# Polymer Aluminium Electrolytic Capacitor, 120 µF, 63 V, Radial Can - SMD, 0.025 ohm

![Product image](https://novapart.co/image/farnell:4739240RL/)

**URL**: https://novapart.co/products/63VUH120ME12/polymer-aluminium-electrolytic-capacitor-120-f-63
**SKU**: 63VUH120ME12
**Manufacturer**: VINATECH
**Category**: Passive Components || Capacitors || Polymer Capacitors || Aluminium Polymer Capacitors
**Price**: €0.6860
**Stock**: 200+
**Lead Time**: 38 days (indicative)

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:4739240RL/)

|**Items**<br>Temperature range<br>Temperature range|**Characteristics**<br>-55 to +105°C<br>-55 to +105°C|**Characteristics**<br>-55 to +105°C<br>-55 to +105°C|
|---|---|---|
|Rated voltage range<br>Rated voltage range|63 to 125Vdc<br>63 to 125Vdc||
|Capacitance range<br>Capacitance range|8.2 to 56µF<br>8.2 to 56uF||
|Capacitance tolerance<br>Capacitance tolerance|±20%[M] (at 20°C,120Hz)<br>+20% [M] (at 20°C, 120Hz)||
|Tangent of loss angle<br>Tangent of loss angle|Less than or equal to the value of Standard Ratings(at 20°C,120Hz)<br>Less than or equal to the value of Standard Ratings (at 20°C, 120Hz)||
|Leakage current<br>Leakage current|Less than or equal to the value of Standard Ratings(at 20°C,after 2 minutes)<br>Less than or equal to the value of Standard Ratings (at 20°C, after 2 minutes)||
|ESR<br>ESR|Less than or equal to the value of Standard Ratings<br>Less than or equal to the value of Standard Ratings||
|Characteristics of impedance<br>Characteristics of impedance|Z+105°C/Z+20°C≤ 1.25,Z-55°C/Z+20°C≤ 1.25 at 100kHz<br>Zurosec!Zur0ec S 1.25, ZsseclZ420¢¢ S$ 1.25 at 100KHz||
|Endurance<br>Endurance|105°C,3,000 hrs at rated voltage<br>105°C, 3,000 hrs at rated voltage||
||Appearance|No significant damage<br>No significant damage|
||Capacitance change<br>~~Capacitancechange~~|Within±20% of the initial value<br>~~Within+20%of theinitialvalue~~|
||Tangent of loss angle(tanδ)<br>~~Capacitance change~~<br>Tangent of loss angle (tand)|≤150% of the initial specified value<br>~~Within+20% of the initial value~~<br><150% of the initial specified value|
||ESR(mΩ)<br>ESR(mQ)|≤150% of the initial specified value<br><150% of the initial specified value|
||Leakage current|≤The initial specified value<br><The initial specified value|
|Damp Heat (Steady State)<br>Damp Heat(Steady State)|60°C,90 to 95% RH,1,000 hrs,No-applied Voltage<br>60°C, 90 to 95% RH, 1,000 hrs, No-applied Voltage||
||Appearance|No significant damage<br>No significant damage|
||Capacitance change<br>~~Capacitancechange~~<br>Tangentoflossangle(tand)|Within±20% of the initial value<br>~~Within+20%of theinitialvalue~~<br><150%oftheinitialspecifiedvalue|
||Tangent of loss angle(tanδ)<br>~~Capacitance change~~<br>Tangentoflossangle (tand)|≤150% of the initial specified value<br>~~Within+20% of the initial value~~<br><150% ofthe initial specifiedvalue|
||ESR(mΩ)<br>ESR(mQ)|≤150% of the initial specified value<br><150% ofthe initial specified value|
||Leakage current|≤The initial specified value<br><The initial specified value|
|Resistance to soldering heat<br>Resistance to soldering<br>heat<br>9|VPS(230°C,75s)<br>VPS (230°C, 75s)||
||Appearance|No significant damage<br>No significant damage|
||Capacitance change<br>~~Capacitancechange~~<br>Tangentoflossangle(tand)|Within±10% of the initial value<br>~~Within+10%of theinitialvalue~~<br><130%oftheinitialspecifiedvalue|
||Tangent of loss angle(tanδ)<br>~~Capacitance change~~<br>Tangent of loss angle (tand)|≤130% of the initial specified value<br>~~Within+10% of the initial value~~<br><130% ofthe initial specified value|
||ESR(mΩ)<br>ESR(mQ)|≤130% of the initial specified value<br><130% ofthe initial specified value|
||Leakage current|≤The initial specified value<br><The initial specified value|



