VHR

Short Description:

Polymer Hybrid Aluminum Electrolytic Capacitor

150°C ultra-high temperature-resistant products,

150°C 2000 hours guarantee,

Low ESR, high allowable ripple current, high reliability, can meet the requirements of vibration resistance, surface mount type, high temperature lead-free reflow soldering, complies with AEC-Q200, and has complied with ROHS directive.


Product Detail

Product Tags

Technical Parameter

Series Life(Hrs) Features Rated voltage range (V.DC) Rated capacitance (uF) Operating temperature range (°C)
VHR 2000 150℃ ultra-high temperature resistance 25~80 33~1800 -55~150

 The main technical parameters

Item characteristic
range of working temperature -55~+150℃
Rated working voltage 25 ~ 80V
capacity range 33 ~ 1800uF 120Hz 20℃
Capacity tolerance ±20% (120Hz 20℃)
loss tangent 120Hz 20℃ below the value in the list of standard products
Leakage current※ Below 0.01 CV(uA), charge at rated voltage for 2 minutes at 20°C
Equivalent Series Resistance (ESR) 100kHz 20°C below the value in the list of standard products
Temperature Characteristics (Impedance Ratio) Z(-25℃)/Z(+20℃)≤2.0 ; Z(-55℃)/Z(+20℃)≤2.5 (100kHz)
Durability At a temperature of 150°C, apply a rated voltage including a rated ripple current for a specified period of time, and then place it at 20°C for 16 hours before testing, the product should meet
Capacitance change rate ±30% of initial value
Equivalent Series Resistance (ESR) ≤200% of the initial specification value
loss tangent ≤200% of the initial specification value
leakage current ≤Initial specification value
local temperature storage Store at 150°C for 1000 hours, place it at room temperature for 16 hours before testing, test temperature: 20°C±2°C, the product should meet the following requirements
Capacitance change rate ±30% of initial value
Equivalent Series Resistance (ESR) ≤200% of the initial specification value
loss tangent ≤200% of the initial specification value
leakage current to initial specification value
Note: Products stored at high temperature must undergo voltage treatment.
High temperature and humidity After applying the rated voltage for 1000 hours at 85°C and 85%R.H humidity, and placing it at 20°C for 16 hours, the product should meet
Capacitance change rate ±30% of initial value
Equivalent Series Resistance (ESR) ≤200% of the initial specification value
loss tangent ≤200% of the initial specification value
leakage current ≤Initial specification value

※When in doubt about the leakage current value, please place the product at 105°C and apply the rated working voltage for 2 hours, and then conduct the leakage current test after cooling down to 20°C.

Product Dimensions (Unit:mm)

ΦD B C A H E K a
8 8.3(8.8) 8.3 3 0.90±0.20 3.1 0.5MAX ±0.5
10 10.3(10.8) 10.3 3.5 0.90±0.20 4.6 0.70±0.20
12.5 12.8(13.5) 12.8 4.7 0.90±0.20 4.6 0.70±0.30 ±1
16 17.0(17.5) 17 5.5 1.20±0.30 6.7 0.70±0.30
18 19.0(19.5) 19 6.7 1.20±0.30 6.7 0.70±0.30

frequency correction factor

Capacitance C Frequency (Hz) 120Hz 500Hz 1kHz 5kHz 10kHz 20kHz 40kHz 100kHz 200kHz 500kHz
C<47uF correction
factor
0.12 0.2 0.35 0.5 0.65 0.7 0.8 1 1 1.05
47uF≤C<120uF 0.15 0.3 0.45 0.6 0.75 0.8 0.85 1 1 1
C≥120uF 0.15 0.3 0.45 0.65 0.8 0.85 0.85 1 1 1

