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Document overview

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Technical content

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 One world. One KEMET Benefits

  • H ighest energy per unit volume
  • S table capacitance across temperature and voltage
  • N o aging effects L ow ESR values H igh frequency capacitance retention H igh ripple handling
  • 1 00% accelerated steady state aging 00% surge current tested 00% thermal shock tested (T545 series only) H alogen-free epoxy/RoHS compliant

Applications

Typical applications include enterprise storage, networking, server, mobile, client storage, and client computing. Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP®), 6.3 – 35 VDC Overview KEMET's Organic Capacitors (KO-CAP) are preferred solutions for applications requiring power loss protection (hold-up) or maximum power efficiency of a circuit when board space is limited. Desired benefits include high energy density, stable capacitance with applied voltage and temperature, and no aging effects. The conductive polymer cathode of these solid electrolytic capacitors provide very low ESR and higher capacitance retention at high frequencies. Unlike liquid electrolyte-based capacitors, KEMET's polymer capacitors have a very long operational life and high ripple current capabilities. Capacitors from T520, T521 and T523 series are commonly used in these applications. The T545 and T548 series were introduced to meet specific needs for a subsegment of solid state drives. T520/T521/T545 T523/T548

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Environmental Compliance

  • RoHS compliant (6/6) according to Directive 2002/95/EC when ordered with 100% Sn solder or Ni-Pd-Au
  • Halogen-free
  • Epoxy compliant with UL94 V–0 K-SIM For a detailed analysis of specific part numbers, please visit ksim.kemet.com to access KEMET’s K-SIM software. KEMET K-SIM is designed to simulate behavior of components with respect to frequency, ambient temperature, and DC bias levels.

Ordering Information

T 548 V 157 M 016 A T E050 Capacitor Class Series Case Size Capacitance Code (pF) Capacitance Tolerance Rated Voltage (VDC) Failure Rate/ Design Termination Finish ESR Packaging (C-Spec) T = Tantalum 520 = Low Voltage 521 = High Voltage 523 = Facedown Terminal 545 = High Energy 548 = High Energy, Facedown Terminal B H J M O T V W X Y First two digits represent significant figures. Third digit specifies number of zeros. M = ±20% 006 = 6.3 010 = 10 016 = 16 020 = 20 035 = 35 A = N/A T = 100% Matte Tin (Sn) plated P* = Ni-Pd-Au plated ESR in mΩ Blank = 7" Reel 7280 = 13"Reel * P termination only available on T523/T548 part numbers Performance Characteristics Item Performance Characteristics Operating Temperature −55°C to 85°C/105°C (Refer to part number in Table 1 for maximum temperature rating) Rated Capacitance Range 22 μF – 1,500 μF at 120 Hz/25°C Capacitance Tolerance M Tolerance (20%) Rated Voltage Range 6.3 – 35 VDC DF (120 Hz) Refer to part number in Table 1 for electrical specification ESR (100 kHz) Refer to part number in Table 1 for electrical specification Leakage Current ≤ 0.1 CV (µA) at rated voltage after 5 minutes (Refer to part number in Table 1 for electrical specification)

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Qualification Test Condition Characteristics Endurance 85°C or 105°C at rated voltage, 2,000 hours Δ C/C Within −20/+10% of initial value DF Within initial limit DCL Within 1.25 x initial limit ESR Within 2.0 x initial limit Storage Life 85°C or 105°C at 0 volts, 2,000 hours Δ C/C Within −20%/+10% of initial value DF Within initial limits DCL Within 1.25 x initial limit ESR Within 2.0 x initial limit Humidity 60°C, 90% RH, No Load, 500 hours Δ C/C Within −5% /+35% of initial value DF Within initial limit DCL Within 5.0 x initial limit ESR Within 2.0 x initial limit Temperature Stability Extreme temperature exposure at a succession of continuous steps at +25ºC DF IL IL IL 1.2 x IL 1.5 x IL IL DCL IL N/A IL 10 x IL 10 x IL IL Surge Voltage 85°C or 105°C, 1.32 x rated voltage, 1,000 cycles** Δ C/C Within −20/+10% of initial value DF Within initial limits DCL Within initial limits ESR Within initial limits Mechanical Shock/ Vibration MIL-STD-202, Method 213, Condition I, 100G peak Δ C/C Within ±10% of initial value (Within initial limits for T527 Series) DF Within initial limits DCL Within initial limits * IL = initial limit ** Refer to Table 1 - Ratings & Part Number Reference for temperature classification. If temperature classification is 85°C, the 105°C step is not performed for the temperature stability test.

