Product Overview
The JIMSON ELECTRONICS (XIAMEN) CO.,LTD. MPP capacitor is designed for general resonance circuits, DC pulse, high-frequency, and low-current applications. It is also suitable for S-shaping correction circuits in color TV sets, offering optimum performance with a small size. Key features include high stability of capacitance and dissipation factor (DF) versus temperature and frequency, low DF, high insulation resistance (IR), non-inductive construction, self-healing properties, and very small inherent temperature rise. These capacitors are manufactured in Xiamen, China, and comply with RoHS 2.0 environmental directives.
Product Attributes
- Brand: JIMSON (JS)
- Origin: Xiamen, China
- Product Type: Capacitor
- Category: MPP
- Dielectric: Polypropylene film
- Electrodes: Vacuum evaporated metal
- Coating: Epoxy resin (fire retardant on request)
- Leads: Radial leads of tinned wire/insulation flexible wire
- Terminal Contact: Electrically welded (arc spot welding)
- Color: Brown
- Certifications: RoHS 2.0 compliant
Technical Specifications
| Specification | Description | Test Conditions | Value |
|---|---|---|---|
| Rated Capacitance | Nominal value | Measuring frequency: 1kHz10%, Measuring voltage: 1Vrms max. | 0.022uF~4.7uF |
| Capacitance Tolerance | J=5%, K=10% | ||
| Rated Voltage | 400VDC | ||
| Voltage Proof | No permanent breakdown or flashover | 1.6*UR, Unit: VDC (5s at 20) | |
| Dissipation Factor (DF) | DF 0.1% | 20, 1kHz, Measuring frequency: 1kHz10%, Measuring voltage: 1Vrms max. | |
| Insulation Resistance (IR) | C 0.33uF: IR 30000M C > 0.33uF: IR*C 5000S | Rated voltage or less than 100VDC, 1 minute at 20 and RH65% | |
| Endurance | C/C 5%; DF 0.4%; IR 50% of specified value | 1000 hours with 125% of rated voltage at 85 | |
| Climatic Catalogue | 40/85/21 | ||
| Solderability | Solder should cover at least 75% of the circumference of the lead | Solder bath: 2355, Bath time: 2.00.5 sec, Speed: 256 mm/sec, Depth: 1.5+0.5/-0mm from the bottom of the body | |
| Heat Shock | C/C 5%, DF 1.2*specified value. No visible damage to capacitor appearance after test. | Solder bath: 2605, Bath time: 5.00.5 sec, Speed: 256 mm/sec, Depth: 1.5+0.5/-0mm from the bottom of the body | |
| Lead Tensile Strength | No visible damage | Pull: 2.2 LBS, Time: 5 sec | |
| Lead Bending Strength | No visible damage | Load of lead: 1.1 LBS, The body of capacitor is bent 90 degrees and returned to its original position | |
| Vibration | No visible damage to appearance | Frequency cycle: 10Hz to 55Hz and then 10Hz, Amplitude: 1.5mm in three directions, Time: 2 hours each direction (total 6 hours) | |
| Reference Standard | IEC 60384-16, GB10190 | ||
| Model Example | Capacitance | Tolerance | Voltage |
| 223J400D02 | 0.022uF | J (5%) | 400VDC |
| 333J400D01 | 0.033uF | J (5%) | 400VDC |
| 473J400D01 | 0.047uF | J (5%) | 400VDC |
| 154K400D02 | 0.15uF | K (10%) | 400VDC |
| 474K400D02 | 0.47uF | K (10%) | 400VDC |
| 684K400D02 | 0.68uF | K (10%) | 400VDC |
| 105K400D02 | 1.0uF | K (10%) | 400VDC |
| 125K400D02 | 1.2uF | K (10%) | 400VDC |
| 334K400VDC | 0.33uF | K (10%) | 400VDC |
| 225J400D01 | 2.2uF | J (5%) | 400VDC |
| 475K400D01 | 4.7uF | K (10%) | 400VDC |
| Dimensions (mm) | W max | H max | T max |
| (Example: 223J400D02) | 13.0 | 10.0 | 7.0 |
| (Example: 105K400D02) | 22.0 | 15.0 | 10.0 |
| (Example: 125K400D02) | 26.5 | 24.0 | 16.0 |
| (Example: 225J400D01) | 31.0 | 21.0 | 12.0 |
| (Example: 475K400D01) | 30.0 | 23.0 | 13.0 |
| Lead Spacing (P) | 1.0 | ||
| Lead Diameter (D) | 0.05 | ||
| Lead Length (L) | +5/-10 |
Usage Notes
- Soldering Suggestion: Max Soldering Temperature: 270, Time: 4S. Pre-heating: 105, 1min.
- Salt Fog Test: For tin-plated copper-coated steel leads, test after wave peak welding.
- Storage Environment: Temperature 30, Humidity 70%. Unopened MBB ensures 24 months of storage.
- Storage Conditions: Avoid exposure to hydrogen chloride, hydrogen sulfide, sulfuric acid, high temperature, and high humidity. Store in air, as solderability of terminations may degrade.
2410121458_Jimson-MPP475K400D01_C434373.pdf
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