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quality Metallized polypropylene film capacitor DGCX PPS333J3DA090C3F0ZR with non inductive internal structure factory
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quality Metallized polypropylene film capacitor DGCX PPS333J3DA090C3F0ZR with non inductive internal structure factory
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Specifications
Capacitance:
33nF
Tolerance:
±5%
Voltage Rating:
2kV
Mfr. Part #:
PPS333J3DA090C3F0ZR
Package:
Through Hole,P=20mm
Key Attributes
Model Number: PPS333J3DA090C3F0ZR
Product Description

Product Overview

The CBB81/PPS series high-voltage metallized polypropylene film/foil capacitors (impregnated type) are designed for high-voltage and high-frequency pulse circuits. They feature a metallized film and aluminum foil composite construction with an internal non-inductive structure. These capacitors are widely used in applications such as TV and monitor deflection circuits (S-correction and line flyback waveforms), electronic ballasts, energy-saving lamps, surge absorbers, and SCR rectifier circuits. Key advantages include low loss, low internal temperature rise, and high dv/dt and overcurrent capabilities.

Product Attributes

  • Brand: DGCX
  • Product Series: CBB81/PPS
  • Origin: Dongguan, Guangdong, China
  • Material: Metallized Polypropylene Film/Aluminum Foil/Polypropylene Film, Tin-plated Copper Clad Steel Wire leads, Flame Retardant Epoxy Resin Powder encapsulation (UL94V-0)
  • Environmental Compliance: RoHS, REACH, Halogen-free (if required)

Technical Specifications

Item Specification Details
Product Name CBB81/PPS Series High-Voltage Metallized Polypropylene Film/Foil Capacitor (Impregnated Type)
Model Example CBB81/PPS 0.033uF5% 2000V.dc P20 (22*16*9)
Product Code PPS333J3DA090C3F0ZR
Scope High-voltage metallized polypropylene film/foil capacitors (impregnated type) for electronic equipment.
Dimensions Table P/N Cap (uF) Tol. % R.V VDC DF (1KHz) % Dimensions (mm)
L
W (max) H (max) T (max) P 1.0 d 0.05
1 0.022 5 2000 0.1 22.0 16.0 9.0 20.0 3.5 0.8
Model Introduction & Usage Internal series non-inductive structure, tinned copper wire or tinned copper-clad steel wire welded to the sprayed gold layer of the capacitor core. Encapsulated with flame-retardant epoxy resin powder.
Typical Applications High-voltage high-frequency pulse circuits, TV and monitor deflection circuits (S-correction and line flyback waveforms), electronic ballasts, energy-saving lamps, surge absorbers, SCR rectifier circuits.
Product Features Metallized film & metal foil composite internal series structure. Low loss, low internal temperature rise. High dv/dt and high overcurrent capability.
Electrical Characteristics Item Technical Specification Standard
Climate Category 40/105/21
Operating Temperature Range -40~+105 (+85~+105: Derating factor 1.5% per for R.V(dc))
Capacitance Range 0.00022~0.047uF
Capacitance Tolerance 3%(H); 5%(J); 10%(K)
Rated Voltage 630V, 1000V, 1200/1250V, 1600V; 2000V
Dissipation Factor 0.1%(1KHz), 0.2%(10KHz), at 20~25
Insulation Resistance 50000M for C0.33uF; 15000MuF for C>0.33uF (Measured at 100VDC10VDC/60s / 20~25)
Dielectric Strength (Between Terminals) 1.75UR(VDC), 5 seconds
Maximum Pulse Rise Time (dV/dt) Refer to table (value depends on P and UR/U ratio)
Product Structure and Main Materials No. Main Material Description Remarks
1 Metallized Polypropylene Film/Aluminum Foil/Polypropylene Film MPPAT/AL/OPP -
2 Sprayed Welding Layer Zinc-tin alloy wire -
3 Leads Tinned copper clad steel wire -
4 Outer Encapsulation Material Epoxy resin powder Flame Retardant UL94V-0
5 Inner Protective Material Epoxy resin -
Packaging Instructions Inner box dimensions: 34.5*23.5*24.5 cm. Outer box dimensions: 49*36*27 cm. Packaging includes manufacturer part number, quantity per bag, Lot No. Capacitors are packed in transparent PVC bags for moisture and dust protection. RoHS environmental mark and other customer-specific markings.
Storage Conditions Store in original packaging. Temperature: Max 35, Relative Humidity: Max 80%. Maximum storage time: 12 months from production date. Avoid prolonged exposure to air which may degrade lead solderability. Avoid high temperature and high humidity environments.
Environmental Characteristics Compliant with RoHS, REACH, and Halogen-free requirements (if specified).
Product Electrical Characteristics and Test Conditions Item Characteristic Test Method
Terminal Strength Tensile Strength, Bending Strength Wire diameter: 0.6&0.8mm, Load: 10N/10s, Bending: 5N, 90x2 times
Solderability Tinning rate 95% on leads Flux temp: 2455, Immersion time: 2.50.5s
Soldering Heat Resistance Appearance, tan increase, Capacitance change Solder temp: 2605, Immersion time: 101s, Recovery: 1-2h
Temperature Rapid Change Appearance A=-40, B=+105, 5 cycles, Duration: 30min
Vibration Appearance Amplitude 0.75mm or Accel. 98m/s, Freq: 10-500Hz, 3 directions, 2h each
Shock Appearance 4000 times, Accel. 390m/s, Pulse duration: 6ms
Final Measurement Appearance, Capacitance change, tan increase, Insulation Resistance change As per standard tests
Climate Sequence Appearance, Capacitance change, tan increase, Insulation Resistance change Dry heat +105/16h, Cyclic damp heat (DB), Cold -40/2h, Low pressure 8.5kPa/1h
Steady State Damp Heat Appearance, Capacitance change, tan increase, Insulation Resistance change RH 90-95%, Temp: 402, 21 days
Endurance Appearance, Capacitance change, tan increase, Insulation Resistance change T=85, 1000h, Applied Voltage: 1.25UR
Characteristics Dependent on Temperature Capacitance change Static method at -40 and +105
Charge/Discharge Capacitance change, tan increase, Insulation Resistance change 10,000 cycles, Charge voltage: UR, Charge time: 0.5s, Discharge time: 0.5s
Usage Rules Do not exceed upper category temperature. Avoid overload. Do not exceed maximum pulse current. Avoid repeated squeezing at lead root. Be cautious of lead tip.
Soldering Wave Soldering: TP110/120s; Ts120/45s. For P7.5mm, T4mm: Wave soldering time < 4s. Iron Soldering: Tip temp 350, time 3s. Not suitable for reflow soldering.
Maximum Effective Current vs. Frequency Curve Refer to graph (Typical values under sinusoidal voltage, ambient temp 10, internal temp rise T=10).
Product Electrical Characteristic Graphs Refer to graphs.

2504101957_DGCX-PPS333J3DA090C3F0ZR_C42460035.pdf

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