. Electronic apparatus for biological research . Figure Deflector coil assembly Figure law. By rotating the device as a whole round the tube neck the direction of shift is controlled. The magnitude of the shift is determined by the position of the rotatable permanent magnet within the device itself. The order in which the various ancillaries are assembled is shown in Figure Deflection amplifiers The direct-coupled deflection main-amplifier of the author's demonstration oscilloscope is shown in Figure A long-tailed pair is used as a phase- splitter to feed a push-pull
. Electronic apparatus for biological research . Figure Deflector coil assembly Figure law. By rotating the device as a whole round the tube neck the direction of shift is controlled. The magnitude of the shift is determined by the position of the rotatable permanent magnet within the device itself. The order in which the various ancillaries are assembled is shown in Figure Deflection amplifiers The direct-coupled deflection main-amplifier of the author's demonstration oscilloscope is shown in Figure A long-tailed pair is used as a phase- splitter to feed a push-pull power output stage in class AB. The frequency response is 6 dB's down at 10 kc/s. Using a 17 in. diagonal rectangular screen 466
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