Product Overview
The CBB21/MPP series metallized polypropylene film capacitors are designed for electronic equipment, featuring an epoxy encapsulated, non-inductive winding structure. These capacitors are suitable for DC blocking, coupling, decoupling, filtering, bypassing, and other high-frequency, DC, AC, and pulse circuits. They offer excellent self-healing properties, low loss, and low internal temperature rise, with a flame-retardant epoxy resin powder coating.
Product Attributes
- Brand: Dongguan Chengxi Electronics Co., Ltd. ()
- Product Type: CBB21/MPP type metallized polypropylene film capacitor (impregnated type)
- Material: Metallized Polypropylene Film, Tin-plated Copper Wire or Tin-plated Copper Clad Steel Wire, Flame-retardant Epoxy Resin Powder
- Construction: Non-inductive winding structure
- Encapsulation: Epoxy encapsulated
- Certifications: RoHS compliant, REACH compliant, Halogen-free (if required)
- Origin: Shenzhen Bao'an (Longchuan) Industrial Transfer Industrial Park C1 Plot, Heyuan City, Longchuan County, Guangdong Province, China
Technical Specifications
| Model | Capacitance (F) | Tolerance (%) | Rated Voltage (VDC) | Dissipation Factor (DF) (1KHz) (%) | Dimensions (mm) W (max) | Dimensions (mm) H (max) | Dimensions (mm) T (max) | Pitch (P) (mm) | Lead Length (L) (0.5) | Lead Diameter (d) (0.05) |
|---|---|---|---|---|---|---|---|---|---|---|
| MPP153J2EM040C3F0ZR | 0.015 | 5 | 250 | 0.1 | 7.0 | 7.5 | 4.5 | 5.0 | 3.5 | 0.5 |
General Electrical Characteristics
| Parameter | Specification |
|---|---|
| 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% (J), 10% (K) |
| Rated Voltage (VDC) | 100, 160, 250, 400, 630, 1000, 1250, 1600, 2000 VDC |
| Dissipation Factor (DF) (1kHz, 20) | 0.0010 |
| Insulation Resistance (IR) | 30,000 M for C 0.33F (100VDC, 60 sec) 10,000 M*F for C > 0.33F (100VDC, 60 sec) |
| Dielectric Strength | 1.6 UR (VDC) for 5 seconds |
Maximum Pulse Rise Rate (dV/dt)
If actual operating voltage (U) is lower than rated voltage (UR), the capacitor can operate at a higher dV/dt. The permissible dV/dt value should be multiplied by UR/U.
| dV/dt (V/s) | UR (VDC) | P=7.5 mm | P=10.0 mm | P=15.0 mm | P=22.5 mm | P=27.5 mm |
|---|---|---|---|---|---|---|
| 100/160 | 130 | 110 | 100 | 70 | 50 | |
| 250 | 240 | 220 | 200 | 120 | 100 | |
| 400 | 450 | 350 | 300 | 180 | 150 | |
| 630 | 550 | 420 | 400 | 250 | 180 | |
| 1000/1250 | 2300 | 1950 | 975 | 600 | 300 | |
| 1600 | / | 6000 | 4500 | 2400 | / | |
| 2000 | / | / | 8000 | 4500 | / |
Product Structure and Main Materials
| No. | Main Material | Description | Remarks |
|---|---|---|---|
| 1 | Metallized Polypropylene Film | MPPZAH | -/- |
| 2 | Tin-plated Layer | Zinc-tin alloy wire | -/- |
| 3 | Lead Wire | Tin-plated copper clad steel wire | -/- |
| 4 | Outer Encapsulation Material | Epoxy resin powder | Flame retardant UL94V-0 |
| 5 | Inner Protection Material | Epoxy resin | - |
Note: All raw materials and finished products comply with RoHS environmental requirements.
Packaging Information
| Item | Dimensions (L*W*H) |
|---|---|
| Inner Carton | 34.5*23.5*24.5 cm |
| Outer Carton | 49*36*27 cm |
Carton Packaging Details:
- Includes: Manufacturer's part number, number of packages and quantity per package, Lot No.
- Capacitors are packaged in transparent PVC bags for moisture and dust protection.
