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  dl4614 thru dl4125 500mw silicon zener diodes features ? zener voltage range = 1.8v to 47v ? double slug type construction maximum ratings symbol value units max. steady state power dissipation at t l <75 o c, lead length=3/8 p d 500 mw junction temperature t j 175 o c storage temperature range t stg -55 to 175 o c electrical characteristics @ 25 c unless otherwise specified symbol maximum unit max. forward voltage @ i f = 2 00ma v f 1.1 v mech anical data ? case: double slug type, hermetically sealed glass  
 omponents 20736 marilla street chatsworth       
     mcc tm micro commercial components ? metallurgical bonded construction revision: b 2012/08/03 www. mccsemi .com 1 of 5 ? marking : cathode band and type number thermal resistance, junction to lead @3/8" lead length from body rthjl 250 o c/w ? lead free finish/rohs compliant (note1) ("p"suffix designates compliant. see ordering information) ? moisture sensitivity: level 1 note: 1. lead in glass exemption applied, see eu directive annex 5. a b c cathode mark minimelf dimensions inches mm dim min max min max note a .134 .142 3.40 3.60 b .008 .016 .20 .40 c .055 .059 1.40 1.50 ? 0.030? 0.1 05 0.0 75? suggested solder pad layout
zener voltage (2) leakage current (4) v z (volts) device (1) min nom max ma a( max) volts ohm( m ax ) mcc dl4614 thru dl4125 tm micro commercial components dl4614 electrical characteristics (t a = 25oc unless otherwise noted, v f = 1.1 v max @ i f = 200ma for all types) dl4615 dl4616----- dl4617 dl4618 dl4619 dl4620 dl4621 dl4622 dl4623 dl4624 dl4625 dl4626- dl4627 dl4099 dl4100 dl4101 dl4102 dl4103 dl4104 zeneripedance (5) zener current (i zm ) (3) dl4106 dl4105 dl4107 dl4108 dl4109 DL4110 dl4111 dl4112 dl4113 dl4114 dl4115 dl4116 dl4117 dl4118 dl4119 dl4120 dl4121 dl4122 dl4123 dl4125 dl4124 reverse 12 13 14 15 16 17 19 18 20 22 24 25 27 28 33 30 36 39 43 47 10.45 11.4 12.35 13.3 14.25 15.2 16.15 17.1 18.05 19 20.9 22.8 23.75 25.65 26.6 28.5 31.35 34.2 37.05 40.85 44.65 11.55 12.6 13.65 14.7 15.75 17.85 16.8 18.9 19.95 21 23.1 26.25 25.2 28.35 29.4 31.5 34.65 37.8 40.95 45.15 49.35 200 200 200 200 100 100 100 100 150 150 150 150 150 150 200 200 200 200 200 250 250 8.44 8.12 9.857 10.65 11.40 12.15 12.92 13.67 14.44 15.20 118.25 19.00 20.45 21.28 22.80 27.38 25.08 29.65 32.65 35.75 16.72 .05 .05 .05 .05 .05 .05 .05 .05 .05 .01 .01 .01 .01 .01 .01 .01 .01 .01 .01 .01 .01 35 38 42 44 46 51 56 61 65 70 75 77 80 83 85 87 90 95 100 110 120 32 29 27 25 24 22 21 19 20 17 1 16 15 1 14 14 13 12 11 9.8 8.9 8.1 7.60 6.92 6.61 6.24 5.70 5.17 5 4 3 3 2 2 2 1.5 1 1 1 11 1 1 7.5 5.0 4.0 2.0 1.0 0.8 7.5 7.5 5.0 4.0 10.0 10.0 10.0 10.0 10.0 10.0 1.0 1.0 1.0 1.0 200 1200 1250 1300 1400 1500 1600 1650 1700 1650 1600 1550 1500 1400 1200 200 200 200 200 200 1.8 2.0 2.2 2.4 2.7 3.0 3.3 3.6 3.9 4.3 4.7 5.1 5.6 6.2 6.8 7.5 8.2 8.7 9.1 10 1.71 1.90 2.09 2.28 2.565 2.85 3.135 3.42 3.705 4.085 4.465 4.845 5.32 5.89 6.46 7.125 7.79 8.265 9.5 8.645 9.555 10.5 9.135 8.61 7.875 7.14 6.51 5.88 5.355 4.935 4.515 4.095 3.78 3.465 3.15 2.835 2.52 1.89 2.10 2.31 @ i zt=250ua maximum i r @v r z zt 1. tolerance and type number designation (v z ) the type numbers listed have a standard tolerance on the nominal zener voltage of 5%. 2. zener voltage (v z ) measurement nominal zener voltage is measured with the device junction in the thermal equilibrium at the lead temperature (t l )at30 c 1 c and 3/8 lead length. . 3. maximum zener curr ent ratings (i zm ) . . this data was calculated using nominal voltages. the maximum handing current capability on a worst case basis is limited by the actual zener voltage at the opertation piont and the power derating curve. 4.reverse leakage current( i r ) reverse leakage current are guaranteed and measured at v r shown on the table . 5. zener impedance( z zt) derivation the zener impedance is derived from the 60 cycle ac voltage.which results when an ac current having an rms value to 10% of the dc zener current (i zt ) is superimposed on i zt . 11 revision: b 2012/08/03 notes: @ i zt www. mccsemi .com 2 of 5
