SPA Capacitors. obsolete. New! Extended Range Ratings, 20% More Capacitance. Highlights

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1 SPA Solid Polymer Aluminum Surface Mount New! Extended Range Ratings, 20% More Capacitance Chip and SMT Highlights Capacitance Range: 2.2 µf to 390 µf Ripple current ratings up to 3.5Arms at 00 khz and 05 C Low Impedance Ultra-Low E.S.R.; 0 00 khz -55 to 05 C operating temperature Solid polymer aluminum capacitors combine the high capacitance capability of an electrolytic component with the high frequency performance of film capacitors. When the need for low impedance at high frequency is critical for your design, one SPA chip is capable of replacing several liquid electrolyte aluminum or tantalum capacitors connected in parallel. This is due to the ultra-low e.s.r. which results in significantly lower impedance than either aluminum or tantalum capacitors at frequencies of 00 khz and above. There is no longer a need to stack capacitors to lower the impedance at high frequency. The low e.s.r. and high Voltage Range: 2.0 Vdc to 6 Vdc Solid electrolyte for extended life Footprint Compatible with D and E Case Tantalum Flat Z and E.S.R. vs. temperature Ignition free Filtering power of 3 or more tantalum chips and 50 year life capacitance make them ideal for bypassing high frequency noise, and for switching frequency filtering in DC/ DC conversion. SPA capacitors are packaged in a molded resin case with the same footprint (7.3x4.3 mm) as the industry standard tantalum D and E case sizes. The solid electrolyte results in a capacitor with stable impedance and equivalent series resistance over the entire operating temperature range and they have more than twice the ripple current handling capability of tantalum capacitors. In addition, the solid electrolyte delivers a typical expected operating life of more than 50 years, and it is ignition free. CDE CDE SPA SPA Type Type ESRE ESRE ESRL ESRH* ESRL Dimensions Dimensions (mm) (mm) 7.3x4.3x4. 7.3x4.3x x4.3x x4.3x3. 7.3x4.3x 7.3x4.3x 7.3x4.3x. 7.3x4.3x x4.3x. & 4. Capacitance Range Range (µf) (µf) Max. ESR at at 00 khz (Ω) Max.Ripple Ripple Current Current at 00 at 00 khz khz (Arms) (Arms) *Operates to 25 C obsolete cdenb@cornell-dubilier.com.035

2 Chip and SMT SPA Solid Polymer Aluminum Applications Motherboard By-Pass Switching Supply Input/Output Filters Power Supply Decoupling High Frequency Noise Reduction Laptop LCD Displays Automotive Digital Equipment Portable Electronic Equipment Markings Capacitance ("R" = Decimal Point) Ordering Information CDE Type Lot Code Polarity Stripe (Anode) + D = 2.0 V E = 2.5 V G = 4.0 V J = 6.3 V 4R7 M 6 R CAPACITANCE CODE 4R7 = 4.7 µf 220 = 22 µf 0 = 00 µf CAPACITANCE TOLERANCE M = ± 20% W.V. Code WVDC CODE 02 = 2.0 Vdc 0E = 2.5 Vdc 04 = 4.0 Vdc 06 = 6.3 Vdc K = 8.0 V B = 2.5 V C = 6.0 V PACKAGING CODE R = Tape & Reel (mm Ht.): 3500 pcs/ reel (2.8mm Ht.): 2000 pcs/ reel ESRE: 2000 pcs/reel ESRL: 3500 pcs/reel B = Bulk Quantity (00 pc multiples) 08 = 8.0 Vdc 2 = 2.5 Vdc 6 = 6.0 Vdc cdenb@cornell-dubilier.com

3 Surface Mount Outline Drawing SPA Solid Polymer Aluminum Chip and SMT Ratings Part Maximum Maximum Case Part Maximum Maximum Case Capacitance Number E.S.R Ripple Current Height Capacitance Number E.S.R Ripple Current Height (Tape (Tape& Reel) 00kHz/20 C 00kHz/20 C 00kHz/05 C H (µf) (Ω) (Amps) ( ±0. (mm) mm ) Vdc Vdc 00 0M02R ± M02R 2M02XR ±. 80 8M02R ± M02R ± M02XR Vdc ± M0ER Vdc M0ER 820M0ER ± M0EXR ±. 80 8M0ER M0ER ± M0ER Vdc ± M04R 22M0EXR ± M04R Vdc M04R Vdc ± M06R 820M04XR ±. 20 2M04R ± M06R M04XR ± M06R Vdc M06R 00M06R ± M06R 220M06R ± M06R Vdc.6 ± R2M08R 470M06R ± M08R 680M06XR ±. 00 0M06R ± M08R 2M06XR ± M08R Vdc M08R 8R2M08R ± 5 50M08R Vdc.3 ± R7M2R 220M08R ± M2R 330M08R ± M08R ± M2R M2R Vdc R7M2R ±. 0 00M2R Vdc.0 ± R2M6R 50M2R ± R7M6R 220M2R ± R8M6R Vdc R2M6R 2R2M6R ± R7M6R ±. For other 6.8 frequencies 6R8M6R use the ripple current frequency multipliers..0 ± R2M6R ±. Dimensions in mm cdenb@cornell-dubilier.com.037

