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  1 rohs compliant smps stacked mlc capacitors (rm style) technical information on smps capacitors temperature coefficient c0g: a temperature coefficient - 0 30 ppm/c, -55 to +125c x7r: c temperature coefficient - 15%, -55 to +125c z5u: e temperature coefficient - +22, -56%, +10 to +85c capacitance test (mil-std-202 method 305) c0g: 25c, 1.00.2 vrms (open circuit voltage) at 1khz x7r: 25c, 1.00.2 vrms (open circuit voltage) at 1khz z5u: 25c, 0.5 vrms max (open circuit voltage) at 1khz dissipation factor 25c c0g: 0.15% max @ 25c, 1.00.2 vrms (open circuit voltage) at 1khz x7r: 2.5% max @ 25c, 1.00.2 vrms (open circuit voltage) at 1khz z5u: 3.0% max @ 25c, 0.5 vrms max (open circuit voltage) at 1khz insulation resistance 25c (mil-std-202 method 302) c0g and x7r: 100k m or 1000 m-f, whichever is less. z5u: 10k m or 1000 m-f, whichever is less. insulation resistance 125c (mil-std-202 method 302) c0g and x7r: 10k m or 100 m-f, whichever is less. z5u: 1k m or 100 m-f, whichever is less. dielectric withstanding voltage 25c (flash test) c0g and x7r: 250% rated voltage for 5 seconds with 50 ma max charging current. (500 volt units @ 750 vdc) z5u: 200% rated voltage for 5 seconds with 50 ma max charging current. life test (1000 hrs) c0g and x7r: 200% rated voltage at +125c. (500 volt units @ 600 vdc) z5u: 150% rated voltage at +85c moisture resistance (mil-std-202 method 106) c0g, x7r, z5u: ten cycles with no voltage applied. thermal shock (mil-std-202 method 107, condition a) immersion cycling (mil-std-202 method 104, condition b) resistance to solder heat (mil-std-202, method 210, condition b, for 20 seconds) typical esr performance (m) aluminum low esr solid aluminum mlcc mlcc electrolytic solid tantalum electrolytic smps smps 100f/50v 100f/10v 100f/16v 100f/50v 4.7f/50v esr @ 10khz 300 72 29 3 66 esr @ 50khz 285 67 22 2 23 esr @ 100khz 280 62 20 2.5 15 esr @ 500khz 265 56 18 4 8 esr @ 1mhz 265 56 17 7 7.5 esr @ 5mhz 335 72 17 12.5 8 esr @ 10mhz 560 91 22 20 14 electrical specifications how to order avx styles: rm-1, rm-2, rm-3, rm-4, rm-5, rm-6 note: capacitors with x7r and z5u dielectrics are not intended for applications across ac supply mains or ac line filtering with polarity reversal. contact plant for recommendations. rm0 avx style rm0 = uncoated RM5 = epoxy coated 1 size see dimensions chart 7 voltage 50v = 5 100v = 1 200v = 2 500v = 7 c temperature coefficient c0g = a x7r = c z5u = e 106 capacitance code (2 significant digits + number of zeros) 10 pf = 100 100 pf = 101 1,000 pf = 102 22,000 pf = 223 220,000 pf = 224 1f = 105 10 f = 106 100 f = 107 m capacitance tolerance c0g: j = 5% k = 10% m = 20% x7r: k = 10% m = 20% z = +80%, -20% z5u: m = 20% z = +80%, -20% p = gmv (+100, -0%) a test level a = standard n termination n = straight lead j = leads formed in l = leads formed out p = p style leads z = z style leads 650 height max dimension a 120 = 0.120" 240 = 0.240" 360 = 0.360" 480 = 0.480" 650 = 0.650"