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Dimensions – Millimeters (Inches) Metric will govern For T520/T521/T545 H X T B B F A L R P SIDE VIEW ANODE (+) END VIEW BOTTOM VIEWCATHODE (-) END VIEW W S S Termination cutout at KEMET's option, either end Glue pad shape/design at KEMET's option KEMET EIA L W H F ±0.1 (±0.004) S ±0.3 (±0.012) B ±0.15 (Ref) ±0.006 X (Ref) P (Ref) T (Ref) A (Min) Total Weight (mg) T 3528-12 3.5±0.2 (0.138±0.008) 2.8±0.2 (0.110±0.008) 1.1±0.1 (0.043±0.004) 2.2 (0.087) 0.80 (0.032) N/A 0.05 (0.002) N/A 0.13 (0.005) 1.9 (0.075) 55 M 3528-15 3.5±0.2 (0.138±0.008) 2.8±0.2 (0.110±0.008) 1.4±0.1 (0.055±0.004) 2.2 (0.087) 0.8 (0.031) N/A 0.05 (0.002) N/A 0.13 (0.005) 1.1 (0.043) 98 B 3528-21 3.5±0.2 (0.138±0.008) 2.8±0.2 (0.110±0.008) 1.9±0.2 (0.075±0.008) 2.2 (0.087) 0.80 (0.032) 0.4 (0.016) 0.10±0.10 (0.004±0.004) 0.5 (0.020) 0.13 (0.005) 1.9 (0.075) 95 W 7343-15 7.3±0.3 (0.287±0.012) 4.3±0.3 (0.169±0.012) 1.4±0.1 (0.055±0.004) 2.4 (0.094) 1.30 (0.051) N/A 0.05 (0.002) N/A 0.13 (0.005) 3.6 (0.142) 223 V 7343-20 7.3±0.3 (0.287±0.012) 4.3±0.3 (0.169±0.012) 1.9±0.1 (0.075±0.004) 2.4 (0.094) 1.30 (0.051) N/A 0.05 (0.002) N/A 0.13 (0.005) 3.6 (0.142) 274 Y 7343-40 7.3 ±0.3 (0.287±0.012) 4.3±0.3 (0.169±0.012) 3.8±0.2 (0.150±0.008) 2.4 (0.094) 1.3 (0.051) 0.5 (0.020) 0.10±0.10 (0.004±0.004) 1.7 (0.067) 0.13 (0.005) 3.8 (0.150) 494 X 7343-43 7.3±0.3 (0.287±0.012) 4.3±0.3 (0.169±0.012) 4.0±0.3 (0.157±0.012) 2.4 (0.094) 1.30 (0.051) 0.5 (0.020) 0.10±0.10 (0.004±0.004) 1.7 (0.067) 0.13 (0.005) 3.6 0.142) 554 J 7360-15 7.3±0.3 (0.287±0.012) 6.0±0.3 (0.236±0.012) 1.4±0.1 (0.055±0.004) 4.1 (0.161) 1.30 (0.005) 3.3 (0.130) 263 H 7360-20 7.3±0.3 (0.287±0.012) 6.0±0.3 (0.236±0.012) 1.9±0.1 (0.075±0.004) 4.1 (0.161) 1.3 (0.005) 3.3 (0.130) 385 O 7360-43 7.3±0.3 (0.287±0.012) 6.0±0.3 (0.236±0.012) 4.0±0.3 (0.157±0.012) 4.1 (0.161) 1.3 (0.005) 3.3 (0.130) 696 For T523/T548 SIDE VIEW BOTTOM VIEWEND VIEW F SS W L H KEMET EIA L W H F ±0.1 (±0.004) S ±0.3 (±0.012) Total Weight (mg) W 7343-15 7.3±0.3 (0.287±0.012) 4.3±0.3 (0.169±0.012) 1.4±0.1 (0.055±0.004) 2.4 (0.094) 1.3 (0.051) 223 J 7360-15 7.3±0.3 (0.287±0.012) 6.0±0.3 (0.236±0.012) 1.4±0.1 (0.055±0.004) 4.45 (0.175) 1.6 (0.063) 263 V 7343-20 7.3±0.3 (0.287±0.012) 4.3±0.3 (0.169±0.012) 1.9±0.1 (0.075±0.004) 2.4 (0.094) 1.3 (0.051) 274 H 7360-20 7.3±0.3 (0.287±0.012) 6.0±0.3 (0.236±0.012) 1.9±0.1 (0.075±0.004) 4.45 (0.175) 1.6 (0.063) 385

