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Rev.D 1/11 Chip tantalum capacitors TC Series A Case zFeatures (A) 1) Vital for all hybrid integrated circuits board application. 2) Wide capacitance range. 3) Screening by thermal shock. zDimensions (Unit : mm) Dimensions L H S SS W H L W Anode mark (Unit : mm) 3.2 0.2+− 1.6 0.2+− 1.2 0.2+− 1.6 0.2+− 0.8 0.3+− A case + − zzPart No. Explanation M0 J 8 RT 1 0 6C A Rated voltage Capacitance tolerance Nominal capacitance in pF in 3 digits: 2 significant figures followed by the figure representing the number of 0's. 8 : Tape width R : Positive electrode on the side opposite to sprocket hole 1 3 642 5
11 Series name
2 Case style
4 Nominal capacitance
6.3 20 25 1D 1E Rated voltage (V) TC A
Rev.D 2/11 z Rated table (μF) Rated voltage (V) 1 (105) A 1.5 (155) A 2.2 (225) A 3.3 (335) A A A A A A A A A 4.7 (475) A 6.8 (685) A A A A A10 (106) A A A A A A A A A AA A A 15 (156) A 22 (226) A A A A 33 (336) 47 (476) 68 (686) 100 (107) 150 (157) A A A A 6.3 Remark) Case size codes (A) in the above show products line-up. ∗ Under development A A A indicates new product zz Marking j a The indications listed below should be given on the surface of a capacitor. (1) Polarity : The polarity should be shown by bar. (on the anode side) (2) Rated DC voltage : Due to the small size of A case, a voltage code is used as shown below. (3) Visual typical example (1) voltage code (2) capacitance code Voltage Code Rated DC Voltage (V) g j A C D E 6.3 Capacitance Code Nominal Capacitance (μF) A E J N S W a e j n 1.0 1.5 2.2 3.3 4.7 6.8 s4 7 w6 8 100 [A case] note 1) note 2) voltage code and capacitance code are variable with parts number −(1) j −(2) a a
Rev.D 3/11 z Characteristics Item Performance Test conditions (based on JIS C 5101−1 and JIS C 5101−3) Operating Temperature −55°C~+125°C Maximum operating temperature with no voltage derating +85°C Rated voltage (VDC) 20 25 16106.34 Category voltage (VDC) 13 16 106.342.5 Surge voltage (VDC) 13 852 6 20 32 DC Leakage current 0.5 μA or 0.01CV whichever is greater Shown in " Standard list " Capacitance tolerance Measuring frequency : 100±10kHz Measuring voltage : 0.5Vrms or less Measuring circuit : DC Equivalent series circuit Tangent of loss angle (Df, tan δ) Impedance Resistance to Soldering heat Temperature cycle Moisture resistance There should be no significant abnormality. The indications should be clear. Appearance ΔC / C Df (tan δ) L.C. Shall be satisfied the voltage on " Standard list " Measuring frequency : 120 ±12Hz Measuring voltage : 0.5Vrms +1.5 to 2V.DC Measuring circuit : DC Equivalent series circuit Shall be satisfied the voltage on " Standard list " at 85°C at 125°C at 85°C Voltage : Rated voltage for 1min Shall be satisfied allowance range. ±10%, ±20% Measuring frequency : 120±12Hz Measuring voltage : 0.5Vrms +1.5 to 2V.DC Measuring circuit : DC Equivalent series circuit Less than initial limit Voltage reduction when temperature exceeds +85°C As per 4.9 JIS C 5101-1 As per 4.5.1 JIS C 5101-3 As per 4.7 JIS C 5101-1 As per 4.5.2 JIS C 5101-3 As per 4.8 JIS C 5101-1 As per 4.5.3 JIS C 5101-3 As per 4.10 JIS C 5101-1 As per 4.5.4 JIS C 5101-3 As per 4.14 JIS C 5101-1 As per 4.6 JIS C 5101-3 Dip in the solder bath Solder temp : 260 ±5°C Duration : 5±0.5s Repetition : 1 After the specimens, leave it at room temperature for over 24h and then measure the sample. As per 4.16 JIS C 5101-1 As per 4.10 JIS C 5101-3 As per 4.22 JIS C 5101-1 As per 4.12 JIS C 5101-3 Others : Within ±5% of initial value There should be no significant abnormality. The indications should be clear. Appearance ΔC / C Df (tan δ) L.C. Less than initial limit After leaving the sample under such atmospheric condition that the temperature and humidity are 60±2°C and 90 to 95% RH,respectiveiy, for 500±12h leave it at room temperature for over 24h and then measure the sample. TCA0G686 : Within ±15% of initial value TCA0G107 : Within ±20% of initial value Others : Within ±10% of initial value Others : Within ±10% of initial value Others : Less than initial limit There should be no significant abnormality. The indications should be clear. Appearance ΔC / C Df (tan δ) L.C. Less than initial limit Repetition : 5 cycles (1 cycle : steps 1 to 4) without discontinuation. Less than initial limit TCA0G686 : Within ±15% of initial value Temp. Time Room temp. Room temp. 3min.or less 3min.or less 30±3min. 30±3min. −55 3°C+− 125 2°C+− TCA0G686 : Within ±15% of initial value TCA0J686 : Within ±20% of initial value TCA0G107 : Within ±20% of initial value TCA0G107 : Within ±20% of initial value TCA1A226 : Within ±15% of initial value TCA0J476 : Within ±15% of initial value TCA0G686 : Less than 150% of initial limit TCA0G107 : Less than 150% of initial limit After the specimens, leave it at room temperature for over 24h and then measure the sample. TCA0J686 : Less than 150% of initial limit TCA0J686 : Within ±20% of initial value TCAP0J226 : Less than 150% of initial limit Others : Less than initial limit