- RoHS environmental mark.
- Other customer labeling requirements.
Storage Conditions
- Avoid prolonged exposure to air, which may degrade lead wire solderability.
- Do not store in high temperature and high humidity environments.
- Temperature: Max 35
- Relative Humidity: Max 80%
- Storage Time: Maximum 12 months (based on production date marked on the packaging bag).
Environmental Characteristics
- Compliant with RoHS requirements.
- Compliant with REACH requirements.
- Compliant with Halogen-free requirements (if specified).
Product Electrical Characteristics and Test Conditions
Unless otherwise specified, tests are conducted within standard atmospheric conditions: Environment Temperature: 1535, Relative Humidity: 25%75%. For verification of test results, the following conditions apply: Environment Temperature: 202, Relative Humidity: 60%70%.
Electrical Characteristics Testing
| No. | Item | Characteristic | Test Method |
|---|---|---|---|
| 1 | Terminal Strength | Tensile Strength | No visible mechanical damage. Wire diameter: 0.6 & 0.8mm. Load: 10N, Duration: 10 seconds. |
| Bending Strength | Wire diameter: 0.6 & 0.8mm. Force: 5N, 90 2 times. | ||
| 2 | Solderability | Solder coverage rate on leads 95%. Solder temperature: 2455. Immersion time: 2.50.5 seconds. | |
| 3 | Solder Heat Resistance | Appearance: No visible damage. Solder 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. Cycles: A=-40, B=+105, 5 cycles. Duration: t=30min per step. | |
| Vibration | Appearance: No visible damage. Amplitude 0.75mm or acceleration 98m/s (whichever is less severe), Frequency 10-500Hz, 3 directions, 2h each direction, total 6h. | ||
| Shock | Appearance: No visible damage. 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 | Initial Measurement: Capacitance (1KHz), DF (CR1F: 10kHz; CR>1F: 1kHz). | |
| Dry Heat | +105, 16 hours. | ||
| Cyclic Damp Heat | Test Db, first cycle. | ||
| Cold | -40, 2 hours. | ||
| Low Pressure | No permanent breakdown, arcing, or harmful deformation of the case; 8.5kPa, 1 hour. | ||
| Cyclic Damp Heat | Test Db, remaining cycles. | ||
| Final Measurement | Appearance: No visible damage. Capacitance Change: C/C 5% DF Increase: 0.005 Insulation Resistance: IR/IR 50% | ||
| 6 | Steady State Damp Heat | 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. Duration: 1000 hours at T=85. Applied Voltage: 1.25UR. | |
| Capacitance Change | C/C 8% | ||
| DF Increase | 0.004 | ||
| Insulation Resistance | IR/IR 50% | ||
| 8 | Charge/Discharge | Capacitance Change: C/C 5%. Charge/Discharge cycles: 10,000. Charging time: 0.5 sec. Discharging time: 0.5 sec. Charging Voltage: Rated Voltage UR. Charging Resistor: 220/CR (). Discharging Resistor: 10/CR or 20 (whichever is larger). CR: Rated Capacitance (uF). | |
| DF Increase | 0.005 (10KHz, CR1.0uF) 0.005 (1KHz, CR>1.0uF) | ||
| Insulation Resistance | IR/IR 50% |
Usage Rules
- Scope of Use: Do not exceed the upper limit category temperature. Avoid overload. Do not exceed the maximum pulse current.
- Handling Precautions: Avoid repeatedly squeezing the lead wire root. Be mindful of the lead wire tip.
- 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 temperatures and prolonged soldering.
- Soldering Temperature Ranges:
- Wave Soldering: For MPP Polypropylene Film Capacitors: TP 110 for 120 seconds; Ts 120 for 45 seconds. For P 7.5mm, T 4mm: Wave soldering time < 4 seconds.
- Soldering Iron: Tip temperature not exceeding 350, time not exceeding 3 seconds.
- Lead film capacitors 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 internal capacitor temperature rise T = 10.
Product Electrical Characteristic Curves
(Refer to page 13 of the original document for diagrams.)
2512031620_DGCX-MPP153J2EM040C3F0ZR_C53070649.pdf
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