conductive polymer electrolyte solid aluminum capacitor AISHI SVZ0JM221E06E00RAXXX designed for long term industrial
Product Overview
The VZ series of Aluminum Solid Electrolytic Capacitors with Conductive Polymer Electrolyte are designed for reliable operation across a wide temperature range of -55 to 105. These capacitors utilize conductive polymer as the electrolyte, offering stable performance and high reliability. They are suitable for various industrial applications where consistent electrical characteristics and long-term stability are required.
Product Attributes
- Brand: AISHI
- Series: VZ
- Electrolyte Type: Conductive Polymer Electrolyte
- Construction: Solid Aluminum Electrolytic Capacitor
- Lead Wire Material: Solid tinned copper weld steel wire
- Al-boss Material: High pure aluminum
- Anode Foil Material: High pure aluminum
- Cathode Foil Material: Carbon foil, High purity aluminum
- Coating AL-case: Aluminum + coating (Can withstand voltage above 600V)
- Tape Material: Polyester
- Encapsulation: Resin (Compression molding)
- Marking Ink Color: Red
Technical Specifications
| AISHI P/N | Rated Work Voltage (V.DC) | Nominal Capacitance 120Hz, 20 (F) | Capacitance Tolerance (%) | Operating Temp () | Nominal Case Size D*L (mm) | ESR 100KHz, 20 (mmax) | Max Leakage Current 20 (A max) | DF 120Hz, 20 (%max) | Ripple Current 100KHz, 105 (mA.rms) | Load Life (Hours) |
|---|---|---|---|---|---|---|---|---|---|---|
| SVZ0JM221E06E00RAXXX | 6.3 | 220 | -20+20 | 105 | 6.3*6 | 20 | 500 | 8 | 2800 | 2000 |
Part Number System
| System | Category Code | Series Code | Voltage Code | Capacitance Tolerance Code | Capacitance Code | Size Code | Terminal Code | Marking Code | Special Code |
|---|---|---|---|---|---|---|---|---|---|
| S | VZ | VZ | 0J (6.3V) | M (-20% ~ +20%) | 221 (220F) | E06 (6.3*6mm) | E00 (SMD&Bulk) | RA (Red) | AXXX (Normal products) |
Dimensions
| Size Code | D' (mm) | Tolerance | L' (mm) | Tolerance | A0.2 (mm) | B0.2 (mm) | C0.2 (mm) | P0.2 (mm) | W (mm) |
|---|---|---|---|---|---|---|---|---|---|
| E06 | 6.3 | -0.1+0.5 | 6 | -0.5+0.5 | 6.6 | 6.6 | 7.2 | 1.9 | 0.650.15 |
Soldering Pad Dimensions
| Size | a (mm) | b (mm) | c (mm) |
|---|---|---|---|
| 6.3 | 2.1 | 3.5 | 1.6 |
Marking
Marking includes Year Code (F for 2023), Week Code (01), Series (VZ), Rated Capacitance (220), and Rated Voltage (6.3). Marking ink is red.
Operating Precautions
- Polarity: Do not reverse polarity to prevent premature failure.
- Prohibited Circuits: Avoid use in high impedance, coupling, time constant, series connection for higher voltage, circuits sensitive to leakage current, and frequent ON/OFF circuits (>10000 times/day).
- Over Voltage: Do not exceed rated voltage, even momentarily.
- Rapid Charge/Discharge: Unsuitable. Use protection circuits if instantaneous current exceeds 10A or 10x ripple current exceeds 10A.
- Soldering: Adhere to specified conditions to prevent increased leakage current and capacitance reduction.
- Reuse: Do not reuse assembled or energized capacitors.
- Storage: Leakage current may increase after one year of storage; pre-condition if necessary.
- Reflow Soldering: Use recommended conditions for SMD types. Avoid immersion welding.
- Handling: Do not tilt, bend, twist, or grip the capacitor after soldering. Ensure proper spacing when stacking PCBs.
- Industrial Equipment: Design must ensure reliability.
- Life Support Systems: Consult Hunan Aihua Group Co., Ltd. before use.
- Storage Conditions: Store between 5-35 (or 35-85 for
- Storage Time: Within 1 year after delivery before unsealing; within 1 month after opening. Discard if stored over 3 years.
Cleaning
Cleaning methods using various solvents (alcohol, petroleum, terpene, water-based with surfactants) are confirmed under maker's recommendation. Contact for details.
Notes on Circuit Designs
- Performance: Use within specified rating and performance ranges.
- Operating Temperature & Ripple Current: Exceeding limits can shorten life or increase leakage current.
- Leakage Current: May rise slightly after soldering but self-repairs with DC voltage.
- Applied Voltage: Applied voltage should preferably be less than rated voltage. Peak AC+DC should not exceed rated voltage.
- Failure Mode: Primarily short circuit due to conductive polymer. Overheating and case rupture may occur.
- Change Notification: Changes to specifications will be notified in advance.
Get in Touch
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