B2562 TDK | Alldatasheet

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Film Capacitors - Power Electronic Capacitors Series/Type: MKP DC Ordering code: B2562* Date: July 2022 Version: 14  TDK Electronics AG 2022. Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without TDK Electronics' prior express consent is prohibited. Content Of Header Bars 1 And 2 Of Data Sheet Will Be Automatically Entered In Headers And Footers! Please Fill In The Table And Then Change The Color To "White". This Ensures That The Table Disappears (Invisible) For The Customer PDF. Don't Change Formatting When Entering Or Pasting Text In The Table And Don't Add Any Cell Or Line In And To It! Identification/Classification 1 (Header 1 + Top Left Bar): Film Capacitors - Power Electronic Capacitors Identification/Classification 2 (Header 2 + Bottom Left Header Bar): Ordering Code: (Top Right Header Bar) B2562* Series/Type: (Bottom Right Header Bar) MKP DC Preliminary Data (Optional): Department: CAP PW PD Date: July 2022 Version: 14 Prepared: QA Approved: Reviewed: PD Approved:

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 2 of 29 Important notes at the end of this document. 1. Construction and general data Characteristics Standard capacitance tolerance K: ±10% Dielectric dissipation factor (tan δo) 2 • 10-4 Service life expectancy (refer to section 3) 100000 h at Ths +75 °C and VRDC up to 200000 h (Considering de-ratings in voltage and/or temperature upon request) Expected Fit rate αFQ (co) 50 fit at VRDC and 70°C (refer to section 4) Minimum temperature Top,min. –55 °C Maximum temperature Top,max. +85 °C for diameter 85 mm +75 °C for diameter 116 mm Storage temperature Tstg –55 ... +85 °C Maximum hotspot temperature Ths (refer to section 1) +85 °C for diameter 85 mm +75 °C for diameter 116 mm Climatic category 55/85/56 for 85 mm diameter 55/75/56 for 116 mm diameter Maximum altitude 2000 m above sea level (derating curves for altitudes higher than 2000 m available upon request) Frequency range 100 Hz ~10 kHz for CR ≤ 1500 μF

100 Hz ~ 5 kHz for 1500 μF < CR ≤ 3000 μF

100 Hz ~ 3 kHz for 3000 μF < CR ≤ 4000 μF

(High frequency designs available upon request) Safety device No internal protection Test data Voltage between terminals VTT 1.5 VRDC, 10 s Voltage between terminals and case VTC 4000 Vac,10 s Design data Resin filling Non PCB, hard polyurethane (dry type) Mounting and grounding M12 threaded bolt on bottom of the aluminum case Max. torque (case) M12 stud 10 Nm Max. torque terminal Female M6: 5 Nm; Female M8: 6 Nm; Male M8: 8 Nm; Cooling Naturally air-cooled (or forced air cooling) Degree of protection IP00 (Indoor mounting) Reference standards IEC 61071 RoHS compliance Certification:UL 810-5th(refer to table 1.3) certification file No. E183224

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 3 of 29 Important notes at the end of this document.

1.1 Structure of ordering code

1.2 Label information

The label explanation is following:

10 Z 2022: Production in TDK Electronics Zhuhai factory 2022 year, calendar week 10;

Bar code consists of lot number and serial number:

  • Lot number: 9 digits (ex.: 905887304)
  • Serial number: 3 digits (ex.: 001) Terminal type: 0 = Female M6 1 = Male M6 2 = Female M8 3 = Male M8 4 = Female M10 5 = Male M10 9 = special B2562 0 B 1 427 K 10 1 MKP DC Series Version: B = without plastic cap C = with plastic cap S = special Rated voltage: 110 • 10 = 1100 V Rated capacitance: 107 = 10 · 107 pF = 100 µF 427 = 42 · 107 pF = 420 µF 108 = 10 · 108 pF = 1 mF Distance between terminals: 1 = 32 mm 2 = 35 mm 3 = 50 mm 4 = 45 mm 9 = special Capacitance tolerance J = ± 5% K = ± 10% A = special

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 4 of 29 Important notes at the end of this document.

