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ADP3301 Datasheet(PDF) 3 Page - Analog Devices |
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ADP3301 Datasheet(HTML) 3 Page - Analog Devices |
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3 / 5 page ![]() Circuit Note CN-0216 Rev. 0 | Page 3 of 5 100 10 1 0.1 1 10 100 OUTPUT DATA RATE (Hz) 1000 Figure 3. AD7791 RMS Noise for Different Output Data Rates and a 2.5 V Reference (5 V p-p Input Range), Buffer On The AD7791 rms noise of 1.1 µV for a 9.5 Hz output data rate and a reference of 2.5 V yields the following number of noise- free counts: 705 , 688 V μ 1 . 1 6 . 6 V 5 = × where the factor of 6.6 converts the rms voltage into a peak-to- peak voltage. The corresponding noise-free code resolution is, therefore: ( ) ( ) ( ) bits 5 . 19 2 log 705 , 688 log 705 , 688 log 10 10 2 = = Note that this represents the performance of the AD7791 without the load cell or the input amplifier connected. The ADA4528-1 has 5.9 nV/√Hz of voltage noise density and, therefore, the input amplifiers and resistors will add noise to the system. In addition, the load cell itself will add noise. In the circuit of Figure 1, a 5 V reference is used, therefore, the peak-to-peak input range is 10 V. The LSB is, therefore, equal to μV 596 . 0 2 V 10 LSB 1 24 = = The 10 mV p-p full-scale signal from the load cell produces a 3.75 V p-p signal into the ADC, which is approximately 38% of the ADC range. Seven sets of 500 samples each were taken with the load cell connected (no load). The peak-to-peak code spread for each sample set was calculated, and the seven values averaged to yield a code spread of 159 counts. This corresponds to 159 × 0.596 µV = 94.8 µV p-p noise based on a full-scale input to the ADC of 3.75 V p-p. Therefore, the number of noise-free counts is 557 , 39 V μ 8 . 94 V 3.75 = Therefore, the corresponding noise-free code resolution of the total system is: ( ) ( ) ( ) bits 3 . 15 2 log 557 , 39 log 557 , 39 log 10 10 2 = = Figure 4 shows a plot of the ADC codes for 500 samples (52.6 sec for 9.5 Hz data rate). Note that the peak-to-peak spread is about 160 codes. Figure 4. Measured Output Code for 500 Samples Showing the Effects of Noise Figure 5 shows the same data presented in a histogram. Figure 4 and Figure 5 show the actual (raw) conversions read back from the AD7791. In practice, a digital post filter is typically used in a weigh scale system. The additional averaging that is performed in the post filter will further improve the number of noise-free counts at the expense of a reduced data rate. The resolution of the system in grams can be calculated by g 05 . 0 557 , 39 kg 2 = As with any high accuracy circuit, proper layout, grounding, and decoupling techniques must be employed. See Tutorial MT-031, Grounding Data Converters and Solving the Mystery of AGND and DGND and Tutorial MT-101, Decoupling Techniques for more details. A complete design support package for this circuit note can be found at www.analog.com/CN0216- DesignSupport. |
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