A700V107M002ATE018 KEMET | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 12
Technical content
KEMETentered the world of aluminum capacitors with the introduction of the AO-CAP, designated the A700 Series, which has been targeted for power management applications. The structure of the AO-CAPuses alu- minum as the anode material, aluminum oxide as the dielectric, and a conductive organic polymer for its counter-electrode material. The A700 series is 100% screened for all electrical parameters: Capacitance @ 120Hz, Dissipation Factor (DF) @ 120 Hz, ESR @ 100 kHz, and DC Leakage. The AO-CAPoffers many advantages including extreme- ly low ESR, high capacitance retention at high operating frequencies, no dry-out related failure mechanism and no voltage de-rating up to125°C. ELECTRICAL 1. Operating Temperature Range
- -55°C to +125°C No derating with temperature is required. 2. Non-Operating Temperature Range
- -55°C to 125°C 3. Capacitance and Tolerance
- 22µF to 470µF
- ±20% Tolerance Capacitance is measured at 120 Hz, up to 1.0 volt rms maximum and up to 2.5V DC maximum. DC bias causes only a small reduction in capacitance, up to about 2% when full rated voltage is applied. DC bias is not commonly used for room temperature measurements but is more commonly used when measuring at temperature extremes. Capacitance does decrease with increasing fre- quency, but not nearly as much or as quickly as standard tantalums. Figure 1 compares the frequen- cy induced cap roll-off between the AO-CAPand tra- ditional MnO 2 types. Capacitance also increases with increasing temperature. See Section 12 for tem- perature coefficients. Figure 1. 4. Voltage Ratings
- 2 - 10 VDC Rated Voltage This is the maximum peak DC operating voltage from -55°C to +125°C for continuous duty. Surge Voltage Ratings Surge voltage capability is demonstrated by applica- tion of 1000 cycles of the relevant voltage at 25°C, 85°C, or 125 °C. The parts are charged through a 33 ohm resistor for 30 seconds and then discharged through a 33 ohm resistor for 30 seconds for each cycle. Voltage Ratings • Table 1 5. Reverse Voltage Rating & Polarity Aluminum polymer capacitors are polar devices and may be permanently damaged or destroyed if con- nected in the wrong polarity. The positive terminal is identified by a laser-marked stripe. These capacitors will withstand a certain degree of transient voltage reversal for short periods as shown in the following table. Please note that these parts may not be oper- ated continuously in reverse, even within these limits. Table 2 6. DC Leakage Current Because of the high conductivity of the polymer, the AO-CAPfamily has higher leakage currents than tra- ditional MnO 2 type Tantalum caps. The DC Leakage limits at 25°C are calculated as 0.06 x C x V, (where C is cap in µF and V is rated voltage in Volts) for part types with rated voltage ≤ 4V, and equals 0.04 x C x V, for voltages > 4V. Limits for all part numbers are listed in the ratings tables. Rated Surge Voltage Voltage -55°C to 125 °C 2V 2.6V 2.5V 3.2V 4V 5.2V 6.3V 8V 8V 10.4V 10V 13V Temperature Permissible Transient Reverse Voltage 25°C 60% of Rated Voltage 55°C 50% of Rated Voltage 85°C 40% of Rated Voltage 125°C 30% of Rated Voltage ©KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300 Aluminum Organic Capacitors ALUMINUM ORGANIC CAPACITORS Performance Characteristics