1.3 Standard types

Distance between terminals (mm) OC ending Diameter (Ø) Terminal type 32 ± 0.5 -1 50 ± 0.5 -3 85 mm Female M6 (B25620) Standard 116 mm Female M6 (B25620) Standard Other terminal configurations available upon request.

1.4 UL approved types

Diameter (Ø) Series 85 mm B25620C 116 mm All types

1.5 Packing information

Diameter (Ø) Packing design 85 mm 4 capacitors per box or 12 capacitors per box 116 mm 4 capacitors per box Each carton box may contain carton plates to fill the empty space, the number of carton plates will be defined by actual demand.

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 5 of 29 Important notes at the end of this document.

1.6 Dimensional drawings

Figure 1: - B25620B - Ø 85 mm Figure 2: - B25620C - Ø 85 mm - Female terminals (M6) - Female terminals (M6) - Between terminals 32 ±0.5mm - Between terminals 32 ±0.5mm M12 stud on bottom of the aluminum case, nut(DIN 934)and toothed lock washer(DIN 6797)for fixing are standard for all types.

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 6 of 29 Important notes at the end of this document. Figure 3: - B25620B - Ø 116 mm Figure 4: - B25620C - Ø 116 mm - Female terminals (M6) - Female terminals (M6) - Between terminals 50 ±0.5mm - Between terminals 50 ±0.5mm M12 stud on bottom of the aluminum case, nut(DIN 934)and toothed lock washer(DIN 6797) for fixing are standard for all types.

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 7 of 29 Important notes at the end of this document. Terms and characteristics The following definitions apply to power capacitors according to IEC 61071. Rated capacitance CR Nominal value of the capacitance at 20 °C and measuring frequency of 100 Hz. Rated DC voltage VRDC Maximum operating peak voltage of either polarity, but of a non-reversing type wave form, for which the capacitor has been designed, for continuous operation. Ripple voltage Vripple Peak-to-peak alternating component of the unidirectional voltage. This value must not exceed 0.28* VRDC Maximum surge voltage Vs Peak voltage induced by a switching or any other disturbance of the system which is allowed for a limited number of times and short period. Insulation voltage Vi Rms rated value of the insulation voltage of capacitive elements and terminals to case or earth. When it is not specified in the product data sheet, the insulation voltage is at least: Vi = VRDC AC voltage test between terminals and case VTC Units having all terminals insulated from the container shall be subjected for 10 s to a voltage applied between the terminals (joined together) and the container. Maximum rate of voltage rise (dv/dt)max Maximum permissible repetitive rate of voltage rise of the operational voltage. Maximum current Imax Maximum rms current for continuous operation for the given frequency range and for the maximum ripple voltage. Please provide Frequency Spectrum of rms current to your sales contact. Maximum peak current Î Maximum permissible repetitive current amplitude during continuous operation. Maximum peak current (Î) and maximum rate of voltage rise (dv/dt)max on a capacitor are related as follows: Î = C ∙ (dv/dt)max Maximum surge current Î s Admissible peak current induced by a switching or any other disturbance of the system which is allowed for a limited number of times and short period. Îs = C ∙ (dv/dt)s Ambient temperature TA Temperature of the surrounding air, measured at 10 cm distance and 2/3 of the case height of the capacitor.

