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Metallized Polypropylene Film Capacitor DGCX MPP104J2AB030C3F0ZR Featuring Epoxy Resin Powder Coating

Price Negotiable
Price: Negotiable
MOQ: Negotiable
Delivery Time: Negotiable
Product Description

Product Overview

The CBB21/MPP series capacitors are metallized polypropylene film capacitors with a non-inductive wound structure, designed for electronic equipment. They feature an epoxy encapsulation and are suitable for DC blocking, coupling, decoupling, filtering, bypassing, and other high-frequency, DC, AC, and pulse circuits. Key advantages include excellent self-healing properties due to the metallized polypropylene film, low loss, and minimal internal temperature rise, all encapsulated in flame-retardant epoxy resin powder coating.

Product Attributes

  • Brand: DGCX (Company Trademark)
  • Origin: Dongguan, Guangdong Province, China
  • Series: CBB21/MPP
  • Type: Metallized Polypropylene Film Capacitor (Impregnated Type)
  • Encapsulation: Flame-retardant epoxy resin powder coating
  • Internal Material: Epoxy resin
  • Lead Material: Tinned copper clad steel wire
  • RoHS Compliance: Yes
  • REACH Compliance: Yes
  • Halogen-Free: Available upon request

Technical Specifications

Model/Part Number Capacitance (uF) Tolerance (%) Rated Voltage (V.dc) Dielectric Loss (DF) (1KHz, 20C) Dimensions (mm) (L x W x H) Pitch (P 1.0) Lead Diameter (d 0.05)
MPP104J2AB030C3F0ZR 0.1 5% 100 0.0010 9.0 x 7.3 x 3.4 7.5 0.6

General Electrical Characteristics

Parameter Specification Test Conditions
Climate Category 40/105/21 -
Operating Temperature Range -40 to +105 (Derating factor 1.25% / for +85 to +105)
Rated Temperature 85 -
Capacitance Range 0.001F to 6.8F -
Capacitance Tolerance 5% (K), 10% (M) -
Rated Voltage (Vdc) 100, 160, 250, 400, 630, 1000, 1250, 1600, 2000 -
Dissipation Factor (DF) 0.0010 1kHz, 20
Insulation Resistance 30,000 M for C 0.33uF
10,000 M*uF for C > 0.33uF
100VDC, 60 seconds
Dielectric Strength 1.6 UR(VDC) 5 seconds
Max. Pulse Rise Time (dV/dt) See chart in original document Dependent on UR and Pitch (P)

Product Structure and Main Materials

No. Main Material Description Remarks
1 Metallized Polypropylene Film MPPZAH -
2 Sprayed Layer Zinc-tin alloy wire -
3 Lead Wire Tinned copper clad steel wire -
4 Outer Encapsulation Material Epoxy resin powder Flame retardant UL94V-0
5 Inner Protective Material Epoxy resin -

Marking Description (Example)

Marking Description
DGCX Company Trademark
MPP Product Model or Model Code
105J Rated Capacitance and Tolerance
250V Rated Voltage (V.dc)

Packaging Information

Item Dimensions (L*W*H)
Inner Carton 34.5*23.5*24.5 cm
Outer Carton 49*36*27 cm
Packaging Details Transparent PVC bag for moisture and dust protection; RoHS environmental mark; Customer specific markings.

Storage Conditions

Condition Specification
Temperature Max 35
Relative Humidity Max 80%
Storage Duration Max 12 months (from production date on packaging bag)

Environmental Characteristics

  • RoHS Compliance
  • REACH Compliance
  • Halogen-Free (if required)

