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quality Polar Aluminum Electrolytic Capacitor LSTL R0288H1E222W020M00 with 3000 Hours Load Life at 105 Celsius factory
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quality Polar Aluminum Electrolytic Capacitor LSTL R0288H1E222W020M00 with 3000 Hours Load Life at 105 Celsius factory
>
Specifications
Lifetime:
3000hrs@105℃
Operating Temperature:
-40℃~+105℃
Capacitance:
2200uF
Height - Seated (Max):
20mm
Voltage Rating:
25V
Pin Spacing:
5mm
Diameter:
12.5mm
Ripple Current:
1.375A
Tolerance:
±20%
Mfr. Part #:
R0288H1E222W020M00
Package:
Through Hole,D12.5xL20mm
Key Attributes
Model Number: R0288H1E222W020M00
Product Description

Product Overview

The CD288H series from Jiang Xi Lian Sheng Electronic CO.,LTD. (4321 Factory) offers a range of polar aluminum electrolytic capacitors designed for electronic equipment. These capacitors are compliant with ROHS directives and meet IEC60384 quality standards. They are suitable for applications requiring stable performance with a category temperature range of -40C to +105C and a load life of 3000 hours at 105C. The series features a wide range of voltage ratings from 6.3V to 500V and capacitance values.

Product Attributes

  • Brand: LSTL (Trademark)
  • Manufacturer: Jiang Xi Lian Sheng Electronic CO.,LTD. (4321 Factory)
  • Series: CD288H
  • Compliance: ROHS (2002/95/EC), IEC60384
  • Capacitor Type: 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 Temperature Range (C) Load Life (105C)
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
Item Characteristic Test Method Specification
3. Characteristics
Operating Temperature Range -40~+105
Rated Working Voltage Range 6.3V~500V
Capacitance Tolerance -20%+20% (M) (20, 120Hz)
Dissipation Factor (MAX) (tg) (20, 120Hz) UR(V) 6.3:0.24, 10:0.20, 16:0.16, 25:0.14, 35:0.12, 50:0.10, 63:0.08, 100:0.08, 160:0.15, 200:0.15, 250:0.15, 350:0.20, 400:0.20, 450:0.20, 500:0.20
Impedance Ratio (MAX) Z(-40)/ Z(+20) (120Hz) Rated Voltage(Vdc) 6.3to10:7, 16:5, 25to100:8, 160to250:8, 350to450:8, 500:10
Leakage Current (MAX) (at 20 after 2 minutes) 6.3to100Vdc: I0.01CV or 3uA (whichever is greater)
160to400Vdc: I0.02CV + 10A
450to500Vdc: I 0.03CV + 10A
Load Life 105, 3000h Complied to the RoHS directive.
Shelf Life 105, 1000h
4. Electrical Characteristics
Rated Voltage See specification of this series
Capacitance Measuring frequency: 120Hz12Hz
Measuring voltage: 0.5Vrms+0.5VDC2.0VDC
Dissipation Factor See specification of this series
Leakage Current DC leakage current shall be measured after 1~2 minutes application of the DC rated working voltage through the 1000 resistor.
Temperature Characteristics Capacitance change: Within 20% of initial measured value.
Dissipation Factor: Less than specified value.
Step 1: 202 for 30 minutes.
Step 2: -403 or -253 for 2 hours.
Step 3: 202 for 15 minutes.
Step 4: 1052 for 2 hours.
Low temperature Impedance stability: Less than specified value.
Surge Test Capacitance change: Within 20% of initial specified value.
Dissipation factor: Less than 200% of initial specified value.
Leakage current: Within initial specified value.
Rated surge voltage applied for 305 sec, discharge for 50.5 min. Cycle repeated for 1000 times.
5. Mechanical Characteristics
Lead Strength (Tensile) Wire lead terminal: d(mm) 0.45: 0.5kg, 0.50.8: 1.0kg, 0.8d1.25: 2.0kg.
Snap-in terminal: 2.0kg.
Lead Strength (Bending) Wire lead terminal: d(mm) 0.45: 0.25kg, 0.50.8: 0.5kg, 0.8d1.25: 1.0kg.
Snap-in terminal: Cross section area (m) 1: 1.0kg, S>1: 2.5kg.
Vibration Resistance Capacitance: stable. Appearance: no abnormal.
Capacitance change: Within 5% of initial measured value.
Frequency: 10 to 55 Hz, Amplitude: 1.5mm. Vibrated in three mutually perpendicular directions for 2 hours each.
Solder Ability Solder alloy shall cover 95% or more of dipped lead surface. Solder bath: 260C 5C for 20.5 seconds. Dipping depth: 1.52.0mm.
6. Reliability
Soldering Heat Resistance No visible damage or leakage of electrolyte.
Capacitance change: Within 5% of initial measured value.
Tan S: Less than specified value.
Leakage current: Less than specified value.
Solder bath: 270C 5C for 101 seconds. Distance from case: 1.5mm.
Damp Heat (Steady State) Capacitance change: Within 20% of initial measured value.
Tan S: Less than specified value.
Leakage current: Less than specified value.
40C2C and 90% to 95% relative humidity for 2408 hours.
Load Life Standard of judgment is according to this series requirement. 105, rated DC voltage applied for 3000 hours. Measurements after 24 hours at room temperature and 2 minutes of rated DC voltage application.
Shelf Life 105 for 1000 hours without voltage application. Measurements after 24 hours at room temperature and 2 minutes of rated DC voltage application.
Storage at Low Temperature Capacitance change: Within 20% of initial measured value.
Dissipation Factor: Less than specified value.
Leakage current: Less than specified value.
Appearance: no abnormal.
-25 3 for 964 hours. Followed by 16+ hours in standard atmospheric conditions.
Pressure Relief (Explosion Proof) Pressure relief device shall open. AC Test: Applied voltage not exceeding 0.7 times rated DC voltage or 250V AC (whichever is lower) at 50/60Hz.
DC Test: Applied inverse voltage with specified current (1A DC max for D22.4mm, 16A DC max for D>22.4mm). Applies to capacitors with diameter 6mm.
Rated Voltage and Surge Voltage RV (V) 6.3, S.V (V) 8; RV (V) 10, S.V (V) 13; RV (V) 16, S.V (V) 20; RV (V) 25, S.V (V) 32; RV (V) 35, S.V (V) 44; RV (V) 50, S.V (V) 63; RV (V) 63, S.V (V) 79; RV (V) 80, S.V (V) 100; RV (V) 100, S.V (V) 125; RV (V) 160, S.V (V) 200; RV (V) 200, S.V (V) 250; RV (V) 250, S.V (V) 300; RV (V) 350, S.V (V) 400; RV (V) 400, S.V (V) 450; RV (V) 450, S.V (V) 500; RV (V) 500, S.V (V) 550.
NO Part Name Material Name Main Supplier
1 Anode Foil Aluminum Low Voltage: HongYuan, Haixing; High Voltage: Haixing
2 Cathode Foil Aluminum Feile
3 Separator paper Wood pulp, cotton pulp paper Kaien
4 Aluminum case 99.5% Aluminum Anqili/Aoxin
5 Sleeve PET (Polyvinyl 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

