參數(shù)資料
型號(hào): ADUC848BCP8-5
廠商: ANALOG DEVICES INC
元件分類: 微控制器/微處理器
英文描述: Cable Gland (Clamp); Connector Shell Size:10SL, 12S; Leaded Process Compatible:No; Peak Reflow Compatible (260 C):No; Thread Size:5/8-24; Approval Categories:MIL-C-5015; Series:97 RoHS Compliant: No
中文描述: 8-BIT, FLASH, 12.58 MHz, MICROCONTROLLER, QCC56
封裝: 8 X 8 MM, MO-220-VLLD-2, LFCSP-56
文件頁(yè)數(shù): 31/108頁(yè)
文件大?。?/td> 1109K
代理商: ADUC848BCP8-5
ADuC845/ADuC847/ADuC848
ADC Noise Performance with Chop Disabled (CHOP = 1)
Rev. A | Page 31 of 108
Table 14, Table 15, Table 16, and Table 17 show the output rms
noise and output peak-to-peak resolution in bits (rounded to
the nearest 0.5 LSB) for some typical output update rates. The
numbers are typical and are generated at a differential input
voltage of 0 V and a common-mode voltage of 2.5 V. The output
update rate is selected via the SF7 to SF0 bits in the SF filter
register. Note that the peak-to-peak resolution figures represent
the resolution for which there is no code flicker within a 6-
sigma limit.
The output noise comes from two sources. The first source is
the electrical noise in the semiconductor devices (device noise)
used in the implementation of the modulator. The second
source is quantization noise, which is added when the analog
input is converted to the digital domain. The device noise is at a
low level and is independent of frequency. The quantization
noise starts at an even lower level but rises rapidly with increasing
frequency to become the dominant noise source.
The numbers in the tables are given for the bipolar input ranges.
For the unipolar ranges, the rms noise numbers are the same as
the bipolar range, but the peak-to-peak resolution is based on
half the signal range, which effectively means losing 1 bit of
resolution. Typically, the performance of the ADC with chop
disabled shows a 0.5 LSB degradation over the performance
with chop enabled.
Table 14. ADuC845 and ADuC847 Typical Output RMS Noise (μV) vs. Input Range and Update Rate with Chop Disabled
Table 15. ADuC845 and ADuC847 Typical Peak-to-Peak Resolution (Bits) vs. Input Range and Update Rate with Chop Disabled
Table 16. ADuC848 Typical Output RMS Noise (μV) vs. Input Range and Update Rate with Chop Disabled
Table 17. ADuC848 Typical Peak-to-Peak Resolution (Bits) vs. Input Range and Update Rate with Chop Disabled
Data Update Rate
(Hz)
±20 mV
±40 mV
±80 mV
3
1365.33
7.5
9
9
13
315.08
11.5
12.5
13.5
68
59.36
13
14
14.5
82
49.95
13
14
15
255
16.06
13.5
14.5
15.5
Input Range
±320mV
9
13.5
16
16
16
SF Word
±160 mV
9
14
15.5
16
16
±640mV
9
14
16
16
16
±1.28 V
9
14
16
16
16
±2.56 V
9
14
16
16
16
Input Range
±
320 mV
248.39
8.22
0.79
0.91
0.52
SF Word
3
13
68
82
255
Data Update
Rate (Hz)
1365.33
315.08
59.36
49.95
16.06
±
20 mV
30.64
2.07
0.85
0.83
0.52
±
40 mV
24.5
1.95
0.79
0.77
0.58
±
80 mV
56.18
2.28
1.01
0.85
0.59
±
160 mV
100.47
3.24
0.99
0.77
0.48
±
640 mV
468.65
13.9
1.29
1.12
0.57
±
1.28 V
774.36
20.98
2.3
1.59
1.16
±
2.56 V
1739.5
49.26
3.7
3.2
1.68
Input Range
±
320 mV
9
13.5
17
16.5
17.5
SF Word
3
13
68
82
255
Data Update
Rate (Hz)
1365.33
315.08
59.36
49.95
16.06
±
20 mV
7.5
11.5
13
13
13.5
±
40 mV
9
12.5
14
14
14.5
±
80 mV
9
13.5
14.5
15
15.5
±
160 mV
9
14
15.5
16
16.5
±
640 mV
9
14
17
17.5
18.5
±
1.28 V
9
14
17.5
18
18.5
±
2.56 V
9
14
18
18
19
Input Range
±
320 mV
248.39
8.22
0.79
0.91
0.52
SF Word
3
13
69
82
255
Data Update
Rate (Hz)
1365.33
315.08
59.36
49.95
16.06
±
20 mV
30.64
2.07
0.85
0.83
0.52
±
40 mV
24.5
1.95
0.79
0.77
0.58
±
80 mV
56.18
2.28
1.01
0.85
0.59
±
160 mV
100.47
3.24
0.99
0.77
0.48
±
640 mV
468.65
13.9
1.29
1.12
0.57
±
1.28 V
774.36
20.98
2.3
1.59
1.16
±
2.56 V
1739.5
49.26
3.7
3.2
1.68
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