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  d i e l e c t r i c l a b o r a t o r i e s i n c . 2 7 7 7 r o u t e 2 0 e a s t c a z e n o v i a , n e w y o r k , u s a 1 3 0 3 5 - 9 4 3 3 p h o n e 3 1 5 . 6 5 5 . 8 7 1 0 f a x 3 1 5 . 6 5 5 . 0 4 4 5 w w w . d i l a b s . c o m e m a i l s a l e s @ d i l a b s . c o m o r e u r o p e s a l e s @ d i l a b s . c o m o r a s i a s a l e s @ d i l a b s . c o m 8 w width l length (maximum) t thickness 1 (50 volts) t thickness 1 (100 volts) standard capacitance range style inches mm inches mm inches mm inches mm pf d10 .010 + .000 - .003 .254 + .000 - .076 .010 .254 .004 .001 .102 .025 - - .02 - 100 d12 .012 + . 002 - .003 .305 + .051 - .076 .015 .381 .004 .001 .102 .025 - - .03 ? 200 d15 .015 + .000 - .003 .381 + .000 - .076 .020 .508 .004 .001 .102 .025 .006 .001 .152 .025 .04 - 350 d20 .020 + .000 - .003 .508 + .000 - .076 .020 .508 .004 .001 .102 .0 25 .006 .001 .152 .025 .06 ? 470 d25 .025 + .000 - .003 .635 + .000 - .076 .030 .762 .004 .001 .102 .025 .006 .001 .152 .025 .10 ? 800 d30 .030 + .000 - .003 .762 + .000 - .076 .030 .762 .004 .001 .102 .025 .006 .001 .152 .025 .15 ? 1000 d 35 .035 .005 .889 .127 .040 1.016 .004 .001 .102 .025 .007 .002 .178 .051 .20 ? 1500 d 50 .050 .010 1.270 .254 .060 1.524 - - .007 .002 .178 .051 .30 ? 3700 d70 .070 .010 1.778 .254 .080 1.778 - - .008 .002 .203 .051 .55 ? 6500 d90 .090 .010 2.286 .254 .100 2.540 - - .010 .004 .254 .102 .65 ? 10,000 dicap ? ? dimensions functional applications: dc blocking rf bypass filtering tuning submounts benefit s: gold metallization for wire bonding rugged construction custom sizes at commercial prices thin film technology esd proof maximum thickness does not apply for capacitance values below 0.5pf ux thickness only available in .005?, .010? and .015? n n n nn n nn n n 0.02 0.03 0.04 0.05 0.06 0.07 0.08 0.09 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 0.55 0.6 0.65 0.7 0.75 0.8 0.85 0.9 0.95 1 1.1 1.2 1.3 1.4 1.5 1.6 1.7 1.8 1.9 2 2.2 2.4 2.7 3 3.3 3.6 3.9 4.3 4.7 5.1 5.6 6.2 6.8 7.5 8.2 9.1 10 11 12 13 15 16 18 20 22 24 27 30 33 36 39 43 47 51 56 62 68 75 82 91 100 110 120 130 150 160 180 200 220 240 270 300 330 360 390 430 470 510 560 620 680 750 820 910 1000 110 1200 1300 1500 1600 1800 2000 220 2400 2700 3000 3300 3600 3900 4300 t able of s t andard v alues (pf) 5300 6500 10,000 dicap dicap ? ? high performance single-layer capacitors for rf, microwave, and millimeter-wave applications
9 leaded dicap ? ? dimensions see dicap ? termination code table (on pg. 6) for available lead configurations. lead material is 0.002? pure silver, (ag), 0.002?.0005? thick. leads are attached with ausn, 80%/20% eutectic alloy. re - flow temperature is 280 c minimum. pure gold, (a u) leads are available. consult factory for details. w lead width (minimum) w lead width (maximum) l lead length (minimum) style inches mm inches mm inches mm d10 .0035 .0889 .007 .1778 .250 6.350 d12 .0045 .1143 .009 .2286 .250 6.350 d15 .0065 .1 651 .013 .3302 .250 6.350 d20 .0085 .2159 .017 .2159 .250 6.350 d25 .011 .2794 .022 .5588 .250 6.350 d30 .0135 .3429 .027 .6858 .250 6.350 d35 .015 .381 .030 .762 .250 6.350 d50 .020 .508 .040 1.016 .250 6.350 d70 .030 .762 .060 1.524 .250 6.350 d90 .040 1.016 .080 2.032 .250 6.350 see dicap ? termination code table for available lead configurations. lead material is 0.002? pure silver, (ag), 0.002? .0005? thick. leads are attached with au sn, 80%/20% eutectic alloy. re flow temperature is 280 c minimum. pure gold, (au) leads are ava ilable. consult factory for details. see dicap ? termination code table (on pg. 6) for available lead configurations. lead material is 0.002? pure silver, (ag), 0.002?.0005? thick. leads are attached with ausn, 80%/20% eutectic alloy. re -flow temperature is 280 c minimum. pure gold, (a u) leads are available. consult factory for details. w lead width (minimum) inches .0035 .0045 .0065 .0085 .011 .0135 .015 .020 .030 . 040 chip dimensions per dicap dimensions table. custom lead dimensions are available. consult factory for details. dicap ? ? designer kits 160 capacitors, 10 each of 16 values 10 capacitors of each value part number capacitor width dielectric pf tol. pf tol. pf tol. pf tol. class i, see codes on pg. 5 .1 .4 b b .6 1.0 c c 1.5 2.2 c d 2.7 3.3 d d d10xxkita5px .010? class ii, see codes on pg. 5 3.9 4.7 d d 5.6 6.2 m m 8.2 10 m m 20 33 m m class i, see codes on pg. 5 .1 .4 b b .6 1.0 c c 1.5 2.2 c c 3.3 5.6 d d d15xxkita5px d20xxkita5px .015? .020? class ii, see c odes on pg. 5 6.8 8 .2 k k 10 1 5 k k 20 3 3 m m 50 1 00 m m c lass i, see c o des on pg. 5 . 4 . 6 1 .0 b c c 1 .5 2 .2 2 .7 c c c 3 .3 4 .7 5 .6 d d d 8 .2 1 0 2 0 k k k d 25xxkita5px d 30xxkita5px . 025? . 030? class ii, see codes on pg. 5 33 m 50 m 100 m 180 m n nn n nn dli reserves the right to substitute values as required. customer may request specific cap value and material for sample kit. w l axial beam lead l w single beam lead w l standing axial beam lead ? ? rf, microwave, and millimeter-wave applications
capacitance(pf) r02 = 0.02 pf 0r5 = 0.5 pf 1r0 = 1.0 pf 5r1 = 5.1 pf 100 = 10 pf 101 = 100 pf 432 = 4300 pf see capacitance tables for available values. consult factory for custom solutions. pr oduct d = single layer capacitor (dicap ? ) v oltage c = 16v 5 = 50v 1 = 100v material see material tables on page 5 in the general section. d i e l e c t r i c l a b o r a t o r i e s i n c . 2 7 7 7 r o u t e 2 0 e a s t c a z e n o v i a , n e w y o r k , u s a 1 3 0 3 5 - 9 4 3 3 p h o n e 3 1 5 . 6 5 5 . 8 7 1 0 f a x 3 1 5 . 6 5 5 . 0 4 4 5 w w w . d i l a b s . c o m e m a i l s a l e s @ d i l a b s . c o m o r e u r o p e s a l e s @ d i l a b s . c o m o r a s i a s a l e s @ d i l a b s . c o m 10 class i dielectric materials style la pi pg ah cf na cd ng cg db np nr ns nu nv min 0.02 0.03 0.04 0.06 0.07 0.06 0.10 0.15 0.20 0.20 0.25 0.45 0.80 1.6 2.4 d10 max 0.02 0.05 0.06 0.10 0.10 0.10 0.15 0.20 0.35 0.35 0.40 0.80 1.5 3.0 4.3 min 0.03 0.04 0.06 0.08 0.10 0.09 0.15 0.20 0.30 0.30 0.35 0.65 1.2 2.4 