- Temperature Stability Mounted capacitors withstand extreme temperature testing at a succession or continuous steps at order. Capacitors are allowed to stabilize at each temperature before measurement. Cap, DF, and DCLare measured at each temperature; except DC Leakage is not measured at -55°C. Table 4 - Acceptable limits are as follows: 12. Standard Life Test
- 85°C, Rated Voltage, 2000 Hours Post Test Performance: a. Capacitance: within ±10% of initial value b. DF: within initial limit c. DC Leakage: within initial limit d. ESR: within initial limit 13. High Temperature Life Test
- 125°C, Rated Voltage, 2000 Hours Post Test Performance: a. Capacitance: within ±10% of initial value b. DF: within initial limit c. DC Leakage: within 1.25 x initial limit d. ESR: within 2 x initial limit 14. Storage Life Test
- 125°C, O VDC, 2000 Hours Post Test Performance: a. Capacitance: within ±10% of initial value b. DF: within initial limit c. DC Leakage: within 1.25 x initial limit d. ESR: within 2 x initial limit 15. Thermal Shock
- Mil-Std-202, Method 107, Condition B Minimum temperature is -55°C Maximum temperature is +125°C Post Test Performance: a. Capacitance: within ±10% of initial value b. DF: within initial limit c. DC Leakage: within initial limit d. ESR: within 2 x initial limit 16. Moisture Sensitivity Level (MSL)
- J-Std-020 a. Capacitance: within ±30% of initial value b. DF: within initial limit c. DC Leakage: within initial limit d. ESR: within 2 x initial limit Meets MSL3 requirements for SnPb assembly. 17. Load Humidity
- 85°C, 85% RH, Rated Voltage, 500 Hours a. Capacitance: within +30/-5% of initial value b. DF: within initial limit c. DC Leakage: within 5 x initial limit d. ESR: within 2 x initial limit 18. ESD
- Polymer Aluminum capacitors are not sensi- tive to Electro-Static Discharge (ESD). 19. Failure Mechanism and Reliability The normal failure mechanism is dielectric break down. Dielectric failure can result in high DC Leakage current and may proceed to the level of a short circuit. With sufficient time to charge, healing may occur by one of two potential mechanisms. The polymer adjacent to the dielectric fault site may over- heat and vaporize, disconnecting the fault site from the circuit. The polymer may also oxidize into a more resistive material that caps the defect site in the dielectric and reduces the flow of current. Capacitor failure may be induced by exceeding the rated conditions of forward DC voltage, reverse DC voltage, surge current, power dissipation or tempera- ture. Excessive environmental stress, such as pro- longed or high temperature reflow processes may also trigger dielectric failure. 20. Resistance to Solvents
- Mil-Std 202, Method 215 Post Test Performance: a. Capacitance: within ±10% of initial value b. DF: within initial limit c. DC Leakage: within initial limit d. ESR: within initial limit e.Physical: no degradation of case, terminals or marking 21. Fungus
- Mil-Std-810, Method 508 22. Flammability
