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AD7703 Fiches technique(PDF) 10 Page - Analog Devices |
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AD7703 Fiches technique(HTML) 10 Page - Analog Devices |
10 / 16 page REV. E –10– AD7703 Initiating Calibration Table III illustrates the calibration modes available in the AD7703. Not shown in the table is the function of the BP/ UP pin, which determines whether the converter has been calibrated to mea- sure bipolar or unipolar signals. A calibration step is initiated by bringing the CAL pin high for at least four CLKIN cycles and then bringing it low again. The states of SC1 and SC2 along with the BP/ UP pin will determine the type of calibration to be performed. All three signals should be stable before the CAL pin is taken positive. The SC1 and SC2 inputs are latched when CAL goes high. The BP/ UP input is not latched and, therefore, must remain in a fixed state throughout the calibration and measurement cycles. Any time the state of the BP/ UP is changed, a new calibration cycle must be performed to enable the AD7703 to function properly in the new mode. When a calibration step is initiated, the DRDY signal will go high and remain high until the step is finished. Table III shows the number of clock cycles each calibration requires. Once a calibra- tion step is initiated, it must finish before a new calibration step can be executed. In the two step system calibration mode, the offset calibration step must be initiated before initiating the gain calibration step. When self-calibration is completed, DRDY falls and the output port is updated with a data-word that represents the analog input signal. When a system calibration step is completed, DRDY will fall and the output port will be updated with the appropriate data value (all 0s for the zero-scale point and all 1s for the full-scale point). In the system calibration mode, the digital filter must settle before the output code will represent the value of the analog input signal. Tables IV and V indicate the output code size and output coding of the AD7703 in its various modes. In these tables, SOFF is the measured system offset in volts and SGAIN is the measured system gain at the full-scale point in volts. Span and Offset Limits Whenever a system calibration mode is used, there are limits on the amount of offset and span that can be accommodated. The range of input span in both the Unipolar and Bipolar modes has a minimum value of 0.8 VREF and a maximum value of 2(VREF + 0.1 V). The amount of offset that can be accommodated depends on whether the Unipolar or Bipolar mode is being used. In Unipolar mode, the system calibration modes can handle a maximum offset of 0.2 VREF and a minimum offset of –(VREF + 0.1 V). Therefore the AD7703 in the Unipolar mode can be calibrated to mimic bipolar operation. Table III. Calibration Truth Table * Calibration Zero-Scale Full-Scale Calibration CAL SC1 SC2 Type Calibration Calibration Sequence Time 00 Self-Calibration VAGND VREF One Step 3,145,655 Clock Cycles 11 System Offset AIN First Step 1,052,599 Clock Cycles 01 System Gain AIN Second Step 1,068,813 Clock Cycles 10 System Offset AIN VREF One Step 2,117,389 Clock Cycles *DRDY remains high throughout the calibration sequence. In the Self-Calibration mode, DRDY falls once the AD7703 has settled to the analog input. In all other modes, DRDY falls as the device begins to settle. Table IV. Output Code Size After Calibration 1 LSB Calibration Mode Zero Scale Gain Factor Unipolar Bipolar Self-Calibration VAGND VREF (VREF –VAGND ) 1048576 2(VREF –VAGND ) 1048576 System Calibration SOFF SGAIN (SGAIN – SOFF ) 1048576 2(SGAIN – SOFF ) 1048576 |
Numéro de pièce similaire - AD7703_15 |
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Description similaire - AD7703_15 |
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