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Table 1 – Ratings & Part Number Reference

  • Bold text denotes "Under Development." Engineeiring samples available upon request.
  • Refer to Ordering Information for additional detail.
  • Energy = ½ * Nominal Cap * (Application Voltage^2 * Dropout Voltage^2)/1000; a 3 V dropout voltage was used for the calculation. Rated Voltage/ Application Voltage Case Size/ Case Height KEMET Part Number Energy (½CVa²) – (½CVd²) Nominal Capacitance Maximum DF at 25°C, 120 Hz Maximum ESR at 25°C, 100 kHz Maximum DC Leakage at 25°C, Vr, 5 min charge time Maximum Allowable Ripple Current at 45°C, 100 kHz MSL Maximum Operating Temperature VDC EIA/mm mJ µF % mΩ µA mA °C 16/12.8 3528/1.2 T521T336M016ATE070 2.6 33 10 70 52.8 1230 3 105 16/12.8 7343/1.5 T545W476M016ATE045 3.6 47 10 45 75.2 2000 3 105 16/12.8 7343/1.5 T548W686M016APE050 5.3 68 10 50 108.8 2820 4 85 16/12.8 7343/1.5 T548W107M016APE050 7.7 100 10 50 160.0 2820 4 85 20/16.0 7343/1.5 T545W476M020ATE045 5.8 47 10 45 94.0 2000 3 105 20/16.0 7343/1.5 T545W476M020ATE055 5.8 47 10 55 94.0 1810 3 105 35/28.0 7343/1.5 T548W476M035APE090 18.2 47 10 90 164.5 2100 4 85 10/9.0 7360/1.5 T520J337M010ATE070 9.1 330 10 70 330.0 1700 4 85 16/12.8 7360/1.5 T523J227M016APE100 17.0 220 10 100 352.0 2100 4 85 16/12.8 3528/2.0 T521B226M016ATE070 1.7 22 10 70 35.2 1350 3 105 20/16.0 3528/2.0 T521B226M020ATE070 2.7 22 10 70 44.0 1350 3 105 10/9.0 7343/2.0 T545V227M010ATE045 7.9 220 10 45 220.0 2040 3 105 16/12.8 7343/2.0 T545V476M016ATE045 3.6 47 10 45 75.2 2040 3 105 16/12.8 7343/2.0 T545V476M016ATE070 3.6 47 10 70 75.2 1640 3 105 16/12.8 7343/2.0 T545V107M016ATE050 7.7 100 10 50 160.0 1940 3 105 16/12.8 7343/2.0 T548V157M016APE050 11.6 150 10 50 240.0 2870 4 85 20/16.0 7343/2.0 T545V476M020ATE070 5.8 47 10 70 94.0 1640 3 105 0/9.0 7360/2.0 T520H827M010ATE055 29.5 820 10 55 820.0 1910 4 85 16/12.8 7360/2.0 T545H187M016ATE055 13.9 180 20 55 288.0 1910 3 85 16/12.8 7360/2.0 T548H337M016APE070 25.5 330 10 70 528.0 2510 4 85 16/12.8 7360/2.0 T523H477M016APE070 36.4 470 10 70 752.0 2510 4 85 10/9.0 7343/4.0 T545Y337M010ATE035 11.9 330 10 35 330.0 2630 3 105 16/12.8 7343/4.3 T545X157M016ATE040 11.6 150 10 40 240.0 2490 3 105 16/12.8 7343/4.3 T545X227M016ATE035 17.0 220 10 35 352.0 2660 3 105 16/12.8 7343/4.3 T545X337M016ATE025 25.5 330 10 25 528.0 3150 3 105 16/12.8 7360/4.3 T521O477M016ATE025 36.4 470 10 25 752.0 3470 3 105 VDC EIA/mm mJ µF % mΩ µA mA °C Rated Voltage/ Application Voltage Case Size/ Case Height KEMET Part Number Energy Nominal Capacitance Maximum DF at 25°C, 120 Hz Maximum ESR at 25°C, 100 kHz Maximum DC Leakage at 25°C, Vr, 5 min charge time Maximum Allowable Ripple Current at 45°C, 100 kHz MSL Maximum Operating Temp