|RV<br>(SV)<br>µF<br>8.2<br>10<br>™<br>RV<br>8.2<br>~~wo~~<br>~~|~~|63<br>(72.4)<br>6.3×5.9<br>8×6.9<br>63<br>(72.4)<br>~~* ~~<br>~~|69|~~|80<br>(92)<br>tsi0)<br>(92)<br> PT<br>~~||~~|100<br>(115)<br>8×11.9<br>100<br>(115)<br>PT<br>~~axtng|~~|125<br>(143)<br>8×11.9<br>125<br>(143)<br>~~|axit9~~|
|---|---|---|---|---|
|10<br>12<br>~~wo~~<br>~~|~~<br>~~ce~~<br>me|8×6.9<br>~~| 69 |~~<br>~~ce~~|8×11.9<br>~~| | ~~<br>~~ce~~<br>~~||~~|8×11.9<br> ~~axtng |~~<br>~~ce~~<br>~~||~~|8×11.9<br>~~| axit9~~|
|15<br>~~ce~~<br>me<br>~~|~~|8×6.9<br>~~ce~~<br>~~|~~|~~ce~~<br>~~||~~<br><br>~~|~~|8×11.9<br>~~ce~~<br>~~||~~<br><br>~~|txt2.6|~~|8×11.9<br>~~|~~|
|18<br>me<br>~~|~~|~~|fF~~|~~||~~<br>~~fF~~<br>~~|~~|10×12.6<br>~~||~~<br>~~fF~~<br>~~|txt2.6|~~|~~|~~|
|22<br>~~|~~<br>mv<br>~~|~~<br>~~33~~|~~|fF~~<br>~~|axis|~~|8×11.9<br>10×12.6<br>~~fF~~<br>~~|~~<br>~~rrr~~ae<br>~~|tons|~~|8×11.9<br>10×12.6<br>~~fF~~<br>~~| txt2.6 |~~<br>~~ee~~<br>~~||~~|~~|~~|
|27<br>mv<br>~~|~~<br>~~33~~<br>~~|~~<br>~~39~~|8×11.9<br>~~|axis|~~<br>~~|axing|~~|10×12.6<br>~~rrr~~ ae <br>~~|tons|~~<br>~~||~~|~~ee~~<br>~~||~~<br>~~t0x126|~~|~~|10126~~|
|33<br>~~|~~<br>~~33~~<br>~~|~~<br>~~39~~|8×11.9<br>~~| axis |~~<br>~~|axing|~~<br>~~atta ||~~|~~| tons |~~<br>~~||~~<br>~~||~~|10×12.6<br>~~| |~~<br>~~t0x126|~~<br>~~||~~<br>~~10126|~~|10×12.6<br>~~|10126~~|
|39<br>~~|~~<br>~~39~~|8×11.9<br>~~| axing |~~<br>~~atta ||~~|~~| | ~~<br>~~||~~|10×12.6<br> ~~t0x126 |~~<br>~~||~~<br>~~10126|~~|~~| 10126~~|
|47<br>47|10×12.6<br>~~atta ||~~|8×11.9<br>10×12.6<br>~~||~~|10×12.6<br>~~||~~<br>~~10126 |~~||
|56|10×12.6||||
|68||10×12.6|10×12.6||
|82<br>~~ro~~<br>~~[|~~|~~[|toxr6~~|10×12.6<br>~~|~~|||
|120<br>~~ro~~<br>~~[|~~|10×12.6<br>~~[|toxr6~~|~~|~~|||



|Size<br>ØD±0.5<br>6.3×5.9<br>|<br>Size<br>|OD+0.5|"*)',|W+0.2]<br>~~8x69|~~|ØD±0.5 <br>6.3<br>|OD+0.5|"*)',|W+0.2]<br>~~80|~~|L +0.1<br>-0.4<br>5.9<br>=<br>|OD+0.5|"*)',|W+0.2]<br>~~|69~~|L +0.1<br>-0.4 W±0.2<br>6.6<br>=<br>|OD+0.5|"*)',|W+0.2]<br>~~|83|~~|H±0.2<br>6.6<br>H20.2 |<br>~~|83|~~|C±0.2<br>7.3<br>|C20.2 |)<br>~~|90(08-011)~~|R<br>0.6~0.8<br>|) R |<br>~~(08-011)~~|P±0.2<br>2.1<br>|P20.2<br>~~(08-011)3.2~~|
|---|---|---|---|---|---|---|---|
|8×6.9<br>~~8x69|~~<br>~~gxti9|~~|8.0<br>~~80|~~<br>~~80[119~~|6.9<br>~~|69~~<br>~~[119~~|8.3<br>~~|83|~~<br>~~| 83|~~|8.3<br>~~|83|~~<br>~~|83|~~|9.0<br>~~|90(08-011)~~<br>~~|90los-o1t|~~|0.8~0.11<br>~~(08-011)~~<br>~~los-o1t|~~|3.2<br>~~(08-011)3.2~~<br>~~los-o1t|32~~|
|8×11.9<br>~~8x69 | ~~<br>~~gxti9|~~<br>toxi26)|8.0<br> ~~80 |~~<br>~~80[119~~<br>~~100[126~~|11.9<br>~~| 69 ~~<br>~~[119~~<br>~~[126~~|8.3<br> ~~| 83 |~~<br>~~| 83|~~<br>~~|103|~~|8.3<br>~~| 83 |~~<br>~~|83|~~<br>~~|103|~~|9.0<br>~~| 90 (08-011)~~<br>~~|90los-o1t|~~<br>~~|110|os-o11]~~|0.8~0.11<br>~~(08-011)~~<br>~~los-o1t|~~<br>~~|os-o11]~~|3.2<br>~~(08-011) 3.2~~<br>~~los-o1t|32~~<br>~~|os-o11]46~~|
|10×12.6<br>~~gxti9|~~<br>toxi26)|10.0<br>~~80 [119~~<br>~~100[126~~|12.6<br>~~[119 ~~<br>~~[126~~|10.3<br> ~~| 83 |~~<br>~~|103|~~|10.3<br>~~| 83 |~~<br>~~|103|~~|11.0<br>~~| 90 los-o1t|~~<br>~~|110|os-o11]~~|0.8~0.11<br>~~los-o1t|~~<br>~~|os-o11]~~|4.6<br>~~los-o1t| 32~~<br>~~|os-o11]46~~|



