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AMC1204_14 Datasheet, PDF (19/37 Pages) Texas Instruments – 20MHz, Second-Order, Isolated Delta-Sigma Modulator for Current-Shunt Measurement
AMC1204
AMC1204B
www.ti.com
SBAS512D – APRIL 2011 – REVISED DECEMBER 2013
In a sinc3 filter response (shown in Figure 46 and Figure 47), the location of the first notch occurs at the
frequency of output data rate fDATA = fCLK/OSR. The –3dB point is located at half the Nyquist frequency or fDATA/4.
For some applications, it may be necessary to use another filter type with different frequency response.
Performance can be improved, for example, by using a cascaded filter structure. The first decimation stage could
be built of a sinc3 filter with a low OSR and the second stage using a high-order filter.
0
fDATA = 20MHz/64 = 312.5kHz
-10
-3dB: 81.9kHz
OSR = 64
-20
-30
-40
-50
-60
-70
-80
0
200 400 600 800 1000 1200 1400 1600
Frequency (kHz)
Figure 46. Frequency Response of the Sinc3 Filter
30k
fMOD = 20MHz
OSR = 64
25k FSR = 32768
ENOB = 12 Bits
20k Settling Time =
3 ´ 1/fDATA = 9.6ms
15k
10k
5k
0
0
5 10 15 20 25 30 35 40
Number of Output Clocks
Figure 47. Pole Response of the Sinc3 Filter
The effective number of bits (ENOB) is often used to compare the performance of ADCs and ΔΣ modulators.
Figure 48 illustrates the ENOB of the AMC1204 and AMC1204B with different oversampling ratios. In this data
sheet, this number is calculated from SNR using Equation 2:
SNR = 1.76dB + 6.02dB ´ ENOB
(2)
In motor control applications, a very fast response time for overcurrent detection is required. The time for fully
settling the filter depends on its order; that is, a sinc3 filter requires three data clocks for full settling (with fDATA =
fCLK/OSR). Therefore, for overcurrent protection, filter types other than sinc3 might be a better choice; an
alternative is the sinc2 filter. Figure 49 compares the settling times of different filter orders with sincfast being a
modified sinc2 filter with behavior as shown in Equation 3.
2
H(z) =
1 - z-OSR
1 - z-1
(1
+
z ) -2OSR
(3)
16
sinc3
14
sincfast
12
sinc2
10
8
6
sinc1
4
2
0
1
10
100
1000
OSR
Figure 48. Measured Effective Number of Bits
versus Oversampling Ratio
16
14
sinc3
sincfast
12
10
sinc2
8
6
sinc1
4
2
0
0 1 2 3 4 5 6 7 8 9 10 11 12 13
Settling Time (ms)
Figure 49. Measured Effective Number of Bits
versus Settling Time
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