3.6 d12 max 0.06 0.10 0.10 0.20 0.25 0.20 0.35 0.45 0.75 0.75 0.90 1.7 3.0 6.2 9.1 min 0.04 0.06 0.08 0.15 0.15 0.15 0.25 0.25 0.45 0.45 0.50 1.0 1.8 3.6 5.6 d15 max 0.08 0.15 0.20 0.30 0.35 0.30 0.55 0.65 1.1 1.1 1.3 2.4 4.7 9.1 13 min 0.06 0.09 0.15 0.20 0.20 0.20 0.35 0.40 0.65 0.65 0.75 1.5 2.7 5.6 8.2 d20 max 0.10 0.20 0.25 0.40 0.50 0.45 0.75 0.90 1.4 1.5 1.8 3.3 6.2 12 18 min 0.10 0.20 0.25 0.35 0.45 0.40 0.65 0.75 1.2 1.3 1.5 2.7 5.1 11 16 d25 max 0.20 0.40 0.50 0.80 0.95 0.90 1.5 1.7 2.7 2.7 3.3 6.2 12 24 36 min 0.15 0.25 0.30 0.45 0.55 0.50 0.85 0.95 1.6 1.6 1.9 3.6 6.8 15 20 d30 max 0.25 0.45 0.60 0.95 1.1 1.0 1.8 2.0 3.3 3.3 3.9 7.5 13 27 43 min 0.20 0.35 0.50 0.7 0 0.85 0.80 1.3 1.5 2.7 2.7 3.0 5.6 11 22 33 d35 max 0.50 0.85 1.1 1.8 2.0 1.9 3.3 3.6 6.2 6.2 7.5 13 27 51 75 class ii materials style bf bd bg bc be bl bj bn bt bu bv ux* min 1.2 1.8 2.4 3.6 3.3 5.6 9.1 12 12 22 36 d10 max 2.2 3.6 4.3 6.2 6.2 10 16 22 22 43 68 100 min 1.8 3.0 3.6 5.1 5.1 8.2 13 18 18 36 56 d12 max 4.7 7.5 9.1 13 13 20 33 47 47 91 130 200 min 2.7 4.3 5.6 7.5 7.5 12 20 27 27 51 82 d15 max 6.8 11 13 20 18 30 51 68 68 130 200 350 min 4.3 6.2 8.2 12 12 18 30 43 43 75 120 200 d20 max 9.1 13 18 27 24 39 68 91 91 180 270 470 min 8 12 16 22 22 36 56 82 82 150 240 270 d25 max 18 27 36 51 51 82 130 180 180 330 510 800 min 10 16 20 30 30 47 75 100 100 200 300 360 d30 max 22 33 43 62 62 91 160 220 220 390 620 1000 min 16 27 33 47 47 75 120 160 160 300 510 560 d35 max 39 62 75 110 110 180 270 390 390 750 1200 1500 part number identification d 10 cf 0r1 b 5 p x t olerance a = 0.05pf b = 0.10pf c = 0.25pf d = 0.5pf f = 1% g = 2% j = 5% k = 10% l = 15% m = 20% z = + 80% -20% termination p = ni / au t = ni / ausn m = au l = single beam lead a = axial beam lead s = standing axial beam lead test level y, x, a, b, c, d and e. seetest level codes on page 7 in general section. case size 10 12 15 20 25 30 35 50 70 90 dicap dicap ? ? high performance single-layer capacitors for rf, microwave, and millimeter-wave applications * ux capacitors are 16 volt rated capacitance range vs. case size by dielectric material 50 volt slc
class i dielectric materials style la pi pg ah cf na cd ng cg db np nr ns nu nv min 0.03 0.04 0.06 0.08 0.1 0.09 0.15 0.20 0.30 0.30 0.35 0.65 1.2 2.4 3.6 d15 max 0.05 0.10 0.10 0.20 0.25 0.20 0.35 0.45 0.70 0.75 0.85 1.6 3.0 6.2 9.1 min 0 .04 0.06 0.08 0.15 0.15 0.15 0.25 0.30 0.45 0.45 0.55 1.0 1.9 3.9 5.6 d20 max 0.08 0.10 0.15 0.25 0.30 0.30 0.50 0.60 0.95 1.0 1.2 2.2 3.9 8.2 12 min 0.07 0.15 0.20 0.25 0.30 0.30 0.45 0.50 0.85 0.85 1.0 1.9 3.6 7.5 11 d25 max 0.15 0.25 0.35 0.50 0.65 0.6 0 1.0 1.1 1.9 1.9 2.2 4.3 8.2 16 24 min 0.09 0.15 0.20 0.35 0.40 0.35 0.60 0.65 1.1 1.1 1.3 2.7 4.7 9.1 15 d30 max 0.15 0.30 0.40 0.65 0.75 0.70 1.2 1.4 2.2 2.2 2.7 5.1 9.1 18 27 min 0.15 0.20 0.25 0.40 0.45 0.45 0.70 0.80 1.3 1.4 1.6 3.0 5.6 12 18 d35 max 0.30 0.55 0.75 1.2 1.4 1.3 2.2 2.4 3.9 4.3 5.1 9.1 18 36 51 min 0.30 0.50 0.60 0.95 1.1 1.1 1.7 2.0 3.3 3.3 3.9 7.5 15 30 43 d50 max 0.75 1.3 1.7 2.7 3.0 3.0 