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NL37WZ04ONN/a3120avaiTriple Inverter
NL37WZ04USONN/a3120avaiTriple Inverter
NL37WZ04USON ?N/a359avaiTriple Inverter
NL37WZ04USThailandN/a3000avaiTriple Inverter


NL37WZ04 ,Triple InverterELECTRICAL CHARACTERISTICST = 25C 40C  T  85CA AV VCC CCMin Typ Max Min MaxSymbol Parameter C ..
NL37WZ04US ,Triple InverterMaximum Ratings are those values beyond which damage to the device may occur. Exposure to these con ..
NL37WZ04US ,Triple InverterELECTRICAL CHARACTERISTICS t = t = 2.5 ns; C = 50 pF; R = 500 R F L LT = 25C 40C  T  85CA AV ..
NL37WZ04US ,Triple Inverter• Designed for 1.65 V to 5.5 V V OperationCC• Over Voltage Tolerant Inputs and OutputsMARKING• LVTT ..
NL37WZ06 ,Triple Inverter, Open DrainELECTRICAL CHARACTERISTICS t = t = 2.5 ns; C = 50 pF; R = 500 ÎÎÎÎÎR F L LÎÎÎÎÎT = 25°C −40°C ≤ T ..
NL37WZ06US ,Triple Inverter, Open Drainswitching level. This allows the NL37WZ06 to be used to interface 5V circuits to circuits of any vo ..
NTD110N02R ,Power MOSFET 110 Amps, 24 volts, N-channel, DPAKELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted)JCharacteristic Symbol Min Typ Max Unit ..
NTD110N02R-001 ,Power MOSFET 110 Amps, 24 volts, N-channel, DPAKMaximum ratings applied to the device are individual stress limit values (not Gate Source1 2 3norma ..
NTD110N02R-001G ,Power MOSFET 110 Amps, 24 volts, N-channel, DPAKMAXIMUM RATINGS (T = 25°C unless otherwise noted)JRating Symbol Value UnitDrain−to−Source Voltage V ..
NTD110N02RG ,Power MOSFET 110 Amps, 24 volts, N-channel, DPAK3R , DRAIN−TO−SOURCE RESISTANCE R , DRAIN−TO−SOURCE RESISTANCE (Ω) I , DRAIN CURRENT (AMPS)DS(on) D ..
NTD110N02RT4G ,Power MOSFET 110 Amps, 24 volts, N-channel, DPAK2NTD110N02R175 21010 V5 VT = 25°CJ V ≥ 10 VDS8 V150 1804.5 V6 V125 1504.2 V4 V100 1203.8 V75 903.6 ..
NTD12N10G , Power MOSFET 12 Amps, 100 Volts


NL37WZ04-NL37WZ04US
Triple Inverter
ELECTRICAL CHARACTERISTICS t = t = 2.5 ns; C = 50 pF; R = 500 R F L LT = 25C 40C  T  85CA AV VCC CCSymbol Parameter Condition (V) Min Typ Max Min Max Unitt Propagation Delay R = 1 M C = 15 pF 1.8  0.15 1.8 4.4 9.5 2.0 10 nsÎÎÎÎ PLHÎ L LÎÎt (Fi (Figure 3 and 4) d )PHLR = 1 M C = 15 pF 2.5  0.2 1.2 5.0 5.7 1.2 6.1ÎÎÎÎÎ L LÎÎR = 1 M C = 15 pF 3.3  0.3 0.8 2.2 3.4 0.8 3.8L LR = 500  C = 50 pF 1.2 3.9 4.5 1.2 5.0ÎÎÎ L LÎÎÎÎR = 1 M C = 15 pF 5.0  0.5 0.5 1..8 2.8 0.5 3.1L LR = 500  C = 50 pF 0.8 2.3 3.6 0.8 4.0L LCAPACITIVE CHARACTERISTICSSymbol Parameter Condition Typical UnitC Input Capacitance V = 5.5 V, V = 0 V or V 2.5 pFIN CC I CCC Power Dissipation Capacitance 10 MHz, V = 3.3 V, V = 0 V or V 9 pFPD CC I CC(N (Note 6) )10 MHz, V = 5.5 V, V = 0 V or V 11CC I CC6. C is defined as the value of the internal equivalent capacitance which is calculated from the operating current consumption without load.PDAverage operating current can be obtained by the equation: I = C  V  f  I . C is used to determine the no–load dynamic)CC(OPR PD CC in CC PD2power consumption; P = C  V  f  I  V .D PD CC in CC CC
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