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 8 of 29 Important notes at the end of this document. Lowest operating temperature Top,min Lowest permitted ambient temperature at which a capacitor may be energized. Maximum operating temperature Top,max Highest permitted capacitor temperature during operation, i.e. temperature at the hottest point of the case. Hot-spot temperature Ths Temperature zone inside of the capacitor at hottest spot. 𝑇𝑇ℎ𝑠𝑠 = 𝑇𝑇𝐴𝐴 + 𝐼𝐼𝑟𝑟𝑟𝑟𝑠𝑠 2 ∙𝐸𝐸𝐸𝐸𝐸𝐸 ∙𝐸𝐸𝑡𝑡ℎ Tangent of the loss angle of a capacitor tan δ Ratio between the equivalent series resistance and the capacitive reactance of a capacitor at a specified sinusoidal alternating voltage, frequency and temperature. Series resistance Rs The sum of all Ohmic resistances occurring inside the capacitor. ESR ESR (Equivalent Series Resistance) which if connected in series with an ideal capacitor of capacitance value equal to that of the capacitor in question, would have a power loss equal to active power dissipated in that capacitor under specified operating conditions. ESR = C⋅ω δtan = CRs ⋅+ ω δ0tan Thermal resistance Rth The thermal resistance indicates by how many degrees the capacitor temperature at the hot spot rises in relation to the dissipation losses. Maximum power loss Pmax Maximum permissible power dissipation for the capacitor’s operation. Pmax = thR Ahs T T − Self inductance Lself The sum of all inductive elements which are contained in a capacitor. Resonance frequency fr The lowest frequency at which the impedance of the capacitor becomes minimum. fr = Rself CL2 ⋅⋅π

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 9 of 29 Important notes at the end of this document. VRDC = 700 V DC / VTT = 1050 V DC, 10s / VTC = 4000 V AC, 10s CR IMAX 1 Is Î ESR2 Lself RTH D HC3 HT Weight4 Fig. Ordering code µF A kA kA mΩ nH K/W mm mm mm kg 280 55 9.1 3 1.4 ≤ 40 4 85 70 76 0.45 1 B25620B0287K701 560 80 18.2 6 1 ≤ 40 2.9 116 70 76 0.88 3 B25620B0567K703 620 55 9.1 3 2 ≤ 40 2.9 85 120 126 0.71 1 B25620B0627K701 700 55 9.1 3 2.2 ≤ 40 2.8 85 132 138 0.84 1 B25620B0707K701 700 55 9.1 3 2.2 ≤ 40 2.8 85 136 138 0.87 2 B25620C0707K701 750 70 16.9 5.6 1.4 ≤ 40 2.4 85 155 161 1 1 B25620B0757K701 900 80 18.2 6 1 ≤ 40 2.3 116 95 101 1.13 3 B25620B0907K703 1400 80 18.1 6 1.5 ≤ 40 2.1 116 132 138 1.55 3 B25620B0148K703 1900 80 34.7 11.6 1 ≤ 60 2 116 173 179 2.05 3 B25620B0198K703

1 Please refer to current derating section for more details

2 ESR at 1 kHz (typical value)

3 Hc is typical value

4 Weight is typical value

Other configurations and capacitance tolerances available upon request

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 10 of 29 Important notes at the end of this document. VRDC = 900 V DC / VTT = 1350V DC, 10s / VTC = 4000 V AC, 10s CR IMAX 1 Is Î ESR2 Lself RTH D HC3 HT Weight4 Fig. Ordering code µF A kA kA mΩ nH K/W mm mm mm kg 220 50 8.1 2.7 1.5 ≤ 40 4 85 70 76 0.45 1 B25620B0227K881 220 50 8.1 2.7 1.5 ≤ 40 4 85 74 76 0.48 2 B25620C0227K881 600 70 15.5 5.1 1.5 ≤ 40 2.4 85 155 161 1 1 B25620B0607K881 1200 80 31.0 10.3 1 ≤ 40 2.1 116 155 161 1.85 3 B25620B0128K883 1500 80 33.1 11 1.1 ≤ 60 2 116 173 179 2.05 3 B25620B0158K883 1500 80 33.1 11 1.1 ≤ 60 2 116 177 179 2.09 4 B25620C0158K883 2000 80 33.3 11 1.2 ≤ 60 1.8 116 223 229 2.56 3 B25620B0208K883 2200 80 33.3 11 1.3 ≤ 90 1.8 116 248 254 2.85 3 B25620B0228K883 Other configurations and capacitance tolerances available upon request