|Size<br>6.3×5.9<br>~~soo|~~<br>~~gxi19~~|a<br>2.1<br>~~|28|~~<br>|b<br>9.1<br>~~||~~<br>|c<br>1.6<br>~~ts~~|
|---|---|---|---|
|8×6.9<br>~~soo|~~<br>~~gxi19|~~|2.8<br>~~|28|int~~<br>~~|28|~~|11.1<br>~~|int|~~<br>~~|m1|~~|1.9<br>~~ts~~<br>~~19~~|
|8×11.9<br>~~soo |~~<br>~~gxi19~~ ~~|~~|2.8<br>~~|~~ ~~28 |~~<br>~~|28|~~|11.1<br>~~||~~<br>~~|m1|~~|1.9<br>~~ts~~<br>~~19~~|
|10×12.6<br> ~~|~~<br>~~10x12.6~~|4.3<br>~~| 28 |~~|13.1<br>~~| m1 |~~|1.9<br>~~19~~<br>~~19~~|



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ESR Rated<br>Rated Rated Size Tangent of  Leakage<br>(20°C,  Ripple Current<br>Voltage Capacitance ØD x L Loss Angel Current Part Number<br>100kHz) (105°C, 100kHz)<br>[Vdc] [µF] [mm] [max] [µA, max]<br>[mΩ] [max.] [mArms]<br>8.2 6.3 x 5.9 55 1200 0.12 103 63VUH8R2MB6<br>10 8 x 6.9 50 1400 0.12 126 63VUH10MD7<br>15 8 x 6.9 50 1500 0.12 189 63VUH15MD7<br>27 8 x 11.9 35 2800 0.12 340 63VUH27MD12<br>63 33 8 x 11.9 30 3000 0.12 416 63VUH33MD12<br>39 8 x 11.9 29 3400 0.12 491 63VUH39MD12<br>47 10 x 12.6 29 3300 0.12 592 63VUH47ME12<br>56 10 x 12.6 28 3400 0.12 706 63VUH56ME12<br>120 10 x 12.6 25 4000 0.12 1512 63VUH120ME12<br>12 8 x 11.9 38 1900 0.12 192 80VUH12MD12<br>22 8 x 11.9 38 2000 0.12 352 80VUH22MD12<br>22 10 x 12.6 35 2300 0.12 352 80VUH22ME12<br>27 10 x 12.6 35 2400 0.12 432 80VUH27ME12<br>80<br>47 8 x 11.9 35 2600 0.12 752 80VUH47MD12<br>47 10 x 12.6 28 3000 0.12 752 80VUH47ME12<br>68 10 x 12.6 30 3000 0.12 1088 80VUH68ME12<br>82 10 x 12.6 30 3200 0.12 1312 80VUH86ME12<br>10 8 x 11.9 42 1800 0.12 200 100VUH10MD12<br>15 8 x 11.9 40 2000 0.12 300 100VUH15MD12<br>18 10 x 12.6 38 2200 0.12 360 100VUH18ME12<br>22 8 x 11.9 40 2000 0.12 440 100VUH22MD12<br>100 22 10 x 12.6 38 2300 0.12 440 100VUH22ME12<br>33 10 x 12.6 36 2400 0.12 660 100VUH33ME12<br>39 10 x 12.6 35 2500 0.12 780 100VUH39ME12<br>47 10 x 12.6 35 2600 0.12 940 100VUH47ME12<br>68 10 x 12.6 30 2800 0.12 1360 100VUH68ME12<br>10 8 x 11.9 50 1500 0.12 250 125VUH10MD12<br>125 15 8 x 11.9 50 1800 0.12 375 125VUH15MD12<br>33 10 x 12.6 40 2000 0.12 825 125VUH33ME12<br>**----- End of picture text -----**<br>


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## Links

- [View this product on Novapart](https://novapart.co/products/63VUH120ME12/polymer-aluminium-electrolytic-capacitor-120-f-63)
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- [Supplier page](https://es.farnell.com/vinatech/63vuh120me12/alu-poly-cap-120uf-63v-smd-radial/dp/4739240RL)
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