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quality Double sided metallized polypropylene film capacitor DGCX B82223J3AD20GC3E00R for high frequency DC and pulse factory
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quality Double sided metallized polypropylene film capacitor DGCX B82223J3AD20GC3E00R for high frequency DC and pulse factory
>
Specifications
Mfr. Part #:
B82223J3AD20GC3E00R
Package:
Through Hole,P=15mm
Key Attributes
Model Number: B82223J3AD20GC3E00R
Product Description

Product Overview

The MMKP82 series is a box-type, double-sided metallized polypropylene film capacitor designed for high-voltage, high-frequency DC and pulse applications in electronic equipment. These capacitors are ideal for absorption and resonance circuits, offering a non-inductive winding structure with a flame-retardant plastic case and epoxy resin encapsulation for a neat appearance and dimensional consistency. Key applications include switching power supplies, electronic ballasts, motor control, and TV deflection circuits.

Product Attributes

  • Brand: DGCX ()
  • Product Series: MMKP82
  • Type: Box-type, Double-sided Metallized Polypropylene Film Capacitor
  • Construction: Non-inductive winding structure
  • Encapsulation: Flame-retardant plastic case (Gray) and flame-retardant epoxy resin
  • Leads: Tinned copper wire
  • Certifications: RoHS compliant, REACH compliant, Halogen-free (if required)
  • Origin: Guangdong, China

Technical Specifications

Part Number Capacitance (uF) Tolerance (%) Rated Voltage (VDC) Dissipation Factor (DF) @ 1KHz Dimensions (mm) (W x H x T) Pitch (P) Lead Diameter (d) Case Color
B82223J3AD20GC3E00R 0.022 5% 1000 < 0.1% 18.0 x 12.0 x 6.0 15.0 1.0 0.8 0.05 Gray

General Electrical Characteristics

Parameter Specification Test Conditions
Operating Temperature Range -40 to +110 UR (dc): +85 to +110: Derating 1.25%/
UR (ac): +75 to +110: Derating 1.35%/
Climate Category 40/105/56
Rated Temperature +85
Capacitance Range 0.001F to 2.2F
Capacitance Tolerance G=2%; H=3%; J=5%; K=10%
Rated Voltage (AC) 250Vdc, 400Vdc, 630Vdc, 1000Vdc, 1600Vdc, 2000Vdc
Dissipation Factor (DF) ≤ 0.1% 1KHz at 20~25
Insulation Resistance ≥ 50000 MΩ for C≤0.33uF
≥ 10000 MΩ*uF for C>0.33uF
100VDC, 60 seconds
Dielectric Strength 1.6UR 5 seconds
Max. Pulse Rate of Rise (dV/dt) See table in original document Depends on UR and working voltage

Product Structure and Materials

No. Main Material Description Remarks
1 Metallized Polypropylene Film / Metallized Polyester Film / Polypropylene Film MPAT/MMPEA/PP -/-
2 Tin-Tin Alloy Wire -/-
3 Tinned Copper Wire Leads -/-
4 Epoxy Resin Potting Material Flame-retardant UL94V-0
5 PBT Plastic Case (Gray) Outer Protection Material Flame-retardant UL94V-0

Packaging Information

Item Specification
Inner Carton Dimensions (L*W*H) 34.5*23.5*24.5 cm
Outer Carton Dimensions (L*W*H) 49*36*27 cm
Carton Contents Manufacturer P/N, Package Count, Lot No.
Packaging Method Transparent PVC bag for moisture and dust protection
Markings RoHS logo, other customer-specified markings

Storage Conditions

Parameter Specification
Temperature Max. 35
Relative Humidity Max. 80%
Storage Duration Max. 12 months (from production date on packaging)
Notes Avoid prolonged exposure to air, which can degrade lead solderability. Do not store in high temperature or high humidity environments.

