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PRESETTABLE UP/DOWN COUNTER BINARY OR BCD DECADE
PRESETTABLE UP/DOWN COUNTER BINARY OR BCD DECADE

... (*) Typical temperature coefficient for all VDD value is 0.3 %/°C. (1) If more than one unit is cascated in the parallel clocked application tr should be made less than or equal to the sum of the fixed propagation delay at 15pF and the transition time of the carry output driving stage for the estima ...
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... the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters ...
Input Magic—Differential Signals Allow Input Swing to Exceed Supply Voltage
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Integrating ADC



An integrating ADC is a type of analog-to-digital converter that converts an unknown input voltage into a digital representation through the use of an integrator. In its most basic implementation, the unknown input voltage is applied to the input of the integrator and allowed to ramp for a fixed time period (the run-up period). Then a known reference voltage of opposite polarity is applied to the integrator and is allowed to ramp until the integrator output returns to zero (the run-down period). The input voltage is computed as a function of the reference voltage, the constant run-up time period, and the measured run-down time period. The run-down time measurement is usually made in units of the converter's clock, so longer integration times allow for higher resolutions. Likewise, the speed of the converter can be improved by sacrificing resolution.Converters of this type can achieve high resolution, but often do so at the expense of speed. For this reason, these converters are not found in audio or signal processing applications. Their use is typically limited to digital voltmeters and other instruments requiring highly accurate measurements.
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