Rev.D 4/11 Item Performance Test conditions (based on JIS C 5101−1 and JIS C 5101− 3) Temperature Stability Surge voltage Shall be satisfied the voltage on " Standard list " As per 4.29 JIS C 5101-1 As per 4.13 JIS C 5101-3 As per 4.23 JIS C 5101-1 As per 4.15 JIS C 5101-3 As per 4.35 JIS C 5101-1 As per 4.9 JIS C 5101-3 Temp. Appearance There should be no significant abnormality. Temp. −55°C +85°C Df (tan δ) L.C. L.C. 5μA or 0.1CV whichever is greater Shall be satisfied the voltage on " Standard list "Df (tan δ) Shall be satisfied the voltage on " Standard list "Df (tan δ) L.C. 6.3μA or 0.125CV whichever is greater Temp. +125°C ΔC / C Within 0/−12% of initial value ΔC / C Within +15/0% of initial value ΔC / C Others : Within +10/0% of initial value Loading at High temperature ΔC / C Df (tan δ) L.C. L.C. Shall be satisfied the voltage on " Standard list " Less than initial limit After applying the rated voltage for 2000+72/0 h without discontinuation via the serial resistance of 3Ω or less at a temperature of 85±2°C, leave the sample at room temperature / humidity for over 24h and measure the value. As per 4.26JIS C 5101-1 As per 4.14JIS C 5101-3 Apply the specified surge voltage every 5±0.5 min. for 30±5 s. each time in the atmospheric condition of 85±2°C. Repeat this procedure 1,000 times. After the specimens, leave it at room temperature for over 24h and then measure the sample. Df (tan δ) Less than initial limit Others : ±10% of initial value ΔC / C TCA0G686 : Within ±15% of initial value TCA0G107 : Within ±20% of initial value TCA1A226 : Within ±15% of initial value TCA0J476 : Within ±15% of initial value There should be no significant abnormality.Appearance There should be no significant abnormality.Appearance Terminal strength The measured value should be stable. A force is applied to the terminal until it bends to 1mm and by a prescribed tool maintain the condition for 5s. (See the figure below) Capacitance F (Apply force) (Unit : mm) R230 45 45 thickness=1.6mm TCA0G686 : Within +12/0% of initial value TCA0G107 : Within +12/0% of initial value TCA0J686 : Within +12/0% of initial value TCA0G686 : Within ±15% of initial value TCA0G686 : Less than 125% of initial limit TCA0G107 : Less than 125% of initial limit TCA1E105 : Less than 125% of initial limit TCA1A226 : Less than 125% of initial limit TCA0J686 : Less than 125% of initial limit TCA0J686 : Within ±20% of initial value TCA0G107 : Within ±20% of initial value TCA0J686 : Within ±20% of initial value Others : ±10% of initial value Others : Less than initial limit
Rev.D 5/11 Item Performance Test conditions (JIS C 5101−1 and JIS C 5101− 3) Adhesiveness Dimensions The terminal should not come off. As per 4.34 JIS C 5101-1 As per 4.8 JIS C 5101-3 Apply force of 5N in the two directions shown in the figure below for 10±1s after mounting the terminal on a circuit board. Apply force a circuit board product ja Refer to "External dimensions" Measure using a caliper of JIS B 7507 Class 2 or higher grade. Resistance to solvents The indication should be clear As per 4.32 JIS C 5101-1 As per 4.18 JIS C 5101-3 Dip in the isopropyl alcohol for 30±5s, at room temperature. Solderability 3/4 or more surface area of the solder coated terminal dipped in the soldering bath should be covered with the new solder. As per 4.15.2 JIS C 5101-1 As per 4.7 JIS C 5101-3 Dip speed=25±2.5mm / s Pre−treatment(accelerated aging): Leave the sample on the boiling distilled water for 1 h. Solder temp. : 245±5°C Duration : 3±0.5s Solder : M705 Flux : Rosin 25% IPA 75% CapacitanceVibration Appearance Measure value should not fluctuate during the measurement. There should be no significant abnormality. As per 4.17 JIS C 5101-1 Frequency : 10 to 55 to 10Hz/min. Amplitude : 1.5mm Time : 2h each in X and Y directions Mounting : The terminal is soldered on a print circuit board.