2 d a b 0.508 (0.020) ty p . 2.54 (0.100) typ. 2.54 (0.100) max. 0.635 (0.025) min. 1.397 (0.055) 0.254 (0.010) 6.35 (0.250) min. e c chip separation 0.254 (0.010) typ. 0.254 (0.010) typ. no. of leads style a (max.) b (max.) c .635 (0.025) d .635 (0.025) e (max.) per side rm-1 11.4 (0.450) 52.1 (2.050) 12.7 (0.500) 20 rm-2 20.3 (0.800) 38.4 (1.510) 22.1 (0.870) 15 rm-3 11.4 (0.450) 26.7 (1.050) 12.7 (0.500) 10 rm-4 10.2 (0.400) 10.2 (0.400) 11.2 (0.440) 4 rm-5 6.35 (0.250) 6.35 (0.250) 7.62 (0.300) 3 rm-6 31.8 (1.250) 52.1 (2.050) 34.3 (1.350) 20 note: for RM5 add 0.127 (0.005) to max. and nominal dimensions a, b, d, & e n style leads e c rad. 0.254 (0.010) (typ) detail b 0.254 (0.010) typ. chip separation 0.254 (0.010) typ. 1.270 0.254 (0.050 0.010) 2.794 0.254 (0.110 0.010) 1.778 0.254 (0.070 0.010) 3.048 0.381 (0.120 0.015) detail b z style leads e c chip separation 0.254 (0.010) typ. 0.254 (0.010) typ. b detail a 4.191 0.254 (0.165 0.010) 1.651 0.254 (0.065 0.010) 2.540 0.254 (0.100 0.010) 6.350 (0.250) min 1.016 0.254 (0.040 0.010) r 0.508 (0.020) 3 places capacitor detail a p style leads j style leads dimensions millimeters (inches) see page 10 for maximum ?a? dimension for ?n? style leads: ?a? dimension plus 1.651 (0.065) for ?j? & ?l? style leads: ?a? dimension plus 2.032 (0.080) for ?p? style leads: ?a? dimension plus 4.445 (0.175) for ?z? style leads: ?a? dimension plus 3.048 (0.120) e c chip separation 0.254 (0.010) typ. 0.254 (0.010) typ. 0.254 (0.010) rad. (typ.) 1.905 (0.075) 0.635 (0.025) typ. 1.778 (0.070) 0.254 (0.010) d a b 0.508 (0.020) ty p . 2.54 (0.100) ty p . 2.54 (0.100) max. 0.635 (0.025) min. 1.397 (0.055) 0.254 (0.010) d a b 0.508 (0.020) ty p . 2.54 (0.100) ty p . 2.54 (0.100) max. 0.635 (0.025) min. 1.397 (0.055) 0.254 (0.010) e c chip separation 0.254 (0.010) typ. 0.254 (0.010) typ. 0.254 (0.010) rad. (typ.) 1.778 (0.070) 1.905 (0.075) 0.635 (0.025) typ. 0.254 (0.010) l style leads rohs compliant smps stacked mlc capacitors (rm style) surface mount and thru-hole sytles (rm0, RM5)
3 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v 1.0 .70 .40 .18 1.2 1.0 .60 .26 .47 .40 .20 .09 27 12 7.0 2.6 41 18 11 4.0 18 6.0 3.6 1.3 84 32 12 ? ? 110 46 34 ? ? 40 15 6.0 ? ? max capacitance (f) available versus style with height (a) of 0.120" - 3.05mm 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v .16 .13 .07 .02 .05 .04 .02 .01 3.2 2.4 1.3 .50 7.5 1.8 1.1 .40 2.8 .68 .40 .16 80 40 24 9.4 12 4.6 3.0 ? ? 4.6 1.8 .72 ? ? 