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LND150 Datasheet(PDF) 2 Page - Supertex, Inc |
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LND150 Datasheet(HTML) 2 Page - Supertex, Inc |
2 / 7 page 2 Supertex inc. www.supertex.com Doc.# DSFP-LND150 C041114 LND150 Electrical Characteristics (T A = 25 O C unless otherwise specified) Sym Parameter Min Typ Max Units Conditions BV DSX Drain-to-source breakdown voltage 500 - - V V GS = -10V, ID = 1.0mA V GS(OFF) Gate-to-source off voltage -1.0 - -3.0 V V GS = 25V, ID = 100nA ΔV GS(OFF) Change in V GS(OFF) with temperature - - 5.0 mV/OC V GS = 25V, ID = 100nA I GSS Gate body leakage current - - 100 nA V GS = ± 20V, VDS = 0V I D(OFF) Drain-to-source leakage current - - 100 nA V GS = -10V, VDS = 450V - - 100 µA V DS = 0.8V Max Rating, V GS = -10V, TA = 125 O C I DSS Saturated drain-to-source current 1.0 - 3.0 mA V GS = 0V, VDS = 25V R DS(ON) Static drain-to-source on-state resistance - 850 1000 Ω V GS = 0V, ID = 0.5mA ΔR DS(ON) Change in R DS(ON) with temperature - - 1.2 %/OC V GS = 0V, ID = 0.5mA G FS Forward transductance 1.0 2.0 - m V DS = 0V, ID = 1.0mA C ISS Input capacitance - 7.5 10 pF V GS = -10V, V DS = 25V, f = 1.0MHz C OSS Common source output capacitance - 2.0 3.5 C RSS Reverse transfer capacitance - 0.5 1.0 t d(ON) Turn-on delay time - 0.09 - µs V DD = 25V, I D = 1.0mA, R GEN = 25Ω t r Rise time - 0.45 - t d(OFF) Turn-off delay time - 0.1 - t f Fall time - 1.3 - V SD Diode forward voltage drop - - 0.9 V V GS = -10V, ISD = 1.0mA t rr Reverse recovery time - 200 - ns V GS = -10V, ISD = 1.0mA Notes: 1. All D.C. parameters 100% tested at 25OC unless otherwise stated. (Pulse test: 300µs pulse, 2% duty cycle.) 2. All A.C. parameters sample tested. Notes: † I D (continuous) is limited by max rated Tj. Thermal Characteristics Package I D (continuous)† (mA) I D (pulsed) (mA) Power Dissipation @T A = 25 O C (W) θ ja (OC/W) I DR (mA) I DRM † (mA) TO-236AB (SOT-23) 13 30 0.36 203 13 30 TO-92 30 30 0.74 132 30 30 TO-243AA (SOT-89) 30 30 1.6‡ 133 30 30 Switching Waveforms and Test Circuit 90% 10% 90% 90% 10% 10% Pulse Generator VDD R L OUTPUT D.U.T. t (ON) t d(ON) t (OFF) t d(OFF) t r INPUT INPUT OUTPUT 0V VDD R GEN 0V -10V t f |
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