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  hzm-n series silicon epitaxial planar zener diode for stabilizer ade-208-130c (z) rev. 3 features _ wide spectrum from 1.9v through 38v of zener voltage provide flexible application. _ mpak package is suitable for high density surface mounting and high speed assembly. ordering information type no. laser mark package code hzm-n series let to mark code mpak outline 1 nc 2 anode 3 cathode (top view) 2 1 3
hzm-n series 2 absolute maximum ratings (ta = 25c) item symbol value unit power dissipation pd* 200 mw junction temperature tj 150 c storage temperature tstg C 55 to +150 c note: see fig. 3.
hzm-n series 3 electrical characteristics (ta = 25c) zener voltage* reverse current dynamic resistance v z (v) test condition i r (a) test condition r d ( w w ) test condition type grade min max i z (ma) max v r (v) max i z (ma) hzm2.0n b 1.90 2.20 5 120 0.5 100 5 hzm2.2n b 2.10 2.40 5 120 0.7 100 5 hzm2.4n b 2.30 2.60 5 120 1.0 100 5 hzm2.7n b 2.50 2.90 5 120 1.0 110 5 b1 2.50 2.75 b2 2.65 2.90 hzm3.0n b 2.80 3.20 5 50 1.0 120 5 b1 2.80 3.05 b2 2.95 3.20 hzm3.3n b 3.10 3.50 5 20 1.0 130 5 b1 3.10 3.35 b2 3.25 3.50 hzm3.6n b 3.40 3.80 5 10 1.0 130 5 b1 3.40 3.65 b2 3.55 3.80 hzm3.9n b 3.70 4.10 5 10 1.0 130 5 b1 3.70 3.97 b2 3.87 4.10 hzm4.3n b 4.01 4.48 5 10 1.0 130 5 b1 4.01 4.21 b2 4.15 4.34 b3 4.28 4.48 hzm4.7n b 4.42 4.90 5 10 1.0 130 5 b1 4.42 4.61 b2 4.55 4.75 b3 4.69 4.90 hzm5.1n b 4.84 5.37 5 5 1.5 130 5 b1 4.84 5.04 b2 4.98 5.20 b3 5.14 5.37 note: tested with pulse (p w = 40ms)
hzm-n series 4 electrical characteristics (ta = 25c) (cont) zener voltage* reverse current dynamic resistance v z (v) test condition i r (a) test condition r d ( w w ) test condition type grade min max i z (ma) max v r (v) max i z (ma) hzm5.6n b 5.31 5.92 5 5 2.5 80 5 b1 5.31 5.55 b2 5.49 5.73 b3 5.67 5.92 hzm6.2n b 5.86 6.53 5 2 3.0 50 5 b1 5.86 6.12 b2 6.06 6.33 b3 6.26 6.53 hzm6.8n b 6.47 7.14 5 2 3.5 30 5 b1 6.47 6.73 b2 6.65 6.93 b3 6.86 7.14 hzm7.5n b 7.06 7.84 5 2 4.0 30 5 b1 7.06 7.36 b2 7.28 7.60 b3 7.52 7.84 hzm8.2n b 7.76 8.64 5 2 5.0 30 5 b1 7.76 8.10 b2 8.02 8.36 b3 8.28 8.64 hzm9.1n b 8.56 9.55 5 2 6.0 30 5 b1 8.56 8.93 b2 8.85 9.23 b3 9.15 9.55 hzm10n b 9.45 10.55 5 2 7.0 30 5 b1 9.45 9.87 b2 9.77 10.21 b3 10.11 10.55 note: tested with pulse (p w = 40ms)
hzm-n series 5 electrical characteristics (ta = 25c) (cont) zener voltage * reverse current dynamic resistance v z (v) test condition i r (a) test condition r d ( w w ) test condition type grade min max i z (ma) max v r (v) max i z (ma) hzm11n b 10.44 11.56 5 2 8.0 30 5 b1 10.44 10.88 b2 10.76 11.22 b3 11.10 11.56 hzm12n b 11.42 12.60 5 2 9.0 35 5 b1 11.42 11.90 b2 11.74 12.24 b3 12.08 12.60 hzm13n b 12.47 13.96 5 2 10.0 35 5 b1 12.47 13.03 b2 12.91 13.49 b3 13.37 13.96 hzm15n b 13.84 15.52 5 2 11.0 40 5 b1 13.84 14.46 b2 14.34 14.98 b3 14.85 15.52 hzm16n b 15.37 17.09 5 2 12.0 40 5 b1 15.37 16.01 b2 15.85 16.51 b3 16.35 17.09 hzm18n b 16.94 19.03 5 2 13.0 45 5 b1 16.94 17.70 b2 17.56 18.35 b3 18.21 19.03 hzm20n b 18.86 21.08 5 2 15.0 50 5 b1 18.86 19.70 b2 19.52 20.39 b3 20.21 21.08 note: tested with pulse (p w = 40ms)
