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AMERICAN MICROSYSTEMS, June, 1998 Preliminary micron CMOS Do


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ADC10C05
AMERICAN MICROSYSTEMS,
June, 1998 Preliminary
micron CMOS Double Poly
ADC10C05, +4.5 +5.5 10-Bit KSPS successive approximation
FUNCTIONAL BLOCK DIAGRAM
AVDD (power) AVSS (ground)
IBIAS (bias current input) VREF (reference voltage input)
VREF
(analog input)
(clock input) D[7:0] (digital output)
DACREGISTER 8-BIT POWER-DOWN CONTROL LOGIC OUTPUTBUFFER POWER-ON RESET
Input
Ouput [7:0]
FEATURES
ADC10C05 successive approximation charge redistribution ADC. converter allows high resolution bit. Guaranteed monotonic design. Reference derived from power supply. Power-on-reset zero volts. On-chip output buffer amplifier, rail-to-rail operation.
APPLICATIONS
Instrumentation control loops Audio processing. Voltage reference. Low-speed data conversion.
GENERAL DESCRIPTION
cell been designed operate from separate analog digital supplies.
ADC10R05 realized 10-bit successive approximation charge redistribution ADC. part requires external voltage reference, which used perform actual conversion. Digital inputs cell include conversion start (CS), clock (DLCK), power down (PD). Digital outputs conversion complete (CC), unsigned binary output VIN, analog input converted, only analog input. uses clock cycles convert analog input unsigned binary output code. ADC10C05 characterized operation over full industrial temperature range -40°C 85°C. PRODUCT HIGHLIGHTS power operation. This converter operates from +4.5 +5.5 supply. High resolution unsigned binary output.
ADC10C05
AMERICAN MICROSYSTEMS,
June, 1998 Preliminary
micron CMOS Double Poly
high Units Bits Bits
Parameter RESOLUTION RELATIVE ACCURACY FULL-SCALE CALIBRATION UNIPOLAR OFFSET DIFFERENTIAL NONLINEAIRTY INTEGRAL NONLINEARITY GAIN ERROR OFFSET ERROR ANALOG INPUT RANGES Input Voltage Range Input Impedance Input Capacitance ANALOG SUPPLY, AVDD DIGITAL SUPPLY, DVDD LOGIC OUTPUTS Output Voltage, CMOS levels, Logic Logic LOGIC INPUTS Input Voltage, CMOS levels, Logic Logic Input Current SAMPLE RATE (Fs) CONVERSION TIME POWER SUPPLY OPERATING CURRENT, TEMPERATURE Absolute Maximum Ratings
0.7+VDD 0.3+VDD
Analog Input Voltage Digital Input Voltage Differential Reference Voltage Reference Midpoint Current Digital Output Current Operating Temperature Range Storage Temperature Range Junction Temperature Lead Soldering Temperature sec.) Notes: been designed application with reference. Lower voltage supply could adversely affect accuracy. clock cycles

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