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  feb-04-2003 1 bar65... silicon pin diode  series diode for mobile communication in low loss transmit-receiver switches  band switch for tv-tuners  very low forward resistance (typ. 0.65  @ 5 ma)  low capacitance (typ. 0.5 pf @ 0v)  fast switching applications BAR65-02L bar65-02v bar65-03w bar65-07         type package configuration l s (nh) marking BAR65-02L * bar65-02v bar65-03w bar65-07 tslp-2-1 sc79 sod323 sot143 single, leadless single single parallel pair 0.4 0.6 1.8 2 nn n m/blue ms * preliminary data maximum ratings at t a = 25c, unless otherwise specified parameter symbol value unit diode reverse voltage v r 30 v forward current i f 100 ma total power dissipation BAR65-02L, t s  128c bar65-02v, t s  118c bar65-03w, t s  113c bar65-07, t s  57c p tot 250 250 250 250 mw junction temperature t j 150 c operating temperature range t o p -55 ... 125 storage temperature t st g -55 ... 150
feb-04-2003 2 bar65... thermal resistance parameter symbol value unit junction - soldering point 1) BAR65-02L bar65-02v bar65-03w bar65-07 r thjs  90  130  145  370 k/w electrical characteristics at t a = 25c, unless otherwise specified parameter symbol values unit min. typ. max. dc characteristics reverse current v r = 20 v i r - - 20 na forward voltage i f = 100 ma v f - 0.93 1 v 1 for calculation of r thja please refer to application note thermal resistance
feb-04-2003 3 bar65... electrical characteristics at t a = 25c, unless otherwise specified parameter symbol values unit min. typ. max. ac characteristics diode capacitance v r = 1 v, f = 1 mhz v r = 3 v, f = 1 mhz v r = 0 v, f = 100 mhz ... 1.8 ghz c t - - - 0.45 0.4 0.5 0.9 0.8 - pf reverse parallel resistance v r = 0 v, f = 100 mhz v r = 0 v, f = 1 ghz v r = 0 v, f = 1.8 ghz r p - - - 700 10 5 - - - k  forward resistance i f = 1 ma, f = 100 mhz i f = 5 ma, f = 100 mhz i f = 10 ma, f = 100 mhz r f - - - 1 0.65 0.56 - 0.95 0.9  charge carrier life time i f = 10 ma, i r = 6 ma, measured at i r = 3 ma, r l = 100   rr - 80 - ns i-region width w i - 3.5 - m insertion loss 1) i f = 1 ma, f = 1.8 ghz i f = 5 ma, f = 1.8 ghz i f = 10 ma, f = 1.8 ghz | s 21 | 2 - - - -0.08 -0.06 -0.05 - - - db isolation 1) v r = 0 v, f = 0.9 ghz v r = 0 v, f = 1.8 ghz v r = 0 v, f = 2.45 ghz | s 21 | 2 - - - -12 -7 -5 - - - 1 BAR65-02L in series configuration, z = 50 
feb-04-2003 4 bar65... diode capacitance c t =  (v r ) f = parameter 0 2 4 6 8 10 12 14 16 v 20 v r 0.1 0.15 0.2 0.25 0.3 0.35 0.4 f 0.5 c t 1 mhz ... 1.8 ghz reverse parallel resistance r p =  ( v r ) f = parameter 0 2 4 6 8 10 12 14 16 v 20 v r -1 10 0 10 1 10 2 10 3 10 4 10 kohm r p 100 mhz 1 ghz 1.8 ghz forward resistance r f =  ( i f ) f = 100mhz 10 -2 10 -1 10 0 10 1 10 2 ma i f -1 10 0 10 1 10 ohm r f forward current i f =  ( v f ) t a = parameter 0 0.2 0.4 0.6 0.8 v 1.2 v f -6 10 -5 10 -4 10 -3 10 -2 10 -1 10 0 10 a i f -40 c 25 c 85 c 125 c
feb-04-2003 5 bar65... forward current i f =  ( t s ) BAR65-02L 0 15 30 45 60 75 90 105 120 c 150 t s 0 10 20 30 40 50 60 70 80 90 100 ma 120 i f forward current i f =  ( t s ) bar65-02v 0 15 30 45 60 75 90 105 120 c 150 t s 0 10 20 30 40 50 60 70 80 90 100 ma 120 i f forward current i f =  ( t s ) bar65-03w 0 15 30 45 60 75 90 105 120 c 150 t s 0 10 20 30 40 50 60 70 80 90 100 ma 120 i f forward current i f =  ( t s ) bar65-07 0 15 30 45 60 75 90 105 120 c 150 t s 0 10 20 30 40 50 60 70 80 90 100 ma 120 i f
