Product Overview
The CD288H series from Jiang Xi Lian Sheng Electronic CO.,LTD. (4321 Factory) offers a range of high-quality aluminum electrolytic capacitors designed for electronic equipment applications. These capacitors meet IEC60384 standards and are ROHS compliant. They are characterized by their reliability, long load life of 3000 hours at 105, and a wide operating temperature range of -40 to +105. The series is suitable for various voltage and capacitance requirements, making them a versatile component for industrial and electronic designs.
Product Attributes
- Brand: LSTL (Jiang Xi Lian Sheng Electronic CO.,LTD.)
- Origin: China
- Series: CD288H
- Compliance: ROHS (2002/95/EC), IEC-60384
- Construction: Polar Aluminum Electrolytic Capacitor (foil type)
- Sleeve Color: Black with white lettering
Technical Specifications
| Lian Sheng P/N | Series | Rated Voltage (V) | Capacitance (uF) | Capacitance Tolerance (%) | Case Size (mm) | Dissipation Factor Max (%) | Leakage Current (uA) 2min | Category Temp Range () | Load Life (105) |
|---|---|---|---|---|---|---|---|---|---|
| R0288H1E470D011M00 | CD288H | 25 | 47 | -20+20 | 5*11 | 14 | 11.75 | -40+105 | 3000H |
| R0288H1H220D011M00 | CD288H | 50 | 22 | -20+20 | 5*11 | 10 | 11.0 | -40+105 | 3000H |
| R0288H1H4R7D011M00 | CD288H | 50 | 4.7 | -20+20 | 5*11 | 10 | 3.0 | -40+105 | 3000H |
| R0288H1V470D011M00 | CD288H | 35 | 47 | -20+20 | 5*11 | 12 | 16.45 | -40+105 | 3000H |
| R0288H1C101D011M00 | CD288H | 16 | 100 | -20+20 | 5*11 | 16 | 16.0 | -40+105 | 3000H |
| R0288H1E101D011M00 | CD288H | 25 | 100 | -20+20 | 5*11 | 14 | 25.0 | -40+105 | 3000H |
| R0288H1A100D011M00 | CD288H | 100 | 10 | -20+20 | 5*11 | 8 | 10.0 | -40+105 | 3000H |
| R0288H1E221E9R0M00 | CD288H | 25 | 220 | -20+20 | 6*9 | 14 | 55.0 | -40+105 | 3000H |
| R0288H1C221A011M00 | CD288H | 16 | 220 | -20+20 | 6*11 | 16 | 35.2 | -40+105 | 3000H |
| R0288H1L101A011M00 | CD288H | 35 | 100 | -20+20 | 6*11 | 12 | 35.0 | -40+105 | 3000H |
| R0288H1H470A011M00 | CD288H | 50 | 47 | -20+20 | 6*11 | 10 | 23.5 | -40+105 | 3000H |
| R0288H1C471F012M00 | CD288H | 16 | 470 | -20+20 | 8*12 | 16 | 75.2 | -40+105 | 3000H |
| R0288H1E471F012M00 | CD288H | 25 | 470 | -20+20 | 8*12 | 14 | 117.5 | -40+105 | 3000H |
| R0288H1H101F012M00 | CD288H | 50 | 100 | -20+20 | 8*12 | 10 | 50.0 | -40+105 | 3000H |
| R0288H1C102F016M00 | CD288H | 16 | 1000 | -20+20 | 8*16 | 16 | 160.0 | -40+105 | 3000H |
| R0288H1E681F016M00 | CD288H | 25 | 680 | -20+20 | 8*16 | 14 | 170.0 | -40+105 | 3000H |
| R0288H1E471G012M00 | CD288H | 25 | 470 | -20+20 | 10*12 | 14 | 117.5 | -40+105 | 3000H |
| R0288H1E681G016M00 | CD288H | 25 | 680 | -20+20 | 10*16 | 14 | 170.0 | -40+105 | 3000H |
| R0288H1E102G017M00 | CD288H | 25 | 1000 | -20+20 | 10*17 | 14 | 250.0 | -40+105 | 3000H |
| R0288H1V471G017M00 | CD288H | 35 | 470 | -20+20 | 10*17 | 12 | 164.5 | -40+105 | 3000H |
| R0288H1C152G020M00 | CD288H | 16 | 1500 | -20+20 | 10*20 | 16 | 240.0 | -40+105 | 3000H |
| R0288H1H471G020M00 | CD288H | 50 | 470 | -20+20 | 10*20 | 10 | 235.0 | -40+105 | 3000H |
| R0288H1V102G020M00 | CD288H | 35 | 1000 | -20+20 | 10*20 | 12 | 350.0 | -40+105 | 3000H |
| R0288H1E222W020M00 | CD288H | 25 | 2200 | -20+20 | 12.5*20 | 16 | 550.0 | -40+105 | 3000H |
| R0288H1H102W025M00 | CD288H | 50 | 1000 | -20+20 | 12.5*20 | 10 | 500.0 | -40+105 | 3000H |
| R0288H1C472L025M00 | CD288H | 16 | 4700 | -20+20 | 16*25 | 22 | 752.0 | -40+105 | 3000H |
