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ESAD83M-006R

Fuji Electric
Part Number ESAD83M-006R
Manufacturer Fuji Electric
Description SCHOTTKY BARRIER DIODE
Published Sep 25, 2014
Detailed Description ESAD83M-006R (30A) SCHOTTKY BARRIER DIODE 15.5 ±0.3 5.5 ±0.2 (60V / 30A ) Outline drawings, mm ø3.2 ±0.2 9.3 ±0.3 5.5...
Datasheet PDF File ESAD83M-006R PDF File

ESAD83M-006R
ESAD83M-006R


Overview
ESAD83M-006R (30A) SCHOTTKY BARRIER DIODE 15.
5 ±0.
3 5.
5 ±0.
2 (60V / 30A ) Outline drawings, mm ø3.
2 ±0.
2 9.
3 ±0.
3 5.
5 ±0.
3 3.
2 +0.
3 2.
3 ±0.
2 2.
1±0.
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 1.
Gate 2.
Drain 3.
Source JEDEC EIAJ Connection diagram Applications High speed power switching 1 2 3 Maximum ratings and characteristics Absolute maximum ratings Item Repetitive peak reverse voltage Non-repetitive peak reverse voltage Isolating voltage Average output current Suege current Operating junction temperature Storage temperature Symbol VRRM VRSM V iso Io IFSM Tj Tstg tw=500ns, duty=1/40 Terminals-to-case, AC.
1min.
Conditions Ratings 60 60 1500 30* 200 -40 to +150 -40 to +150 Unit V V V A A °C °C Square wave, duty=1/2 Tc=106°C Sine wave 10ms * Average forward current of centertap full wave connection Electrical characteristics (Ta=25°C Unless otherwise specified ) Item Forward voltage drop Reverse current Thermal resistance Symbol VFM IRRM Rth(j-c) Conditions IFM=12.
5A VR=VRRM Junction to case Max.
0.
58 20 1.
7 Unit V mA °C/W (60V / 30A ) Characteristics Forward Characteristic (typ.
) 100 ESAD83M-006R (30A) Reverse Characteristic (typ.
) Tj=150 C 10 2 o Tj=125 C 10 o (mA) (A) Tj=150 Tj=125 Tj=100 1 o o 10 1 C Tj=100 C o Forward Current C C o o Reverse Current Tj=25 C 10 0 10 -1 Tj=25 C o IF 0.
1 IR 10 -2 0.
01 0.
0 0.
1 0.
2 0.
3 0.
4 0.
5 0.
6 0.
7 0.
8 0.
9 1.
0 10 -3 0 10 20 30 40 50 60 70 VF Forward Voltage (V) VR Reverse Voltage (V) Forward Power Dissipation 22 20 18 16 Io Reverse Power Dissipation 14 13 12 DC 360° VR (W) λ 360° (W) 11 10 9 8 7 6 5 4 3 α =180 o 14 Square wave λ =60 12 10 8 6 4 2 Per 1element 0 0 2 4 6 8 10 12 14 16 Square wave λ=120 o o o Sine wave λ =180 o Square wave λ=180 DC WF PR Reverse Power Dissipation Forward Power Dissipati...



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