  1. Polarity: DC electrolytic capacitors are polarized. Ensure correct polarity to avoid short circuits or damage. Not for AC applications. Use bipolar capacitors when polarity is uncertain.
  2. Bipolar Capacitors: Suitable for pulse and polarity reverse circuits, but not for pure AC or high ripple current.
  3. Operating Voltage: Do not exceed rated voltage. Recommended working voltage is 70-80% of rated voltage for extended life.
  4. Ripple Current: Do not exceed permissible ripple current to prevent overheating, capacitance reduction, and damage. Generally, not more than 80% of rated current.
  5. Fast Charge/Discharge Circuits: Use specially designed capacitors for circuits with frequent charge/discharge cycles to prevent damage and premature failure.
  6. Operating Temperature: Capacitor characteristics vary with temperature. Lower temperatures generally ensure longer life.
  7. Temperature and Life Relationship: Life is approximately doubled for every 10C reduction in operating temperature.
  8. Operating Frequency: Capacitance decreases and dissipation factor (tg) increases with rising frequency.
  9. Long-Term Storage: Capacitors stored for extended periods may have increased leakage current and reduced voltage withstanding. Apply rated DC voltage gradually before use.
  10. Case Insulation: The capacitor case is not insulated from the cathode terminal. Ensure insulation at the mounting point if required.
  11. Terminal Force: Do not apply excessive force to terminals or leads to prevent breakage or internal damage.
  12. Circuit Board Cleaning: Use recommended cleaning solvents (e.g., methanol, isopropanol) and avoid halogenated solvents that can damage the capacitor.
  13. Soldering: Maintain distance from the plastic sleeve. Recommended solder bath temperature is within 260C for no more than 10 seconds.
  14. PCB Hole Layout: Ensure hole spacing matches lead spacing to avoid stress on leads. Consider hole layout to prevent solder splashing onto the sleeve.

2410121256_LSTL-R0288H1E222W020M00_C7421169.pdf

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