| R0288H2G4R7F012M00 | CD288H | 400 | 4.7 | -20+20 | 8*12 | 20 | 47.6 | -40+105 | 3000H |
| R0288H2W100G017M00 | CD288H | 450 | 10 | -20+20 | 10*17 | 20 | 145.0 | -40+105 | 3000H |
| R0288H2G220W020M00 | CD288H | 400 | 22 | -20+20 | 12.5*20 | 20 | 186.0 | -40+105 | 3000H |
| R0288H2G330W020M00 | CD288H | 400 | 33 | -20+20 | 12.5*20 | 20 | 274.0 | -40+105 | 3000H |
| R0288H2G470W020M00 | CD288H | 400 | 47 | -20+20 | 12.5*20 | 20 | 386.0 | -40+105 | 3000H |
| R0288H2G470L020M00 | CD288H | 400 | 47 | -20+20 | 16*20 | 20 | 386.0 | -40+105 | 3000H |
| R0288H2G560W025M00 | CD288H | 400 | 56 | -20+20 | 12.5*25 | 20 | 458.0 | -40+105 | 3000H |
| R0288H2G470L025M00 | CD288H | 400 | 47 | -20+20 | 16*25 | 20 | 386.0 | -40+105 | 3000H |
| R0288H2G680L025M00 | CD288H | 400 | 68 | -20+20 | 16*25 | 20 | 554.0 | -40+105 | 3000H |
| R0288H2G820L025M00 | CD288H | 400 | 82 | -20+20 | 16*25 | 20 | 666.0 | -40+105 | 3000H |
| R0288H2G101L030M00 | CD288H | 400 | 100 | -20+20 | 16*30 | 20 | 810.0 | -40+105 | 3000H |
| R0288H2G101M025M00 | CD288H | 400 | 100 | -20+20 | 18*25 | 20 | 810.0 | -40+105 | 3000H |
| R0288H2G121M030M00 | CD288H | 400 | 120 | -20+20 | 18*30 | 20 | 970.0 | -40+105 | 3000H |
| R0288H2G151M032M00 | CD288H | 400 | 150 | -20+20 | 18*32 | 20 | 1210 | -40+105 | 3000H |
Electrical Characteristics
| Item | Test Method | Specification |
|---|---|---|
| Rated voltage | See specification of this series | 6.3V~500V |
| Capacitance | 120Hz12Hz, 0.5Vrms+0.5VDC2.0VDC | -20%+20% (M) |
| Dissipation Factor (tg) (20 , 120Hz) | See specification of this series | Varies by UR (e.g., 0.24 for 6.3V, 0.10 for 50V, 0.08 for 100V) |
| Leakage Current (MAX) (at 20 after 2 minutes) | I0.01CV or 3uA whichever is greater (6.3-100Vdc); I0.02CV+10A (160-400Vdc); I 0.03CV + 10A (450-500Vdc) | Calculated based on I=Leakage current (A), V=Rated voltage (V), C=Nominal capacitance (F) |
| Load Life (105) | 105, rated ripple current applied for 3000 hours | Leakage current Initial specified value; tg 200% of initial; Capacitance change 20% of initial |
| Shelf Life (105) | 1000 hours at 105 without voltage | Leakage current 200% of initial; tg 200% of initial; Capacitance change 20% of initial |
| Temperature Characteristics | -40, -25, 20, 105 | Capacitance change: 20% of initial; Dissipation Factor: Less than specified value |
| Surge Test | Rated surge voltage applied for 305 sec, repeated for 1000 cycles | Capacitance change: 20% of initial; Dissipation factor: < 200% of initial; Leakage current: Within initial specified value |
Mechanical Characteristics
| Item | Test Method | Specification |
|---|---|---|
| Lead Strength (Tensile) | 10 seconds constant tensile force | 0.5kg (d0.45mm), 1.0kg (0.5-0.8mm), 2.0kg (0.8-d1.25mm) for wire lead; 2.0kg for snap-in |
| Lead Strength (Bending) | Axial load applied, rotated from vertical to horizontal and back | 0.25kg (d0.45mm), 0.5kg (0.5-0.8mm), 1.0kg (0.8d1.25mm) for wire lead; 1.0kg (S1), 2.5kg (S>1) for snap-in |
| Vibration Resistance | 10-55Hz, 1.5mm amplitude, 2 hours in 3 directions | Appearance: No abnormal; Capacitance change: 5% of initial |
| Solder Ability | Dipped in solder at 260C 5C for 20.5 seconds | Solder alloy covers 95% or more of dipped lead surface |
Reliability
| Item | Test Method | Specification |
|---|---|---|