Environmental Characteristics

  • Compliant with RoHS requirements
  • Compliant with REACH requirements
  • Compliant with Halogen-free requirements (if specified)

Product Electrical Characteristics and Test Conditions

No. Item Characteristic Test Method Conditions
1 Terminal Strength Tensile Strength No visible mechanical damage Wire diameter: 0.6 & 0.8mm, Load: 10N, Time: 10 seconds
Bending Strength Wire diameter: 0.6 & 0.8mm, Force: 5N, 90° x 2 times
2 Solderability Tinning Rate ≥ 95% Flux Temp: 245±5, Immersion Time: 2.5±0.5 seconds
3 Soldering Heat Resistance Appearance No visible damage Flux Temp: 260±5, Immersion Time: 10±1 sec. Recovery Time: 1-2 hours
DF Increase ≤ 0.002 (C≤1.0μF, 10kHz) or (C>1.0μF, 1kHz)
Capacitance Change ΔC/C ≤ ±3%
4 Temperature Rapid Change Appearance No visible damage θA=-40°C, θB=+105°C, 5 cycles, Duration: 30 min
Vibration No visible damage Amplitude 0.75mm or Accel. 98m/s², Freq. 10-500Hz, 3 directions, 2h each, total 6h
Shock No visible damage 4000 cycles, Accel. 390m/s², Pulse Duration: 6ms
Capacitance Change ΔC/C ≤ ±3%
DF Increase ≤ 0.002
Insulation Resistance Change ΔIR/IR ≤ 50%
5 Climatic Sequence Appearance No visible damage Dry Heat (+105°C, 16h), Cyclic Damp Heat (Test Db, 1st cycle), Cold (-40°C, 2h), Low Pressure (8.5kPa, 1h), Cyclic Damp Heat (Remaining cycles)
Capacitance Change ΔC/C ≤ ±3%
DF Increase ≤ 0.003
Insulation Resistance Change ΔIR/IR ≤ 50%
6 Damp Heat, Steady State Appearance No visible damage 90-95% RH, 40±2, No load, 56 days. Recovery Time: 1-2 hours
Capacitance Change ΔC/C ≤ ±5%
DF Increase ≤ 0.002
Insulation Resistance Change ΔIR/IR ≤ 50%
7 Endurance Appearance No visible damage 85, 1000 hours, Applied Voltage: 1.25UR
Capacitance Change ΔC/C ≤ ±5%
DF Increase ≤ 0.004
Insulation Resistance Change ΔIR/IR ≤ 50%
8 Charge/Discharge Capacitance Change ΔC/C ≤ ±5% Cycles: 10,000. Charge Time: 0.5s. Discharge Time: 0.5s. Charge Voltage: UR. Charge Resistor: 220/CR (Ω). Discharge Resistor: 10/CR or 20Ω (whichever is larger). CR: Rated Capacitance (uF).
DF Increase ≤ 0.005 (10KHz, CR≤1.0uF) or (1KHz, CR>1.0uF)
Insulation Resistance Change ΔIR/IR ≤ 50%

Usage Rules

  • Usage Range: Do not exceed upper category temperature. Avoid overload. Do not exceed maximum pulse current.
  • Handling Precautions: Avoid repeated squeezing at the lead root. Pay attention to the lead tip.
  • Soldering: Solder heat can transfer to the capacitor core through leads and encapsulation. Be cautious of heat and prolonged soldering time causing attenuation or damage.
    • Wave Soldering: TP ≤ 110°C for 120 seconds; Ts ≤ 120°C for 45 seconds. For P≤7.5mm, T≤4mm, soldering time < 4 seconds.
    • Soldering Iron: Tip temperature not exceeding 350°C, time not exceeding 3 seconds.
    • Note: Lead-type film capacitors are not suitable for reflow soldering.
    • Ts: Maximum temperature of the capacitor body during wave soldering.
    • Tp: Maximum temperature of the capacitor body in the preheating stage.

Curves

Effective Voltage vs. Frequency Characteristic Curve (Typical values under sinusoidal voltage, ambient temp ≤ 85°C, internal temp rise ΔT=10°C)

Effective Current vs. Frequency Characteristic Curve (Typical values under sinusoidal voltage, ambient temp ≤ 85°C, internal temp rise ΔT=10°C)

Product Electrical Characteristic Diagrams


2512031620_DGCX-B82223J3AD20GC3E00R_C53070567.pdf

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