LOT No. LOT No. Ordering number : ENA0444B SB10015M Schottky Barrier Diode SB10015M Electrical Characteristics at Ta=25C Ratings Parameter Symbol Conditions Unit min typ max Reverse Voltage V I =0.1mA 15 V R R V 1 I =0.5A 0.43 0.48 V F F Forward Voltage V 2 I =1.0A 0.49 0.54 V F F Reverse Current I V =7.5V 3 mA R R Interterminal Capacitance C V =10V, f=1MHz 20 pF R Reverse Recovery Time t I =I =100mA, See specified Test Circuit. 10 ns rr F R When mounted in Cu-foiled area of Thermal Resistance Rth(j-a) 185 C / W 2 0.72mm 0.03mm on glass epoxy substrate Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product performance may not be indicated by the Electrical Characteristics if operated under different conditions. t Test Circuit rr Duty 10% 50 100 10 10ms --5V t rr Ordering Information Device Package Shipping memo SB10015M-TL-E MCPH3 3,000pcs./reel Pb-Free SB10015M-TL-W MCPH3 3,000pcs./reel Pb-Free and Halogen Free I -- V I -- V F F R R 3 10000 2 1000 1.0 7 5 100 3 2 10 0.1 7 1.0 5 3 2 0.1 0.01 0.01 7 5 3 0.001 2 0.001 0.0001 000.10.2 0.3 .4 0.500.6 .7 0 2468 10 12 14 16 Forward Voltage, V -- V IT11204 Reverse Voltage, V -- V IT11205 F R P (AV) -- I P (AV) -- V F O R RM 0.7 1.2E--0.5 Rectangular (1)Rectangular wave =300 wave (1) (2) (4) (3) (2)Rectangular wave =240 0.6 1.0E--0.5 (3)Rectangular wave =180 (1) (4)Sine wave =180 360 0.5 Rectangular 8.0E--0.6 wave (2) Sine wave V R 0.4 180 6.0E--0.6 360 (3) 360 0.3 Sine wave 4.0E--0.6 V R 0.2 180 (4) (1)Rectangular wave =60 360 (2)Rectangular wave =120 2.0E--0.6 0.1 (3)Rectangular wave =180 (4)Sine wave =180 0 0.0E+00 0 0.2 0.40.6 0.81.0 1.2 082 4 6 10 12 14 16 Average Output Current, I -- A Peak Reverse Voltage, V -- V IT11207 IT11206 O RM No. A0444-2/4 Ta=150 C 0 C 125 C 100 C 75 C 25 C --25C 50 C 125C 100C Ta=150C 50C 25 C 75 C --25C 0 C Average Forward Power Dissipation, P (AV) -- W Forward Current, I -- A F F 100mA 100mA 10mA Average Reverse Power Dissipation, P (AV) -- W R Reverse Current, I -- mA R