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  document number: 43006 for technical questions, contact: tantalum@vishay.com www.vishay.com revision: 10-dec-07 91 stc vishay sprague subminiature, leaded solid tantalum capacitors polar or non-polar features ? subminiature package size and light weight ? rectangular case with axial or radial leads ? 2 to 35 v dc ? 0.1 f to 470 f ? operating temperature range: - 55 c to + 125 c ? high stability and reliability ? tested in accordance with mil-prf-49137 ? unique and comprehensive custom design capability electrical characteristics operating temperature range: - 55 c to + 125 c capacitance: measured at 120 hz and 25 c with a maximum of 2.2 v dc bias and 1.0 v rms signal. capacitance tolerance: standard tolerance is 20 % for ratings 0.1 f and above, and + 40, - 20 % for ratings below 0.1 f. special tolerances are also available. dissipation factor: when measured simultaneously with capacitance, df shall not e xceed the value shown in the ratings tables. dc leakage current (dcl max.): when measured with dc voltage applied through a 1000 resistor for 5 min, dc leakage (a) shall not exceed: at 25 c: leakage current shall not exceed the values listed in the standard ratings tables at 85 c: leakage current shall not exceed 10 times the values listed in the standard ratings tables at 125 c and 66 % of rated voltage: leakage current shall not exceed 15 times the values listed in the standard ratings tables operating voltage: full working voltage up to 85 c. from 85 c to 125 c working voltage derates linearly to 66 % of the 85 c working voltage applications ? hearing aids ? portable communications ? space/avionics ? laptop computers mechanical specifications solder coated nickel leads (type n32 per mil-std-1276) are standard on all case sizes leads are weldable and/or solderable special leads are available on request (e.g. bare nickel, gold plated nickel or ribbon leads) lead length is 1 1/2" [38.1 mm] minimum on nonpolar parts on polar parts the negative lead is 1 1/4" [31.8 mm] minimum and the positive lead is 1 1/2" [38.1 mm] minimum note: (1) to complete part number in rating tables, add a or r. change suffix if special capacit ance tolerance is required. ordering information stc 1.0 35 c2 a (1) m model capacitance in f dc voltage rating at + 85 c case code lead configuration capacitance tolerance c = polar n = non-polar a = axial r = radial e = + 40, - 20 % m = 20 % k = 10 % j = 5 % example of part number code: stc1.0-35c2am
stc vishay sprague subminiature, leaded soli d tantalum capacitors polar or non-polar www.vishay.com for technical questi ons, contact: tantalum@vishay.com document number: 43006 92 revision: 10-dec-07 dimensions in inches [millimeters] case code l max. w max. t max. e e tol. d cx 0.075 [1.91] 0.050 [1.27] 0.040 [1.02] 0.030 [0.76] 0.015 [0.38] 0.007 [0.18] c0 0.100 [2.54] 0.050 [1.27] 0.040 [1.02] 0.030 [0.76] 0.015 [0.38] 0.007 [0.18] c1 0.125 [3.18] 0.070 [1.78] 0.040 [1.02] 0.050 [1.27] 0.015 [0.38] 0.010 [0.25] c2 0.165 [4.19] 0.120 [3.05] 0.070 [1.78] 0.100 [2.54] 0.020 [0.51] 0.010 [0.25] c3 0.225 [5.72] 0.185 [4.70] 0.075 [1.91] 0.150 [3.81] 0.020 [0.51] 0.010 [0.25] c4 0.290 [7.37] 0.220 [5.59] 0.110 [2.79] 0.180 [4.57] 0.025 [0.64] 0.016 [0.41] c5 0.310 [7.87] 0.230 [5.84] 0.130 [3.30] 0.200 [[5.08] 0.025 [0.64] 0.016 [0.41] c6 0.475 [12.07] 0.375 [9.53] 0.150 [3.81] 0.300 [7.62] 0.025 [0.64] 0.016 [0.41] case code la max. lr max. w max. t max. e max. e tol. d n1 0.220 [5.59] 0.180 [4.57] 0.125 [3.18] 0.125 [3.18] 0.100 [2.54] 0.020 [0.51] 0.010 [0.25] n2 0.280 [7.11] 0.240 [6.10] 0.140 [3.56] 0.180 [4.57] 0.100 [2.54] 0.025 [0.64] 0.010 [0.25] n3 0.370 [9.40] 0.315 [8.00] 0.180 [4.57] 0.220 [5.59] 0.150 [3.81] 0.025 [0.64] 0.016 [0.41] n4 0.390 [9.91] 0.335 [8.51] 0.230 [5.84] 0.230 [5.84] 0.180 [4.57] 0.025 [0.64] 0.016 [0.41] d (+) (+) (-) red epoxy polarity dot 3rd dot 2nd dot 1st dot 3rd dot 2nd dot 1st dot the 3rd dot is on the end of the cx size axial radial tolerance dot tolerance dot tt ww ll d d e axial e radial tolerance dot 2nd dot 1st dot 3rd dot tolerance dot 2nd dot 1st dot 3rd dot la lr t t d d w w non polar style polar style
document number: 43006 for technical questions, contact: tantalum@vishay.com www.vishay.com revision: 10-dec-07 93 stc subminiature, leaded soli d tantalum capacitors polar or non-polar vishay sprague standard ratings - polar capacitors capacitance (f) max df (%) max. dcl at + 25 c (a) case code part number 2 wvdc at + 85 c 0.0022 10 0.5 cx stc.0022-2cx (1) e 0.0033 10 0.5 cx stc.0033-2cx (1) e 0.0047 10 0.5 cx stc.0047-2cx (1) e 0.0068 10 0.5 cx stc.0068-2cx (1) e 0.10 10 0.5 cx stc.10-2cx (1) m 0.15 10 0.5 cx stc.15-2cx (1) m 0.22 10 0.5 cx stc.22-2cx (1) m 0.33 10 0.5 cx stc.33-2cx (1) m 0.47 10 0.5 cx stc.47-2cx (1) m 0.68 10 0.5 cx stc.68-2cx (1) m 1.0 10 0.5 cx stc1.0-2cx (1) m 1.5 10 0.5 cx stc1.5-2cx (1) m 2.2 10 0.5 cx stc2.2-2cx (1) m 2.2 10 0.5 c0 stc2.2-2c0 (1) m 6.8 10 0.5 c1 stc6.8-2c1 (1) m 100 10 2.0 c3 stc100-2c3 (1) m 3 wvdc at + 85 c 1.5 10 0.5 c0 stc1.5-3c0 (1) m 22 10 1.0 c2 stc22-3c2 (1) m 68 10 2.0 c3 stc68-3c3 (1) m 100 10 3.0 c4 stc100-3c4 (1) m 4 wvdc at + 85 c 1.0 10 0.5 c0 stc1.0-4c0 (1) m 4.7 10 0.5 c1 stc4.7-4c1 (1) m 10 8 1.0 c2 stc10-4c2 (1) m 15 8 1.0 c2 stc15-4c2 (1) m 47 8 2.0 c3 stc47-4c3 (1) m 68 8 3.0 c4 stc68-4c4 (1) m 220 15 9.0 c5 stc220-4c5 (1) m 470 15 10.0 c6 stc470-4c6 (1) m 6 wvdc at + 85 c 0.68 10 0.5 c0 stc.68-6c0 (1) m 3.3 8 0.5 c1 stc3.3-6c1 (1) m 33 6 2.0 c3 stc33-6c3 (1) m 47 6 3.0 c4 stc47-6c4 (1) m 150 10 9.0 c5 stc150-6c5 (1) m 330 15 10.0 c6 stc330-6c6 (1) m 10 wvdc at + 85 c 0.47 10 0.5 c0 stc.47-10c0 (1) m 1.5 6 0.5 c1 stc1.5-10c1 (1) m 2.2 6 0.5 c1 stc2.2-10c1 (1) m 6.8 6 1.0 c2 stc6.8-10c2 (1) m 22 6 2.0 c3 stc22-10c3 (1) m 33 6 3.0 c4 stc33-10c4 (1) m 100 8 9.0 c5 stc100-10c5 (1) m 220 6 0.5 c6 stc220-10c6 (1) m 15 wvdc at + 85 c 1.0 6 0.5 c1 stc1.0-15c1 (1) m 4.7 6 1.0 c2 stc4.7-15c2 (1) m 15 6 2.0 c3 stc15-15c3 (1) m 22 6 3.0 c4 stc22-15c4 (1) m 68 6 6.0 c5 stc68-15c5 (1) m 150 10 10.0 c6 stc150-15c6 (1) m note: (1) add a for axial, r for radial
stc vishay sprague subminiature, leaded soli d tantalum capacitors polar or non-polar www.vishay.com for technical questi ons, contact: tantalum@vishay.com document number: 43006 94 revision: 10-dec-07 standard ratings - polar capacitors capacitance (f) max df (%) max. dcl at+ 25 c (a) case code pa rt number 20 wvdc at + 85 c 0.68 6 0.5 c1 stc.68-20c1 (1) m 3.3 6 1.0 c2 stc3.3-20c2 (1) m 6.8 6 2.0 c3 stc6.8-20c3 (1) m 10 6 2.0 c3 stc10-20c3 (1) m 15 6 3.0 c4 stc15-20c4 (1) m 47 6 6.0 c5 stc47-20c5 (1) m 100 10 10.0 c6 stc100-20c6 (1) m 25 wvdc at + 85 c 0.47 6 0.5 c1 stc.47-25c1 (1) m 2.2 6 1.0 c2 stc2.2-25c2 (1) m 3.3 6 2.0 c3 stc3.3-25c3 (1) m 4.7 6 2.0 c3 stc4.7-25c3 (1) m 10 6 3.0 c4 stc10-25c4 (1) m 15 6 6.0 c5 stc15-25c5 (1) m 22 6 6.0 c5 stc22-25c6 (1) m 33 6 6.0 c5 stc33-25c5 (1) m 68 6 10.0 c6 stc68-25c6 (1) m 35 wvdc at + 85 c 0.33 6 0.5 c1 stc.33-35c1 (1) m 0.68 6 1.0 c2 stc.68-35c2 (1) m 1.0 6 1.0 c2 stc1.0-35c2 (1) m 1.5 6 1.0 c2 stc1.5-35c2 (1) m note: (1) add a for axial, r for radial standard ratings - non-polar capacitors capacitance (f) max df (%) max. dcl at + 25 c (a) case code pa rt number 2 wvdc at + 85 c 10 10 1.0 n1 stc10-2n1 (1) m 3 wvdc at + 85 c 33 10 2.0 n2 stc33-3n2 (1) m 47 8 3.0 n3 stc47-3n3 (1) m 100 10 6.0 n4 stc100-3n4 (1) m 4 wvdc at + 85 c 6.8 8 1.0 n1 stc6.8-4n1 (1) m 22 8 2.0 n2 stc22-4n2 (1) m 33 8 3.0 n3 stc33-4n3 (1) m 68 8 6.0 n4 stc68-4n4 (1) m 6 wvdc at + 85 c 4.7 6 1.0 n1 stc4.7-6n1 (1) m 15 6 2.0 n2 stc15-6n2 (1) m 22 6 3.0 n3 stc22-6n3 (1) m 47 6 6.0 n4 stc47-6n4 (1) m 10 wvdc at + 85 c 3.3 6 1.0 n1 stc3.3-10n1 (1) m 10 6 2.0 n2 stc10-10n2 (1) m 15 6 3.0 n3 stc15-10n3 (1) m 33 6 6.0 n4 stc33-10n4 (1) m note: (1) add a for axial, r for radial
document number: 43006 for technical questions, contact: tantalum@vishay.com www.vishay.com revision: 10-dec-07 95 stc subminiature, leaded soli d tantalum capacitors polar or non-polar vishay sprague standard ratings - non-polar capacitors capacitance (f) max. df (%) max. dcl at + 25 c (a) case code part number 15 wvdc at + 85 c 2.2 6 1.0 n1 stc2.2-15n1 (1) m 6.8 6 2.0 n2 stc6.8-15n2 (1) m 10 6 3.0 n3 stc10-15n3 (1) m 22 6 6.0 n4 stc22-15n4 (1) m 20 wvdc at + 85 c 1.5 6 1.0 n1 stc1.5-20n1 (1) m 4.7 6 2.0 n2 stc4.7-20n2 (1) m 6.8 6 3.0 n3 stc6.8-20n3 (1) m 15 6 6.0 n4 stc15-20n4 (1) m 25 wvdc at + 85 c 1.0 6 1.0 n1 stc1.0-25n1 (1) m 2.2 6 2.0 n2 stc2.2-25n2 (1) m 3.3 6 2.0 n2 stc3.3-25n2 (1) m 4.7 6 3.0 n3 stc4.7-25n3 (1) m 10 6 6.0 n4 stc10-25n4 (1) m 35 wvdc at + 85 c 0.68 6 1.0 n1 stc.68-35n1 (1) m note: (1) add a for axial, r for radial marking stc capacitors case sizes c3 - c6 and n2 - n4 are print marked: - capacitance is in picofarads - 1st and 2nd digits are significant figures - 3rd digit indicates the number of zeros. all other case sizes are have color dot marking: capacitance color digit in picofarads, indicated by 3 dots. 1st and 2nd dot give the significant digits. 3rd dot indicates the number of zeros. color dot location is shown on the dimensional sketches. black dot is omitted on black sleeve. black 0 brown 1 red 2 orange 3 ye l l o w 4 green 5 capacitance tolerance color tolerance blue 6 is indicated by a dot on the side of the case. black dot is omitted. gold 5 % violet 7 silver 10 % grey 8 none 20 % white 9 none + 40 %/- 20 % the positive lead is indicated by a color dot of red epoxy on the unit. e.g. yellow-violet-green = 4 700 000 pf = 4.7 f
stc vishay sprague subminiature, leaded soli d tantalum capacitors polar or non-polar www.vishay.com for technical questi ons, contact: tantalum@vishay.com document number: 43006 96 revision: 10-dec-07 performance and reliability the capacitors are tested in accordance with mil-prf- 49137, with specific requirements as follows: temperature stability: when tested per mil-prf-49137/ 6, capacitance shall be within 15 % at - 55 c and 85 c, and 10 % at 25 c after exposure to temperature extremes. df shall be within 200 % of initial limit at - 55 c, 150 % of initial limit at 85 c, and meet the initial at 25 c. dcl shall be within 10 x initial limit at 85 c, and meet the initial limit at 25 c. moisture resistance: (per method 106 of mil-std-202) after 10 cycles of 