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N74F38D(R) N74F38D(R) N74F38DR Datasheet

Characterristic Symbol Test Condition Min Typ Max Unit
Collector Base Breakdown Voltage Collector Emitter Breakdown Voltage Emitter Base Breakdown Voltage Collector Cutoff Current Emitter Cutoff Current *DC Current Gain DC Current Gain Collector- Emitter Saturation Voltage BVCBO BVCEO BVEBO ICBO IEBO hFEl hFE2 VCE(sat) IC=-5 mA IE=O IC=-10 mA RBE= IE=-5mA IC=O VCB=-60V IE=O VEB=-4V IC=O VCE=-5V IC=-1A VCE=-5V IC=-3A IC=-3A IB=-0.3A -16 0 -12 0 -6 55 50 -0.1 -0.1 160 -1.5 V V V mA mA V


N74F38D(R) N74F38D(R) N74F38DR Price

-- -- fF : VCC/2 INPUT CODE (c) vCC VREF/
OUTPUT VOLTAGE o J 32768 65535 INPUT CODE (a) -- INPUT CODE -- ~hl


N74F38D(R) N74F38D(R) N74F38DR on stock
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General Description The DS1631 series of dual peripheral drivers was designed to be a universal set of interface components for CMOS circuits. Each circuit has CMOS compatible inputs with thresholds that track as a function of Vcc (approximately i/2 Vcc). The inputs are PNPs providing the high impedance necessary for interfacing with CMOS. Outputs have high voltage capability, minimum breakdown voltage is 56V at 250 liA. The outputs are Darlington connected transistors. This al- lows high current operation (300 mA max) at low internal Vcc current levels since base drive for the output transistor is obtained from the load in proportion to the required load- ing conditions. This is essential in order to minimize loading on the CMOS logic supply. Typical Vcc = 5V power is 28 mW with both outputs ON. Vcc operating range is 4.5V t0 15V. The circuit also features output transistor protection if the VCC supply is lost by forcing the output into the high impe-