PPS/CBB81

PPS/CBB81 Series High-Voltage Metallized Polypropylene Film Capacitors

Rated voltage1,000 / 1,250 / 1,600 / 2,000 VDC
Capacitance1–33 nF
ConstructionMetallized PP film + aluminum foil
Tolerance±5% / ±10%
Lead spacing15 / 22.5 mm
Operating temperature−40 °C to +105 °C

Epoxy-dipped high-voltage film capacitors with metallized polypropylene film and aluminum foil, for pulse and resonant circuits. 1,000–2,000 VDC, 1–33 nF.

Series product photograph
Series product photograph

Part numbers

232

Showing 25 of 232 part numbers

B82J123JN335170115055EOJ
B82J221KN1B0120085045EOY
B82J222JQ1B0170100050EOY
B82J223JQ135170140070EOZ
B82J223JQ136170140070EOY
B82J223JT1B0240150070EOJ
B82J223KQ135180145095EOZ
B82J333JQ133170140070EOY
B82J333JQ135170140070EOY
B82J333JQ136170140070EOY
B82J333JQ1B0170140070EOY
B82J333JQ233170140070EOY
B82J473JQ133170155085EOY
B82J473JQ135170155085EOY
B82J473JQ136170155085EOY
B82J473JQ233170155085EOY
B82J683JQ1B0170160095EOY
B82K223JQ140170140070EOZ
B82K223JQ1B0170140080EOY
B82K333JQ1B0170165095EOY
B82K473JT130240160105EOY
B83A102JN135120090045EOY
B83A102KN134120085045EOJ
B83A103JN135120115065EOY
B83A103JQ190170105055EOY

Need a value that is not listed? Send us your specification.

Datasheets & approval documents

Datasheets, technical documents and approval certificates for this series. English editions of documents marked “Chinese” are available on request.

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Engineering details

Overview

High-voltage polypropylene film capacitors with a non-inductive winding of metallized polypropylene film and aluminum foil and an epoxy-resin dip coating, for high-pulse, high-current and high-frequency DC circuits. Rated 1,000, 1,250, 1,600 and 2,000 VDC, 1–33 nF, J ±5% or K ±10%. Designed for frequencies up to 100 kHz. Lead spacing 15 and 22.5 mm. Operating temperature −40 °C to +105 °C.

Series features

  • Non-inductive winding of metallized polypropylene film and aluminum foil
  • Rated 1,000 / 1,250 / 1,600 / 2,000 VDC; 1 to 33 nF
  • Dissipation factor tan δ ≤0.1% at 1 kHz
  • Designed for high pulse and high current, at frequencies up to 100 kHz
Specifications
Product typeEpoxy-dipped high-voltage polypropylene pulse capacitor for high-current, high-frequency DC circuits
ConstructionMetallized polypropylene film and aluminum foil · non-inductive winding · epoxy-resin dip coating
Rated DC voltage1,000 · 1,250 · 1,600 · 2,000 VDC
Capacitance range1–33 nF; max. 22 nF at 2,000 VDC
Capacitance toleranceJ ±5% · K ±10%
Operating temperature−40 °C to +105 °C
Climatic category40/100/21 · derating between +100 °C and +105 °C on request
Storage temperature+15 °C to +35 °C
Dissipation factortan δ ≤0.1% at 1 kHz, 1.0 Vrms, 20 °C
Insulation resistance≥50,000 MΩ at 100 VDC, 60 s, 20 °C
Voltage proof, terminal to terminal1.75 × UR for 5 s
FrequencyDesigned for up to 100 kHz
Pulse and current ratingsDesigned for high pulse and high current
AC operationDC-rated only; permissible AC voltage and current versus frequency on request
Temperature coefficient of capacitanceNegative, with small capacitance change
Safety classNon-safety product; do not use across the line or line to earth
Body dimensionsW max. 18–25 · H max. 10–19.5 · T max. 5.5–12 mm, depending on voltage and capacitance
Lead spacing15 · 22.5 mm, ±1.0 mm
Lead diameter0.8 ±0.05 mm
Lead forms and packingLong straight · inner-bent · straight taped · bent taped
TapingTape dimensions specified for F = 15 and 20–22.5 mm
Soldering profile, PPPreheat ≤110 °C · soldering ≤120 °C · ≤15 s
Soldering profile, PEPreheat ≤125 °C · soldering ≤160 °C · ≤15 s
Hand soldering350 °C max. · 3 s max. · ≥2 mm from the coating
Reflow solderingNot permitted; film shrinkage can degrade performance
Environmental complianceRoHS and REACH compliant; bromine-free and halogen-free. Material declarations on request.
Further dataOn request: internal electrode arrangement and self-healing behavior · storage humidity and shelf life · voltage and current versus frequency, impedance and resonance data · dV/dt, peak current, K0, repetitive duty, pulse energy and RMS current · corona inception and extinction voltage, partial-discharge conditions and altitude derating · capacitance-temperature curve · pulse-life, high-voltage endurance, overload, partial-discharge, damp-heat, thermal-cycle, vibration and lead-strength test results
Variants

Ranges by dielectric, package and lead style within this series.

