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ESAC93M-02R (12A) LOW LOSS SUPER HIGH SPEED RECTIFIER 15.5 0.3 ( 200V / 12A ) Outline drawings, mm o3.2 0.2 5.5 0.2 9.3 0.3 5.5 0.3 3.2 +0.3 2.3 0.2 2.10.3 1.6 0.3 1.1 --0.1 +0.2 20 Min 21.5 0.3 5.45 0.2 5.45 0.2 0.6 +0.2 3.5 0.2 Features Insulated package by fully molding Low VF Super high speed switching High reliability by planer design JEDEC EIAJ 1. Gate 2. Drain 3. Source Connection diagram Applications High speed power switching 1 2 3 h arc m Item Conditions Symbol Rating on . Unit ete ign l s Repetitive peak reverse voltage VRRM V bso de200 ow e b e 200 Non-repetitive peak reverse voltage VRSM V led for n ud dn Average output current che m duty=1/2, Tc=116C IO 12* A sSquare wave, e is com t e ucIFSM t rSine wave 10ms Surge current 60 A od o r p N Operating junction temperature Tj -40 to +150 C his T Absolute maximum ratings Storage temperature Tstg -40 to +150 C Maximum ratings and characteristics 0 20 7. *Average forward current of centertap full wave connection Electrical characteristics (Ta=25C Unless otherwise specified ) Item Forward voltage drop Reverse current Reverse recovery time Thermal resistance Symbol VFM IRRM t rr Rth(j-c) Conditions IFM=6.0A VR=VRRM IF=0.1A, IR=0.2A, Irec=0.05A Junction to case Max. 0.95 100 35 2.7* Unit V A ns C/W (200V / 12A ) Characteristics Forward characteristics 50 30 1000 10 300 5000 3000 ESAC93M-02R (12A) Reverse characteristics IF [A] 5 3 IR 100 [A] 30 1 0.5 0.3 10 3 1 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 0 100 200 VF [V] VR [V] Forward power dissipation 7 140 6 5 4 Output current-case temperature WF [W] 3 2 1 0 0 1 Junction capacitance characteristics 100 Th h arc m Tc 100 on . [C] te 80 ole esign obs w d 60 be e led for n du 40nd he e c s 6s omm 0 2 4 6 8 10 12 2 3 4 5i ct rec Io [A] u Io [A] od ot r N is p 120 0 20 7. Surge capability 300 50 30 Cj [pF] 10 100 IFSM [A] 50 30 5 3 5 10 30 50 100 200 10 1 3 5 10 30 VR [V] [time] (at 50Hz) (200V / 12A ) Transient thermal impedance 101 ESAC93M-02R (12A) [C/W] 100 10-1 10-3 10-2 10-1 100 101 102 t [sec.] Th arc m on . te ole esign obs w d e d b or ne le du nd f e sch me is ct recom odu ot r N is p h 0 20 7. |
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