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quality Double sided metallized polypropylene film capacitor box type DGCX B82683J2JD40GB2000R for TV vertical deflection factory
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quality Double sided metallized polypropylene film capacitor box type DGCX B82683J2JD40GB2000R for TV vertical deflection factory
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Specifications
Capacitance:
68nF
Tolerance:
±5%
Voltage Rating:
630V
Mfr. Part #:
B82683J2JD40GB2000R
Package:
Through Hole,P=15mm
Key Attributes
Model Number: B82683J2JD40GB2000R
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. It features a non-inductive winding structure and is encapsulated in a flame-retardant plastic case and epoxy resin, ensuring good dimensional consistency. These capacitors are suitable for use in switching power supplies, electronic ballasts, motor control, and TV vertical deflection circuits, offering low loss and minimal internal temperature rise.

Product Attributes

  • Brand/Manufacturer: Dongguan Chengxi Electronics Co., Ltd. (DGCX)
  • Product Series: MMKP82
  • Capacitor Type: Box-type, Double-sided Metallized Polypropylene Film Capacitor
  • Construction: Non-inductive winding, double-sided metallized polypropylene film/metallized polyester film composite
  • Encapsulation: Flame-retardant plastic case (PBT) and flame-retardant epoxy resin
  • Leads: Tinned copper wire
  • Certifications: RoHS, REACH, Halogen-free (if required)
  • Environmental Compliance: All raw materials and finished products comply with RoHS environmental requirements.

Technical Specifications

Model/Part Number Capacitance (uF) Tolerance (%) Rated Voltage (VDC) Dissipation Factor (DF) (1KHz, 20-25) Dimensions (mm) W x H x T Pitch (P) (mm) Lead Diameter (d) (mm) Lead Length (L) (mm)
MMKP82 0.068uF5% 630V.dc P=15 (W18H14.5T8.5) 0.068 5 630 0.1% 18.0 x 14.5 x 8.5 15.0 0.8 0.05 20.0 2.0
B82683J2JD40GB2000R 0.068 5 630 0.1 18.0 x 14.5 x 8.5 15.0 0.8 0.05 20.0 2.0
Specification Technical Specification Standard
Operating Temperature Range -40 ~ +105 -
Rated Temperature +85 -
Capacitance Range 0.001F ~ 2.2F -
Capacitance Tolerance G=2%; H=3%; J=5%; K=10% -
Rated Voltage (DC) 250Vdc, 400Vdc, 630Vdc, 1000Vdc, 1600Vdc, 2000Vdc -
Insulation Resistance 50000M for C0.33uF (100VDC, 60s)
10000M*uF for C>0.33uF (100VDC, 60s)
-
Withstand Voltage 1.6UR for 5 seconds -
Climate Category 40/105/56 -
Main Materials Metallized Polypropylene Film/Metallized Polyester Film/Polypropylene Film (MPAT/MMPEA/PP), Tin-plated copper wire, Epoxy resin, PBT plastic case -
Packaging Inner carton: 34.5*23.5*24.5 cm
Outer carton: 49*36*27 cm
-
Storage Conditions Temperature: Max 35, Relative Humidity: Max 80% (in original packaging) -
Storage Time Max 12 months from production date -
No Item Characteristic Test Method
1 Terminal Strength Tensile Strength, Bending Strength Wire diameter: 0.6&0.8mm; Load: 10N, Time: 10s; Force: 5N, 902 times
2 Solderability Solder coverage rate 95% on leads Soldering flux temperature: 2455, Immersion time: 2.50.5s
3 Solder Heat Resistance Appearance, DF increase, Capacitance change Soldering temperature: 2605, Immersion time: 101s. Recovery time 1-2 hours. DF increase 0.002; C/C3%
4 Temperature Change Appearance -40 to +105, 5 cycles
5 Climate Sequence Appearance, Capacitance change, DF increase, Insulation Resistance Dry heat +105, 16h; Cyclic damp heat; Cold -40, 2h; Low pressure 8.5kPa, 1h. C/C3%, DF increase 0.003, IR/IR50%
6 Damp Heat (Steady State) Appearance, Capacitance change, DF increase, Insulation Resistance 90-95%RH, 402, 56 days. C/C5%, DF increase 0.002, IR/IR50%
7 Endurance Appearance, Capacitance change, DF increase, Insulation Resistance 85, 1000 hours, 1.25UR applied voltage. C/C5%, DF increase 0.004, IR/IR50%
8 Characteristics Dependent on Temperature Capacitance measurement at different temperatures -40, 20, 105. 0(Cb-Cd)/Cd+3%; -4.0%(Cf-Cd)/Cd0
9 Charge/Discharge Capacitance change, DF increase, Insulation Resistance 10,000 cycles. C/C5%, DF increase 0.005, IR/IR50%

2501151750_DGCX-B82683J2JD40GB2000R_C42444201.pdf

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