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Derating Guidelines 100% 95% 90% 85% 80% 75% % Rated Voltage 70% 65% 60% 55% 50% −55 25 45 Temperature (ºC) 85 105 Recommended Application Voltage VR > 10 V Recommended Application Voltage VR ≤ 10 V Rated Voltage Recommended Application Voltage KOCAP’s are solid state capacitors that demonstrate no wearout mechanism when operated within their recommended guidelines. While the KOCAP can be operated at full rated voltage, most circuit designers seek a minimum level of assurance in long term reliability which should be demonstrated with data. A voltage derating can provide the desired level of demonstrated reliability based on industry accepted acceleration models. Since most applications do require long term reliability, KEMET recommends that designers consider a voltage derating, according the graphic above, for the maximum steady state voltage. Voltage Rating Maximum Recommended Steady State Voltage −55°C to 105°C

6.3 V ≤ Vr ≤ 10 V 90% of Vr

10 V < Vr 80% of Vr

VR = Rated Voltage

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Ripple Current/Ripple Voltage Permissible AC ripple voltage and current are related to equivalent series resistance (ESR) and the power dissipation capabilities of the device. Permissible AC ripple voltage which may be applied is limited by two criteria: a. The positive peak AC voltage plus the DC bias voltage, if any, must not exceed the DC voltage rating of the capacitor. b . The negative peak AC voltage, in combination with bias voltage, if any, must not exceed the allowable limits specified for reverse voltage. The maximum power dissipation by case size can be determined using the below table. Temperature Compensation Multipliers for Maximum Ripple Current T ≤ 45°C 45° C < T ≤ 85°C 85°C < T ≤ 105°C 1.00 0.70 0.25 T= Environmental Temperature Using the P max of the device, the maximum allowable rms ripple current or voltage may be determined. I(max) = √P max/R E(max) = Z √P max/R I = rms ripple current (amperes) E = rms ripple voltage (volts) P max = maximum power dissipation(watts) R = ESR at specified frequency (ohms) Z = Impedance at specified frequency (Ohms) Refer to part number listings for permittable Arms limits. Case Code EIA Case Code Maximum Power Dissipation (P max) mWatts at 45°C with +30°C Rise For T520/T521/T545 For T523/T548 T 3528-12 105 N/A M 3528-15 120 N/A B 3528-21 127 N/A W 7343-15 180 395 V 7343-20 187 410 Y 7343-40 241 N/A X 7343-43 247 N/A J 7360-15 200 440 H 7360-20 200 440 O 7360-43 300 N/A The maximum power dissipation rating must be reduced with increasing environmental operating temperatures. Refer to the Temperature Compensation Multiplier table for details.

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Surge Voltage Surge voltage is the maximum voltage (peak value) which may be applied to the capacitor. The surge voltage must not be applied for periodic charging and discharging in the course of normal operation and cannot be part of the application voltage. Surge voltage capability is demonstrated by application of 1,000 cycles at operating temperature. The parts are charged through a 33 Ohm resistor for 30 seconds and then discharged though a 33 Ohm resistor for each cycle. Rated Voltage (V) Surge Voltage (V) –55ºC to 105ºC 2.5 3.3 6.3 8.3 10 13.2 16 21.1 20 26.4 25 33.0 35 46.2 Reverse Voltage Polymer electrolytic capacitors are polar devices and may be permanently damaged or destroyed if connected in the wrong polarity. These devices will withstand a small degree of transient voltage reversal for short periods as shown in the below table. Temperature Permissible Transient Reverse Voltage 25°C 15% of Rated Voltage 55°C 10% of Rated Voltage 85°C 5% of Rated Voltage 105°C 3% of Rated Voltage 125°C* 1% of Rated Voltage *For series rated to 125°C

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Table 2 – Land Dimensions/Courtyard For T520/T521/T545 KEMET Metric Size Code Density Level A: Maximum (Most) Land Protrusion (mm) Density Level B: Median (Nominal) Land Protrusion (mm) Density Level C: Minimum (Least) Land Protrusion (mm) Case EIA W L S V1 V2 W L S V1 V2 W L S V1 V2 Density Level A: For low-density product applications. Recommended for wave solder applications and provides a wider process window for reflow solder processes. Density Level B: For products with a moderate level of component density. Provides a robust solder attachment condition for reflow solder processes. Density Level C: For high component desity product applications. Before adapting the minimum land pattern variations the user should perform qualification testing based on the conditions outlined in IPC standard 7351 (IPC–7351). 1 Height of these chips may create problems in wave soldering. L S W W L Grid Placement Courtyard