Rev.D 6/11 z Standard products list, TC series A case Part No. Rated voltage 85°C (V) Category voltage 125°C (V) Surge voltage 85°C (V) Cap. 120Hz (μF) Tolerance (%) Leakage current 25°C 1WV.60s (μA) Df 120Hz (%) 22 0.9 33 1.3 1.9 2.7 0.53.3 1.5 0.5 0.5 0.5 15 0.6 TC A 0G 475 TC A 0G 106 TC A 0G 156 TC A 0G 226 TC A 0G 336 TC A 0G 476 TC A 0G 686 TC A 0J 335 4.7 TC A 0G 685 6.8 TC A 0J 475 4.7 2.2 TC A 0J 685 TC A 0J 106 2.5 5 42 . 55 42 . 55 42 . 55 42 . 55 42 . 55 42 . 55 42 . 55 6.3 4 8 6.3 4 8 6.3 4 8 6.3 4 8 6.3 4 8 6.3 4 8 6.3 4 8 6.3 4 8 10 6.3 13 10 6.3 13 10 6.3 13 10 6.3 13 10 6.3 13 10 6.3 13 10 6.3 13 10 6.3 13 16 10 20 16 10 20 16 10 20 6.8 3.3 4.7 0.5 TC A 0J 156 TC A 0J 226 22 3.0 0.7 TC A 0J 336 TC A 0J 476 TC A 1A 155 TC A 1A 225 TC A 1A 335 TC A 1A 475 TC A 1A 685 33 2.1 0.9 6.8 −55°C 125°C25°C 85°C 10 6 812 10 812 10 812 10 812 10 812 10 0.5 812 10 812 10 812 10 0.5 610 8 0.5 610 8 0.5 812 10 0.5 Impedance 100kHz (Ω) 4.0 3.0 3.5 3.2 3.0 5.6 4.9 5.6 4.9 4.2 3.5 3.2 3.2 8.8 5.6 4.9 812 10 4.2 812 10 4.0 812 10 3.0 1014 12 3.5 1230 16 3.2 4.2 4.0 3.0 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 100 4TC A 0G 107 42 . 55 3054 36 3.020,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 1.0TC A 1A 106 10 1.5TC A 1A 156 15 2.2 610 8 7.00.5 610 8 5.60.5 20,10+− 20,10+− 20,10+− 20,10+− 20,10+− 610 8 4.90.5 610 8 4.8 610 8 3.9 610 8 3.8 812 10 3.5 0.5 TC A 1A 226 22 TC A 1C 105 1.0 TC A 1C 155 1.5 TC A 1C 225 2.2 TC A 1C 335 3.310 2016 10 2016 10 2016 10 2016 0.8TC A 1C 475 4.7 1.1TC A 1C 685 6.8 1.6TC A 1C 106 10 0.6 1.4 =Tolerance (M : ±20%, K : ±10%) 20,10+− 20,10+− 610 8 7.016 3225 0.5TC A 1E 105 1.0 20,10+− 610 8 6.013 2620 0.5TC A 1D 155 1.5 20,10+− 610 8 5.216 3225 0.6TC A 1E 225 2.2 20,10+− 610 8 5.213 2620 0.5TC A 1D 225 2.2 20,10+− 610 8 4.813 2620 0.7TC A 1D 335 3.3 20,10+− 610 8 3.913 2620 0.9TC A 1D 475 4.7 20,10+− 610 8 7.013 2620 0.5TC A 1D 105 1.0 20,10+− 610 8 6.016 3225 0.5TC A 1E 155 1.5 20,10+− 610 8 3.416 3225 1.2TC A 1E 475 4.7 20,10+− 610 8 4.816 3225 0.8TC A 1E 335 3.3
Rev.D 7/11 z Packaging specifications Taping [A case] Case code A 1.9 3.5 0.25 1.9 Feeding direction 2.0±0.05 4.0±0.1 4.0 ±0.1 A B 8.0±0.2 3.5±0.05 1.75±0.1 Chip φ1.5 +0.1−0 zz Packaging style 2,000pcs Case code Packaging TapingA case Packaging style plastic taping φ180mm Reel Symbol R Basic ordering units Reel [A case] φ13 0.2 φ60 +10 0−1.5φ180 9.0 11.4 1.0 Label sticking position EIAJ ET−7200B compatible Pull direction +− +1.0
Rev.D 8/11 zRecommended condition of reflow soldering (ϧ) Leakage current-to-voltage ratio 0.01 0.1 0 2 04 06 08 0 1 0 0 % OF RATED VOLTAGE (VR) Fig.1 LEAKAGE CURRENT RATIO DCL / DCL (2) Derating voltage as function of temperature 100 75 85 95 105 115 125 Fig.2 PERCENT OF 85 C RVDC1 (VR) TEMPERATURE ( C) Rated Voltage 6.3 2.5 6.3 3.2 25 32 16 20 Surge Voltage Category Voltage Surge Voltage (V.DC) (V.DC) (V.DC) (V.DC) 85 C 125 C (3) Reliability The malfunction rate of tantalum solid state electrolytic capacitors varies considerably depending on the conditions of usage (ambient temperature, applied voltage, circuit resistance). Formula for calculating malfunction rate Op = Ob u (SE uSSR uSQ uSCV) Op : Malfunction rate stemming from operation Ob : Basic malfunction rate SE : Environmental factors SSR : Series resistance SQ : Level of malfunction rate SCV : Capacitance For details on how to calculate the malfunction rate stemming from operation, see the tantalum solid state electrolytic capacitors column in MIL-HDBK-217.