feb-04-2003 6 bar65... permissible puls load r thjs =  ( t p ) BAR65-02L 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p 0 10 1 10 2 10 k/w r thjs 0.5 0.2 0.1 0.05 0.02 0.01 0.005 d = 0 permissible pulse load i fmax / i fdc =  ( t p ) BAR65-02L 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t p 0 10 1 10 - i fmax / i fdc d = 0 0.005 0.01 0.02 0.05 0.1 0.2 0.5 permissible puls load r thjs =  ( t p ) bar65-02v 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t s 0 10 1 10 2 10 3 10 r thjs d = 0,5 0,2 0,1 0,05 0,02 0,01 0,005 0 permissible pulse load i fmax / i fdc =  ( t p ) bar65-02v 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 s t s 0 10 1 10 2 10 i fmax / i fdc d = 0 0,005 0,01 0,02 0,05 0,1 0,2 0,5
feb-04-2003 7 bar65... permissible pulse load i fmax / i fdc =  ( t p ) bar65-03w 10 -6 10 -5 10 -4 10 -3 10 -2 10 -1 10 1 c t p 0 10 1 10 ma i fmax / i fdc d = 0 0.005 0.01 0.02 0.05 0.1 0.2 0.5 permissible puls load r thjs =  ( t p ) bar65-03w 10 -7 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 c t p 0 10 1 10 2 10 3 10 ma i f 0.5 0.2 0.1 0.05 0.02 0.01 0.005 d = 0 permissible puls load r thjs =  ( t p ) bar65-07 10 -7 10 -6 10 -5 10 -4 10 -3 10 -2 10 0 c t p 0 10 1 10 2 10 3 10 ma r thjs 0.5 0.2 0.1 0.05 0.02 0.01 0.005 d = 0 permissible pulse load i fmax / i fdc =  ( t p ) bar65-07 10 -6 10 -5 10 -4 10 -3 10 -2 10 -1 10 1 c t p 0 10 1 10 2 10 ma i fmax / i fdc d = 0 0.005 0.01 0.02 0.05 0.1 0.2 0.5
feb-04-2003 8 bar65... insertion loss |s 21 | 2 =  ( f ) i f = parameter BAR65-02L in series configuration, z = 50  0 0.5 1 1.5 2 ghz 3 f -0.4 -0.35 -0.3 -0.25 -0.2 -0.15 -0.1 db 0 | s 21 | 2 10 ma 5 ma 1 ma 0.1 ma isolation | s 21 | 2 =  (f) v r = parameter BAR65-02L in series configuration z = 50  0 0.5 1 1.5 2 ghz 3 f -30 -25 -20 -15 -10 db 0 | s 21 | 2 0 v 1 v 10 v
published by infineon technologies ag, st.-martin-strasse 53, 81669 mnchen ? infineon technologies ag 200 4 . all rights reserved. attention please! the information herein is given to describe certain components and shall not be considered as a guarantee of characteristics. terms of delivery and rights to technical change reserved. we hereby disclaim any and all warranties, including but not limited to warranties of non-infringement, regarding circuits, descriptions and charts stated herein. information for further information on technology, delivery terms and conditions and prices please contact your nearest infineon technologies office (www.infineon.com). warnings due to technical requirements components may contain dangerous substances. for information on the types in question please contact your nearest infineon technologies office. infineon technologies components may only be used in life-support devices or systems with the express written approval of infineon technologies, if a failure of such components can reasonably be expected to cause the failure of that life-support device or system, or to affect the safety or effectiveness of that device or system. life support devices or systems are intended to be implanted in the human body, or to support and/or maintain and sustain and/or protect human life. if they fail, it is reasonable to assume that the health of the user or other persons may be endangered.


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