D6SB60L SHINDENGEN | Alldatasheet

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Copyright & Copy;2000 Shindengen Electric Mfg.Co.Ltd OUTLINE DIMENSIONS Unit : mm RATINGS SHINDENGEN Case : 5S General Purpose Rectifiers SIL Bridges œAbsolute Maximum Ratings (If not specifiedTl=25Ž) Item Symbol Conditions RatingsUnit Storage TemperatureTstg -40\`150Ž Operating Junction TemperatureTj 150 Ž Maximum Reverse VoltageVRM 600 V Average Rectified Forward CurrentIO 50Hz sine wave, R-load With heatsink Tc=112Ž6 A 50Hz sine wave, R-load Without heatsink Ta=25Ž2.8 Peak Surge Forward CurrentIFSM 50Hz sine wave, Non-repetitive 1cycle peak value, Tj=25 Ž170 A Current Squared TimeI2t 2ms Dielectric StrengthVdisTerminals to case, AC 1 minute 2.5 kV Mounting Torque TOR iRecommended torque : 0.5N¥mj 0.8 N¥m œElectrical Characteristics (If not specifiedTl=25Ž) Item Symbol Conditions RatingsUnit Forward Voltage VF IF=3A, Pulse measurement, Rating of per diodeMax.1.05V Reverse Current IR VR=VRM , Pulse measurement, Rating of per diodeMax.10 ƒÊA Reverse Recovery Timetrr IF=0.1A, IR=0.1A Rating of per diodeMax.10 ƒÊs ƒÆjcjunction to case @ @ With heatsinkMax.3.4 Thermal Resistance ƒÆjljunction to lead @ @ Without heatsinkMax.5 Ž/W ƒÆjajunction to ambient Without heatsinkMax.26

0.1 D6SB60L Pulse measurement per diode Tc=150°C [TYP] Tc=25°C [TYP] Forward Voltage V F [V] Forward Current I F [A]

D6SB60L Forward Power Dissipation SIN Average Rectified Forward Current I O [A] Forward Power Dissipation P F [W] Tj = 150°C Sine wave

0 20 40 60 80 100 120 140 160 D6SB60L Derating Curve SIN TcTcHeatsink Case Temperature Tc [ °C] Average Rectified Forward Current I O [A] Sine wave R-load with heatsink

T D=tp/T 0 20 40 60 80 100 120 140 160 0.5 1.5 2.5 3.5 D6SB60L Derating Curve VR = 600V SIN VR PCB Ambient Temperature Ta [ °C] Average Rectified Forward Current I O [A] Soldering land 5mm φ

Peak Surge Forward Capability 100 150 200 1 10 100 D6SB60L 2 5 20 50 IFSM 10ms 10ms 1 cycle Number of Cycles [cycles] Peak Surge Forward Current I FSM [A] non-repetitive, sine wave, Tj=25°C before surge current is applied