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 11 of 29 Important notes at the end of this document. VRDC = 1100 V DC / VTT = 1650 V DC, 10s / VTC = 4000 V AC, 10s CR IMAX1 Is Î ESR2 Lself RTH D HC3 HT Weight4 Fig. Ordering code µF A kA kA mΩ nH K/W mm mm mm kg 140 50 7.7 2.6 1.8 ≤ 40 4 85 70 76 0.45 1 B25620B1147K101 140 50 7.7 2.6 1.8 ≤ 40 4 85 74 76 0.48 2 B25620C1147K101 420 75 17.3 5.8 1.7 ≤ 40 2.4 85 155 161 1 1 B25620B1427K101 610 80 15.1 5 1.7 ≤ 40 2.2 116 120 126 1.4 3 B25620B1617K103 700 80 15.1 5 1.7 ≤ 40 2.1 116 132 138 1.55 3 B25620B1707K103 940 100 29.4 9.9 1.2 ≤ 60 2 116 173 179 2.05 3 B25620B1947K103 * Capacitance tolerance A: -15% ... 0% Other configurations and capacitance tolerances available upon request

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 12 of 29 Important notes at the end of this document. VRDC = 1200 V DC / VTT = 1800 V DC, 10s / VTC = 4000 V AC, 10s CR IMAX1 Is Î ESR2 Lself RTH D HC3 HT Weight4 Fig. Ordering code µF A kA kA mΩ nH K/W mm mm mm kg 120 50 7.1 2.4 1.9 ≤ 40 4 85 70 76 0.45 1 B25620B1127K201 300 65 14.0 4.7 1.8 ≤ 40 2.4 85 155 161 1 1 B25620B1307K201 730 100 30.8 10.2 1.3 ≤ 60 2 116 173 179 2.05 3 B25620B1737K203 Other configurations and capacitance tolerances available upon request

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 13 of 29 Important notes at the end of this document. VRDC = 1320 V DC / VTT = 1980 V DC, 10s / VTC = 4000 V AC, 10s CR IMAX 1 Is Î ESR2 Lself RTH D HC3 HT Weight4 Fig. Ordering code µF A kA kA mΩ nH K/W mm mm mm kg 100 45 6.6 2.2 2.2 ≤ 40 4 85 70 76 0.45 1 B25620B1107K321 660 100 27.8 9.3 1.4 ≤ 90 2 116 173 179 2.05 3 B25620B1667K323 Other configurations and capacitance tolerances available upon request

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 14 of 29 Important notes at the end of this document. VRDC = 1500 V DC / VTT = 2250 V DC, 10s / VTC = 4000 V AC, 10s CR IMAX1 Is Î ESR2 Lself RTH D HC3 HT Weight4 Fig. Ordering Code µF A kA kA mΩ nH K/W mm mm mm kg 85 40 6.4 2.1 2.4 ≤ 40 4 85 70 76 0.45 1 B25620B1856K501* 215 50 12.9 4.3 2.3 ≤ 40 2.4 85 155 161 1 1 B25620B1217K501* 550 60 25.2 8.4 1.6 ≤ 90 2 116 173 179 2.05 3 B25620B1557K503 Other configurations and capacitance tolerances available upon request * This ordering code is affected by "Dual Use" regulations according to Export Control law. Deliveries of such products are subject to prior approval by Export Control authorities based on customer declarations. The delivery to certain countries might be restricted.