- UL94 VO Classification Step Temp ∆∆Cap DCL DF 1 25°C Specified Tolerance Catalog Limit Catalog Limit 2 -55°C 15% of initial value N/A Catalog Limit 3 +25°C 5% of initial value Catalog Limit Catalog Limit 4 +85°C 15% of initial value 2X Catalog Limit Catalog Limit 5 +125°C 20% of initial value 2X Catalog Limit Catalog Limit 6 +25°C 5% of initial value Catalog Limit Catalog Limit ©KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300 ALUMINUM ORGANIC CAPACITORS Performance Characteristics Aluminum Organic Capacitors
Table 6 - Land Pattern Dimensions for Reflow Solder 31. Soldering The A700 - AO-CAPfamily has been designed for reflow solder processes, or for wave soldering. The solder-coated terminations have excellent wetting characteristics for high integrity solder fillets. Preheating of these components is recommended to avoid extreme thermal stress. Figure 6 represents the recommended maximum solder temperature/ time combinations for these devices. Hand-soldering should be avoided. However, if nec- essary it should be performed with care due to the difficulty in process control. 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 termi- nation, until reflow occurs. The iron should be removed. "Wiping" the edges of a chip and heating the top surface is not recommended. Figure 6 Sn-Pb Profile measured on the surface of the component * Contact KEMET for the latest A700 Pb-free sol- dering recommendations. 32. Washing Standard washing techniques and solvents are com- patible with all KEMETsurface mount aluminum capacitors. Solvents such as Freon TMC and TMS, Trichlorethane, methylene chloride, prelate, and iso- propyl alcohol are not harmful to these components. Please note that we are not endorsing the use of banned or restricted solvents. We are simply stating that they would not be harmful to the components. If ultrasonic agitation is utilized in the cleaning process, care should be taken to minimize energy levels and exposure times to avoid damage to the terminations. KEMETAO-CAPS are also compatible with newer aqueous and semi-aqueous processes. 33. Encapsulations Under normal circumstances, potting or encapsula- tion of KEMETaluminum chips is not required. 34. Storage Environment AO capacitors are shipped in moisture barrier bags with a desiccant and mositure indicator card. This series is classified as MSL3 (Moisture Sensitivity Level 3). Upon opening the moisture barrier bag, parts should be mounted within 7 days to prevent mositure absorption and outgassing. If the 7 day window is exceeded, the parts can be dryed per the instructions on the bag (168 hours at 40 ± 5°C). AO capacitors should be stored in normal working environments. While the chips themselves are quite robust in other environments, solderability will be degraded by exposure to high temperatures, high humidity, corrosive atmospheres, and long term stor- age. In addition, packaging materials will be degrad- ed by high temperature (reels may soften or warp, and tape peel force may increase). KEMETrecom- mends that maximum storage temperature not exceed 40 degrees C, and the maximum storage humidity not to exceed 60% relative humidity. In addition, temperature fluctuations should be mini- mized to avoid condensation on the parts, and atmospheres should be free of chlorine and sulfur bearing compounds. For