# SMD Aluminium Electrolytic Capacitor, Radial Can - SMD, 330 µF, 16 V, 3000 hours @ 105°C, Polar

![Product image](https://novapart.co/image/farnell:2610844/)

**URL**: https://novapart.co/products/MCVKZ016M331GB3L/smd-aluminium-electrolytic-capacitor-radial-can
**SKU**: MCVKZ016M331GB3L
**Manufacturer**: MULTICOMP PRO
**Category**: Passive Components || Capacitors || Aluminium Electrolytic Capacitors || SMD Aluminium Electrolytic Capacitors
**Price**: €0.0630
**Stock**: 10+

## Specifications

| Parameter | Value |
|---|---|
| Height | 10.5mm |
| Polarity | Polar |
| Capacitance | 330µF |
| Series Name | KZ, V-Chip |
| Voltage(Dc) | 16V |
| Product Height | 10.5mm |
| Product Diameter | 10mm |
| Ae Capacitor Case | Radial Can - SMD |
| Capacitor Terminals | Solder |
| Capacitance Tolerance | ± 20% |
| Lifetime @ Temperature | 3000 hours @ 105°C |
| Capacitor Case / Package | Radial Can - SMD |
| Operating Temperature Max | 105°C |
| Operating Temperature Min | -55°C |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2610844/)

## **SMD Aluminium Electrolytic Capacitors** 

## **Features** 

• Extra low impedance with temperature range -55°C to +105°C and load life of 1000~3000 hours. 

- Low impedance 40~60 less than MCVKZ Series 

## **Specifications:** 

|**Specifications:**||
|---|---|
|**Items**<br>~~ee~~|**Characteristics**|
|Operating Temperature<br>Range<br>~~ee~~|-55°C to +105°C|
|Rated Voltage Range<br>~~ee~~|6.3 to 50V DC|
|Capacitance Range|4.7 to 4,700μF|
|Leakage Current<br>~~a~~|For Ø4~Ø10, after 2 minutes application of rated voltage, leakage current is not more than<br>0.01CV or 3(μA), whichever is greater.<br>For Ø12.5~Ø16, after 1 minute’s application of rated voltage, leakage current is not more than<br>0.03CV or 4(μA), whichever isgreater.|
|(Tan δ)|Measurement Frequency: 120Hz. Temperature: 20°C<br>Rated Voltage(V DC)<br>6.3<br>10<br>16<br>25<br>35<br>50<br>tan δ(Max)<br>Ø4~Ø10<br>0.22<br>0.19<br>0.16<br>0.14<br>0.12<br>0.12<br>Ø12.5~Ø16<br>0.26<br>0.22<br>0.18<br>0.16<br>0.14<br>0.12|
|Stability at Low<br>Temperature|Measurement Frequency: 120Hz.<br>Rated Voltage(V DC)<br>6.3<br>10<br>16<br>25<br>35<br>50<br>Impedance<br>ratio<br>ZT/Z20<br>(max)<br>Ø4~Ø10<br>Z(-25°C)/Z(20°C)<br>3<br>2<br>2<br>2<br>2<br>2<br>Z(-55°C)/Z(20°C)<br>5<br>4<br>4<br>3<br>3<br>3<br>Ø12.5~Ø16<br>Z(-25°C)/Z(20°C)<br>3<br>2<br>2<br>2<br>2<br>2<br>Z(-55°C)/Z(20°C)<br>10<br>8<br>6<br>4<br>3<br>3|
|Load Life|After 3000 hours (1000 hours for Φ4~Φ6.3x5.4, 2000 hours for Φ6.3x7.7 and Φ8) application<br>of rated voltage at 105°C, capacitors meet the characteristics requirements listed at right.<br>Capacitance Change<br>Within ±30% of Initial Value<br>tan δ<br>200% or less of Initial Specified Value<br>Leakage Current<br>Initial Specified Value or less|
|Shelf Life|After leaving capacitors under no load at 105°C for 1000 hours, they meet the specified value<br>for load life characteristics listed above.|
|Resistance to Soldering<br>Heat<br>~~==~~|After reflow soldering and restored<br>at room temperature, they meet the<br>characteristics requirements listed<br>at right.<br>Capacitance<br>Change<br>Within ± 10%<br>of Initial Value<br>tan δ<br>Initial Specified Value<br>Leakage Current<br>Initial Specified Value or less<br>~~==~~|
|Applicable Standards<br>~~==~~|JIS C-5141 and JIS C-5102<br>~~==~~|



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## **SMD Aluminium Electrolytic Capacitors** 

## **Scope** 

This specification applies to aluminium electrolytic capacitor, used in electronic equipment. 

