# Power Film Capacitor, Metallized PET, Radial Box - 2 Pin, 33 µF, ± 10%, DC Link, Through Hole

![Product image](https://novapart.co/image/farnell:1397094/)

**URL**: https://novapart.co/products/FFB14D0336K--/power-film-capacitor-metallized-pet-radial-box-2
**SKU**: FFB14D0336K--
**Manufacturer**: KYOCERA AVX
**Category**: Passive Components || Capacitors || Film Capacitors || Power Film Capacitors
**Price**: €3.0500
**Stock**: 10+

## Description

Capacitance:-; Voltage Rating:-; Capacitor Dielectric Type:PP (Polypropylene); Capacitance Tolerance:-; Product Range:-; Capacitor Case Style:-; Capacitor Terminals:-; Lead Spacing:-; Operating Temperature Min:-

## Specifications

| Parameter | Value |
|---|---|
| Esr | 3000µohm |
| Svhc | No SVHC (17-Dec-2015) |
| Capacitance | 33µF |
| Voltage(Ac) | 45V |
| Voltage(Dc) | 75V |
| Lead Spacing | 27.5mm |
| Peak Current | - |
| Dv/Dt Rating | - |
| Output (Kvar) | - |
| Product Range | FFB Series |
| Product Width | 13mm |
| Qualification | - |
| Product Height | - |
| Product Length | 31.1mm |
| Ripple Current | - |
| Dielectric Type | Metallized PET |
| Humidity Rating | - |
| Product Diameter | - |
| Capacitor Mounting | Through Hole |
| Rms Current (Irms) | 3A |
| Capacitor Terminals | Radial Leaded |
| Typical Applications | DC Link |
| Capacitance Tolerance | ± 10% |
| Capacitor Case / Package | Radial Box - 2 Pin |
| Operating Temperature Max | 105°C |
| Operating Temperature Min | -55°C |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:1397094/)

## **Medium Power Film Capacitors** 

## **FFB** 

The FFB series uses a non-impregnated metallized polypropylene or polyester dielectric with the controlled self-healing process, specially treated to have a very high dielectric strength in operating conditions up to 105°C. 

The FFB has been designed for printed circuit board mounting. Furthermore, their performances allow to be a very interesting alternative to electrolytic technology because they can withstand much higher levels of surge voltage. 

## **APPLICATIONS** 

The FFB capacitor is particularly designed for DC filtering, low reactive power. 

## **ELECTRICAL CHARACTERISTICS** 

Climatic category 55/105/56 (IEC 60068) Test voltage between terminals @ 25°C 1.5 x Vndc 

## **STANDARDS** 

IEC 61071-1, IEC 61071-2:  Power electronic capacitors IEC 60384-16:  Fixed metallized polypropylene film dielectric DC capacitors IEC 60384-16-1:  Fixed metallized polypropylene film dielectric DC capacitors Assessment level E 

IEC 60384-17:  Fixed metallized polypropylene film dielectric AC and pulse capacitors 

IEC 60384-17-1:  Fixed metallized polypropylene film dielectric AC and pulse capacitors Assessment level E 

IEC 60384-2:  Fixed metallized polyester capacitors 

## **WORKING TEMPERATURE** 

(according to the power to be dissipated) -55°C to +105°C 

## **LIFETIME EXPECTANCY** 

One unique feature of this technology (as opposed to electrolytics) is how the capacitor reacts at the end of its lifetime. Whereas, with an electrolytic, there is a strong risk of explosion of the case. However, with our line of film capacitors, the capacitor will simply experience at the end of life a loss of capacitance of about 2%, with no risk of explosion. 

## **HOT SPOT TEMPERATURE CALCULATION** 

You can calculate the maximum operating (hot spot) temperature of this capacitor in the following manner: 

The loss factor of the capacitor is made up of the sum of two components. The first represents electrical losses in the dielectric and the second component represents Joule effect in the connection and foils (Rs.C.2 π f). 

For all applications, the temperature in the hot spot capacitor must be lower than 105°C. 

