AISHi PZ Series Conductive Polymer Electrolytic Capacitors
Product Overview
The AISHi PZ series offers high-performance conductive polymer electrolytic capacitors designed for demanding applications. These capacitors feature low ESR (Equivalent Series Resistance) and are RoHS compliant and lead-free. They are recommended for use in system boards, display cards, small chargers, and intelligent TVs, providing reliable performance and extended endurance.
Product Attributes
- Brand: AISHi
- Series: PZ Series
- Material: Conductive Polymer
- Compliance: RoHS Compliant, Lead-free
Technical Specifications
| Item | Specification |
|---|---|
| Category Code | E (Electrolytic Capacitor) |
| Type Code | S (Conductive Polymer) |
| Endurance | +105C 2,000 hours |
| Key Features | Low ESR |
| Recommended Applications | System Board, Display Card, Small Charger, Intelligent TV |
| Temperature Range | -55C to +105C |
| Rated Working Voltage Range | 6.3Vdc to 100Vdc |
| Nominal Capacitance Range | 4.7F to 5600F |
| Capacitance Tolerance | 20% (M) |
| DC Leakage Current (max.) | 0.2CV or 500A, whichever is greater (at 20C, 120Hz) |
| Dissipation Factor (tan) (max.) | See table below (at 20C, 120Hz) |
| ESR (100kHz-300kHz, 20C) | See table below (max.) |
| Temperature Characteristics (Impedance Ratio at 100kHz) | Z(+105C)/Z(+20C) 1.25 Z(-55C)/Z(+20C) 1.25 |
| Endurance Test Requirements (after 2,000 hrs at 105C) | Capacitance Change: 20% of initial value D.F. (tan): 150% of initial specified value ESR: 150% of initial specified value Leakage Current: Initial specified value |
| Humidity Test Requirements (after 2,000 hrs at 60C, 90%-95% RH, no voltage) | Capacitors shall meet Endurance characteristics |
| Surge Test Requirements (1,000 cycles) | Appearance: No significant damage Capacitance Change: 20% of initial value D.F. (tan): 150% of initial specified value ESR: 150% of initial specified value Leakage Current: Initial specified value |
Standard Ratings (Example - PZ Series)
| VDC (V) | Cap (F) | Size DxL(mm) | ESR (m, 20C, 100kHz) (max.) | Rated ripple current (mArms/105C, 100kHz) | Leakage Current (A) (max.) |
|---|---|---|---|---|---|
| 6.3 (7.2) | 220 | 6.3x7.2 | 100 | 360 | 6.3 |
| 6.3 (7.2) | 270 | 6.3x7.2 | 85 | 395 | 7.56 |
| 6.3 (7.2) | 330 | 6.3x7.2 | 70 | 435 | 9.0 |
| 6.3 (7.2) | 390 | 6.3x7.2 | 60 | 470 | 10.5 |
| 6.3 (7.2) | 470 | 6.3x7.2 | 50 | 510 | 12.0 |
| 6.3 (7.2) | 560 | 6.3x7.2 | 45 | 550 | 13.5 |
| 6.3 (7.2) | 680 | 6.3x7.2 | 40 | 590 | 16.0 |
| 10 (11.5) | 470 | 8x11.5 | 60 | 510 | 12.0 |
| 10 (11.5) | 680 | 8x11.5 | 40 | 610 | 16.0 |
| 10 (11.5) | 820 | 8x11.5 | 35 | 660 | 19.5 |
| 12.5 (14.3) | 390 | 8x12.5 | 65 | 480 | 10.5 |
| 12.5 (14.3) | 470 | 8x12.5 | 55 | 520 | 12.0 |
| 12.5 (14.3) | 560 | 8x12.5 | 45 | 570 | 13.5 |
| 12.5 (14.3) | 680 | 8x12.5 | 40 | 620 | 16.0 |
| 16 (18.4) | 330 | 8x16 | 70 | 450 | 9.0 |
| 16 (18.4) | 390 | 8x16 | 60 | 490 | 10.5 |
| 16 (18.4) | 470 | 8x16 | 50 | 530 | 12.0 |
| 16 (18.4) | 560 | 8x16 | 45 | 570 | 13.5 |
| 16 (18.4) | 680 | 8x16 | 40 | 620 | 16.0 |
| 20 (23) | 470 | 10x20 | 50 | 570 | 12.0 |