## **Electrical Characteristics** 

|**Item**|**Test Method**|**Test Method**|**Test Method**|**Specifcation**|
|---|---|---|---|---|
|Rated Voltage||||Voltage range, capacitance range,<br>see specifcation of this series.|
|Capacitance|Measuring frequency<br>: 120 ±12Hz<br>Measuring voltage<br>:%0.5Vrms + 0.5 ~ 2.0VDC<br>Measurement circuit<br>:|||Voltage range, capacitance range,<br>see specifcation of this series.<br>Dissipation factor, leakage current,<br>see specifcation of this series.|
|Dissipation factor|||||
|Leakage current|DC leakage current shall be measured after 1~2 minutes<br>application of the DC rated working voltage through the<br>1000Ω resistor at 20°C<br>R : 1000 ±100Ω    S1 : Switch<br>A : DC current meter   S2 :  Switch for protect of current<br>meter<br>V : DC voltage meter   CX : Testingcapacitor|||Dissipation factor leakage current,<br>see specifcation of this series.|
||R<br>A :<br>V :||||
|Temperature<br>characteristics||||Step 2.  Impedance ratio (Zr / Zr0)<br>less than specifed value.<br>Step 4.  Capacitance change :<br>within ± 20% of the initial<br>measured value.<br>Leakage current :<br>Less than 10 times of initial<br>specifed value .|
||**Step**|**Temperature**|**Storage Time**||
||1|20 ±2°C|30 minutes||
||2|-40 ±3°C|2 hours||
||3|20 ±2°C|15 minutes||
||4|105 ±2°C|2 hours||
|Surge test|Rated surge voltage shall be applied (switch on) for<br>30 ±5 seconds and then shall be applied (switch of) with<br>discharge for 5 ±0.5 min at room temperature . This cycle<br>shall be repeated for 1000 cycles.<br>Duration of one cycle is 6 ±0.5 minutes .|||Capacitance change : within ± 20%<br>of the initial specifed value.<br>Dissipation factor : less than 200%<br>of the initial specifed value.<br>Leakage current : within initial<br>specifed value.|
|Applicable Ripple<br>Current|The maximum A.C. current having frequency of 100kHz<br>which can be applied to the capacitor at 105 ±2°C<br>continuously. Peak voltage not to exceed rated D.C. voltage.||||



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## **SMD Aluminium Electrolytic Capacitors** 

|**Item**|**Test Method**|**Specifcation**|
|---|---|---|
|**Mechanical characteristics**|||
|Lead strength|(A)  Tensile strength :<br>wire lead terminal :<br>d (mm)<br>%0.45<br>0.5 ~ 0.8<br>0.8<d%1.25<br>Load(kg)<br>0.51<br>1<br>2<br>Snap-in terminal<br>d(mm)<br>snap-in terminal<br>Load(kg)<br>2<br>The capacitor shall withstand the constant tensile force<br>specifed between the body and each lead for 10 seconds<br>without damage either mechanical or electrical.<br>(B)  Bending strength :<br>wirelead terminal :<br>d (mm)<br>%0.45<br>0.5 ~ 0.8<br>0.8<d%1.25<br>Load(kg)<br>0.25<br>0.51<br>1<br>Snap-in terminal<br>Cross section area of terminal<br>Force(kg)<br>0.5<S%1<br>1<br>S>1<br>2.5<br>With the capacitor in a vertical position apply the load<br>specifed axially to each lead. The capacitor shall be rotated<br>slowly from the vertical to the horizontal position, back to the<br>vertical position. The 90° in the opposite direction and back<br>the original position. Performance of capacitor shall not have<br>changed and leads shall be undamaged|When the capacitance is<br>measured, there shall be no<br>intermittent contacts, or open- or<br>short-circuiting.<br>There shall be no such mechanical<br>damage as terminal damage etc.|
|Vibration resistance|The frequency of the vibration shall vary uniformly within the<br>range 10 to 55 Hz with the amplitude of 1.5mm, completing<br>the cycle in the internal of one minute.<br>The capacitor shall be securely mounted by its leads with<br>hold the body of capacitor. The capacitor shall be vibrated<br>in three mutually perpendicular directions for a period of 2<br>hours in each direction .|Capacitance : no unsteady.<br>Appearance : no abnormal.<br>Capacitance change : within ± 5%<br>of initial measured value .|
|Solderability|The leads are dipped in the solder bath of Sn at 260 ±5°C<br>for 2 ± 0.5 seconds . The dipping depth should be set<br>at 1.5 ~ 2mm .|The solder alloy shall cover the<br>95% or more of the dipped lead’s<br>area .|



