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  500 mw glass axial-lead low noise zener diodes microsemi scottsdale division 8700 e. thomas rd. po box 1390, scottsdale, az 85252 usa, (480) 941-6300, fax: (480) 947-1503 page 1 copyright ? 2005 6-09-2005 rev d www. microse mi . com scottsdale division 1n4099 thru 1n4135-1, e3 and 1n4614 thru 1n4627-1, e3 do-35 1n4099?1n4135-1, e3 & 1n4614?1n4627-1, e3 (do-35) 135-1, e3 & 1n4614?1n4627-1, e3 (do-35) description appearance the popular 1n4099 thru 1n4135 and 1n4614 thru 1n4627 series of 0.5 wat t zener voltage regulators provide a select ion from 1.8 to 100 volts in standard 5% tolerances as well as tighter tolerances identified by different suffix letters on the part number. these glass axial-leaded do-35 zeners are optionall y available with an internal-metallurgical-bond by adding a ?-1? suffix and ma y also be provided as rohs compliant with an added e3 suffix. microsemi also offers numerous other zener products to meet higher and lower powe r applications. do-35 (do-204ah) important: for the most current data, consult microsemi?s website: http://www.microsemi.com features applications / benefits ? jedec registered 1n4099 thru 1n4135 and 1n4614 thru 1n4627 series ? internal metallurgical bond option available by adding a ?-1? suffix ? commercial surface mount also available in separate data sheet as 1n4099ur to 1n4135ur, and 1n4614ur to 1n4627ur in do-213aa package (consult factory for others) ? do-7 glass body axial-le aded zener equ ivalents are also available ? consult separate data sheets for the military jan, jantx, and jantxv qualified versions on the microsemi website ? rohs compliant devices available by adding ?e3? suffix ? regulates voltage over a broad operating current and temperature range ? extensive selection from 1.8 to 100 v ? standard voltage tolerances are plus/minus 5% with no suffix ? tight tolerances available in plus or minus 2% or 1% with c or d suffix respectively ? flexible axial-lead mounting terminals ? nonsensitive to esd per mil-std-750 method 1020 ? minimal capacitance (see figure 3) ? inherently radiation hard as described in microsemi micronote 050 maximum ratings mechanical and packaging ? operating and storage temperature: -65 o c to +175 o c ? thermal resistance: 250 o c/w junction to lead at 3/8 (10 mm) lead length from body, or 310 o c/w junction to ambient when mounted on fr4 pc board (1 oz cu) with 4 mm 2 copper pads and track width 1 mm, length 25 mm ? steady-state power: 0.5 watts at t l < 50 o c 3/8 inch (10 mm) from body or 0.48 w at t a < 25 o c when mounted on fr4 pc board as described for thermal resistance above (see figure 2 for derating) ? forward voltage @200 ma: 1.1 volts ? solder temperatures: 260 o c for 10 s (max) ? case: hermetically sealed axial-lead glass do-35 (do-204ah) package ? terminals: tin-lead plated or rohs compliant annealed matte-tin plated solderable per mil- std-750, method 2026 ? polarity: cathode indicated by band where diode is to be operated with the banded end positive with respect to the opposite end for zener regulation ? marking: part number ? tape & reel option: standard per eia-296 (add ?tr? suffix to part number) ? weight: 0.2 grams ? see package dimensions on last page
500 mw glass axial-lead low noise zener diodes www. microsemi . com scottsdale division 1n4099 thru 1n4135-1, e3 and 1n4614 thru 1n4627-1, e3 do-35 1n4099?1n4135-1, e3 & 1n4614?1n4627-1, e3 (do-35) *electrical characteristics @ 25 o c nominal zener voltage v z @ i zt (note 1) zener test current i zt maximum zener impedance z zt (note 2) maximum reverse current i r @ v r maximum noise density n d @ i zt (figure 1) maximum zener current i zm (note 3) maximum temp. coeff. of zener voltage vz jedec type no. volts a ohms a volts v / hz ma %/ o c 1n4614 1n4615 1.8 2.0 250 250 1200 1250 