θhot spot = θambient + [tgδ0[.] Q+Rs[.] (Irms)[2] ][.] Rth 

With: 

Q : Reactive power in Var RS in Ohm Irms in Ampere Rth : Rth ambient / hot spot in °C/W tg δ0[.] (10[-4] ) is the tangent of loss angle (see tan δ0 page 3) 

## **PACKAGING** 

Self-extinguishing plastic case (V0 = in accordance with UL 94) filled thermosetting resin. 

Self-extinguishing thermosetting resin (V0 = in accordance with UL 94; I3F2 = in accordance with NF F 16-101). 

Please note that this is theoretical, however, as the capacitor continues to be functional even after this 2% decrease. 

4 

## **Medium Power Film Capacitors** 

## **FFB** 

## **GENERAL DESCRIPTION** 

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**----- Start of picture text -----**<br>
BOX KIND: P0; 18; 19; 26; R68 BOX KIND: R68<br>2 TERMINALS SOLUTION   4 TERMINALS SOLUTION<br>�<br>22 (0.866)<br>5.5 ±1<br>Width Width  (0.216 ±0.039)<br>Length<br>32 (1.259)<br>Height 37 (1.456)<br>LS 0.4 min 0.4 min<br>27.5 ±0.5<br>Ø Lead (0.015 min)  (0.216 5.5 ±±0.039)1 (1.082 ±0.019) (0.015 min) (0.047 1.2 ±±0.10.003)<br>Ep 0.6 (0.023) 12.7 ±0.5<br>General Tolerance: ±0.5mm (0.020) General Tolerance: ±0.5mm (0.020) (0.5 ±0.020)<br>**----- End of picture text -----**<br>


## **DIMENSIONS: millimeters (inches)** 

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**----- Start of picture text -----**<br>
Box Kind Length Width Height Dimensions LS<br>mm ±0.40 mm ±0.40 mm ±0.30 lead mm +10% -0.05 mm ±0.40<br>(inches) (inches) (inches) (inches) (inches)<br>PO 31.1 (1.230) 13.0 (0.051) 22.4 (0.880) Ø 0.80 (0.031) 27.5 (1.083)<br>18 31.1 (1.230) 14.6 (0.580) 25.7 (1.010) Ø 0.80 (0.031) 27.5 (1.083)<br>19 31.1 (1.230) 17.3 (0.068) 29.8 (1.170) Ø 0.80 (0.031) 27.5 (1.083)<br>26 31.1 (1.230) 20.8 (0.820) 31.3 (1.230) Ø 1.00 (0.039) 27.5 (1.083)<br>R68<br>2 Terminals 32.0 (1.260) 22.0 (0.870) 37.0 (1.460) Ø 1.00 (0.039) 27.5 (1.083)<br>Solution<br>R68<br>1.20 x 0.60<br>4 Terminals 32.0 (1.260) 22.0 (0.870) 37.0 (1.460) 27.5 (1.083)<br>Solution (0.047 x 0.023)<br>**----- End of picture text -----**<br>


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## **Medium Power Film Capacitors** 

## **FFB** 

## **DC FILTERING FOR LOW VOLTAGE** 

## **ELECTRICAL CHARACTERISTICS** 

Capacitance range Cn 6.2µF to 110µF Tolerance on Cn ±10% Rated DC voltage Vndc 75 to 400 V Dielectric polyester 

## **HOT SPOT CALCULATION** 

θhot spot = θambient + (Pd + Pt) x Rth with Pd (Dielectric losses) = Q x tgδ0 Q x tgδ0 ⇒ [[1] ⁄2 x Cn x (Vpeak to peak)[2] x f ] x tgδ0 (see tgδ0 for polyester dielectric page 3) Pt (Thermal losses) = Rs x (Irms)[2] where Cn in Farad Irms in Ampere f in Hertz V in Volt Rs in Ohm θ in °C Rth in °C/W 

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## **Medium Power Film Capacitors** 

