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XU440 Datasheet(PDF) 2 Page - Calogic, LLC |
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XU440 Datasheet(HTML) 2 Page - Calogic, LLC |
2 / 2 page U440 / U441 CORPORATION ABSOLUTE MAXIMUM RATINGS (TA = 25 oC unless otherwise noted) Parameter/Test Condition Symbol Limit Unit Gate-Drain Voltage VGD -25 V Gate-Source Voltage VGS -25 V Gate-Gate Voltage VGG ±50 V Forward Gate Current IG 50 mA Power Dissipation (per side) PD 250 mW (total) 350 mW Power Derating (per side) 2 mW/ oC (total) 2.8 mW/ oC Operating Junction Temperature TJ -55 to 150 oC Storage Temperature Tstg -65 to 200 oC Lead Temperature (1/16" from case for 10 seconds) TL 300 oC ELECTRICAL CHARACTERISTICS (TA = 25 oC unless otherwise noted) SYMBOL CHARACTERISTCS TYP 1 U440 U441 UNIT TEST CONDITIONS MIN MAX MIN MAX STATIC V(BR)GSS Gate-Source Breakdown Voltage -35 -25 -25 V IG = -1 µA, VDS = 0V VGS(OFF) Gate-Source Cut off Voltage -3.5 -1 -6 -1 -6 VDS = 10V, ID = 1nA IDSS Saturation Drain Current 2 15 6 30630 mA VDS = 10V, VGS = 0V IGSS Gate Reverse Current -1 -500 -500 pA VGS = -15V, VDS = 0V -2 nA TA = 150 oC IG Gate Operating Current -1 -500 -500 pA VDG = 10V, ID = 5mA -0.3 nA TA = 125 oC VGS(F) Gate-Source Forward Voltage 0.7 V IG = 1mA, VDS = 0V DYNAMIC gfs Common-Source Forward Transconductance 6 4.5 9 4.5 9 mS VDG = 10V, ID = 5mA f = 1kHz gos Common-Source Output Conductance 70 200 200 µS Ciss Common-Source Input Capacitance 3 pF VDG = 10V, ID = 5mA f = 1MHz Crss Common-Source Reverse Transfer Capacitance 1 en Equivalent Input Noise Voltage 4 nV/ Hz VDG = 10V, ID = 5mA f = 10kHz MATCHING | VGS1-VGS2| Differential Gate-Source Voltage 6 10 20 mV VDG = 10V, ID = 5mA ∆ | VGS1-VGS2| ∆T Gate-Source Voltage Differential Change with Temperature 20 µV/ oC T = -55 to 25 oC VDG =10V, ID = 5mA 20 T = 25 to 125 oC IDSS1 IDSS2 Saturation Drain Current Ratio 0.97 VDS = 10V, VGS = 0V gfs1 gfs2 Transconductance Ratio 0.97 VDG = 10V, ID = 5mA f= 1 kHz CMRR Common Mode Rejection Ratio 85 dB VDD = 5 to 10V, ID = 5mA NOTES: 1. For design aid only, not subject to production testing. 2. Pulse test; PW = 300 µs, duty cycle ≤ 3%. |
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