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Table 2 – Land Dimensions/Courtyard cont'd For T523/T548 KEMET Metric Size Code Density Level A: Maximum (Most) Land Protrusion (mm) Density Level B: Median (Nominal) Land Protrusion (mm) Density Level C: Minimum (Least) Land Protrusion (mm) Case EIA W L S V1 V2 W L S V1 V2 W L S V1 V2 Density Level A: For low-density product applications. Recommended for wave solder applications and provides a wider process window for reflow solder processes. Density Level B: For products with a moderate level of component density. Provides a robust solder attachment condition for reflow solder processes. Density Level C: For high component desity product applications. Before adapting the minimum land pattern variations the user should perform qualification testing based on the conditions outlined in IPC standard 7351 (IPC–7351). L S W W L Grid Placement Courtyard

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Soldering Process KEMET’s families of surface mount capacitors are compatible with wave (single or dual), convection, IR, or vapor phase reflow techniques. Preheating of these components is recommended to avoid extreme thermal stress. KEMET's recommended profile conditions for convection and IR reflow reflect the profile conditions of the IPC/J–STD–020D standard for moisture sensitivity testing. The devices can safely withstand a maximum of three reflow passes at these conditions. Please note that although the X/7343–43 and O/7360-43 case size can withstand wave soldering, the tall profile (4.3 mm maximum) dictates care in wave process development. Hand soldering should be performed with care due to the difficulty in process control. If performed, care should be taken to avoid contact of the soldering iron to the molded case. The iron should be used to heat the solder pad, applying solder between the pad and the termination, until reflow occurs. Once reflow occurs, the iron should be removed immediately. “Wiping” the edges of a chip and heating the top surface is not recommended. Profile Feature Pb-Free Assembly Preheat/Soak Temperature Minimum (T Smin) 150°C Temperature Maximum (T Smax) 200°C Time (ts) from Tsmin to Tsmax) 60 – 120 seconds Ramp-up Rate (T L to TP) 3°C/seconds maximum Liquidous Temperature (T L) 217°C Time Above Liquidous (t L) 60 – 150 seconds Peak Temperature (T P) 250°C* 260°C** Time within 5°C of Maximum Peak Temperature (t P) 30 seconds maximum Ramp-down Rate (T P to TL) 6°C/seconds maximum Time 25°C to Peak Temperature 8 minutes maximum Note: All temperatures refer to the center of the package, measured on the package body surface that is facing up during assembly reflow. *Case Size O, Y, and X **Case Size B, H, J, M, T, V, and W Storage All KO-Cap Series are shipped in moisture barrier bags (MBBs) with desiccant and humidity indicator card (HIC). These parts are classified as MSL3 (Moisture Sensitivity Level 3) or MSL4 (Moisture Sensitivity Level 4) per IPC/JEDEC J-STD-020 and packaged per IPC/JEDEC J–STD–033. Refer to Table 1 for part type specification. MSL3 specifies a floor time of 168H at 30°C maximum temperature and 60% relative humidity. MSL4 specifies a floor time of 72H at 30°C maximum temperature and 60% relative humidity. Unused capacitors should be sealed in a MBB with fresh desiccant. Calculated shelf life in sealed bag: – 12 months from bag seal date in a storage environment of < 40ºC and humidity < 90% RH – 24 months from bag seal date in a storage environment of < 30ºC and humidity < 70% RH If baking is required, refer to IPC/JEDEC J–STD–033 for bake procedure Time Temperature Tsmin Tsmax TL TP Maximum Ramp Up Rate = 3ºC/sec Maximum Ramp Down Rate = 6ºC/sec tP tL ts 25ºC to Peak

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Construction T520/T521/T545 Leadframe (- Cathode) Leadframe (+ Anode) Wire Molded Epoxy Case Molded Epoxy Case Weld (to attach wire) Silver Adhesive Polarity Stripe (+) Polarity Bevel (+) Detailed Cross Section Wire Tantalum Ta2O5 Dielectric (First Layer) Carbon (Third Layer) Silver Paint (Fourth Layer) Polymer (Second Layer) T523/T548 Leadframe (- Cathode) Leadframe (+ Anode) Tantalum Wire Weld (to attach wire) Detailed Cross Section Tantalum WireTantalum Polymer (Second Layer) Carbon (Third Layer) Silver Paint (Fourth Layer) Polarity Stripe (+) Molded Epoxy Case Ta2O5 Dielectric (First Layer) Spacer

