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AD7846AP датащи(PDF) 18 Page - Analog Devices |
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AD7846AP датащи(HTML) 18 Page - Analog Devices |
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18 / 24 page ![]() AD7846 Rev. G | Page 18 of 24 APPLICATION HINTS NOISE In high resolution systems, noise is often the limiting factor. With a 10 V span, a 16-bit LSB is 152 μV (–96 dB). Thus, the noise floor must stay below −96 dB in the frequency range of interest. Figure 12 shows the noise spectral density for the AD7846. GROUNDING As well as noise, the other prime consideration in high resolution DAC systems is grounding. With an LSB size of 152 μV and a load current of 5 mA, 1 LSB of error can be introduced by series resistance of only 0.03 Ω. Figure 30 shows recommended grounding for the AD7846 in a typical application. ANALOG SUPPLY DIGITAL SUPPLY –15V +15V 0V DGND +5V SIGNAL GROUND AD7846* AD588* R1 R4 RL VOUT (+5V TO –5V) R2 R3 R5 *ADDITIONAL PINS OMITTED FOR CLARITY 2 9 16 4 9 21 20 6 5 1 3 7 8 15 14 Figure 30. AD7846 Grounding R1 to R5 represent lead and track resistances on the printed circuit board. R1 is the resistance between the analog power supply ground and the signal ground. Because current flowing in R1 is very low (bias current of AD588 sense amplifier), the effect of R1 is negligible. R2 and R3 represent track resistance between the AD588 outputs and the AD7846 reference inputs. Because of the force and sense outputs on the AD588, these resistances will also have a negligible effect on accuracy. R4 is the resistance between the DAC output and the load. If RL is constant, then R4 introduces a gain error only that can be trimmed out in the calibration cycle. R5 is the resistance between the load and the analog common. If the output voltage is sensed across the load, R5 introduces a further gain error, which can be trimmed out. If, on the other hand, the output voltage is sensed at the analog supply common, R5 appears as part of the load and therefore introduces no errors. PRINTED CIRCUIT BOARD LAYOUT Figure 31 shows the AD7846 in a typical application with the AD588 reference, producing an output analog voltage in the ±10 V range. Full-scale and bipolar zero adjustment are provided by Potentiometer R2 and Potentiometer R3. Latches (2 × 74LS245) isolate the DAC digital inputs from the active microprocessor bus and minimize digital feedthrough. |
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