Product Electrical Characteristics and Test Conditions

No. Item Characteristic Test Method
1 Terminal Strength Tensile Strength
Bending Strength
No visible mechanical damage
Wire diameter: 0.6&0.8mm, Load: 10N, Time: 10s
Wire diameter: 0.6&0.8mm, Force: 5N, 902 times
2 Solderability Solderability rate on lead Soldering temperature: 2455, Immersion time: 2.50.5s, Rate 95%
3 Solder Heat Resistance Appearance
Capacitance Change
DF Increase
No visible damage
Soldering temperature: 2605, Immersion time: 101s, Recovery time 1-2 hours
C/C 3%
DF 0.004 (C1.0F, 10kHz)
DF 0.004 (C>1.0F, 1kHz)
4 Temperature Rapid Change Appearance
Capacitance Change
No visible damage
A=-40, B=+105, 5 cycles, Duration: 30min
C/C 5%
5 Vibration Appearance
Capacitance Change
DF Increase
Insulation Resistance
No visible damage
Amplitude 0.75mm or acceleration 98m/s (whichever is smaller), Frequency 10-500Hz, 3 directions, 2h each direction, total 6h
C/C 5%
DF Increase 0.004
IR/IR 50%
6 Shock Appearance
Capacitance Change
DF Increase
Insulation Resistance
No visible damage
4000 times, acceleration 390m/s, pulse duration 6ms
C/C 5%
DF Increase 0.004
IR/IR 50%
7 Climatic Sequence Appearance
Capacitance Change
DF Increase
Insulation Resistance
No visible damage
Dry Heat +105, 16h; Cyclic Damp Heat Test Db, 1st cycle; Cold -40, 2h; Low pressure 8.5kPa, 1h; Cyclic Damp Heat Test Db, remaining cycles
C/C 5%
DF Increase 0.005
IR/IR 50%
8 Damp Heat (Steady State) Appearance
Capacitance Change
DF Increase
Insulation Resistance
No visible damage
RH 90-95%, Temp: 402, 21 days, Recovery time 1-2 hours
C/C 5%
DF 0.002 (C1.0F, 10kHz)
DF 0.004 (C>1.0F, 1kHz)
IR/IR 50%
9 Endurance Appearance
Capacitance Change
DF Increase
Insulation Resistance
No visible damage
Temp: 85, 1000 hours, Applied Voltage: 1.25UR
C/C 8%
DF Increase 0.004
IR/IR 50%
10 Characteristics Dependent on Temperature Capacitance measurement at points b, d, f At lower category temperature -40: 0 (Cb-Cd)/Cd +3%
At upper category temperature 105: -4.0% (Cf-Cd)/Cd 0
Static method, capacitor held at each temperature sequentially: a.(202), b.(-403), d.(20 2), f.(1052), g.(202)
11 Charge/Discharge Capacitance Change
DF Increase
Insulation Resistance
C/C 5%
Charge/Discharge cycles: 10,000
Charging time: 0.5s, Discharging time: 0.5s
Charging voltage: Rated voltage UR
Charging resistance: 220/CR ()
Discharging resistance: 10/CR or 20 (whichever is larger)
CR: Rated capacitance (uF)
DF 0.005 (10KHz, CR1.0uF)
DF 0.005 (1KHz, CR>1.0uF)
IR/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 wire root; Pay attention to the lead wire tip.
  • Soldering: Solder heat can transfer to the capacitor core. Ensure solder temperature is within limits to prevent damage or characteristic decay.
  • Soldering Temperatures:
    • Wave Soldering (MPP Polypropylene Film Capacitors): TP 110 for 120s; Ts 120 for 45s. For P7.5mm, T4mm, wave soldering time
    • Soldering Iron: Tip temperature not exceeding 350, time not exceeding 3 seconds.
    • Lead film capacitors are not suitable for reflow soldering.
  • Definitions: Ts: Maximum temperature the capacitor body can withstand during wave soldering. Tp: Maximum preheating temperature the capacitor body can withstand.

Maximum Effective Voltage vs. Frequency Curve

Note: Typical values are tested under conditions of sinusoidal voltage, ambient temperature 85, and internal temperature rise T=10.

Product Electrical Characteristic Diagrams

(Diagrams are referenced in the original document, content not provided here.)


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Company Beijing Silk Road Enterprise Management Services Co., Ltd.
Location 16 Floor, Unit B, Jiatai International Mansion, No 41, Dongsihuan Zhong Road, Chaoyang District, Beijing
Contact Person Sellina

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