Rev.D 9/11 Malfunction rate as function of operating Malfunction rate as function of circuit resistance (:/V) temperature and rated voltage 0.01 0.02 0.03 0.06 0.1 0.2 0.3 0.5 1.0 Ratio= Rated Voltage Applied Voltage 1.0 0.7 0.5 0.3 0.1 20 40 60 85 Fig.3 FAILURE RATE COEFFICIENT OPERATING TEMPERATURE ( C) 0.4 0.6 0.8 1.0 2.0 4.0 6.0 RESISTANCE OF CIRCUIT (Ω / V) Fig.4 RESISTANCE COEFFICIENT (π) (4) Maximum power dissipation Warming of the capacitor due to ripple voltage balances with warming caused by Joule heating and by radiated heat. Maximum allowable warming of the capacitor is to 5qC above ambient temperature. When warming exceeds 5qC, it can damage the dielectric and cause a short circuit. Power dissipation (P) = I2 xx R Ripple current P : As shown in table at right R : Equivalent series resistance Notes: 1. Please be aware that when case size is changed, maximum allowable power dissipation is reduced. 2. Maximum power dissipation varies depending on the package. Be sure to use a case which will keep warming within the limits shown in the table below. Allowable power dissipation (W) and maximum temperature rising Case Temp. 0.070A case (3216) 0.063 0.056 0.028 0.025P case (2012) 0.022 0.020 0.010 5552Max. Temp Rise [ C] +25 C +55 C +85 C +125 C
Rev.D 10/11 ( 5 ) I m p e d a n c e f r e q u e n c y c h a r a c t e r i s t i c s ( 6 ) E S R f r e q u e n c y c h a r a c t e r i s t i c s 100 1000 10000 100000 0G475 A case (3216) 1C105 A case (3216) 1A105 P case (2012) 1 100 10k 1M 500M 100M FREQUENCY (Hz) Fig.5 IMPEDANCE (Ω) 0.1 100 0G475 A case (3216) 1C105 A case (3216) 1A105 P case (2012) 1 100 10k 1M 500M 100M FREQUENCY (Hz) Fig.6 ESR (Ω) (7) Temperature characteristics −10 −26 −55 25 CAP 120Hz 85 125 Fig.7 CAP CHANGE (%) 4V−4.7μF A case (3216) 10V−1μF P case (2012) TEMPERATURE ( C) −55 25 DF 120Hz 85 125 Fig.8 DF (%) 4V−4.7μF A case (3216) 10V−1μF P case (2012) TEMPERATURE ( C) 100 1000 0−55 25 LC 1WV 85 125 Fig.9 LC (nA) 4V−4.7μF A case (3216) 10V−1μF P case (2012) TEMPERATURE ( C) 0−55 25 IMPEDANCE 100kHz 85 125 Fig.10 IMPEDANCE (Ω) 4V−4.7μF A case (3216) 10V−1μF P case (2012) TEMPERATURE ( C)
Rev.D 11/11 The rush current is in inverse proportion to the ESR. Rush current The excessive rush current may cause a damage. Fig. 11 Max. rush current and ESR ESR Ω (100kHz) 33μF 33μF 100μF tantalum capacitor aluminum electrolysis 4.7μF 4.7μF 100 INRUSH CURRENT (A)1 0.1 0.1 1 10 100 47μF Vpp=10V llimit=20A Pulse Width=500μsec. Power OP Amp Slew Rate=10V/6μs 22μF 15μF The rush current may be reduced by the protection resistors Fig. 12 Change in I max by protection resistors V (V) 100 I (A) R I = 0.476+R V 0.1 0.1 1 10 100 I = SAMPLE 16V−3.3μF Pulse width=500μsec Slew rate=10V−6μc Current limit=20A 0.25 1.0 2.0 5.0 0.476 V R=0Ω 0.5