7.5 5.0 1 1 1 1 120 110 -0.075 -0.075 1n4616 1n4617 1n4618 2.2 2.4 2.7 250 250 250 1300 1400 1500 4.0 2.0 1.0 1 1 1 1 1 1 100 95 90 -0.075 -0.075 -0.075 1n4619 1n4620 1n4621 3.0 3.3 3.6 250 250 250 1600 1650 1700 0.8 7.5 7.5 1 1.5 2 1 1 1 87 85 83 -0.075 -0.075 -0.065 1n4622 1n4623 1n4624 3.9 4.3 4.7 250 250 250 1650 1600 1550 5.0 4.0 10.0 2 2 3 1 1 1 80 77 75 -0.060 -0.050 -0.050+0.020 1n4625 1n4626 1n4627 5.1 5.6 6.2 250 250 250 1500 1400 1200 10.0 10.0 10.0 3 4 5 2 4 5 70 65 61 -0.045 +0.030 -0.020 +0.040 -0.010 +0.050 1n4099 1n4100 1n4101 6.8 7.5 8.2 250 250 250 200 200 200 10.0 10.0 1.0 5.17 5.70 6.24 40 40 40 56 51 46 0.060 0.065 0.070 1n4102 1n4103 1n4104 8.7 9.1 10 250 250 250 200 200 200 1.0 1.0 1.0 6.61 6.92 7.60 40 40 40 44 42 38 0.075 0.080 0.080 1n4105 1n4106 1n4107 11 12 13 250 250 250 200 200 200 .05 .05 .05 8.44 8.12 9.857 40 40 40 35 32 29 0.080 0.080 0.080 1n4108 1n4109 1n4110 14 15 16 250 250 250 200 100 100 .05 .05 .05 10.65 11.40 12.15 40 40 40 27 25 24 0.085 0.085 0.085 1n4111 1n4112 1n4113 17 18 19 250 250 250 100 100 150 .05 .05 .05 12.92 13.67 14.44 40 40 40 22 21 20 0.090 0.090 0.090 1n4114 1n4115 1n4116 20 22 24 250 250 250 150 150 150 .01 .01 .01 15.20 16.72 18.25 40 40 40 19 17 16 0.090 0.090 0.090 1n4117 1n4118 1n4119 25 27 28 250 250 250 150 150 200 .01 .01 .01 19.00 20.45 21.28 40 40 40 15 14 14 0.090 0.090 0.095 1n4120 1n4121 1n4122 30 33 36 250 250 250 200 200 200 .01 .01 .01 22.80 25.08 27.38 40 40 40 13 12 11 0.095 0.095 0.095 1n4123 1n4124 1n4125 39 43 47 250 250 250 200 250 250 .01 .01 .01 29.65 32.65 35.75 40 40 40 9.8 8.9 8.1 0.095 0.095 0.095 1n4126 1n4127 1n4128 51 56 60 250 250 250 300 300 400 .01 .01 .01 38.76 42.60 45.60 40 40 40 7.5 6.7 6.4 0.100 0.100 0.100 1n4129 1n4130 1n4131 62 68 75 250 250 250 500 700 700 .01 .01 .01 47.10 51.68 57.00 40 40 40 6.1 5.6 5.1 0.100 0.100 0.100 1n4132 1n4133 1n4134 1n4135 82 87 91 100 250 250 250 250 800 1000 1200 1500 .01 .01 .01 .01 62.32 66.12 69.16 76.00 40 40 40 40 4.6 4.4 4.2 3.8 0.100 0.100 0.100 0.100 *jedec registered data. notes: 1. the jedec type numbers shown with no suffix have a standar d tolerance of +/-5% on the nominal zener voltage: suffix c is used to identify +/-2%; and suffix d is to identify +/-1% tolerance. v z is measured with the diode in thermal equilibrium in 25 o c still air. 2. zener impedance is derived by superimposing on i zt a 60 hz rms ac current equal to 10% of i zt (25 a). see micronote 202 for zener impedance variation with different operating currents. 3. based upon 400 mw maximum power dissipation at 25 o c lead temperature, allowance has been made for the higher voltage microsemi scottsdale division page 2 associated with operation at higher currents. copyright ? 2005 6-09-2005 rev d 8700 e. thomas rd. po box 1390, scottsdale, az 85252 usa, (480) 941-6300, fax: (480) 947-1503
500 mw glass axial-lead low noise zener diodes www. microsemi . com scottsdale division 1n4099 thru 1n4135-1, e3 and 1n4614 thru 1n4627-1, e3 do-35 1n4099?1n4135-1, e3 & 1n4614?1n4627-1, e3 (do-35) 135-1, e3 & 1n4614?1n4627-1, e3 (do-35) circuit and graphs noise density, (n d ) is specified in mi crovolt-rms per squre- root-hertz. actual measurement is performed using a 1 khz to 3 khz frequency bandpass filter at a constant zener test current (i zt ) at 25 o c ambient temperature. n d is calculated from the formula. rated power dissipation (mw) figure 1 t l ? lead temperature ( o c) 3/8? from body noise density measurement circuit or t a on fr4 pc board figure 2 ? power derating curve package dimensions microsemi scottsdale division page 3 copyright ? 2005 6-09-2005 rev d figure 3 all dimensions in: inch capacitance vs. zener voltage mm (typical) 8700 e. thomas rd. po box 1390, scottsdale, az 85252 usa, (480) 941-6300, fax: (480) 947-1503


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