are particularly in demand in switching power supplies, frequency converters and other power-intensive applications where reliable voltage stabilization is crucial.

As a distributor with a direct partnership with AIC Europe, a leading manufacturer from China, we offer high-quality snap-in electrolytic capacitors with short delivery times and attractive conditions. Thanks to state-of-the-art manufacturing technologies, our products guarantee a long service life and stable performance - even under demanding conditions.

Whether for industrial control systems, power supply or drive technology - our snap-in electrolytic capacitors deliver the necessary performance and reliability. Let our selection convince you and benefit from our direct access to high-quality components.

Our range of other capacitors:

Electrolytic capacitors

Electrolytic capacitors

A tantalum capacitor is an electrolytic capacitor that uses tantalum as the anode material. This type of capacitor is characterized by high capacitance density, low leakage currents and stable electrical properties. They are often used in DC circuits, for decoupling, filtering and energy storage.
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Film capacitors

Film capacitors

Film capacitors are electrical components for energy storage, consisting of two metal foils or metallized plastic films as electrodes, separated by a dielectric plastic film. They are characterized by high dielectric strength, low losses and a long service life and are used in applications such as power supplies, motor drives and high-frequency technology.
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Ceramic capacitors

Ceramic capacitors

Ceramic capacitors are electrical components for energy storage and signal filtering. They consist of a ceramic dielectric and metal plates. Their advantages: high stability, low losses, fast charging and discharging times. They are used in electronics, high-frequency technology and power applications - from smartphones to industrial control systems.
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Design and function of snap-in electrolytic capacitors

Snap-in electrolytic capacitors consist of a wound aluminum foil system surrounded by an electrolyte and housed in a cylindrical aluminum housing. The insulating oxide layer on the anode foil serves as a dielectric and enables high capacitance in a compact design.

Thanks to their snap-in connections, these capacitors are particularly easy to mount on printed circuit boards, making them ideal for industrial applications such as switching power supplies or frequency converters. They are characterized by high dielectric strength, low impedance and a long service life - even under demanding conditions.
Snap-in electrolytic capacitors
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Further information on snap-in electrolytic capacitors

In our FAQ section, we answer the most important questions about these powerful components. You will find out how snap-in capacitors are constructed, what advantages they offer, where they are used and what to look out for when selecting them. Our experts will give you valuable tips to help you find the right components for your application.

What advantages do snap-in electrolytic capacitors offer over other electrolytic capacitors?

Snap-in electrolytic capacitors are specially designed for use in industrial applications where fast and stable assembly is required. Their greatest advantage lies in the snap-in connections, which enable easy assembly of printed circuit boards and at the same time ensure a firm mechanical connection. They also offer high capacitance and dielectric strength, making them ideal for applications such as switching power supplies, frequency converters or UPS systems.

Compared to standard electrolytic capacitors, they have a lower impedance, resulting in more efficient voltage stabilization and lower energy losses. In addition, they are designed for high current loads and have a long service life, even with intensive use. These advantages make snap-in electrolytic capacitors the preferred choice in high-performance electronic applications where reliability and efficiency are critical.
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Where are snap-in electrolytic capacitors used in industry?

Snap-in electrolytic capacitors are used in many areas of power electronics. They are particularly important in switched-mode power supplies, as they smooth out voltage fluctuations and ensure a stable power supply.

Another important field of application is frequency converters, which are used in electric drives and motor controls, for example, to efficiently regulate the speed. They also play a crucial role in UPS systems (uninterruptible power supply) by storing energy for short periods and compensating for voltage fluctuations.

They are also an essential component of photovoltaic inverters, in which they help to convert direct current into grid-compliant alternating current. High-performance charging stations for electric vehicles also use them to ensure a stable power supply. Thanks to their high capacity, compact design and resistance to electrical loads, snap-in electrolytic capacitors are indispensable in all these applications.
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How do you choose the right snap-in electrolytic capacitor for an application?

The selection of a suitable snap-in electrolytic capacitor depends on several technical factors. Firstly, the operating voltage that the capacitor must be able to withstand must be determined - common values are between 200V and 500V. Equally important is the capacitance, which can range from a few microfarads (µF) to several thousand µF.

Also important is the impedance (ESR), which should be as low as possible in order to minimize energy losses and maximize the efficiency of the system.

Another factor is the service life, which should be several thousand hours depending on the application, especially in applications with continuous operation. Temperature resistance is also relevant, as industrial systems are often exposed to high thermal loads. As a distributor with a direct partnership with AIC Europe, we offer a wide selection of high-performance snap-in electrolytic capacitors for a wide range of requirements.
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Why is the service life of snap-in electrolytic capacitors so important?

In industrial applications such as switching power supplies, frequency converters or UPS systems, electronic components must function reliably over long periods of time. The service life of a snap-in electrolytic capacitor is crucial, as it is often used in critical areas where failure can lead to significant system disruption or even production downtime. The durability of a capacitor depends on several factors, including operating temperature, voltage and current load.

High-quality snap-in capacitors offer a service life of several thousand to ten thousand operating hours at high temperatures (e.g. 85°C or 105°C). Thanks to low impedance (ESR) and optimized materials, voltage losses can be reduced and heat generation minimized, which further extends the service life. Our snap-in electrolytic capacitors from AIC Europe are designed for high loads and guarantee long-term, stable performance.
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What role does impedance (ESR) play in snap-in electrolytic capacitors?

The equivalent series resistance (ESR) is a decisive parameter for snap-in electrolytic capacitors, as it has a significant influence on performance and efficiency. A low ESR value means that the capacitor loses less energy in the form of heat and therefore works more efficiently.

This is particularly important in applications with high frequencies and rapid load changes, such as those found in switching power supplies, frequency converters or high-performance charging stations.

A low ESR ensures faster charging and discharging cycles, better voltage stabilization and less heating of the capacitor. This also extends its service life, especially in environments with high temperatures. Our snap-in electrolytic capacitors from AIC Europe are specially optimized for low impedance and offer high efficiency and reliable performance in demanding industrial electronics applications.
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