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quality Metallized Polypropylene Film Capacitor DGCX MPP225J2SD10HC04N1R for Coupling Decoupling and Filtering Circuits factory
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quality Metallized Polypropylene Film Capacitor DGCX MPP225J2SD10HC04N1R for Coupling Decoupling and Filtering Circuits factory
>
Specifications
Capacitance:
2.2uF
Tolerance:
±5%
Voltage Rating:
450V
Mfr. Part #:
MPP225J2SD10HC04N1R
Package:
Through Hole
Key Attributes
Model Number: MPP225J2SD10HC04N1R
Product Description

Product Overview

The CBB21/MPP series metallized polypropylene film capacitors are designed for electronic equipment applications. These capacitors feature a non-inductive winding structure with metallized polypropylene film and are encapsulated in flame-retardant epoxy resin powder. They 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, low loss, and low internal temperature rise.

Product Attributes

  • Brand: DGCX (Company Trademark)
  • Product Series: CBB21/MPP
  • Type: Metallized Polypropylene Film Capacitor (Impregnated Type)
  • Construction: Non-inductive winding, epoxy resin powder encapsulation
  • Lead Material: Tinned copper clad steel wire
  • Flame Retardancy: UL94V-0
  • Environmental Compliance: RoHS, REACH, Halogen-free (if required)
  • Origin: Dongguan, China

Technical Specifications

Model Capacitance (uF) Tolerance (%) Rated Voltage (V.dc) Dissipation Factor (DF) (1KHz) Dimensions (mm) L x W x H Pitch (mm) Lead Diameter (mm)
MPP225J2SD10HC04N1R 2.2 5% 450 0.1% 17 x 14.4 x 9.5 15 0.8

General Electrical Characteristics

Parameter Specification Test Conditions
Climate Category 40/105/21
Operating Temperature Range -40 to +105 (Voltage 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 C0.33uF)
10,000 M*uF (for C>0.33uF)
100VDC, 60 seconds
Withstand Voltage 1.6 x UR(VDC) 5 seconds

Product Structure and Main Materials

No. Main Material Description Remarks
1 Metallized Polypropylene Film MPPZAH -/-
2 Sprayed Metal 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

Packaging Information

Item Dimensions (L*W*H)
Inner Carton 34.5*23.5*24.5 cm
Outer Carton 49*36*27 cm

Packaging Details: Packing bag and carton. Includes manufacturer part number, quantity per bag, Lot No. Capacitors are packed in transparent PVC bags for moisture and dust protection. RoHS environmental mark included. Other customer-specific markings are available.

Storage Conditions

  • Store in original packaging.
  • Temperature: Max 35
  • Relative Humidity: Max 80%
  • Storage Time: Maximum 12 months from the production date marked on the packaging bag.
  • Avoid prolonged exposure to air which may degrade lead solderability.
  • Do not store in high temperature or high humidity environments.

Product Electrical Characteristics and Test Conditions

General Test Conditions: Ambient temperature: 1535, Relative humidity: 25%75%. For any disputes regarding test results, use: Ambient temperature: 202, Relative humidity: 60%70%.

No. Item Characteristic Test Method
1 Terminal Strength Tensile Strength No visible mechanical damage. Load: 10N, Time: 10 seconds (Wire diameter: 0.6&0.8mm)
Bending Strength Wire diameter: 0.6&0.8mm. Force: 5N, 90 x 2 times
2 Solderability Tinning rate of leads 95% Soldering temperature: 2455, Immersion time: 2.50.5 seconds
3 Soldering Heat Resistance Appearance No visible damage. Soldering temperature: 2605, Immersion time: 101 seconds. Recovery time: 1-2 hours.
DF Increase 0.004 (C1.0F, 10kHz) / 0.004 (C>1.0F, 1kHz)
Capacitance Change C/C 3%
4 Temperature Rapid Change Appearance No visible damage. A=-40, B=+105, 5 cycles. Duration: t=30min.
Vibration Appearance Amplitude 0.75mm or acceleration 98m/s (whichever is less severe), Frequency 10-500Hz, 3 directions, 2h each direction, total 6h.
Shock Appearance 4000 times, acceleration 390m/s, pulse duration: 6ms.
Final Measurement Appearance No visible damage.
Capacitance Change C/C 5%
DF Increase 0.004
Insulation Resistance IR/IR 50%
5 Climatic Sequence Appearance No visible damage. Dry heat +105, 16h. Cyclic damp heat (Test Db, first cycle). Cold -40, 2h. Low pressure 8.5kPa, 1h. Cyclic damp heat (Test Db, remaining cycles).
Low Pressure No permanent breakdown, arcing or harmful deformation of the casing.
Capacitance Change C/C 5%
DF Increase 0.005
Insulation Resistance IR/IR 50%
6 Damp Heat (Steady State) Appearance No visible damage. Relative humidity 90-95%RH, Temperature: 402, No load, Duration: 21 days. Recovery time: 1-2 hours.
Capacitance Change C/C 5%
DF Increase 0.002 (C1.0F, 10kHz) / 0.004 (C>1.0F, 1kHz)
Insulation Resistance IR/IR 50%
7 Endurance Appearance No visible damage. T=85, 1000 hours. Applied voltage: 1.25UR.
Capacitance Change C/C 8%
DF Increase 0.004
Insulation Resistance IR/IR 50%
8 Characteristics Dependent on Temperature Capacitance measurement at points b, d, f. Static method, capacitor held successively at each temperature: a.(202), b.(-403), d.(20 2), f.(1052), g.(202).
Characteristics at lower category temperature (-40) 0 (Cb-Cd)/Cd +3%
Characteristics at upper category temperature (105) -4.0% (Cf-Cd)/Cd 0
9 Charge/Discharge Capacitance Change 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 greater). CR: Rated capacitance (uF).
DF Increase 0.005 (10KHz, CR1.0uF) / 0.005 (1KHz, CR>1.0uF)
Insulation Resistance IR/IR 50%

Usage Rules

  • Usage Range: Do not exceed the upper category temperature. Avoid overload. Do not exceed the maximum pulse current.
  • Operation Precautions: Avoid repeatedly squeezing the lead wire root. Pay attention to the lead wire tips.
  • Soldering: Solder heat can transfer to the capacitor core through lead terminals and encapsulation layers. Be cautious of capacitor electrical characteristic degradation or damage caused by high temperature and prolonged soldering.
  • Soldering Temperature Limits:
    • Wave Soldering: TP 110 for 120 seconds; Ts 120 for 45 seconds. For P7.5mm, T4mm: Wave soldering time < 4 seconds.
    • Soldering Iron: Soldering iron tip temperature not exceeding 350, time not exceeding 3 seconds.
    • Capacitors with leads are not suitable for reflow soldering.
  • Ts: Maximum temperature the capacitor body can withstand during wave soldering.
  • Tp: Maximum temperature the capacitor body can withstand during the preheating stage.

Maximum Effective Voltage vs. Frequency Curve

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

Product Electrical Characteristic Graphs

(Refer to page 13 for graphs)


2505291610_DGCX-MPP225J2SD10HC04N1R_C49002996.pdf

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