optimized solderability, chip stock should be used promptly, preferably within 1.5 years of receipt. Component Marking Polarity (+) Indicator Picofarad Code KEMET ID 1st Digit = year 2nd & 3rd digits = Week Rated Voltage 476 424 Tape & Reel Packaging Case Codes Tape & Reel Dimensions KEMET EIA Tape Width mm Pitch mm ± 0.1 Reel Quantity Part Spro- cket 180mm (7” dia.) 330mm (13” dia.) V 7343-20 12 ± 0.3 8 4 1000 3000 D 7343-31 12 ± 0.3 8 4 500 2500 X 7343-43 12 ± 0.3 8 4 500 2000 KEMET/EIASize Code Pad Dimensions Z G X Y(Ref) C (Ref) D/7343-31, V/7343-20 Sn-Pb Profile Series Case Size Typical Weight (mg) A700 V/7343-20 120 A700 D/7343-31 190 A700 X/7343-43 260 Aluminum Component Weights ©KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300 ALUMINUM ORGANIC CAPACITORS Performance Characteristics 100 150 200 250 300 0 50 100 150 200 250 300 Time (Seconds) Temperature (°C) 60 Sec. 45 Sec. 45 Sec. 5 Sec. 95 Sec. 90 Sec. Sn-Pb Profile Aluminum Organic Capacitors
APPLICATIONS
- Input/Output Filters for voltage regulators, converters, and SMPS • Power Decoupling (Procesor, Transmitter circuits)
- Battery Decoupling (portable, handheld electronics) • Bulk Capacitor Requirements
FEATURES
- Polymer Cathode Technology • 100% Accelerated Steady State Aging
- Extremely Low ESR • Pb Free and RoHS Compliant
- High Frequency Capacitance Retention • Solid-state Technology
- Non-ignition Failure Mode • Molded Case with Wraparound Termination
- Capacitance: 22 to 470 µF • Voltage: 2 to 10V
- Self-healing Mechanism • No Reformation Required
- -55° to +125°C Capability • EIAStandard Case Size
- No temperature voltage Derating Up To 125°C • No Dry-out Related Failure Mechanism
- Robust to Surface Mount Process OUTLINE DRAWING Case Size KEMET EIA L W H K Min. F ±0.1 S ±0.2 DIMENSIONS - MILLIMETERS Note that glue pad shape may differ at KEMET’s discretion. K W H S S L F End View Side View Bottom View A700 ORDERING INFORMATION A 700 V 476 M 006 A T E018 Aluminum Series
700 Chip
V,D,X Capacitance Picofarad Code First two digits represent significant figures. Third digit specifies number of zeros. Capacitance Tolerance M = ±20% Voltage As Shown Failure Rate Level A= Not Applicable Lead Material T= 100% Tin (Sn) Plated ESR ©KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300 Aluminum Organic Capacitors ALUMINUM ORGANIC CAPACITORS A700 Series
©KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300 ALUMINUM ORGANIC CAPACITORS A700 Series A700 RATINGS & PART NUMBER REFERENCE Aluminum Organic Capacitors KEMET Part Number Case Size Cap µF DCL @VR DF @ 120 Hz ESR 100 kHz (mΩ) Ripple Current (Arms) @ 100kHz w/ΔT=+20°C @ -55°C to 125°C A700V107M002ATE018 V/7343-20 100.0 12.0 µA 6% 18 3.9 A700V107M002ATE025 V/7343-20 100.0 12.0 µA 6% 25 3.3 A700V107M002ATE028 V/7343-20 100.0 12.0 µA 6% 28 3.1 A700V127M002ATE018 V/7343-20 120.0 14.4 µA 6% 18 3.9 A700V127M002ATE025 V/7343-20 120.0 14.4 µA 6% 25 3.3 A700V127M002ATE028 V/7343-20 120.0 14.4 µA 6% 28 3.1 A700V157M002ATE009 V/7343-20 150.0 18.0 µA 6% 9 5.4 A700V157M002ATE018 V/7343-20 150.0 18.0 µA 6% 18 3.9 A700V157M002ATE025 V/7343-20 150.0 18.0 µA 6% 25 3.3 A700V157M002ATE028 V/7343-20 150.0 18.0 µA 6% 28 3.1 A700D187M002ATE015 D/7343-31 180.0 21.6 µA 6% 15 4.1 