List Of Standard Products

Rated voltage Nominal capacity (uF) Product Dimension ① DxL(mm) tanδ 120Hz ESR (mΩ100kHz) Rated ripple current Model
(surge voltage) (V) (mA r.m.s/150℃100kHz) Standard Products Earthquake-resistant products
25(28.8) 220 8x10.5 0.14 27 700 VHRD1051E221MVCG VHRD1051E221MVKZ
25(28.8) 470 10x10.5 0.14 25 900 VHRE1051E471MVCG VHRE1051E471MVKZ
25(28.8) 560 10x13 0.14 20 1050 VHRE1301E561MVCG VHRE1301E561MVKZ
25(28.8) 1500 12.5x21.5 0.14 15 2500 VHRL2151E152MVCG VHRL2151E152MVKZ
35(41) 120 8x10.5 0.12 27 700 VHRD1051V121MVCG VHRD1051V121MVKZ
35(41) 220 10x10.5 0.12 25 900 VHRE1051V221MVCG VHRE1051V221MVKZ
35(41) 330 10x13 0.12 20 1050 VHRE1301V331MVCG VHRE1301V331MVKZ
35(41) 1800 18x26.5 0.12 15 4000 VHRJ2651V182MVCG VHRJ2651V182MVKZ
50(58) 82 8x10.5 0.1 30 600 VHRD1051H820MVCG VHRD1051H820MVKZ
50(58) 120 10x10.5 0.1 28 800 VHRE1051H121MVCG VHRE1051H121MVKZ
50(58) 180 10x13 0.1 25 1000 VHRE1301H181MVCG VHRE1301H181MVKZ
50(58) 1800 18x31.5 0.1 18 5300 VHRJ3151H182MVCG VHRJ3151H182MVKZ
63(73) 47 8x10.5 0.08 40 600 VHRD1051J470MVCG VHRD1051J470MVKZ
63(73) 82 10x10.5 0.08 30 800 VHRE1051J820MVCG VHRE1051J820MVKZ
63(73) 120 10x13 0.08 25 1000 VHRE1301J121MVCG VHRE1301J121MVKZ
63(73) 1200 18x31.5 0.08 20 5000 VHRJ3151J122MVCG VHRJ3151J122MVKZ
80(92) 33 8x10.5 0.08 40 600 VHRD1051K330MVCG VHRD1051K330MVKZ
80(92) 47 10x10.5 0.08 30 800 VHRE1051K470MVCG VHRE1051K470MVKZ
80(92) 68 10x13 0.08 25 1000 VHRE1301K680MVCG VHRE1301K680MVKZ
80(92) 680 18x31.5 0.08 20 4700 VHRJ3151K681MVCG VHRJ3151K681MVKZ

 

Conductive polymer hybrid aluminum electrolytic capacitors are a type of capacitor that combines the benefits of both aluminum electrolytic and conductive polymer capacitors. They are widely used in the electronics industry due to their high capacitance, low ESR, and long lifespan. In this guide, we'll explore how these capacitors work and why they're a preferred choice for many applications.

Introduction to Conductive Polymer Hybrid Aluminum Electrolytic Capacitors.

Conductive polymer hybrid aluminum electrolytic capacitors are a type of capacitor that has gained popularity in recent years due to their unique combination of features. These capacitors are made by combining the benefits of aluminum electrolytic capacitors and conductive polymer capacitors, resulting in a capacitor that has high capacitance, low ESR, and a long lifespan. In this guide, we'll take a closer look at how these capacitors work and why they're a preferred choice in the electronics industry.

How Conductive Polymer Hybrid Aluminum Electrolytic Capacitors Work.

Conductive polymer hybrid aluminum electrolytic capacitors work by combining the benefits of two different types of capacitors. The aluminum electrolytic capacitor provides high capacitance, while the conductive polymer capacitor provides low ESR (Equivalent Series Resistance) and a long lifespan. The conductive polymer layer is added to the aluminum electrolytic capacitor to improve its performance. The conductive polymer layer is made up of a conductive polymer material that is added to the aluminum oxide layer of the capacitor. This layer helps to reduce the ESR of the capacitor and improve its performance. The result is a capacitor that has high capacitance, low ESR, and a long lifespan, making it a preferred choice in the electronics industry.

Advantages of Conductive Polymer Hybrid Aluminum Electrolytic Capacitors.

Conductive polymer hybrid aluminum electrolytic capacitors offer several advantages over traditional capacitors. Firstly, they have a longer lifespan due to the conductive polymer layer, which helps to prevent the formation of aluminum oxide. This means that they can be used in applications where reliability is crucial, such as in automotive electronics or medical devices. Secondly, they have a lower ESR, which means that they can handle higher ripple currents and provide better filtering performance. Finally, they have a higher capacitance than other types of capacitors, which makes them ideal for use in high-power applications. Overall, conductive polymer hybrid aluminum electrolytic capacitors are a reliable and efficient choice for many different electronic applications.

Applications of Conductive Polymer Hybrid Aluminum Electrolytic Capacitors.

Conductive polymer hybrid aluminum electrolytic capacitors are used in a wide range of electronic applications due to their reliability and efficiency. They are commonly used in automotive electronics, medical devices, power supplies, and telecommunications equipment. In automotive electronics, they are used in engine control units, airbag systems, and navigation systems. In medical devices, they are used in pacemakers, defibrillators, and other implantable devices. In power supplies, they are used in voltage regulators, DC-DC converters, and inverters. In telecommunications equipment, they are used in base stations, routers, and switches. Overall, conductive polymer hybrid aluminum electrolytic capacitors are a versatile component that can be used in many different electronic applications.

Choosing the Right Conductive Polymer Hybrid Aluminum Electrolytic Capacitor for Your Project.

When choosing a conductive polymer hybrid aluminum electrolytic capacitor for your project, there are several factors to consider. First, consider the voltage rating and capacitance required for your application. You should also consider the operating temperature range and the expected lifespan of the capacitor. Additionally, it's important to consider the size and shape of the capacitor, as well as any specific mounting requirements. Finally, consider the manufacturer's reputation for quality and reliability, as well as any certifications or approvals that may be required for your application. By carefully considering these factors, you can choose the right conductive polymer hybrid aluminum electrolytic capacitor for your project and ensure reliable performance over the long term.

 


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