24 h at 25 c to 65 c and 80 - 98 % rh; capacitance shall be within 15 % of initial value, df within 1.5 x initial limit and leakage within 3 x initial limit. life: (per method 108 of mil-std-202) after 1000 h at 85 c and rated voltage; capacitance shall be within 10 % of initial limit, df within init ial limits, and leakage within 200 % of initial limit. surge voltage: (per mil-prf-49317) after 1000 cycles at 85 c and 1.3 x wvdc; capacitance shall be within 10 % of initial limit, df and leakage within initial limits. resistance to soldering heat: (per method 210 of mil-std-202, condition b) after immersion in 260 c molten solder to within a 1/4? of the body of the unit, there shall be no evidence of mechanical or electrical degradation. solderability: (per method 208 of mil-std-202) after dipping leads in 235 c molten solder to within 0.125" of the body of the unit, the solder shall cover 95 % of the lead surface. terminal strength: (per method 211 of mil-std-202) after the following test there shall be no loosening of the terminals or permanent damage to the terminals. test condition a: (pull test) 0.010" leads withstand 1 pound, 0.016" leads 2 pounds and 0.007" leads 1/2 pound. test condition c: (bend test) all leads shall withstand 3 - 90 bends with a 1/2 pound applied force. capacitance vs. temperature impedance vs. frequency leakage current - temperature 1.0 0.1 0.01 - 40 - 10 0 + 85 + 20 (mfd-wvdc) d.c. leakage current (a) temperature c 1 f-20 v 100 f-10 v + 10 + 5 0 - 5 - 10 - 40 - 10 + 25 + 100 + 85 (mfd-wvdc) specifica tion specifica tion typical change in capacitance % 100 f - 10 v 100 f - 10 v 1 h - 20 v temperature c 100 500 1 2 5 10 20 50 100 500 1 2 5 10 hz khz frequency khz mhz impedance (mfd-wvdc) 0.1 0.2 0.5 1.0 2.0 5.0 10 20 50 100 200 500 1k 2k 5k 10k 0.047 f-20 v 0.047 f-20 v 0.047 f-35 v 0.047 f-3 5 v 4.7 f-10 v 4.7 f-20 v 0.047 f-5 0 v 4.7 f-20 v
document number: 91000 www.vishay.com revision: 18-jul-08 1 disclaimer legal disclaimer notice vishay all product specifications and data are subject to change without notice. vishay intertechnology, inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, ?vishay?), disclaim any and all liability fo r any errors, inaccuracies or incompleteness contained herein or in any other disclosure relating to any product. vishay disclaims any and all li ability arising out of the use or application of any product describ ed herein or of any information provided herein to the maximum extent permit ted by law. the product specifications do not expand or otherwise modify vishay?s terms and conditions of purcha se, including but not limited to the warranty expressed therein, which apply to these products. no license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by any conduct of vishay. the products shown herein are not designed for use in medi cal, life-saving, or life-sustaining applications unless otherwise expressly indicated. customers using or selling vishay products not expressly indicated for use in such applications do so entirely at their own risk and agree to fully indemnify vishay for any damages arising or resulting from such use or sale. please contact authorized vishay personnel to obtain written terms and conditions regarding products designed for such applications. product names and markings noted herein may be trademarks of their respective owners.


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