4.7 5.6 9.1 9.1 11 20 39 82 120 min 0.55 0.95 1.2 1.9 2.4 2.2 3.6 4.3 6.8 6.8 8 15 30 56 91 d70 max 1.10 2.0 2.7 3.9 4.7 4.3 7.5 8.2 13 15 16 33 62 120 180 min 0.65 1.2 1.5 2.4 3.0 2.7 4.3 5.1 8.2 8.2 10 20 36 68 110 d90 max 1.80 3.0 3.9 6.2 7.5 6.8 12 13 22 22 27 51 91 180 270 11 capacitance range vs. case size by dielectric material class ii materials style bf bd bg bc be bl bj bn bt bu bv ux * min 1.8 3.0 3.6 5.6 5.1 8.2 13 18 18 36 56 d15 max 4.3 6.8 9.1 13 13 20 33 47 47 82 130 350 min 2.7 4.3 5.6 8 8 13 20 30 30 56 82 200 d20 max 6.2 9 12 18 16 27 47 62 62 120 180 470 min 5.6 8 11 16 15 24 39 56 56 100 160 270 d 25 max 12 18 24 33 33 51 82 120 120 220 360 800 min 6.8 11 15 20 20 33 51 68 68 130 220 360 d30 max 13 22 27 43 39 62 100 130 130 270 430 1000 min 9.1 13 18 24 24 39 62 91 91 160 270 560 d35 max 24 39 51 7 5 75 120 180 270 270 510 750 1500 min 22 33 43 62 62 100 160 220 220 390 620 1200 d50 max 56 91 120 160 160 270 430 560 560 1100 1800 3700 min 43 68 91 120 120 200 330 430 430 820 1300 2200 d70 m ax 9 1 1 30 1 80 2 70 2 40 3 90 6 80 9 10 9 10 1 600 2 700 6 500 m in 5 1 8 2 1 10 1 50 1 50 2 40 3 90 5 10 5 10 1 000 1 600 3 500 d 9 0 m ax 1 30 2 20 2 70 3 90 3 90 6 20 1 000 1 300 1 300 2 700 4 300 1 0,000 ? ? rf, microwave, and millimeter-wave applications * ux capacitors are 16 volt rated 100 volt slc
d i e l e c t r i c l a b o r a t o r i e s i n c . 2 7 7 7 r o u t e 2 0 e a s t c a z e n o v i a , n e w y o r k , u s a 1 3 0 3 5 - 9 4 3 3 p h o n e 3 1 5 . 6 5 5 . 8 7 1 0 f a x 3 1 5 . 6 5 5 . 0 4 4 5 w w w . d i l a b s . c o m e m a i l s a l e s @ d i l a b s . c o m o r e u r o p e s a l e s @ d i l a b s . c o m o r a s i a s a l e s @ d i l a b s . c o m 4 width code measured in mils i.e. .010 = 10 length code measured in mils i.e. .010 = 10 thickness code measured in ten ? thousandths o f an inch. 0?9 are literal; k = .010, m = .020 k 2 = .012, .0065 = 65 capcad capcad tm tm bl bl download your free capcad tm modeling software on dli?s homepage at: www.dilabs.com capacitor spectrum chart 10 khz 100 khz 1 mhz 10 mhz 100 mhz 1 g hz 10 ghz 100 ghz b r o a d b a n d b l o c k s h q m l c h q s l c b r o a d b a n d b l o c k s h q m l c h q s l c c08bl opti-cap milli-cap c06cf c17 c22 c40 di-cap b ar cap c06bl c11 dc blocking/decoupling low noise amplifiers power amplifie rs, high power amplifiers oscillators filters sonet dc blocking/decoupling low noise amplifiers power amplifie rs, high power amplifiers oscillators filters sonet capacitor spectrum chart capacitor spectrum chart
5 dielectric general information dielectric general information temperature coefficient - 55 c to +125 c (% maximum) insulation resistance (m w w ) dielectric code relative e e r @ 1 mhz no bias, pre voltage conditioning no bias, post voltage conditioning dissipation factor @ 1mhz (% maximum) @ +25 c @ +125 c bf 445 7.5 10 2.5 >10 4 >10 2 bd 700 10 15 2.5 >10 4 >10 3 bg 900 10 15 2.5 >10 4 >10 3 bc 1300 10 15 2.5 >10 4 >10 3 be 1250 10 15 2.5 >10 4 >10 3 bl 2000 15 25 2.5 >10 5 >10 4 bj 3300 10 15 3.0 >10 5 >10 4 bn 4500 15 25 3.0 >10 5 >1 0 4 bt 4200 +22/ - 56 ( - 55 c to +105 c) +22/ - 56 ( - 55 c to +105 c) 3.0 >10 5 >10 2 bu 8500 +22/ - 82 (+10 c to +85 c) +22/ - 82 (+10 c to +85 c) 3.0 >10 5 >10 4 b v 1 3 , 5 00 +22/ - 82 ( +10 c to +85 c ) +22/ - 82 ( +10 c to +85 c ) 3 .0 > 10 5 > 10 4 u x 3 0,000 15% 25% 2 . 