A700D187M002ATE018 D/7343-31 180.0 21.6 µA 6% 18 3.7 A700V227M002ATE009 V/7343-20 220.0 26.4µA 6% 9 5.5 A700D227M002ATE015 D/7343-31 220.0 26.4 µA 6% 15 4.1 A700D227M002ATE018 D/7343-31 220.0 26.4 µA 6% 18 3.7 A700X277M002ATE010 X/7343-43 270.0 32.4 µA 6% 10 4.7 A700X277M002ATE012 X/7343-43 270.0 32.4µA 6% 12 4.3 A700X277M002ATE015 X/7343-43 270.0 32.4 µA 6% 15 3.9 A700D337M002ATE007 D/7343-31 330.0 39.6µA 6% 7 6.0 A700X337M002ATE010 X/7343-43 330.0 39.6 µA 6% 10 4.7 A700X337M002ATE015 X/7343-43 330.0 39.6 µA 6% 15 3.9 A700X397M002ATE010 X/7343-43 390.0 46.8 µA 6% 10 4.7 A700X397M002ATE015 X/7343-43 390.0 46.8 µA 6% 15 3.9 A700X477M002ATE010 X/7343-43 470.0 56.4 µA 6% 10 4.7 A700X477M002ATE015 X/7343-43 470.0 56.4 µA 6% 15 3.9 A700V826M2R5ATE018 V/7343-20 82.0 12.3 µA 6% 18 3.9 A700V826M2R5ATE025 V/7343-20 82.0 12.3 µA 6% 25 3.3 A700V826M2R5ATE028 V/7343-20 82.0 12.3 µA 6% 28 3.1 A700D157M2R5ATE015 D/7343-31 150.0 22.5 µA 6% 15 4.1 A700D157M2R5ATE018 D/7343-31 150.0 22.5 µA 6% 18 3.7 A700D187M2R5ATE015 D/7343-31 180.0 27.0 µA 6% 15 4.1 A700D187M2R5ATE018 D/7343-31 180.0 27.0 µA 6% 18 3.7 A700X227M2R5ATE010 X/7343-43 220.0 33.0 µA 6% 10 4.7 A700X227M2R5ATE015 X/7343-43 220.0 33.0 µA 6% 15 3.9 A700X337M2R5ATE010 X/7343-43 330.0 49.5 µA 6% 10 4.7 A700X337M2R5ATE015 X/7343-43 330.0 49.5 µA 6% 15 3.9 A700V826M004ATE018 V/7343-20 82.0 19.7 µA 6% 18 3.9 A700V826M004ATE025 V/7343-20 82.0 19.7 µA 6% 25 3.3 A700V826M004ATE028 V/7343-20 82.0 19.7 µA 6% 28 3.1 A700D127M004ATE015 D/7343-31 120.0 28.8 µA 6% 15 4.1 A700D127M004ATE018 D/7343-31 120.0 28.8 µA 6% 18 3.7 A700D157M004ATE015 D/7343-31 150.0 36.0 µA 6% 15 4.1 A700D157M004ATE018 D/7343-31 150.0 36.0 µA 6% 18 3.7 A700D187M004ATE015 D/7343-31 180.0 43.2 µA 6% 15 4.1 A700D187M004ATE018 D/7343-31 180.0 43.2 µA 6% 18 3.7 A700X187M004ATE010 X/7343-43 180.0 43.2 µA 6% 10 4.7 A700X187M004ATE015 X/7343-43 180.0 43.2µA 6% 15 3.9 A700D227M004ATE009 X/7343-43 220.0 52.8 µA 6% 9 5.3 A700X227M004ATE009 X/7343-43 220.0 52.8 µA 6% 9 5.3 A700X227M004ATE010 X/7343-43 220.0 52.8 µA 6% 10 4.7 A700X227M004ATE015 X/7343-43 220.0 52.8 µA 6% 15 3.9 A700X277M004ATE010 X/7343-43 270.0 64.8 µA 6% 10 4.7 A700X277M004ATE015 X/7343-43 270.0 64.8 µA 6% 15 3.9 A700X337M004ATE010 X/7343-43 330.0 79.2 µA 6% 10 4.7 A700X337M004ATE015 X/7343-43 330.0 79.2 µA 6% 15 3.9
2 Volt Rating @ 125°C
2.5 Volt Rating @ 125°C
4 Volt Rating @ 125°C
©KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300 Aluminum Organic Capacitors ALUMINUM ORGANIC CAPACITORS A700 Series A700 RATINGS & PART NUMBER REFERENCE 685M016ATE070 V/7343-20 6.8 4.3 µA 6% 70 1.9 A700V825M016ATE070 V/7343-20 8.2 5.2 µA 6% 45 2.4
12.5 Volt Rating @ 125°C
16 Volt Rating @ 125°C
8 Volt Rating @ 125°C
10 Volt Rating @ 125°C
KEMET Part Number Case Size Cap µF DCL @VR DF @ 120 Hz ESR 100 kHz (mΩ) Ripple Current (Arms) @ 100kHz w/ΔT=+20°C @ -55°C to 125°C A700V226M006ATE028 V/7343-20 22.0 5.5 µA 6% 28 3.1 A700V226M006ATE045 V/7343-20 22.0 5.5 µA 6% 45 2.4 A700V336M006ATE018 V/7343-20 33.0 8.3 µA 6% 18 3.9 A700V336M006ATE025 V/7343-20 33.0 8.3 µA 6% 25 3.3 A700V336M006ATE028 V/7343-20 33.0 8.3 µA 6% 28 3.1 A700V476M006ATE018 V/7343-20 47.0 11.8 µA 6% 18 3.9 A700V476M006ATE025 V/7343-20 47.0 11.8 µA 6% 25 3.3 A700V476M006ATE028 