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 15 of 29 Important notes at the end of this document. VRDC = 2000 V DC / VTT = 3000 V DC, 10s / VTC = 4000 V AC, 10s CR IMAX 1 Is Î ESR2 Lself RTH D HC3 HT Weight4 Fig. Ordering Code µF A kA kA mΩ nH K/W mm mm mm kg 40 35 4.5 1.5 3.3 ≤ 60 4 85 70 76 0.45 1 B25620B1406K981* 40 35 4.5 1.5 3.3 ≤ 60 4 85 74 76 0.48 2 B25620C1406K981* 295 80 18.8 6.3 1.9 ≤ 60 2 116 173 179 2.05 3 B25620B1297K983 460 100 18.2 6.0 2.8 ≤ 90 1.7 116 263 269 3 3 B25620B1467K983 510 100 19.3 6.4 3 ≤ 90 1.7 116 273 279 3.13 3 B25620B1517K983 Other configurations and capacitance tolerances available upon request * This ordering code is affected by "Dual Use" regulations according to Export Control law. Deliveries of such products are subject to prior approval by Export Control authorities based on customer declarations. The delivery to certain countries might be restricted. Display of ordering codes for TDK Electronics products The ordering code for one and the same product can be represented differently in data sheets, data books, other publications, on the company website, or in order-related documents such as shipping notes, order confirmations and product labels. The varying representations of the ordering codes are due to different processes employed and do not affect the specifications of the respective products . Detailed information can be found on the Internet under www.tdk-electronics.tdk.com/orderingcodes.

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 16 of 29 Important notes at the end of this document. 2. Current derating

2.1 Current derating graphs for capacitors 700 VRDC

B25620B0287K701 B25620B0477K701 B25620B0567K703 B25620B0627K701 B25620B0707K701/ B25620C0707K701 B25620B0757K701 B25620B0907K703 B25620B0957K701

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 17 of 29 Important notes at the end of this document. B25620B0128K743 B25620B0138K701 B25620B0148K703 B25620B0158K703 B25620B0198K703 B25620B0268K703 B25620B0298K703 B25620B0408K703/ B25620C0408K703

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 18 of 29 Important notes at the end of this document.

2.2 Current derating graphs for capacitors 900 VRDC

B25620B0227K881/ B25620C0227K881 B25620B0357K881/ B25620C0357K881 B25620B0447K883 B25620B0487K881/ B25620C0487K881 B25620B0557K881/ B25620C0557K881 B25620B0607K881 B25620B0707K883 B25620B0757K881/ B25620C0757K881

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 19 of 29 Important notes at the end of this document. B25620B0907K881 B25620B0977K883 B25620B0108K881 B25620B0118K883 B25620B0128K883 B25620B0158K883/ B25620C0158K883 B25620B0208K883 B25620B0228K883

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 20 of 29 Important notes at the end of this document. B25620B0298K883

2.3 Current derating graphs for capacitors 1100 V

B25620B1147K101/ B25620C1147K101 B25620B1237K101 B25620B1287K103 B25620B1317K101/ B25620C1317K101 B25620B1427A101/ B25620C1427A101 B25620B1427K101/ B25620C1427K101

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 21 of 29 Important notes at the end of this document. B25620B1457K103 B25620B1487K101/ B25620C1487K101 B25620B1617K103 B25620B1657K101 B25620B1707K103 B25620B1947K103 B25620B1118K103 B25620B1148K103

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 22 of 29 Important notes at the end of this document. B25620B1158K103 B25620B1198K103

2.4 Current derating graphs for capacitors 1200 VRDC

B25620B1127K201 B25620B1187K201 B25620B1257K201 B25620B1287K201 B25620B1307K201 B25620B1357K201

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 23 of 29 Important notes at the end of this document. B25620B1367K203 B25620B1507K203 B25620B1527K201 B25620B1577K203 B25620B1607K201 B25620B1627K203 B25620B1737K203 B25620B1108K203

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 24 of 29 Important notes at the end of this document. B25620B1128K203 B25620B1158K203 Current derating graphs are based on typical values. Graphs for capacitors rated 1320 / 1500 / 2000 VRDC are available upon request. 3. Service life Service life tLD in hours at different hotspot temperature (Ths) and voltage VRDC For capacitors with diameter 116mm a maximum hot spot temperature of 85°C is allowed during short term operation (maximum 10% of the total load duration) without further reduction of the service life. Failure criteria is capacitance drop higher than 3%. Lifetime estimations are typical theoretical values derived from lifetime tests based on TDK internal standards or mutually agreed test methods and are intended for guidance purposes only. The useful life does not constitute a warranty of any kind or a prolongation of the agreed warranty period. 0,9 0,95 1,05 1,1 0 50000 100000 150000 200000 Voltage ratio (VOP / VRDC) Expected lifetime (h) Expected Lifetime at T HS 70℃ 75℃ 80℃ 85℃