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Capacitor Marking Polarity Indicator (+) Rated Voltage Picofarad Code KEMET ID Date Code* * 621 = 21ST week of 2016 Date Code * 1st digit = Last number of Year 2 = 2012 3 = 2013 4 = 2014 5 = 2015 6 = 2016 7 = 2017 2nd and 3rd digit = Week of the Year 01 = 1st week of the Year to 52 = 52nd week of the Year

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Tape & Reel Packaging Information KEMET’s molded chip capacitor families are packaged in 8 and 12 mm plastic tape on 7" and 13" reels in accordance with EIA Standard 481: Embossed Carrier Taping of Surface Mount Components for Automatic Handling. This packaging system is compatible with all tape-fed automatic pick-and-place systems. Table 3 – Packaging Quantity Case Code Tape Width (mm) 7" Reel* 13" Reel* KEMET EIA T 3528-12 8 2,500 10,000 M 3528-15 8 2,000 8,000 B 3528-21 8 2,000 8,000 W 7343-15 12 1,000 3,000 V 7343-20 12 1,000 3,000 Y 7343-40 12 500 2,000 X 7343-43 12 500 2,000 J 7360-15 12 1,000 3,000 H 7360-20 12 1,000 3,000 O 7360-43 12 500 2,000 * No C-Spec required for 7" reel packaging. C-7280 required for 13" reel packaging. Top Tape Thickness 0.10 mm (0.004") Maximum Thickness 8 mm (0.315") or or 330 mm (13.0")

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC Figure 5 – Reel Dimensions A D (See Note) Full Radius, See Note B (see Note) Access Hole at Slot Location (Ø 40 mm minimum) If present, tape slot in core for tape start: 2.5 mm minimum width x 10.0 mm minimum depth W3 (Includes flange distortion at outer edge) W2 (Measured at hub) W1 (Measured at hub) C (Arbor hole diameter) Note: Drive spokes optional; if used, dimensions B and D shall apply. N Table 5 – Reel Dimensions Metric will govern Constant Dimensions — Millimeters (Inches) Tape Size A B Minimum C D Minimum 8 mm 178±0.20 (7.008±0.008) or 330±0.20 (13.000±0.008) 1.5 (0.059) 13.0+0.5/-0.2 20.2 (0.795)12 mm 16 mm Variable Dimensions — Millimeters (Inches) Tape Size N Minimum W1 W2 Maximum W3 8 mm (1.969) 8.4+1.5/−0.0 (0.331+0.059/−0.0) 14.4 (0.567) Shall accommodate tape width without interference12 mm 12.4+2.0/−0.0 (0.488+0.078/−0.0) 18.4 (0.724) (0.646+0.078/−0.0) 22.4 (0.882)

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 • 864-963-6300 • www.kemet.com T 2079_SSD • 9/27/2016 Solid State Drives/High Energy Applications Polymer Electrolytic (KO-CAP ®), 6.3 – 35 VDC KEMET Electronic Corporation Sales Offi ces For a complete list of our global sales offi ces, please visit www.kemet.com/sales. Disclaimer All product specifi cations, statements, information and data (collectively, the “Information”) in this datasheet are subject to change. The customer is responsible for checking and verifying the extent to which the Information contained in this publication is applicable to an order at the time the order is placed. All Information given herein is believed to be accurate and reliable, but it is presented without guarantee, warranty, or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on KEMET Electronics Corporation’s (“KEMET”) knowledge of typical operating conditions for such applications, but are not intended to constitute – and KEMET specifi cally disclaims – any warranty concerning suitability for a specifi c customer application or use. The Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by KEMET with reference to the use of KEMET’s products is given gratis, and KEMET assumes no obligation or liability for the advice given or results obtained. Although KEMET designs and manufactures its products to the most stringent quality and safety standards, given the current state of the art, isolated component failures may still occur. Accordingly, customer applications which require a high degree of reliability or safety should employ suitable designs or other safeguards (such as installation of protective circuitry or redundancies) in order to ensure that the failure of an electrical component does not result in a risk of personal injury or property damage. Although all product–related warnings, cautions and notes must be observed, the customer should not assume that all safety measures are indicted or that other measures may not be required. KEMET is a registered trademark of KEMET Electronics Corporation.