mcc dl4614 thru dl 4125 tm micro commercial components +12 +10 +8 +6 +4 +2 0 -2 -4 89 v z , zener voltage (volts) figure 1. range for units to 12 volts v z @i zt (note 2) range 2 6 +6 +4 +2 0 -2 -4 34 v z , zener vol tage (volts) figure 2. effect of zener current note: below 3 volts and above 8 vol ts note: changes in zener current do not note: affect temperature coefficients 1ma 0.01ma v z @ i z t a =2 5 c 1000 c, cap acit ance (pf) 500 200 100 50 20 10 5 2 1 1 2 5 10 20 50 100 v z , zener voltage (volts) figure 3. typical capacitance 2.4-100 volts t a = 25 c 0v bias 1v bias 50% of v z bias  v z , ,
mcc dl4614 thru dl41 25 100 70 50 30 20 10 7 5 3 2 1 0.01 0.02 0.05 0.1 0.2 0.5 1 2 5 10 20 50 100 200 500 1000 p pk , peak surge power (watts) pw, pulse width (ms) 5% duty cycle 10% duty cycle 20% duty cycle 11v-91v nonrepetitive 1.8v-10v nonrepetitive rect angular waveform t j = 25 2012/08/03 www. mccsemi .com 4 of 5
mcc revision: b 2012/08/03 tm micro commercial components www. mccsemi .com 5 of 5 device packing part number-tp tape&reel: 2.5kpcs/reel ordering information : *** i m p o r t a n t n o t ic e * ** m i c r o c o m m e r c i a l c o m p on e n ts c o r p . r e s e rve s t h e r i g h t t o m a k e c h a n g e s w i t ho u t f u r t h e r no t i c e t o a n y p r o d u c t h e r e i n t o m a k e c o rr e c t i o n s , m o d i f i c a t i o n s , e n h a n c e m e n t s , i m pr o v e m e n t s , o r o t h e r ch a n g e s . m i c r o c o m m e r c i a l c o mp o n e n ts c o r p . d o e s n o t a s s u m e a n y l i a b i l i t y a r i s i n g ou t o f t h e a p p l i c a t i on o r u s e o f a n y p r o d uc t d e sc r i be d h e r e i n ; n e i t h e r d o e s i t c o n v e y a n y li c e n s e un der i t s p a t e n t r i g h t s , n o r t h e r i g h t s o f o t h e r s . t h e u s e r o f pr o d uc t s i n s u c h a p p l i c a t i o n s sh a l l a ss u m e a l l r i s k s o f su c h u s e a n d w ill a g r ee t o h o l d m i c r o c o mm er c i a l c o m p o n e n t s c o r p . a n d a ll t h e c o m p a n i e s w ho s e p r o d u c t s a r e r e p r e s e n t ed o n ou r w e b s i t e , h a r m l e s s a g a i n s t a l l d a m a g e s. * * * l i f e s u p p o r t *** m c c ' s pr o d uc t s a r e n o t a u t h o r iz ed f o r u s e a s c r i t i c a l c o m p o n e n t s i n l i f e s u pp o r t d e v i c e s o r s y s t e m s w i t h ou t t h e e x pre ss wr i tt e n a p p r o v a l o f m i c r o c o mm e r c i a l c o m p o n e n t s c o rp o r a t i o n. * * * c u s t o m e r a w a r e n e ss*** c o un t e r f e i t i n g o f s e m i c o n d u c t o r p a r t s i s a gr o w i n g p r o b l e m i n t h e i n d u s t ry . m i c r o c o mm e r c i a l c o m p o n e n t s ( m cc ) i s t a k i n g s t r o n g m e a su r e s t o p r o t e c t ou r s e l v e s a n d o u r cu s t o m e r s f r o m t h e pr o l i f e r a t i on o f c o u n t e r f e i t p a r t s . m c c s t r o n g l y e nc o u r a g e s c u s t o m e r s t o p u r c h a s e m c c p a r t s e i t h e r d i r e c t l y f r o m m c c o r f r o m a u t ho r i z e d m c c d i s t r i b u t o r s w ho a r e l i s t e d b y c o u n t r y o n o u r w e b p a g e c i t ed below . p r o d uc t s c us t o m e r s b u y e i t h e r f r o m m c c d i r e c t l y o r f r o m a u t ho r i z e d m cc d i s t r i b u t o r s a r e g e n u i n e p a r t s , h a v e f ul l t r a c e a b il i t y , m e e t m c c ' s q u a l i t y s t a n d a r d s f o r h a n d li n g a n d s t o r a g e . m c c wi l l n o t p r o v i d e a n y w a rr a n ty c o v e r a g e o r o t h e r a s s i s t a n c e f o r p a r ts b o u g h t f r o m u n a u t h o r i z e d s o u r c e s. m c c i s c o m m i t t e d t o c o m b a t t h i s g l o b a l pr o b l e m a n d e n c ou r a g e o u r c u s t o m e r s t o d o t h e i r p a r t in s t o p p i n g t h i s p r a c t i c e b y b u y i n g d i r e c t o r f r o m a u t h o r i z ed d i s t r i b u t o r s.


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