V/7343-20 47.0 11.8 µA 6% 28 3.1 A700V566M006ATE018 V/7343-20 56.0 14.1 µA 6% 18 3.9 A700V566M006ATE025 V/7343-20 56.0 14.1 µA 6% 25 3.3 A700V566M006ATE028 V/7343-20 56.0 14.1 µA 6% 28 3.1 A700V686M006ATE018 V/7343-20 68.0 17.1 µA 6% 18 3.9 A700V686M006ATE025 V/7343-20 68.0 17.1 µA 6% 25 3.3 A700V686M006ATE028 V/7343-20 68.0 17.1 µA 6% 28 3.1 A700V826M006ATE018 V/7343-20 82.0 20.7 µA 6% 18 3.9 A700V826M006ATE025 V/7343-20 82.0 20.7 µA 6% 25 3.3 A700V826M006ATE028 V/7343-20 82.0 20.7 µA 6% 28 3.1 A700D107M006ATE015 D/7343-31 100.0 25.2 µA 6% 15 4.1 A700D107M006ATE018 D/7343-31 100.0 25.2 µA 6% 18 3.7 A700D127M006ATE012 D/7343-31 120.0 30.2 µA 6% 12 4.6 A700D127M006ATE015 D/7343-31 120.0 30.2 µA 6% 15 4.1 A700D127M006ATE018 D/7343-31 120.0 30.2 µA 6% 18 3.7 A700X157M006ATE010 X/7343-43 150.0 37.8 µA 6% 10 4.7 A700X157M006ATE012 X/7343-43 150.0 37.8µA 6% 12 4.3 A700X157M006ATE015 X/7343-43 150.0 37.8 µA 6% 15 3.9 A700X187M006ATE010 X/7343-43 180.0 45.4 µA 6% 10 4.7 A700X187M006ATE015 X/7343-43 180.0 45.4 µA 6% 15 3.9 A700X227M006ATE015 X/7343-43 220.0 55.4 µA 6% 15 3.9 A700V226M008ATE028 V/7343-20 22.0 7.0 µA 6% 28 3.1 A700V226M008ATE045 V/7343-20 22.0 7.0 µA 6% 45 2.4 A700V336M008ATE018 V/7343-20 33.0 10.6 µA 6% 18 3.9 A700V336M008ATE025 V/7343-20 33.0 10.6 µA 6% 25 3.3 A700V336M008ATE028 V/7343-20 33.0 10.6 µA 6% 28 3.1 A700D566M008ATE015 D/7343-31 56.0 17.9 µA 6% 15 4.1 A700D566M008ATE018 D/7343-31 56.0 17.9 µA 6% 18 3.7 A700D686M008ATE015 D/7343-31 68.0 21.8 µA 6% 15 4.1 A700D686M008ATE018 D/7343-31 68.0 21.8 µA 6% 18 3.7 A700X107M008ATE010 X/7343-43 100.0 32.0 µA 6% 10 4.7 A700X107M008ATE012 X/7343-43 100.0 32.0 µA 6% 12 4.3 A700X107M008ATE015 X/7343-43 100.0 32.0 µA 6% 15 3.9 A700V226M010ATE028 V/7343-20 22.0 8.8 µA 6% 28 3.1 A700V336M010ATE018 V/7343-20 33.0 13.2 µA 6% 18 3.9 A700V336M010ATE025 V/7343-20 33.0 13.2 µA 6% 25 3.3 A700V336M010ATE028 V/7343-20 33.0 13.2µA 6% 28 3.1 A700D566M010ATE015 D/7343-31 56.0 22.4 µA 6% 15 4.1 A700D566M010ATE018 D/7343-31 56.0 22.4 µA 6% 18 3.7 A700D686M010ATE015 D/7343-31 68.0 27.2 µA 6% 15 4.1 A700D686M010ATE018 D/7343-31 68.0 27.2 µA 6% 18 3.7 A700X107M010ATE010 X/7343-43 100.0 40.0 µA 6% 10 4.7 A700X107M010ATE015 X/7343-43 100.0 40.0 µA 6% 15 3.9 A700X127M010ATE010 X/7343-43 120.0 48.0 µA 6% 10 4.7 A700X127M010ATE015 X/7343-43 120.0 48.0 µA 6% 15 3.9 A700X157M010ATE010 X/7343-43 150.0 60.0 µA 6% 10 4.7 A700X157M010ATE015 X/7343-43 150.0 60.0 µA 6% 15 3.9 A700V106M12RATE060 V/7343-20 10.0 5.0 µA 6% 60 2.1 A700V156M12RATE040 V/7343-20 15.0 7.5 µA 6% 40 2.6 A700V226M12RATE030 V/7343-20 22.0 11.0 µA 6% 30 3.0 A700V685M016ATE070 V/7343-20 6.8 4.3 µA 6% 70 1.9 A700V825M016ATE070 V/7343-20 8.2 5.2 µA 6% 70 2.4
6.3 Volt Rating @ 125°C
©KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300 Tape & Reel Packaging KEMET’s Molded Tantalum and Aluminum Chip Capacitor families are packaged in 8 mm and 12 mm plastic tape on 7" and 13" reels, in accordance with EIA Standard 481-1: Taping of Surface Mount Components for Automatic Handling. This packaging system is compatible with all tape fed automatic pick and place systems. Right Hand Orientation Only (+) (–) Embossed Carrier Embossment Top T ape Thickness .10mm (.004") Max Thickness 8mm ±.30 (.315 ±.012") or 12mm ±.30 (.472 ±.012") 178mm (7.00") or 330mm (13.00") 8mm (0.315") or or 330mm (13.0") QUANTITIES PACKAGED PER REEL Case Code Tape KEMET EIA Width-mm 7" Reel* 13" Reel* R 2012-12 8 2,500 10,000 S 3216-12 8 2,500 10,000 T 3528-12 8 2,500 10,000 U 6032-15 12 1,000 5,000 W 7343-15 12 1,000 3,000 V 7343-20 12 1,000 3,000 A 3216-18 8 2,000 9,000 B 3528-21 8 2,000 8,000 C 6032-28 12 500 3,000 D 7343-31 12 500 2,500 Y 7343-40 12 500 2,000 X 7343-43 12 500 2,000 E 7260-38 12 500 2,000 * No c-spec required for 7" reel packaging. C-7280 required for 13" reel packaging. Labeling: Bar code labeling (standard or custom) shall be on the side of the reel opposite the sprocket holes. Refer to EIA-556. TANTALUM AND ALUMINUM CHIP CAPACITORS Packaging Information Packaging * Standard reel packaging is not mandatory. * Bulk packaging also available using C-7610.
©KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, (864) 963-6300 Performance Notes 1. Cover Tape Break Force: 1.0 Kg Minimum. 2. Cover Tape Peel Strength: The total peel strength of the cover tape from the carrier tape shall be: Tape Width Peel Strength 8 mm 0.1 Newton to 1.0 Newton (10g to 100g) 12 mm 0.1 Newton to 1.3 Newton (10g to 130g) The direction of the pull shall be opposite the direction of the carrier tape travel. The pull angle of the carrier tape shall be 165/H11034to 180/H11034from the plane of the carrier tape. During peeling, the carrier and/or cover tape shall be pulled at a velocity of 300 ±10 mm/minute. 3. Reel Sizes:Molded tantalum capacitors are available on either 180 mm (7") reels (standard) or 330 mm (13") reels (with C-7280). Note that 13” reels are preferred. 4. Labeling: Bar code labeling (standard or custom) shall be on the side of the reel opposite the sprocket holes. Refer to EIA-556. Embossed Carrier Tape Configuration: Figure 1 NOTES 1. B1 dimension is a reference dimension for tape feeder clearance only. 2. The embossment hole location shall be measured from the sprocket hole controlling the location of the embossment. Dimensions of embossment location and hole location shall be applied independent of each other. 3. Tape with components shall pass around radius “R” without damage (see sketch A). The minimum trailer length (Fig. 2) may require additional length to provide R min. for 12 mm embossed tape for reels with hub diameters approaching N min. (Table 2) 4. The cavity defined by A 0, B0, and K0 shall be configured to surround the part with sufficient clearance such that the chip does not pro- trude beyond the sealing plane of the cover tape, the chip can be removed from the cavity in a vertical direction without mechanical restriction, rotation of the chip is limited to 20 degrees maximum in all 3 planes, and lateral movement of the chip is restricted to 0.5 mm maximum in the pocket (not applicable to vertical clearance.) Table 1 — EMBOSSEDTAPEDIMENSIONS (Metric will govern) Constant Dimensions — Millimeters (Inches) Tape Size D 0 EP 0 P2 T Max T 1 Max and +0.10 -0.0 +0.004, -0.0) Variable Dimensions — Millimeters (Inches) Tape Size Pitch B 1 Max. D 1 Min. F P 1 R Min. T 2 Max W A 0B0K0 Note 1 Note 2 Note 3 Note 4 (4 mm) TANTALUM, CERAMIC AND ALUMINUM CHIP CAPACITORS Packaging Information