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YG802C03R

Fuji Electric
Part Number YG802C03R
Manufacturer Fuji Electric
Description SCHOTTKY BARRIER DIODE
Published Sep 25, 2014
Detailed Description YG802C03R SCHOTTKY BARRIER DIODE (30V / 10A TO-22OF15) Outline Drawings 10±0.5 ø3.2 +0.2 -0.1 4.5±0.2 2.7±0.2 6.3 2.7...
Datasheet PDF File YG802C03R PDF File

YG802C03R
YG802C03R


Overview
YG802C03R SCHOTTKY BARRIER DIODE (30V / 10A TO-22OF15) Outline Drawings 10±0.
5 ø3.
2 +0.
2 -0.
1 4.
5±0.
2 2.
7±0.
2 6.
3 2.
7±0.
2 1 2 3 3.
7±0.
2 1.
2±0.
2 13Min Features Low VF Super high speed switching.
High reliability by planer design.
15±0.
3 0.
7±0.
2 2.
54±0.
2 0.
6 +0.
2 -0 2.
7±0.
2 JEDEC EIAJ SC-67 Applications High speed power switching.
Connection Diagram 2 1 3 Maximum Ratings and Characteristics Absolute Maximum Ratings Item Repetitive peak reverse voltage Repetitive peak surge reverse voltage Isolating voltage Average output current Suege current Operating junction temperature Storage temperature Symbol VRRM VRSM Viso IO IFSM Tj Tstg tw=500ns, duty=1/40 Terminals to Case, AC.
1min.
duty=1/2, Tc=125°C Square wave Sine wave 10ms Conditions Rating 30 30 1500 10* 120 +150 -40 to +150 Unit V V V A A °C °C * Out put current of centertap full wave connection.
Electrical Characteristics (Ta=25°C Unless otherwise specified ) Item Forward voltage drop ** Reverse current ** Thermal resistance Symbol VF IR Rth(j-c) Conditions IF=4.
0A VR=VRRM Junction to case Max.
0.
47 5.
0 3.
5 Unit V mA °C/W Mechanical Characteristics Mounting torque Weight Recommended torque 0.
3 to 0.
5 2.
3 ** Rating per element N·m g (30V / 10A TO-22OF15) Characteristics Forward Characteristic (typ.
) YG802C03R Reverse Characteristic (typ.
) 10 2 Tj=150 C o Tj=125 C 10 o (mA) (A) 10 1 Tj=150 C Tj=125 C o Tj=100 C Tj=25 C o o o Tj=100 C o Forward Current Reverse Current 10 0 1 10 -1 Tj=25 C o IF IR 10 -2 0.
1 0.
0 0.
1 0.
2 0.
3 0.
4 0.
5 0.
6 0.
7 0.
8 10 -3 0 5 10 15 20 25 30 35 VF Forward Voltage (V) VR Reverse Voltage (V) Forward Power Dissipation 5.
0 4.
5 Io Reverse Power Dissipation 5.
0 4.
5 360° VR DC (W) 360° 3.
0 2.
5 2.
0 1.
5 1.
0 Square wave λ =60 Square wave λ =120 o o o Reverse Power Dissipation Forward Power Dissipation 3.
5 (W) 4.
0 λ 4.
0 3.
5 3.
0 2.
5 2.
0 1.
5 1.
0 α Sine wave λ =180 α =180 o Square wave λ =180 DC o WF 0.
5 Per 1element ...



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