## **FFB** 

## **DC FILTERING FOR LOW VOLTAGE** 

## **POLYESTER DIELECTRIC** 

## **TABLE OF VALUES** 

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**----- Start of picture text -----**<br>
Capacitance Box Kind Irms max. RS Rth Part Number<br>(µF) (A) (m � ) (°C/W)<br>Vndc 75V Vrms max.: 45 volts<br>33 PO 3 3 40.7 FFB14D0336K--<br>47 18 4.3 2 33.3 FFB24D0476K--<br>68 19 6.2 1.7 29.9 FFB34D0686K--<br>82 26 7.4 1.6 26.7 FFB44D0826K--<br>R68<br>110 10 1.4 22.9 FFB54D0117K--<br>(2 terminals)<br>R68<br>110 10 1.4 22.9 FFB54D0117KJC<br>(4 terminals)<br>Vndc 100V Vrms max.: 60 volts<br>20 PO 2.6 3 40.5 FFB14E0206K--<br>27 18 3.5 2.5 33.3 FFB24E0276K--<br>39 19 5 2 29.8 FFB34E0396K--<br>47 26 6 1.7 26.6 FFB44E0476K--<br>R68<br>68 9 1.4 22.8 FFB54E0686K--<br>(2 terminals)<br>R68<br>68 9 1.4 22.8 FFB54E0686KJC<br>(4 terminals)<br>Vndc 300V Vrms max.: 90 volts<br>7.5 PO 2.4 16 40.7 FFB14H0755K--<br>11 18 3.6 11 33.5 FFB24H0116K--<br>16 19 5.2 8 29.9 FFB34H0166K--<br>18 26 6 7 27.1 FFB44H0186K--<br>R68<br>27 9 5 22.9 FFB54H0276K--<br>(2 terminals)<br>R68<br>27 9 5 22.9 FFB54H0276KJC<br>(4 terminals)<br>Vndc 400V Vrms max.: 105 volts<br>6.2 PO 2.5 17 40.5 FFB14I0625K--<br>7.5 18 3.1 14 33.5 FFB24I0755K--<br>12 19 5 9 29.9 FFB34I0126K--<br>15 26 6.2 7 26.4 FFB44I0156K--<br>R68<br>20 8.2 5.5 22.8 FFB54I0206K--<br>(2 terminals)<br>R68<br>20 8.2 5.5 22.8 FFB54I0206KJC<br>(4 terminals)<br>**----- End of picture text -----**<br>


## **LIFETIME EXPECTANCY vs VOLTAGE AND HOT SPOT TEMPERATURE** 

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**----- Start of picture text -----**<br>
1.2<br>70 ° C 50 ° C<br>1.1<br>1.0<br>0.9 85 ° C 60 ° C<br>0.8 105 ° C 95 ° C<br>0.7<br>0.6<br>0.5<br>Vw = Permanent working or 0.4<br>operating DC voltage.<br>0.3<br>100 1000 10000 100000<br>Lifetime Expectancy (hours)<br>dc<br>n<br>/V<br>w<br>V<br>**----- End of picture text -----**<br>


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## **Medium Power Film Capacitors** 

## **FFB** 

## **DC FILTERING FOR INDUSTRIAL APPLICATION** 

These capacitors have been designed principally for high and medium power DC filtering applications. 

## **ELECTRICAL CHARACTERISTICS** 

|Capacitance range Cn|1.5µF to 13µF|
|---|---|
|Tolerance on Cn|±10%|
|Rated DC voltage Vndc|525 to 1100 V|
|Dielectric|polypropylene|



## **TANGENT OF LOSS ANGLE (TAN** δ **0) FOR POLYPROPYLENE DIELECTRIC** 

Polypropylene has a constant dielectric loss factor of 2x10[-4] irrespective of temperature and frequency (up to 1 MHz). 

## **HOT SPOT TEMPERATURE CALCULATION** 

You can calculate the maximum operating (hot spot) temperature of this capacitor in the following manner: 

The loss factor of the capacitor is made up of the sum of two components. The first represents electrical losses (tg δ0 = 2x10[-4)] and the second component represents Joule effect in the connection and foils, (Rs.C.2 π f). 