VariantBody dimensionsRated voltage / capacitanceElectrode construction / toleranceLead / land patternNotes
Q · 15 mmW max. 18 · H max. 10–18 · T max. 5.5–11 mm1,000–2,000 VDC · 1–33 nF, depending on ratingMetallized PP + aluminum foil · J/KP 15 ±1.0 · d 0.8 ±0.05 mmFor each voltage, check dV/dt, pulse current, corona margin and temperature rise per part number.
T · 22.5 mmW max. 25 · H max. 15–19.5 · T max. 8–12 mmHigher voltage and capacitance · 2,000 VDC to 22 nFMetallized PP + aluminum foil · J/KP 22.5 ±1.0 · d 0.8 ±0.05 mmLarger body for pulse duty; check RMS current, high-voltage endurance, partial discharge, vibration and board support per part number.
Selection guide

Start with the complete high-voltage pulse waveform and the insulation environment. Then check electrode construction, voltage, capacitance, dV/dt, repetitive and RMS current, frequency, hot-spot rise, corona and partial-discharge margin, lifetime and dimensions.

  1. Define the electrical and insulation environment

    Specify DC bias, peak voltage, rise and fall time, dV/dt, pulse width, repetition rate, ringing, polarity reversal and abnormal transients, together with altitude, pollution degree, surrounding clearances and the required corona and partial-discharge margin.

  2. Select voltage and capacitance

    The series covers 1–33 nF at 1,000/1,250/1,600/2,000 VDC with 15/22.5 mm lead spacing. For other voltages, values or lead spacings, request the part specification.

  3. Calculate pulse, current and frequency stress

    Use Ipk = C·dV/dt and the actual waveform to calculate peak current, repetitive energy and RMS current, and check them against the dV/dt, K0, Ipk, Irms, ESR, ESL, impedance and resonance limits.

  4. Check temperature rise and high-voltage lifetime

    Calculate dielectric and connection losses and hot-spot rise at the actual spectrum and enclosure ambient. The climatic category is 40/100/21 while operation extends to +105 °C: voltage, frequency, temperature and altitude derating, and partial-discharge and pulse endurance data, on request.

  5. Confirm construction and assembly

    Match the part number to electrode arrangement, voltage, capacitance, tolerance, W/H/T, lead spacing, lead form, packing and soldering profile. Do not use reflow soldering; validate lead forming and vibration.

Design notes

At 2 kV, design the complete insulation system

Coordinate internal margin, board clearance, altitude, pollution, enclosure geometry and repetitive overshoot. A short proof test does not establish corona-free continuous or pulse operation.

Do not assume self-healing in the hybrid construction

The series combines metallized film and aluminum foil; the internal connection is not specified. Do not rely on self-healing or fail-open behavior; electrode stack, segmentation, internal series connection and fault-response data on request.

Usable frequency range

Voltage, capacitance, ESR, ESL, resonance, RMS current and cooling determine the usable frequency range. Use voltage and current versus frequency curves for the selected part and validate hot-spot rise.

Calculate pulse current from the actual waveform

For an ideal capacitor, I = C·dV/dt. Include overshoot, ringing and repetition, then apply the dV/dt, K0, peak and RMS current, energy and temperature limits of the selected part.

Ratings outside the standard range

For voltages outside 1,000–2,000 VDC, values below 1 nF or above 33 nF, or other lead spacings, request the part specification, drawing and qualification report. Do not extrapolate.

Control assembly and lead stress

Apply the PP/PE soldering limits to the actual construction and do not use reflow soldering. Keep lead-forming stress away from the epoxy interface, and validate cleaning, coating, vibration and thermal cycling.

Part numbering

Example ordering code. Not every combination is available.

B8 · 3A · 102 · J · Q · 1 · B0 · 180 · 105 · 055 · E · 0 · Y

CodeMeaning
B8Series code: PPS/CBB81
3ARated voltage code: 3A = 1,000 VDC; 3B = 1,250 VDC, 3C = 1,600 VDC, 3D = 2,000 VDC
102Capacitance code: 102 = 1 nF; 103 = 10 nF
JCapacitance tolerance: J = ±5%, K = ±10%
QLead spacing: Q = 15 mm; T = 22.5 mm
1Lead form: 1 = long straight, 2 = inner-bent, 5 = straight taped, 6 = bent taped
B0Lead length code: B0 = 20.0 mm
180Body width: 180 = 18.0 mm
105Body height: 105 = 10.5 mm
055Body thickness: 055 = 5.5 mm
EEnvironmental code: E = RoHS, F = RoHS and halogen-free
0STE internal control code, first field
YSTE internal control code, second field