Product Overview
This document specifies the MB Series Electrolytic Capacitor from Hubei Milangxingchuang Electronics Co., Ltd. These solid chip capacitors are designed for various electronic applications, offering reliable performance with a focus on durability and specific electrical characteristics. The MB series is manufactured to meet stringent quality standards and environmental regulations.
Product Attributes
- Brand: MILANGXINGCHUANG
- Origin: Hubei, China
- Product Name: Solid Chip Capacitor
- Series: MB Series
- Certifications: ROHS2.0, REACH, HF compliant
- Sleeve Color: Red
Technical Specifications
| Item | Specification | Value |
| Customer P/N | MB | 22uF50V 6.3x6 |
| Vendor P/N | MB220M050E060T000 | |
| Nominal Capacitance | CAP | 22 uF |
| Rated Voltage | WV (V) | 50 V |
| Size (DxL) | (mm) | 6.3 x 6.0 |
| Capacitance Tolerance | Tolerance | -20% ~ +20% |
| Dissipation Factor (120Hz) | DF (%) max | 10 |
| Leakage Current (120Hz, 2min) | LC (uA) max | 220.0 |
| Equivalent Series Resistance (100KHz) | ESR (m) max | 75 |
| Ripple Current (100KHz) | R.C(mA) max | 1550 |
| Surge Voltage | SV (V) | 57.5 |
| Load Life | (Hrs) | 2000 |
| Operating Temperature | ( | -55 ~ 105 |
| Execution Standard | JISC 5101-4 | |
| Test Environment | Temperature T 202, Humidity RH 65%5% |
Dimensions (mm)
| Item | D | L | F | d |
| Specification | 6.3 0.5 | 6 1.0 | 2.5 0.5 | 0.5 0.05 |
Ripple Current Multipliers
| Frequency | Multipliers |
| 120F1K | 0.05 |
| 1KF10K | 0.30 |
| 10KF100K | 0.70 |
| 100KF500K | 1.0 |
Marking
| Item | Content |
| Rated Voltage | |
| Capacitance | |
| Series | |
| Polarity bar | |
| Sleeve Color |
Material Table
| NO. | Component | Material |
| Al Foil(+) | high pure aluminum formation foil | |
| Al Foil(-) | high pure aluminum carbon foil | |
| leader pin | AlSn | |
| Separator | Celluose | |
| Rubber | Organic compounds | |
| Case | AluminumCoated aluminum can |
SMT Processing Dimensions (mm)
| Size | W | P | F | A | B | D |
| 5x5.8 | 16 | 8.0 | 7.5 | 5.6 | 5.6 | 6.2 |
| 6.3x5.8 | 16 | 12 | 7.5 | 6.9 | 6.9 | 6.2 |
| 6.3x7.7 | 16 | 12 | 7.5 | 7.0 | 7.0 | 8.2 |
| 8x6.7 | 24 | 12 | 11.5 | 8.6 | 8.6 | 7.2 |
| 8x7.7 | 24 | 12 | 11.5 | 8.7 | 8.6 | 8.3 |
| 8x9.4 | 24 | 16 | 11.5 | 8.7 | 8.6 | 9.6 |
| 8x11.7 | 24 | 16 | 11.5 | 8.6 | 8.6 | 12.3 |
| 10x7.7 | 24 | 16 | 11.5 | 10.7 | 10.7 | 8.2 |
| 10x12.7 | 24 | 16 | 11.5 | 10.7 | 10.7 | 13.0 |
Test Items
| NO | Item | Conditions | Decision |
| 1 | Capacitance | Test Frequency: 120Hz10Hz, Test Voltage: 0.5Vrms +1.0V.DC, Test Temperature: 202 | a. Tolerance capacitance, b. Dissipation Factor |
| 2 | Dissipation Factor | Test Frequency: 120Hz10Hz, Test Voltage: 0.5Vrms +1.0V.DC, Test Temperature: 202 | See the table 2 |
| 3 | Equivalent Series Resistance | Test Frequency: 100KHz10Hz, Test Voltage: 0.5Vrms +1.0V.DC, Test Temperature: 202 | See the table 2 |
| 4 | Leakage Current | Test Voltage: 50 V, Charging 2min, Test Temperature: 202 | LC SPEC: I0.2CVor 300A (whichever is greater) |
| 5 | Resistance to Soldering Heat | Warm up time: 1202 seconds, Solder bath temperature: 2605, Solder composition: H60A. H60S or H63A, Immersion depth: 1.5~2.0mm, Immersion duration: 101 seconds | a. No appearance defect. b. Capacitance change within 10%. c. DF smaller than specification value. d. ESR smaller than specification value. e. Leakage current smaller than specification value. |
| 6 | Solder Ability | Solder bath temperature: 2452, Solder composition: H60A. H60S or H63A, Immersion depth: 1.5~2.0mm, Immersion duration: 20.5seconds | The solder alloy shall cover the 95% or more of the dipped lead's area. |
| 7 | Damp heat | Temperature: 602, Relative humidity: 90% to 95%, Duration: 2408 hours | a. No electrical or mechanical damage. b. Capacitance change within 20%. c. DF smaller than 150% of specification value. d. Leakage current smaller than specification value. |
| 8 | Surge Voltage | Test Temp: 15~35 , Apply surge voltage for 30 seconds and discharge for 330 seconds, Repeat this cycle 1000 times. | a. CAP change: within 10% of the initial value. b. DF: Specified value. c. Leakage current: Specified value. d. Appearance: No visible damage. |
| 9 | Vibration | Frequency range: 10 Hz to 55 Hz, Amplitude: 0.75 mm, Total duration: 3 2h (X-Y-Z directions each for 2 hours) | a. Appearance: No visible damage or leakage of electrolyte. b. Capacitance change: within 5% of the initial value. |
| 10 | Terminal strength | (A) Tensile strength: Specified load for 10 seconds. (B) Bending strength: Apply specified load and bend 90 degrees. | The capacitor shall withstand the constant tensile force and bending without damage either mechanical or electrical. No such Mechanical damage as terminal damage etc. |
| 11 | Load Life | Test Temp: 105 2, Rated Voltage: 50 V, Test Time: 2000 (+72 -0) hours (after 16 hours at room temperature) | a. No appearance defect. b. Capacitance change within 20%. c. DF smaller than 200% of specification value. d. Leakage current smaller than specification value. |
| 12 | Shelf Life | Test Temp: 105 2, Test Time: 1000 (+72 -0) hours (after 16 hours at room temperature) | |
| 13 | MAXIMUM APPLICABLE RIPPLE CURRENT | At 100KHz or 120Hz frequency at 105 2. Peak voltage not to exceed rated D.C voltage. | |
| 14 | Low temperature test | Step 1: 202 (CAP/DF/ESR). Step 2: Minimum operating temperature (722 hours storage). | a. CAP change: within 10% of the initial value. b. DF: Specified value. c. Leakage current: Specified value. d. ESR: Specified value. |
| 15 | Rapid change of temperature | Cycles: 5. Step 1: min temp (30min3min). Step 2: 202 (<3min). Step 3: max temp (30min3min). Step 4: 202 (<3min). | a. CAP change: within 20% of the initial value. b. DF: Specified value. c. Leakage current: Specified value. |
| 16 | Flow soldering test | Preheating: 120 (<120 seconds, 1 time). Soldering conditions: 260 (10 seconds, 2 times). | a. If twice reflow soldering, immersion time should be 10 sec.or less. b. Capacitance change: Within 10% of the initial value. c. DF, LC, ESR: Less than or equal to the initial specified value. |
2509221615_Econd-MB220M050E060T000_C51953338.pdf
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