No technical content pages of this document may be reproduced in any form or transmitted by any means without prior permission of ROHM CO.,LTD. The contents described herein are subject to change without notice. The specifications for the product described in this document are for reference only. Upon actual use, therefore, please request that specifications to be separately delivered. Application circuit diagrams and circuit constants contained herein are shown as examples of standard use and operation. Please pay careful attention to the peripheral conditions when designing circuits and deciding upon circuit constants in the set. Any data, including, but not limited to application circuit diagrams information, described herein are intended only as illustrations of such devices and not as the specifications for such devices. ROHM CO.,LTD. disclaims any warranty that any use of such devices shall be free from infringement of any third party's intellectual property rights or other proprietary rights, and further, assumes no liability of whatsoever nature in the event of any such infringement, or arising from or connected with or related to the use of such devices. Upon the sale of any such devices, other than for buyer's right to use such devices itself, resell or otherwise dispose of the same, no express or implied right or license to practice or commercially exploit any intellectual property rights or other proprietary rights owned or controlled by ROHM CO., LTD. is granted to any such buyer. Products listed in this document are no antiradiation design. Appendix1-Rev2.0 Thank you for your accessing to ROHM product informations. More detail product informations and catalogs are available, please contact your nearest sales office. ROHM Customer Support System THE AMERICAS / EUPOPE / ASIA / JAPAN Contact us : webmaster@ rohm.co.jpwww.rohm.com Copyright © 2007 ROHM CO.,LTD. The products listed in this document are designed to be used with ordinary electronic equipment or devices (such as audio visual equipment, office-automation equipment, communications devices, electrical appliances and electronic toys). Should you intend to use these products with equipment or devices which require an extremely high level of reliability and the malfunction of which would directly endanger human life (such as medical instruments, transportation equipment, aerospace machinery, nuclear-reactor controllers, fuel controllers and other safety devices), please be sure to consult with our sales representative in advance. It is our top priority to supply products with the utmost quality and reliability. However, there is always a chance of failure due to unexpected factors. Therefore, please take into account the derating characteristics and allow for sufficient safety features, such as extra margin, anti-flammability, and fail-safe measures when designing in order to prevent possible accidents that may result in bodily harm or fire caused by component failure. ROHM cannot be held responsible for any damages arising from the use of the products under conditions out of the range of the specifications or due to non-compliance with the NOTES specified in this catalog. 21, Saiin Mizosaki-cho, Ukyo-ku, Kyoto 615-8585, Japan TEL : +81-75-311-2121 FAX : +81-75-315-0172 Appendix