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## **SMD Aluminium Electrolytic Capacitors** 

## **Reliability** 

|**Reliability**|||
|---|---|---|
|**Item**|**Test Method**|**Specification**|
|Soldering heat<br>resistance|The leads immerse in the solder bath of Sn at 260 ±5°C for<br>10 ± 1 seconds until a distance of 1.5 ~ 2mm from the case.|No damage or leakage of<br>electrolyte.<br>Capacitance change : within ± 10%<br>of the initial measured value.<br>Tan δ : less than specified value.<br>Leakage current : less than speci-<br>fied value.|
|Damp heat<br>(Steady state )|Subject the capacitors to 40 ±2°C and 90% to 95% relative<br>humidity for 240 ±8 hours.|Capacitance change : within ±10%<br>of the initial measured value.<br>Tan δ : less than specified value.<br>Leakage current : less than<br>specified value.|
|Load life|After X hours continuous application of DC rated working<br>voltage at 105 ±2°C, the measurements shall meet the<br>following limits. Measurements shall be performed after<br>2 hours exposed at room temperature .|Standard of judgement is<br>according to requirement of this<br>series.|
|Shelf life|After storage for Y hours at 105 ±2°C without voltage ap-<br>plication , the measurements shall meet the following limits.<br>Measurements shall be performed after exposed for 1 to<br>2 hrs at room temperature after application of DC rated<br>voltage to the capacitor for Z minutes .||
|Storage at Low<br>Temperature|The capacitor shall be stored at temperature of -40 ±3°C for<br>240 ±8 hours, during which time no voltage shall be applied.<br>And then the capacitor shall be subjected to standard<br>atmospheric conditions for 16 hours or more, after which<br>measurements shall be made.|Capacitance change : within ±10%<br>of the initial value.<br>Tan δ : less than specified value.<br>Leakage current : less than speci-<br>fied value<br>Appearance : no abnormal.|



## **MCVKZ Series** 

## **Dimensions:** 

**==> picture [217 x 16] intentionally omitted <==**

**----- Start of picture text -----**<br>
MCVKZ J) isS ; (\y MCVKZ<br>**----- End of picture text -----**<br>


1. Voltage mark [6V] represents 6.3V for Ф4~Ф10 

2. L±0.3] is applicable to Φ6.3×7.7 and Φ8×6.2 

3. [L±0.5] is applicable to Φ8×10.5~Ф10 

4. [L±1.0] is applicable to Φ12.5~Ф16. 

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## **SMD Aluminium Electrolytic Capacitors** 

|**D × L**|**4×5.4**|**5×5.4**|**6.3×5.4**|**6.3×7.7**|**8×6.2**|**8×10.5**|**10 ×10.5**|**10×13.5**|**12.5×13.5**|**12.5×16**|**16×16.5**|
|---|---|---|---|---|---|---|---|---|---|---|---|
|A|1.8|2.1|2.4|2.4|3.3|2.9|3.2|3.2|4.7|4.7|5.5|
|B|4.3|5.3|6.6|6.6|8.3|8.3|10.3|10.3|12.8|12.8|16.3|
|C|4.3|5.3|6.6|6.6|8.3|8.3|10.3|10.3|12.8|12.8|16.3|
|E ±0.2|1|1.3|2.2|2.2|2.2|3.1|4.4|4.4|4.4|4.4|6.7|
|L|5.4|5.4|5.4|7.7|6.2|10.5|10.5|13.5|13.5|16.0|16.5|