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 25 of 29 Important notes at the end of this document. 4. Expected failure rate Expected Fit rate at different hot spot temperatures (Ths) and voltage VRDC The FIT (Failure In Time) of a component is defined as the number of expected failures in 109 hours of operation. The FIT rate is calculated on the basis of the number of components operating in the field and the estimated hours of operation. All the reports of failures are taken into consideration for this calculation, which is up dated every year. The other values in the graph are given as indication and calculated based on acceleration factors . 100 1000 10000 0,8 0,9 1 1,1 1,2 FIT FIT Rate 60° C 65° C 70° C 75° C 80° C 85° C Vop/ VRDC Ths

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 26 of 29 Important notes at the end of this document. Cautions and warnings  In case of dents of more than 1 mm depth or any other mechanical damage, capacitors must not be used at all.  The energy stored in capacitors may be lethal. To prevent any chance of shock, discharge and short- circuit the capacitor before handling.  Failure to follow cautions may result, worst case, in premature failures, bursting and fire.  Protect the capacitor properly against over current and short circuit.  TDK Electronics is not responsible for any kind of possible damages to persons or things due to improper installation and application of capacitors for power electronics. General safety notes for installation and operation Electrical or mechanical misapplication of capacitors may be hazardous. Personal injury or property damage may result from bursting of the capacitor or from expulsion melted material due to mechanical disruption of the capacitor.  Ensure good, effective grounding for capacitor enclosures.  Observe appropriate safety precautions during operation (self-recharging phenomena and the high energy contained in capacitors).  Handle capacitors carefully, because they may still be charged even after disconnection.  The terminals of capacitors, connected bus bars and cables as well as other devices may also be energized.  Follow good engineering practice. Thermal load After installation of the capacitor it is necessary to verify that maximum hot-spot temperature is not exceeded at extreme service conditions. Installation Capacitors must be installed in a cool and well ventilated place, and not close to objects that radiate heat, or in the direct sunlight. Within high- power inverter systems the capacitors usually produce the smallest portion of the total losses, and the permissible operating temperatures are low compared to power semiconductors, reactors and resistors. So, the distance between capacitor and heating sources must be large enough to avoid the capacitor overheating. In case of space constraint to make the best possible use of capacitors, technically and economically, it is advisable to supply forced cooling air. Mechanical protection The capacitor has to be installed in a way that mechanical damages and dents in the aluminum can are avoided.

Film Capacitors - Power Electronic Capacitors B2562* MKP DC CAP PW PD July 2022 Please read Cautions and warnings and Page 27 of 29 Important notes at the end of this document. Connecting Ensure firm fixing of terminals, fixing torque to be applied as per individual specification. In any case, the maximum specified terminal current may not be exceeded. Please refer to the technical data of the specific series. Grounding The threaded bottom stud of the capacitor has to be used for grounding. In case grounding is done via metal chassis that the capacitor is mounted to, the layer of varnish beneath the washer and nut should be removed. The maximum tightening torque is 10 Nm. Maintenance Disregarding the following measures may result in severe operation failures, bursting and fire:  Check tightness of the connections/terminals periodically, two w eeks after installation at the latest, and then once every 6 months.  Clean the terminals/bushings periodically to avoid short circuits due dust or other contamination.  Take current reading twice a year and compare with nominal current. Use a harmonic analyser or true effective RMS-meter.  In case of a current above the nominal current check your application for modification.  Check the temperature of energized capacitors. In case of excessive temperature of individual capacitors, it is recommended to replace this capacitor, as this could be an indication for loss factor increase, which is a sign for reaching end of life.  When power capacitors are used, suitable measures must always be taken to eliminate possible danger to humans, animals and property both during operation and when a failure occurs. This applies to capacitors both with and without protective devices. Regular inspection and maintenance by a competent person is therefore essential. Storage and operating conditions Do not use or store capacitors in corrosive atmosphere, especially where chloride gas, sulfide gas, acid, alkali, salt or the like are present. In dusty environments regular maintenance and cleaning especially of the terminals is required to avoid conductive path between phases and/or phases and ground. Service life expectancy Electrical components do not have an unlimited service life expectancy; this applies to self -healing capacitors, too. The maximum service life expectancy may vary depending on the application the capacitor is used in. Handling Discharge and short circuit the capacitor before handling! When handling the capacitor, do not take the capacitor from the terminal. This can cause accident in case the capac itor is charged, terminal break and capacitance loss due to capacitor is heavy.