For all applications, the temperature in the hot spot capacitor must be lower than 105°C. Heating calculation of hot spot capacitor: 

θhot spot = θambient + [tgδ0[.] Q+Rs[.] (Irms)[2] ][.] Rth 

With: 

Q : Reactive power in Var RS in Ohm Irms in Ampere 

Rth : Rth ambient / hot spot in °C/W 

tg δ0[.] (10[-4] ) is the tangent of loss angle for polypropylene dielectric. Polypropylene has a constant dielectric losses factor of 2x10[-4] irrespective of temperature and frequency (up to 1 MHz). 

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## **Medium Power Film Capacitors** 

## **FFB** 

## **DC FILTERING FOR INDUSTRIAL APPLICATION** 

## **POLYPROPYLENE DIELECTRIC** 

## **TABLE OF VALUES** 

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**----- Start of picture text -----**<br>
Capacitance Box Kind Irms max. RS Rth Part Number<br>(µF) (A) (m � ) (°C/W)<br>Vndc 525V Vrms max.: 105 volts<br>3.9 PO 5.1 30 45.7 FFB16J0395K--<br>5.6 18 7.4 21 36.4 FFB26J0565K--<br>8.2 19 10.9 15 32.6 FFB36J0825K--<br>10 26 12 12 29.8 FFB46J0106K--<br>R68<br>13 12 9 24.3 FFB56J0136K--<br>(2 terminals)<br>R68<br>13 16.7 9 24.3 FFB56J0136KJC<br>(4 terminals)<br>Vndc 720V Vrms max.: 120 volts<br>3.3 PO 5.0 31 45.0 FFB16A0335K--<br>4.3 18 6.5 24 36.2 FFB26A0435K--<br>6.2 19 9.4 17 32.7 FFB36A0625K--<br>7.5 26 11.4 14 29.9 FFB46A0755K--<br>R68<br>10 12 11 24.2 FFB56A0106K--<br>(2 terminals)<br>R68<br>10 15.2 11 24.2 FFB56A0106KJC<br>(4 terminals)<br>Vndc 900V Vrms max.: 150 volts<br>2 PO 3.6 41 45.7 FFB16C0205K--<br>2.7 18 4.9 30 36.6 FFB26C0275K--<br>3.9 19 7.2 21 32.9 FFB36C0395K--<br>5.1 26 9.3 16 29.7 FFB46C0515K--<br>R68<br>6.8 12 12 24.1 FFB56C0685K--<br>(2 terminals)<br>R68<br>6.8 12.5 12 24.1 FFB56C0685KJC<br>(4 terminals)<br>Vndc 1100V Vrms max.: 180 volts<br>1.5 PO 3.3 45 45.2 FFB16L0155K--<br>1.8 18 3.9 40 36.5 FFB26L0185K--<br>2.4 19 5.3 28 33.4 FFB36L0245K--<br>3 26 6.6 23 30.2 FFB46L0305K--<br>R68<br>4.7 10.3 15 24.1 FFB56L0475K--<br>(2 terminals)<br>R68<br>4.7 10.3 15 24.1 FFB56L0475KJC<br>(4 terminals)<br>**----- End of picture text -----**<br>


## **LIFETIME EXPECTANCY vs VOLTAGE AND HOT SPOT TEMPERATURE** 

Vw = Working DC Voltage Vn = Rated DC Voltage 

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**----- Start of picture text -----**<br>
1.2 60 ° C 50 ° C<br>1.1<br>70 ° C<br>80 ° C<br>1.0<br>85 ° C<br>0.9 95 ° C<br>0.8<br>105 ° C<br>0.7<br>100 1000 10000 100000<br>Lifetime Expectancy (hours)<br>dc<br>n<br>/V<br>w<br>V<br>**----- End of picture text -----**<br>


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- [Supplier page](https://es.farnell.com/avx/ffb14d0336k/cap-pp/dp/1397094)
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