| 20 (23) | 560 | 10x20 | 45 | 610 | 13.5 |
| 20 (23) | 680 | 10x20 | 40 | 660 | 16.0 |
| 20 (23) | 820 | 10x20 | 35 | 710 | 19.5 |
| 25 (29) | 680 | 10x25 | 40 | 660 | 16.0 |
| 25 (29) | 820 | 10x25 | 35 | 710 | 19.5 |
| 25 (29) | 1000 | 10x25 | 30 | 760 | 22.0 |
| 35 (41) | 1000 | 12.5x41 | 30 | 760 | 22.0 |
| 35 (41) | 1200 | 12.5x41 | 28 | 810 | 24.0 |
| 35 (41) | 1500 | 12.5x41 | 25 | 860 | 27.0 |
| 35 (41) | 1800 | 12.5x41 | 22 | 900 | 30.0 |
| 50 (58) | 1500 | 16x58 | 25 | 860 | 27.0 |
| 50 (58) | 1800 | 16x58 | 22 | 900 | 30.0 |
| 50 (58) | 2200 | 16x58 | 20 | 950 | 33.0 |
| 50 (58) | 2700 | 16x58 | 18 | 1000 | 36.0 |
| 63 (73) | 2200 | 18x73 | 20 | 950 | 33.0 |
| 63 (73) | 2700 | 18x73 | 18 | 1000 | 36.0 |
| 63 (73) | 3300 | 18x73 | 16 | 1050 | 39.0 |
| 63 (73) | 3900 | 18x73 | 15 | 1100 | 42.0 |
| 80 (92) | 3300 | 20x92 | 16 | 1050 | 39.0 |
| 80 (92) | 3900 | 20x92 | 15 | 1100 | 42.0 |
| 80 (92) | 4700 | 20x92 | 13 | 1150 | 45.0 |
| 100 (115) | 3900 | 22x115 | 15 | 1100 | 42.0 |
| 100 (115) | 4700 | 22x115 | 13 | 1150 | 45.0 |
| 100 (115) | 5600 | 22x115 | 12 | 1200 | 48.0 |
Specifications subject to change without notice.
Part Numbering System
The part numbering system follows a structured format: Category Code - Series Code - Size Code - Capacitance Code - Capacitance Tolerance Code - Voltage Code - Terminal Code - Sleeve Marking Code.
Example Breakdown:
- Category Code: E (Electrolytic Capacitor)
- Type Code: S (Conductive Polymer)
- Series Code: PZ (PZ Series)
- Size Code: Refer to the size chart for corresponding dimensions (e.g., G for 16mm, H for 18mm, J for 20mm, L for 22mm).
- Capacitance Code: Represents capacitance value (e.g., 472 for 4700F).
- Capacitance Tolerance Code: M (20%).
- Voltage Code: e.g., 80V (Code 'B'), 100V (Code 'E').
- Terminal Code: e.g., Standard (Code 'A').
- Sleeve Marking Code: e.g., Black (Code 'H').
Note: Full details for each code are available in the provided technical documentation.
Soldering Recommendations
Flow Soldering (Radial Lead Type)
- Preheating: 130 20C, 30-90 sec.
- Cooling: (1-3C)/sec. (max.)
- Soldering: Approx. 260C, < 1 sec.
- Note: Rapid cooling rate should be less than 2C/sec.
Reflow Soldering (For Polymer SMD Type)
Recommended Reflow Profile parameters (T1, T2, T3, t1, t2, t3) are detailed in the provided technical documentation, with specific temperature and time ranges for preheating and peak soldering.
Reflow Soldering (For Liquid SMD Type)
Case size: 6.3-10mm:
- Preheat: 100C to 200C, max. 180 seconds.
- Peak temperature: 230-250C (depending on case size).
- Duration over 200C: 30-90 seconds (depending on case size).
- Duration over T.C: 30-40 seconds (depending on case size).
Case size: 12.5-18mm:
- Preheat: 100C to 180C, max. 150 seconds.
- Peak temperature: 230-240C (depending on case size).
- Duration over 200C: 60-90 seconds (depending on case size).
- Duration over T.C: 30-40 seconds (depending on case size).
Contact AISHi for conditions other than the allowable reflow range.
2409272202_AISHI-SPZ1CM221E08O00RAXXX_C122241.pdf
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