Dimensions : Millimetres 

## **Standard Ratings:** 

|**Cap**<br>**(μF)**|**WV**<br>**(Code)**|**6.3**<br>**(0J)**|**6.3**<br>**(0J)**|**6.3**<br>**(0J)**|**10**<br>**(1A)**|**10**<br>**(1A)**|**10**<br>**(1A)**|**16**<br>**(1C)**|**16**<br>**(1C)**|**16**<br>**(1C)**|
|---|---|---|---|---|---|---|---|---|---|---|
|10|100|-|-|-|-|-|-|4×5.4|1.8|80|
|15|150|-|-|-|-|-|-|4×5.4|1.8|80|
|22|220|4×5.4|1.8|80|4×5.4|1.8|80|5×5.4<br>(4×5.4)|0.76<br>(1.8)|150<br>(80)|
|33|330|5×5.4<br>(4×5.4)|0.76<br>(1.8)|150<br>(80)|5×5.4<br>(4×5.4)|0.76<br>(1.8)|150<br>(80)|6.3×5.4<br>(5×5.4)|0.44<br>(0.76)|230<br>(150)|
|47|470|5×5.4<br>(4×5.4)|0.76<br>(1.8)|150<br>(80)|6.3×5.4<br>(5×5.4)|0.44<br>(0.76)|230<br>(150)|6.3×5.4<br>(5×5.4)|0.44<br>(0.76)|230<br>(150)|
|56|560|5×5.4|0.76|150|6.3×5.4|0.44|230|6.3×5.4|0.44|230|
|68|680|6.3×5.4<br>(5×5.4)|0.44<br>(0.76)|230<br>(150)|6.3×5.4|0.44|230|6.3×7.7<br>(6.3×5.4)<br>(8×6.2)|0.34<br>(0.44)<br>(0.34)|280<br>(230)<br>(280)|
|100|101|6.3×5.4<br>(5×5.4)|0.44<br>(0.76)|230<br>(150)|6.3×7.7<br>(6.3×5.4)<br>(8×10.5)|0.34<br>(0.44)<br>(0.34)|280<br>(230)<br>(280)|6.3×7.7<br>(6.3×5.4)<br>(8×10.5)|0.34<br>(0.44)<br>(0.34)|280<br>(230)<br>(280)|
|150|151|6.3×5.4|0.44|230|6.3×7.7|0.34|280|6.3×7.7|0.34|280|
|220|221|6.3×7.7<br>(6.3×5.4)<br>(8×6.2)|0.34<br>(0.44)<br>(0.34)|280<br>(230)<br>(280)|6.3×7.7<br>(8×6.2)|0.34<br>(0.34)|280<br>(280)|8×10.5<br>(6.3×7.7)|0.17<br>(0.34)|450<br>(280)|
|330|331|6.3×7.7<br>(8×6.2)|0.34<br>(0.34)|280<br>(280)|8×10.5|0.17|450|10×10.5<br>(8×10.5)|0.09<br>(0.17)|670<br>(450)|
|470|471|8×10.5|0.17|450|10×10.5|0.17|450|10×10.5<br>(8×10.5)|0.09<br>(0.17)|670<br>(450)|
|680|681|10×10.5<br>(8×10.5)|0.09<br>(0.17)|670<br>(450)|10×10.5|0.09|670|10×13.5<br>(10×10.5)|0.075<br>(0.09)|800<br>(670)|
|1000|102|10×10.5<br>(8×10.5)|0.09<br>(0.17)|670<br>(450)|10×10.5|0.09|0.09|16×16.5<br>(12.5×16)<br>(12.5×13.5)|0.055<br>(0.06)<br>(0.065)|1350<br>(1050)<br>(900)|
|1500|152|10×13.5<br>(10×10.5)|0.075<br>(0.09)|800<br>(670)|12.5×13.5|0.065|900|16×16.5|0.055|1350|
|2200|222|12.5×13.5|0.065|900|12.5×16|0.060|1050|16×16.5|0.055|1350|
|3300|332|12.5×16|0.06|1050|16×16.5|0.055|1350|Case Size|Impedance|Ripple<br>Current|
|4700|472|16×16.5|0.055|1350|-|-|-||||



Maximum Impedance (Ω) at 20°C 100kHz, Ripple Current (mA rms) at 105°C 100kHz 

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## **SMD Aluminium Electrolytic Capacitors** 