260 140 92 ? ? max capacitance (f) available versus style with height (a) of 0.240" - 6.10mm 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v 2.0 1.4 .80 .36 2.4 2.0 1.2 .52 1.0 .80 .40 .18 54 24 14 5.2 82 36 22 8.0 36 12 7.2 2.6 160 64 24 ? ? 230 92 68 ? ? 80 30 12 ? ? 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v .32 .26 .14 .05 .10 .08 .05 .02 6.4 4.8 2.6 1.0 15 3.6 2.2 .80 5.6 1.3 .80 .32 160 80 48 18 24 9.2 6.0 ? ? 9.2 3.6 1.4 ? ? 520 280 180 ? ? max capacitance (f) available versus style with height (a) of 0.360" - 9.14mm 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v 3.0 2.1 1.2 .54 3.6 3.0 1.8 .78 1.5 1.2 .60 .27 82 36 21 7.8 120 54 33 12 54 18 10 3.9 250 96 36 ? ? 350 130 100 ? ? 120 45 18 ? ? 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v .48 .39 .21 .07 .15 .12 .07 .03 9.6 7.2 3.9 1.5 22 5.4 3.3 1.2 8.2 2.0 1.2 .48 240 120 72 28 36 13 9.0 ? ? 13 5.4 2.1 ? ? 780 430 270 ? ? max capacitance (f) available versus style with height (a) of 0.480" - 12.2mm 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v 4.0 2.8 1.6 .72 4.8 4.0 2.2 1.0 2.0 1.6 .80 .36 110 48 28 10 160 72 44 16 72 24 14 5.2 330 120 48 ? ? 470 180 130 ? ? 160 60 24 ? ? 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v .64 .52 .28 .10 .20 .16 .10 .04 12 9.6 5.2 2.0 30 7.2 4.4 1.6 10 2.7 1.6 .64 320 160 96 37 48 18 12 ? ? 18 7.2 2.8 ? ? 1000 570 360 ? ? max capacitance (f) available versus style with height (a) of 0.650" - 16.5mm 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v 5.0 3.5 2.0 .90 6.0 5.0 3.0 1.3 2.5 2.0 1.0 .47 130 60 35 13 200 90 55 20 90 30 18 6.5 420 160 60 ? ? 590 230 170 ? ? 200 75 30 ? ? 50v 100v 200v 500v 50v 100v 200v 500v 50v 100v 200v 500v .80 .65 .35 .12 .25 .20 .12 .05 16 12 6.5 2.5 36 9.0 5.5 2.0 12 3.4 2.0 .80 400 200 120 47 60 23 15 ? ? 23 9.0 3.6 ? ? 1300 720 460 ? ? rm01 _ _ _ _ _ _ an120 rm02 _ _ _ _ _ _ an120 rm03 _ _ _ _ _ _ an120 rm04 _ _ _ _ _ _ an120 rm05 _ _ _ _ _ _ an120 rm06 _ _ _ _ _ _ an120 avx style c0g x7r z5u rm01 _ _ _ _ _ _ an240 rm02 _ _ _ _ _ _ an240 rm03 _ _ _ _ _ _ an240 rm04 _ _ _ _ _ _ an240 rm05 _ _ _ _ _ _ an240 rm06 _ _ _ _ _ _ an240 avx style c0g x7r z5u rm01 _ _ _ _ _ _ an360 rm02 _ _ _ _ _ _ an360 rm03 _ _ _ _ _ _ an360 rm04 _ _ _ _ _ _ an360 rm05 _ _ _ _ _ _ an360 rm06 _ _ _ _ _ _ an360 avx style c0g x7r z5u rm01 _ _ _ _ _ _ an480 rm02 _ _ _ _ _ _ an480 rm03 _ _ _ _ _ _ an480 rm04 _ _ _ _ _ _ an480 rm05 _ _ _ _ _ _ an480 rm06 _ _ _ _ _ _ an480 avx style c0g x7r z5u rm01 _ _ _ _ _ _ an650 rm02 _ _ _ _ _ _ an650 rm03 _ _ _ _ _ _ an650 rm04 _ _ _ _ _ _ an650 rm05 _ _ _ _ _ _ an650 rm06 _ _ _ _ _ _ an650 avx style c0g x7r z5u rohs compliant smps stacked mlc capacitors (rm style)


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