| Soldering Heat Resistance | Immersed in solder bath at 270C 5C for 101 seconds | No visible damage or leakage; Capacitance change: 5% of initial; Tan S: Less than specified; Leakage current: Less than specified |
| Damp Heat (Steady State) | 40C2, 90%-95% RH for 2408 hours | Capacitance change: 5% of initial; Tan S: Less than specified; Leakage current: Less than specified |
| Load Life | 3000 hours continuous DC rated voltage at 105 | Judgment standard according to series requirement |
| Shelf Life | 1000 hours at 105 without voltage | Measurements after 24 hours at room temp. |
| Storage at Low Temperature | -25 3 for 964 hours | Capacitance change: 20% of initial; Dissipation Factor: Less than specified; Leakage current: Less than specified; Appearance: No abnormal |
| Pressure Relief (Explosion Proof Test) | AC Test: 0.7x Rated DC voltage or 250V AC (lower); DC Test: 1A DC max (D22.4mm), 16A DC max (D>22.4mm) | Pressure relief device shall open to prevent explosion; Capacitance change: 20% of initial; Dissipation factor: < 200% of initial; Leakage current: Within initial specified value |
Material Composition
| No. | Part Name | Material | Main Supplier |
|---|---|---|---|
| 1 | Anode Foil (+) | Aluminum | HongYuan, Haixing |
| 2 | Cathode Foil (-) | Aluminum | Feile |
| 3 | Electrolytic Paper | Wood pulp, cotton pulp paper | Kaien |
| 4 | Aluminum Case | 99.5% Aluminum | Anqili/Aoxin |
| 5 | Sleeve | PET (Poly vinyl chloride) | Yunling |
| 6 | Guide Pin | Aluminum+CP wire | Xingsheng |
| 7 | Colloidal Particles | Synthetic rubber EPT | Lianhuaxin |
| 8 | Electrolyte | Glycol+organic acid salt | Haotai |
Guidelines For Using Aluminum Electrolytic Capacitor
- Polarity: DC electrolytic capacitors are polarized. Ensure correct polarity to avoid damage. Not for AC application.
- Bipolar Capacitors: For pulse and polarity reverse circuits only. Not for pure AC or high ripple current.
- Operating Voltage: Do not exceed rated voltage. Recommended working voltage is 70-80% of rated voltage for extended life.
- Ripple Current: Do not exceed permissible ripple current to prevent overheating and damage. Generally not more than 80% of rated current.
- Fast Charge/Discharge: Use specially designed capacitors for circuits with frequent charge/discharge cycles.
- Operating Temperature: Characteristics vary with temperature. Lower temperatures ensure longer life.
- Temperature and Life: Life doubles for every 10 decrease in temperature. Formula: L2 = L1 * 2^((T1-T2)/10).
- Operating Frequency: Capacitance decreases and tg increases with frequency.
- Long Storage: Apply rated DC voltage treatment before use after long storage to restore leakage current and withstand voltage.
- Case Insulation: Capacitor case is not insulated from the cathode terminal. Insulation measures are required at the mounting point if case insulation is needed.
- Terminal Force: Do not apply excessive force to terminals or leads to prevent breakage or internal damage.
- Circuit Board Cleaning: Use recommended solvents (methanol, isopropanol, etc.). Avoid halogenated solvents.
- Soldering: Maintain distance from plastic sleeve. Solder bath temperature within 260, duration not exceeding 10 seconds.
- Hole Layout: Ensure mounting hole spacing matches lead spacing on PCBs to avoid stress on leads. Consider solder splash prevention.
2410121256_LSTL-R0288H2W100G017M00_C7421173.pdf
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