The following applies to all products named in this publication: 1. Some parts of this publication contain statements about the suitability of our products for certain areas of application. These statements are based on our knowledge of typical requirements that are often placed on our products in the areas of application concerned. We nevertheless expressly point out that such statements cannot be regarded as binding statements about the suitability of our products for a particular customer application. As a rule we are either unfamiliar with individual customer applications or less familiar with them than the customers themselves. For these reasons, it is always ultimately incumbent on the custome r to check and decide whether a product with the properties described in the product specification is suitable for use in a particular customer application. 2. We also point out that in individual cases, a malfunction of electronic components or failure before the end of their usual service life cannot be completely ruled out in the current state of the art, even if they are operated as specified. In customer applications requiring a very high level of operational safety and especially in customer applications in which the malfunction or failure of an electronic component could endanger human life or health (e.g. in accident prevention or life- saving systems), it must therefore be ensured by means of suitable design of the customer application or other action taken by the customer (e.g. installation of protective circuitry or redundancy) that no injury or damage is sustained by third parties in the event of malfunction or failure of an electronic component. 3. The warnings, cautions and product-specific notes must be observed. 4. In order to satisfy certain technical requirements, some of the products described in this publication may contain substances subject to restrictions in certain jurisdictions (e. g. because they are classed as hazardous). Useful information on this will be found in our Material Data Sheets on the Internet (www. tdk-electronics.tdk.com/material). Should you have any more detailed questions, please contact our sales offices. 5. We constantly strive to improve our products. Consequently, the products described in this publication may change from time to time. The same is true of the corresponding product specifications. Please check therefore to what extent product descriptions and specifications contained in this publication are still applicable before or when you place an order. We also reserve the right to discontinue production and delivery of products. Consequently, we cannot guarantee that all products named in this publication will always be available. The aforementioned does not apply in the case of individual agreements deviating from the foregoing for customer-specific products. 6. Unless otherwise agreed in individual contracts, all orders are subject to our General Terms and Conditions of Supply. 7. Our manufacturing sites serving the automotive business apply the IATF 16949 standard. The IATF certifications confirm our compliance with requirements regarding the quality management system in the automotive industry. Referring to customer requirements and customer specific requirements (“CSR”) TDK always has and will continue t o have the policy of respecting individual agreements. Even if IATF 16949 may appear to support the acceptance of unilateral requirements, we hereby like to emphasize that only requirements mutually agreed upon can and will be implemented in our Quality Management System. For clarification purposes we like to point out that obligations from IATF 16949 shall only become legally binding if individually agreed upon.

  1. The trade names EPCOS, CarXield, CeraCharge, CeraDiode, CeraLink, CeraPad, CeraPlas, CSMP, CTVS, DeltaCap, DigiSiMic, ExoCore, FilterCap, FormFit, LeaXield, MiniBlue, MiniCell, MKD, MKK, ModCap, MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, PhiCap, PowerHap, PQSine, PQvar, SIFERRIT, SIFI, SIKOREL, SilverCap, SIMDAD, SiMic, SIMID, SineFormer, SIOV, ThermoFuse, WindCap, XieldCap are trademarks registered or pending in Europe and in other countries. Further information will be found on the Inter net at www.tdk-electronics.tdk.com/trademarks. Release 2020-06