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MAGNETIC CORE SHIFT REGISTER DESIGN
Energy Considerations in a Loaded
The Design of a Double Core Per
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ampere turns amplitude back flow backward flow BIT REGISTER capacitance and inductance clock pulse constant core losses core per bit cubic centimeter current pulse curve desired digit diode resistance dissipated per bit driving force eddy current effect energy dissipated equations ergs per cubic ergs per cycle ferrites ferromagnetic field strength flip flops flow of information flux change forward frequency gate tube graph hysteresis loops induced inductor input pulse input winding insert load resistance LOADED CORE maximum microseconds necessary to switch noise voltage nonlinear element Nsls number of turns ohms operating output voltage output winding phase shift photograph previous core repetition rate resistor saturation flux density set the core shift pulse shift winding shown in Fig signal output smaller stability stray capacitance succeeding core switch core triggers types of core University of Wisconsin univibrator vacuum tube width winding of core WISC zero