|**Cap**<br>**(μF)**|**WV**<br>**(Code)**|**25**<br>**(IE)**|**25**<br>**(IE)**|**25**<br>**(IE)**|**35**<br>**(1V)**|**35**<br>**(1V)**|**35**<br>**(1V)**|**50**<br>**(1H)**|**50**<br>**(1H)**|**50**<br>**(1H)**|
|---|---|---|---|---|---|---|---|---|---|---|
|4.7|4R7|-|-|-|4×5.4|1.8|80|5×5.4<br>(4×5.4)|1.52<br>(3.0)|85<br>(60)|
|10|100|4×5.4|1.8|80|5×5.4<br>4×5.4)|0.76<br>(1.8)|150<br>(80)|6.3×5.4<br>(5×5.4)|0.88<br>(1.52)|165<br>(85)|
|15|150|5×5.4|0.76|150|5×5.4|0.76|150|6.3×5.4|0.88|165|
|22|220|6.3×5.4<br>(5×5.4)|0.44<br>(0.76)|230<br>(150)|6.3×5.4<br>(5×5.4)|0.44<br>(0.76)|230<br>(150)|6.3×7.7<br>(6.3×5.4)<br>(8×10.5)|0.68<br>(0.88)<br>(0.68)|185<br>165)<br>185)|
|33|330|6.3×5.4<br>(5×5.4)|0.44<br>(0.76)|230<br>(150)|6.3×5.4<br>(8×10.5)|0.44<br>(0.34)|230<br>(280)|6.3×7.7<br>(8×6.2)|0.68<br>(0.68)|185<br>(185)|
|47|470|6.3×7.7<br>(6.3×5.4)<br>(8×6.2)|0.34<br>(0.44)<br>(0.34)|280<br>(230)<br>(280)|6.3×7.7<br>(6.3×5.4)<br>(8×10.5)|0.34<br>(0.44)<br>(0.34)|280<br>(230)<br>(280)|6.3×7.7<br>(8×6.2)|0.68<br>(0.68)|185<br>(185)|
|56|560|6.3×7.7<br>(6.3×5.4)|0.34<br>(0.44)|280<br>(230)|6.3×7.7|0.34|280|8×10.5<br>(6.3x7.7)|0.34<br>(0.68)|350<br>(185)|
|68|680|6.3×7.7|0.34|280|6.3×7.7|0.34|280|8×10.5|0.34|350|
|100|101|6.3×7.7<br>(8×6.2)|0.34<br>(0.34)|280<br>(280)|10×10.5|0.17|450|10×10.5<br>(8×10.5)|0.18<br>(0.34)|670<br>(350)|
|150|151|8×10.5<br>(6.3×7.7)|0.17<br>(0.34)|450<br>(280)|10×10.5|0.09|670|10×10.5|0.18|670|
|220|221|8×10.5|0.17|450|10×10.5|0.09|670|10×13.5<br>(10×10.5)|0.16<br>(0.18)|750<br>(670)|
|330|331|10×10.5<br>(8×10.5)|0.09<br>(0.17)|670<br>(450)|10×10.5|0.09|670|12.5×13.5|0.14|800|
|470|471|10×13.5<br>(10×10.5)|0.075<br>(0.09)|800<br>(670)|12.5×13.5<br>(10×13.5)|0.065<br>(0.075)|900<br>(800)|16×16.5<br>(12.5×16)|0.10<br>(0.12)|1150<br>(900)|
|680|681|12.5×13.5|0.065|900|12.5×16<br>(12.5×13.5)|0.060<br>(0.065)|1050<br>(900)|-|-|-|
|1000|102|16×16.5<br>(12.5×16)|0.055<br>(0.060)|1350<br>(1050)|16×16.5|0.055|1350|Case Size|Impedance|Ripple<br>Current|
|1500|152|16×16.5|0.055|1350|-|-|-||||



Maximum Impedance (Ω) at 20°C 100kHz, Ripple Current (mA rms) at 105°C 100kHz 

## **Frequency Correction Factor of Rated Ripple Current** 

|**Capacitance(μF)**|**Frequency**|**50Hz**|**120Hz**|**300Hz**|**1kHz**|**10kHz~**|
|---|---|---|---|---|---|---|
|Φ4 ~ Φ10|4.7~68|0.35|0.5|0.64|0.83|1|
||100~1500|0.4|0.55|0.7|0.85|1|
|Φ12.5 ~ Φ16|~680|0.45|0.65|0.8|0.9|1|
||1000~4700|0.65|0.85|0.95|1|1|



The endurance of capacitors is reduced with internal heating produced by ripple current at the rate of halving the lifetime with every 5°C rise. When long life performance is required in actual use , the rms ripple current has to be reduced. 

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## **SMD Aluminium Electrolytic Capacitors** 

## **Explanation of parts numbers** 

**==> picture [403 x 506] intentionally omitted <==**

**Important Notice :** This data sheet and its contents (the “Information”) belong to the members of the AVNET group of companies (the “Group”) or are licensed to it. No licence is granted for the use of it other than for information purposes in connection with the products to which it relates. No licence of any intellectual property rights is granted. The Information is subject to change without notice and replaces all data sheets previously supplied. The Information supplied is believed to be accurate but the Group assumes no responsibility for its accuracy or completeness, any error in or omission from it or for any use made of it. Users of this data sheet should check for themselves the Information and the suitability of the products for their purpose and not make any assumptions based on information included or omitted. Liability for loss or damage resulting from any reliance on the Information or use of it (including liability resulting from negligence or where the Group was aware of the possibility of such loss or damage arising) is excluded. This will not operate to limit or restrict the Group’s liability for death or personal injury resulting from its negligence. Multicomp Pro is the registered trademark of Premier Farnell Limited 2019. 

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