4 Chip and SMT SPA Solid Polymer Aluminum ESRE Surface Mount, High Capacitance Outline Drawing H = 4. ±.2 Dimensions in mm Ratings Part Maximum Maximum Part Maximum Maximum Capacitance Number E.S.R Ripple Current Capacitance Number E.S.R. Ripple Current (Tape & Reel) 00kHz/20 C 00kHz/05 C (µf) (Tape & Reel) 00kHz/20 C (Ω) 00kHz/05 C (Amps) (µf) 2.0 Vdc (Ω) (Amps) 270 ESRE27M02R 2.0 Vdc ESRE33M02R ESRE27M02R ESRE39M02XR ESRE33M02R 2.5 Vdc ESRE22M0ER 2.5 Vdc ESRE27M0ER ESRE22M0ER ESRE33M0EXR ESRE27M0ER 4.0 Vdc ESRE8M04R Vdc 220 ESRE22M04XR ESRE8M04R 6.3 Vdc ESRE5M06R 6.3 Vdc ESRE8M06XR ESRE5M06R Vdc 00 ESRE0M08R 8.0 Vdc ESRE0M08R cdenb@cornell-dubilier.com

5 Outline Drawing SPA Solid Polymer Aluminum ESRL Surface Mount, Very Low Profile (.mm High) Chip and SMT Ratings Part Maximum Maximum Part Maximum Maximum Capacitance Number E.S.R Ripple Current Capacitance (Tape Number & Reel) 00kHz/20 C E.S.R. 00kHz/05 C Ripple Current (µf) (Tape & Reel) 00kHz/20 C (Ω) 00kHz/05 C (Amps) (µf) 2.0 Vdc (Amps) 68 ESRL680M02R 2.0 Vdc Vdc ESRL680M02R ESRL560M0ER Vdc 39 ESRL390M04R ESRL560M0ER ESRL470M04R Vdc 33 ESRL330M06R ESRL390M04R Vdc 22 ESRL220M08R6.3 Vdc Vdc 33 ESRL330M06R ESRL50M2R Vdc 22 ESRL220M08R Dimensions in mm OBSOLETE cdenb@cornell-dubilier.com.039

6 Chip and SMT SPA Solid Polymer Aluminum Specifications Operating Temperature Range; -55 C to +05 C, at 00% rated voltage Surge Voltage; 25% of the rated working Vdc Capacitance Range; 2.2 µf to 390 µf Capacitance Tolerance; ±20% at 20 Hz and +20 C DC Leakage Current (DCL); After a two minute application of the rated working voltage at +20 C: 2V - 4V: I 0.06CV 6.3V - 6V: I 0.04CV or 3µA (whichever greater) Dissipation Factor (DF); The ratio of the capacitorís equivalent series resistance to its reactance at 20Hz and +20 C. ESRL & ( mm ht.): D.F. is.06 Max. ESRE & (2.8 mm ht.): D.F. is.0 Max. Resistance to Soldering Heat; Heat the capacitors at 235 C in an oven for 200 seconds. The capacitors will meet the following limits after stabilizing at 20 C: C = ±0% of the initial measured value DF the initial specified value Moisture Resistance; After 500 hours storage at +60 C and 90 to 95% R.H. without load, the capacitor will meet the following limits: C = +70%/-20% of the initial measured value (2.0 Vdc, 2.5 Vdc), +60%/-20% of the initial measured value (4.0 Vdc), +50%/-20% of the initial measured value (6.3 Vdc), +40%/-20% of the initial measured value (all other voltages) DF two times the initial specified value Life Test; Apply rated DC working voltage at 05 C for 000 hours, and then stabilize them to +20 C. will meet the following limits: C = ±0% of the initial measured value DF the initial specified value Shelf Life Test; Shelf life is typically 5 to 0 years. Accelerated test: after 500 hours at 05 C, capacitors will meet the following limits after stabilization at 20 C: C = ±0% of the initial measured value DF the initial specified value Vibration; No abnormal change shall occur to capacitors that have been soldered (and attached) to a board when subjected to a vibration of.5 mm amplitude that is varied from 0 Hz to 2000 Hz in 20 min. cycles. The test duration is 2 hours for each right angle direction (total 6 hours). Capacitance is monitored during the last cycle of the test for stablilty. Shear Test; No damage shall be visible after subjecting a mounted capacitor to a side force of 5 N for 0 seconds cdenb@cornell-dubilier.com

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