5 > 10 3 > 10 2 insulation resistance (m w w ) dielectric code relative e e r @ 1 mhz temperature coefficient - 55 c to +125 c (ppm/ c maximum) dissipation factor @ 1 mhz (% maximum) @ +25 c @ +125 c la 6.0 p115 20 0.20 >10 6 >10 5 pi 9.9 p105 20 0.15 >10 6 >10 5 pg 13 p 22 30 0.15 >10 6 >10 5 ah 20 p90 20 0.15 >10 6 >10 5 cf 24 0 15 0.60 >10 6 >10 5 na 22 n30 15 0.15 >10 6 >10 5 cd 37 n20 15 0.15 >10 6 >10 5 ng 43 n220 60 0.25 >10 6 >10 5 cg 70 0 30 0.70 >10 6 >10 5 db 72 n50 30 0.15 >10 6 >10 5 np 85 n750 200 0.50 >10 4 >10 3 nr 160 n1500 500 0.25 >10 6 >10 5 ns 300 n2400 500 0.70 >10 6 >10 5 nu 600 n3700 1000 1.50 >10 6 >10 5 nv 900 n4700 1000 1.20 >10 6 >10 5 dli class i dielectric materials dli class ii dielectric materials
dielectric t emperature characteristics d i e l e c t r i c l a b o r a t o r i e s i n c . 2 7 7 7 r o u t e 2 0 e a s t c a z e n o v i a , n e w y o r k , u s a 1 3 0 3 5 - 9 4 3 3 p h o n e 3 1 5 . 6 5 5 . 8 7 1 0 f a x 3 1 5 . 6 5 5 . 0 4 4 5 w w w . d i l a b s . c o m e m a i l s a l e s @ d i l a b s . c o m o r e u r o p e s a l e s @ d i l a b s . c o m o r a s i a s a l e s @ d i l a b s . c o m 6 code description (layers in order from dielectric material to outermost) capacitor types p s1 1. 300 angstroms titanium - tungsten 2. 50 inches min. nickel - vanadium 3. 100 inches min. gold au - 100 1. 50 inches min. nickel 2. 100 inches min. gold dicap ? ,t - cap ? , bar cap, binary cap, and gap cap t s2 1. 300 angstroms titanium - tungsten 2. 50 inches min. nickel - vanadium 3. 300 inches min. gold - tin dicap ? , t - cap ? m s5 1. 300 angstroms titanium - tungsten 2. 100 inches min. gold dicap ? , t - cap ? , bar cap, binary cap, and gap cap b s1 au - 100 single border cap e s 1 a u - 1 00 d ouble border c ap l s i ngl e beam l ead. ( st andar d l ead mat er i al i s si l ver ( ag) . 002 t hi ck. opt i onal gol d ( au) ) dicap ? a axi al beam l ead. ( st andar d l ead mat er i al i s si l ver ( ag) . 002 t hi ck. opt i onal gol d ( au) ) dicap ? s st andi ng axi al beam l ead. ( st andar d l ead mat er i al i s si l ver ( ag) . 002 t hi ck. o pt i onal g ol d ( au) ) dicap ? t ermination codes
code description industrial / commercial options y 1% aql 2 side visual screening. x 1 00% 4 side visual screening. 1 % aql for the electrical parameters capacitance, dissipation factor, insulation resistance, and dielectric withstanding voltage. high re liability options a mil - prf - 49464 group a 100%, 100 +0 / - 4 hours voltage conditioning. 