hzm-n series 6 electrical characteristics (ta = 25c) (cont) zener voltage* reverse current dynamic resistance v z (v) test condition i r (a) test condition r d ( w w ) test condition type grade min max i z (ma) max v r (v) max i z (ma) hzm22n b 20.88 23.17 5 2 17.0 55 5 b1 20.88 21.77 b2 21.54 22.47 b3 22.23 23.17 HZM24N b 22.93 25.57 5 2 19.0 60 5 b1 22.93 23.96 b2 23.72 24.78 b3 24.54 25.57 hzm27n b 25.10 28.90 2 2 21.0 70 2 hzm30n b 28.00 32.00 2 2 23.0 80 2 hzm33n b 31.00 35.00 2 2 25.0 80 2 hzm36n b 34.00 38.00 2 2 27.0 90 2 note: tested with pulse (p w = 40ms)
hzm-n series 7 mark code type grade mark no. type grade mark no. type grade mark no. hzm2.0n b 2 0 C hzm7.5n b1 7 5 1 hzm20n b1 2 0 1 hzm2.2n b 2 2 C b2 7 5 2 b2 2 0 2 hzm2.4n b 2 4 C b3 7 5 3 b3 2 0 3 hzm2.7n b1 2 7 1 hzm8.2n b1 8 2 1 hzm22n b1 2 2 1 b2 2 7 2 b2 8 2 2 b2 2 2 2 hzm3.0n b1 3 0 1 b3 8 2 3 b3 2 2 3 b2 3 0 2 hzm9.1n b1 9 1 1 HZM24N b1 2 4 1 hzm3.3n b1 3 3 1 b2 9 1 2 b2 2 4 2 b2 3 3 2 b3 9 1 3 b3 2 4 3 hzm3.6n b1 3 6 1 hzm10n b1 1 0 1 hzm27n b 2 7 C b2 3 6 2 b2 1 0 2 hzm30n b 3 0 C hzm3.9n b1 3 9 1 b3 1 0 3 hzm33n b 3 3 C b2 3 9 2 hzm11n b1 1 1 1 hzm36n b 3 6 C hzm4.3n b1 4 3 1 b2 1 1 2 b2 4 3 2 b3 1 1 3 b3 4 3 3 hzm12n b1 1 2 1 hzm4.7n b1 4 7 1 b2 1 2 2 b2 4 7 2 b3 1 2 3 b3 4 7 3 hzm13n b1 1 3 1 hzm5.1n b1 5 1 1 b2 1 3 2 b2 5 1 2 b3 1 3 3 b3 5 1 3 hzm15n b1 1 5 1 hzm5.6n b1 5 6 1 b2 1 5 2 b2 5 6 2 b3 1 5 3 b3 5 6 3 hzm16n b1 1 6 1 hzm6.2n b1 6 2 1 b2 1 6 2 b2 6 2 2 b3 1 6 3 b3 6 2 3 hzm18n b1 1 8 1 hzm6.8n b1 6 8 1 b2 1 8 2 b2 6 8 2 b3 1 8 3 b3 6 8 3
hzm-n series 8 example of marking 2. two grade type (b1, b2) hzm3.0nb2 302 301 hzm3.0nb1 3. three grade type (b1, b2, b3) hzm4.3nb2 432 431 hzm4.3nb1 hzm4.3nb3 433 notes: 1. 2. 3. the grade b type includes from b1 min. to b3 (or b2) max. b grade is standard and has better delivery, these are marked one of b1, b2, b3. ordering p/n hzm-n series are delivered taped (tl/tr). choose one taping code and adhere to parts no. example: hzm2.0nbtl (or tr), hzm2.2nbtl (or tr), hzm36nbtl (or tr). (grade b type) hzm2.7nb1tl (or tr), hzm2.7nb2tl (or tr) HZM24Nb3tl (or tr). (grade b1, b2, b3 type) 1. one grade type (grade type b) hzm30nb 30 - - underline 20 - hzm2.0nb
hzm-n series 9 10 8 6 4 2 0 4 8 12 16 20 zener current i (ma) z zener voltage v (v) z 24 28 32 40 36 hzm6.8n hzm12n hzm15n hzm18n hzm2.0n hzm20n hzm22n hzm33n hzm36n hzm30n hzm2.4n hzm3.0n hzm3.6n hzm4.3n hzm5.1n hzm6.2n hzm7.5n hzm8.2n hzm9.1n hzm10n hzm11n hzm13n hzm16n HZM24N hzm27n fig.1 zener current vs. zener voltage 05 10 15 20 25 zener voltage temperature coefficient (%/ c) g ?.06 zener voltage temperature coefficient (mv/ c) z g 30 35 40 45 ?.05 ?.04 ?.03 ?.02 ?.01 0 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.08 0.09 0.10 ?5 ?0 ?5 ?0 ? 0 5 10 15 20 25 30 35 40 z zener voltage v (v) %/ c mv/ c z fig.2 temperature coefficient vs. zener voltage
hzm-n series 10 250 200 150 100 50 200 150 100 50 0 ambient temperature ta ( c) power dissipation p (mw) d 0 printed circuit board 25 62 1.6t mm material: glass epoxy resin + cu foil cu foil 1.0mm 0.8mm fig.3 power dissipation vs. ambient temperature


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