Product Overview
The CBB62A X2 CAPACITOR is a film capacitor designed for AC applications. It features a polypropylene zinc-aluminum evaporated film construction with sprayed gold wire and tin-zinc alloy material for the leads. Encased in flame-retardant epoxy resin, this capacitor is suitable for various electronic circuits requiring reliable AC filtering and suppression.
Product Attributes
- Brand: ZHENHUA ELECTRON
- Origin: Ningbo, China
- Certifications: CQC, US E251337
- Product Name: CBB62A X2 CAPACITOR
- Product Type: 0.39FK330VAC
Technical Specifications
| Type | Specification | Capacitance Range | Capacitance Tolerance | Rated Voltage | Dissipation Factor (max) | Insulation Resistance (min) | Operating Temperature | Finished Size (mm) WxHxT | Lead Spacing (P) | Lead Diameter (D) |
| CBB62A X2 | 0.39FK330VAC | 0.001-2.2F | K (10%) | 330VAC | 0.1% at 10KHz, 25 | C0.33F: 32000M C > 0.33F: 15000M | -40 to +100 | 26.5 x 19 x 10 | 22.5 | 3.6 |
| Item | Test Conditions | Standard Requirements |
| High Temperature Aging | 805, 30 hours, 380VAC | C2NF, tg1010-4 |
| Short Circuit Discharge | 1KVDC, 1.5KVDC, 2KVDC, 5 times each polarity | C/C2%, tg2010-4 |
| Charge/Discharge Test | 1KVDC, 10000 cycles | C/C2%, tg1010-4 |
| Mark Solvent Resistance | Trichloroethylene immersion 10 mins | Epoxy no leakage, mark clear |
| Solder Heat Resistance | Immersion in 2605 solder bath for 10s1s at 1.5mm2mm from body, then static for 1h2h | C/C5%, tg2010-4 |
| Damp Heat Test | 402, 93% RH, 21d | C/C5% |
| Endurance Test | 855, 380VAC, 1000 hours | C/C5% ,tg30104 |
| High Temperature and Humidity Test | 852, 85%3% RH, 240V, 1000h | C/C10% |
| Lead Tensile Strength | 10N tensile force on lead | No visible damage |
| High Temperature and Humidity Test (Operating) | 85, 85% RH, 250VAC, 500 hours | c3% |
| High Temperature and Humidity Test (Operating) | 85, 85% RH, 250VAC, 1000 hours | c10%, tg3*10-3 |
| High Temperature High Voltage Test (Operating) | 85, 380VAC, 1000 hours | c1.5%, tg3*10-3 |
2306081101_jiangbeizhenhua-GPX394KA5Z3LL8BF1_C7424553.pdf
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