100% e lectrical screening 100% 6 s ide visual screening. bond strength. die s hear strength. t emperature coefficient limits. b m il - p rf - 4 9464 group b m il - p rf - 4 9464, grou p a a bove thermal shock and immersion. r esistance to soldering heat. m oisture resistance. low voltage humidity. life. d s pecial agreed upon testing to customers? f ormal specification. customer drawing required! ( may include, but is not limited to, one o r more of the following common requests.) mil - prf - 38534 class h element evaluation. mil - prf - 38534 class k element evaluation. 10(0) destructive bond pull per mil - std - 883, method 2011. 10(0) die shear per mil - std - 883, method 2019. consult factory for other alternatives or assistance in specifying custom testing. e 6 s ide visual screening per mil - std - 883, method 2032. 7 dielectric aging characteristics t est level codes mil - std - 202 parameter method condition thermal shock 107 a, (modified), - 55 c to +125 c. immersion 104 b moisture resistance 106 - resistance to solder heat 210 c, 260 c for 20 seconds. life 108 a, 96 hours @ +125 c. barometric pressure 105 b shoc k, (specified pulse) 213 i, 100g?s, 6ms. vibration, high frequency 204 g, 30g?s peak, 10hz to 2khz. mil - std - 883 parameter method condition bond strength 2011 d, 3 gr ams minimum with .001? dia wire die shear strength 2019 limit per mil - std - 883, figure 2019 - 4. t emperature cycling 1 010 c m echanical shock 2 002 b , y1, c onstant acceleration 2 001 3 ,000g?s, y1 direction environment al & physical t esting procedures capacit ance t olerance t able code description industrial / commercial options y 1% aql 2 side visual screening. x 100% 4 side visual screening. 1% aql for the electrical parameters capacitance, dissipation factor, insulation resistance, and dielectric w ithstanding voltage. h igh re l iability options a mil - prf - 49464 group a 1 00%, 100 +0 / - 4 hours voltage c onditioning. 100% e lectrical screening 100% 6 s ide visual screening. b ond strength. d ie s h ear strength. temperature coefficient limits. b mil - prf - 49464 group b mil - prf - 49464, grou p a above thermal shock and immersion. resistance to soldering heat. moisture resistance. low voltage humidity. life. d special agreed upon testing to customers? formal specification. customer drawing required! ( may include, but is not limited to, one o r more of the following common requests.) mil - prf - 38534 class h element e valuation. mil - prf - 38534 class k element evaluation. 10(0) destructive bond pull per mil - std - 883, method 2011. 10(0) die shear per mil - std - 883, method 2019. consult factory for other alternatives or assistance in specifying custom testing. e 6 s ide visual screening per mil - std - 883, method 2032. tolerance code tolerance a .05pf b .10pf c .25pf d .50pf e .5% f 1% g 2% h 3% i 4% j 5% k 10% l 15% m 20% x gmv v +100%, - 0% z +80%, - 20% s special -16 -14 -12 -10 -8 -6 -4 -2 0 0 0.1 1 10 100 1000 10000 100000 hours c a p a c i t a n c e c h a n g e % nu,nv bu,bv ux bg bn -16 -14 -12 -10 -8 -6 -4 -2 0 0 0.1 1 10 100 1000 10000 100000 hours c a p a c i t a n c e c h a n g e % bd bj bl bf bt


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