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IRS2168DSTRPBF Datasheet(PDF) 3 Page - International Rectifier |
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IRS2168DSTRPBF Datasheet(HTML) 3 Page - International Rectifier |
3 / 21 page IRS2168D(S)PbF www.irf.com Page 3 Recommended Operating Conditions For proper operation the device should be used within the recommended conditions. Symbol Definition Min. Max. Units V B-VS High-side floating supply voltage V BSUV+ V CLAMP V S Steady state high-side floating supply offset voltage -1 600 V CC Supply voltage V CCUV+ V CLAMP V I CC V CC supply current Note 2 10 I SD/EOL SD/EOL pin current I CS CS pin current I OC OC pin current I ZX ZX pin current -1 1 mA V VCO VCO pin voltage 0 5 V R FMIN FMIN pin programming resistor 10 300 k Ω T J Junction temperature -25 125 ºC Note 2: Enough current should be supplied into the VCC pin to keep the internal 15.6 V Zener clamp diode on this pin regulated at its voltage, V CLAMP. Electrical Characteristics V CC = VBS = VBIAS=14 V +/- 0.25 V, CLO = CHO = CPFC = 1000 pF, RFMIN = 42.2 kΩ, RPH = N/C, VCPH = VVCO = 0 V, V SD/EOL = V COMP = VCS = VOC = VBUS = VZX = 0 V, TA=25 oC unless otherwise specified. Symbol Definition Min Typ Max Units Test Conditions Supply Characteristics V CCUV+ V CC supply undervoltage positive going threshold 11.5 12.5 13.5 V CC rising from 0 V V CCUV- V CC supply undervoltage negative going threshold 9.5 10.5 11.5 V CC falling from 14 V V UVHYS V CC supply undervoltage lockout hysteresis 1.5 2.0 3.0 V I QCCUV UVLO mode V CC quiescent current --- 220 320 µA V CC = 8 V IQCCFLT VCC quiescent current in fault mode --- 0.4 --- MODE=FAULT I CCRUN Run mode V CC supply current --- 5.5 7.2 mA MODE = RUN VBUS=4 V CSD/EOL=1 nF PFC off time = 5 µs V CLAMP V CC Zener clamp voltage 14.6 15.6 16.6 V I CC = 10 mA Floating Supply Characteristics I BS V BS supply current --- 0.9 1.3 mA MODE=PREHEAT V BSUV+ V BS supply undervoltage positive going threshold 8.0 9.0 10.0 V BS rising from 0 V V BSUV- V BS supply undervoltage negative going threshold 7.0 8.0 9.0 V V BS falling from 14 V I LKVS V S offset supply leakage current --- --- 50 µA V B = VS = 600 V |
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