D2F20 SHINDENGEN | Alldatasheet
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200V 1.4A Copyright & Copy;2000 Shindengen Electric Mfg.Co.Ltd Case : 2F OUTLINE DIMENSIONS (Unit : mm) RATINGS SHINDENGEN Single Case : 2F Conventional Rectification Power source(Power Supply) Home Appliances, Office Equipment Telecommunication, Factory Automation APPLICATION High reliability with superior moisture resistance Applicable to Automatic Insertion
FEATURES
Absolute Maximum Ratings (If not specified Tl=25) Item Symbol Conditions RatingsUnit Storage Temperature Tstg -55\`150 Operating Junction TemperatureTj 150 Maximum Reverse VoltageVRM 200 V Average Rectified Forward CurrentIO 50Hz sine wave, R-load, Ta=25 On alumina substrate 1.4 A 50Hz sine wave, R-load, Ta=25 On glass-epoxy substrate 1.1 Peak Surge Forward CurrentIFSM 50Hz sine wave, Non-repetitive 1 cycle peak value, Tj=2560 A Electrical Characteristics (If not specified Tl=25) Item Symbol Conditions RatingsUnit Forward Voltage VF IF=1.4A, Pulse measurement Max.1.05V Reverse Current IR VR=VRM , Pulse measurement Max.10 ÊA Æjljunction to lead Max.24 Thermal Resistance junction to ambient, On alumina substrateMax.90/W Æjajunction to ambient, On glass-epoxy substrateMax.120 General Purpose Rectifiers
0.1 D2Fx Pulse measurement per diode Tl=150°C [TYP] Tl=25°C [TYP] Forward Voltage V F [V] Forward Current I F [A]
0.5 1.5 2.5 0 0.5 1 1.5 2 2.5 D2Fx Forward Power Dissipation Tj = 150°C Sine wave SIN Average Rectified Forward Current I O [A] Forward Power Dissipation P F [W]
0.4 0.8 1.2 1.6 2.4 2.8 0 20 40 60 80 100 120 140 160 D2Fx Derating Curve Sine wave R-load Free in air Alumina substrate Glass-epoxy substrate Alumina substrate Soldering land 2mm φ Conductor layer 20 µm Substrate thickness 0.64mm Glass-epoxy substrate Soldering land 2mm φ Conductor layer 35 µm Ambient Temperature Ta [ °C] Average Rectified Forward Current I O [A]
Peak Surge Forward Capability 100 1 10 100 D2Fx 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