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IXDD504D2R Datasheet(PDF) 3 Page - IXYS Corporation |
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IXDD504D2R Datasheet(HTML) 3 Page - IXYS Corporation |
3 / 13 page 3 IXDD504 / IXDE504 Unless otherwise noted, 4.5V ≤ V CC ≤ 30V . All voltage measurements with respect to GND. IXD_504 configured as described in Test Conditions. All specifications are for one channel. Electrical Characteristics @ T A = 25 oC (3) Absolute Maximum Ratings (1) Operating Ratings (2) Parameter Value Supply Voltage 35 V All Other Pins (unless specified -0.3 V to V CC + 0.3V otherwise) Junction Temperature 150 °C Storage Temperature -65 °C to 150 °C Lead Temperature (10 Sec) 300 °C Parameter Value Operating Supply Voltage 4.5V to 30V Operating Temperature Range -55 °C to 125 °C (4) IXYS reserves the right to change limits, test conditions, and dimensions. Package Thermal Resistance * 8-PinPDIP (PI) θ J-A (typ) 125 °C/W 8-PinSOIC (SIA) θ J-A(typ) 200 °C/W 8-LeadDFN (D2) θ J-A(typ) 125-200 °C/W 8-LeadDFN (D2) θ J-C(max) 2.1 °C/W 8-LeadDFN (D2) θ J-S(typ) 6.4°C/W Symbol Parameter Test Conditions Min Typ Max Units VIH, VENH High input & EN voltage 4.5V ≤ V IN ≤ 18V 3 V VIL, VENL Low input & EN voltage 4.5V ≤ V IN ≤ 18V 0.8 V VIN Input voltage range -5 VCC + 0.3 V VEN Enable voltage range - 0.3 VCC + 0.3 V IIN Input current 0V ≤ V IN ≤ VCC -10 10 µA VOH High output voltage VCC - 0.025 V VOL Low output voltage 0.025 V ROH High state output resistance VCC = 18V IOUT = 10mA 1.5 2.5 Ω ROL Low state output resistance VCC = 18V IOUT = 10mA 1.2 2.0 Ω IPEAK Peak output current VCC = 15V 4 A IDC Continuous output current Limited by package dissipation 1 A tR Rise time CLOAD =1000pF VCC =18V 9 16 ns tF Fall time CLOAD =1000pF VCC =18V 8 14 ns tONDLY On-time propagation delay CLOAD =1000pF VCC =18V 19 40 ns tOFFDLY Off-time propagation delay CLOAD =1000pF VCC =18V 18 35 ns tENOH Enable to output high delay time 15 30 ns tDOLD Disable to high impedance state delay time 63 100 ns VCC Power supply voltage 4.5 18 30 V REN Enable Pull-up Resistor 200 k Ω ICC Power supply current VCC = 18V, VIN = 0V VIN = 3.5V VIN = VCC 1 20 3 20 µA mA mA |
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