AD7792BRUZ Analog Devices Inc, AD7792BRUZ Datasheet - Page 11

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AD7792BRUZ

Manufacturer Part Number
AD7792BRUZ
Description
IC ADC 16BIT SIG-DEL 3CH 16TSSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD7792BRUZ

Data Interface
DSP, MICROWIRE™, QSPI™, Serial, SPI™
Number Of Bits
16
Sampling Rate (per Second)
500
Number Of Converters
1
Power Dissipation (max)
2.5mW
Voltage Supply Source
Analog and Digital
Operating Temperature
-40°C ~ 105°C
Mounting Type
Surface Mount
Package / Case
16-TSSOP (0.173", 4.40mm Width)
Resolution (bits)
16bit
Sampling Rate
470SPS
Input Channel Type
Differential
Supply Voltage Range - Analog
2.7V To 5.25V
Supply Voltage Range - Digital
2.7V To 5.25V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
EVAL-AD7792EBZ - BOARD EVALUATION FOR AD7792
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

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OUTPUT NOISE AND RESOLUTION SPECIFICATIONS
EXTERNAL REFERENCE
Table 5 shows the output rms noise of the AD7792/AD7793 for
some of the update rates and gain settings. The numbers given
are for the bipolar input range with an external 2.5 V reference.
These numbers are typical and are generated with a differential
input voltage of 0 V. Table 6 and Table 7 show the effective
resolution, with the output peak-to-peak (p-p) resolution
Table 5. Output RMS Noise (μV) vs. Gain and Output Update Rate for the AD7792 and AD7793 Using an External 2.5 V Reference
Update Rate (Hz)
4.17
8.33
16.7
33.2
62
123
242
470
Table 6. Typical Resolution (Bits) vs. Gain and Output Update Rate for the AD7793 Using an External 2.5 V Reference
Update Rate (Hz)
4.17
8.33
16.7
33.2
62
123
242
470
Table 7. Typical Resolution (Bits) vs. Gain and Output Update Rate for the AD7792 Using an External 2.5 V Reference
Update Rate (Hz)
4.17
8.33
16.7
33.2
62
123
242
470
Gain of 1
0.64
1.04
1.55
2.3
2.95
4.89
11.76
11.33
Gain of 1
23 (20.5)
22 (19.5)
21.5 (19)
21 (18.5)
20.5 (18)
20 (17.5)
18.5 (16)
18.5 (16)
Gain of 1
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
Gain of 2
0.6
0.96
1.45
2.13
2.85
4.74
9.5
9.44
Gain of 2
22 (19.5)
21.5 (19)
20.5 (18)
20 (17.5)
19.5 (17)
19 (16.5)
18 (15.5)
18 (15.5)
Gain of 2
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (15.5)
16 (15.5)
Gain of 4
0.29
0.38
0.54
0.74
0.92
1.49
4.02
3.07
Gain of 4
22 (19.5)
21.5 (19)
21 (18.5)
20.5 (18)
20.5 (18)
19.5 (17)
18 (15.5)
18.5 (16)
Gain of 4
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (15.5)
16 (16)
Rev. B | Page 11 of 32
Gain of 8
Gain of 8
21.5 (19)
21 (18.5)
20.5 (18)
20 (17.5)
Gain of 8
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (15.5)
0.22
0.26
0.36
0.5
0.58
1
1.96
1.79
20 (17.5)
19 (16.5)
18 (15.5)
18.5 (16)
16 (16)
shown in parentheses for the AD7793 and AD7792, respectively.
It is important to note that the effective resolution is calculated
using the rms noise, while the p-p resolution is based on the p-p
noise. The p-p resolution represents the resolution for which
there is no code flicker. These numbers are typical and are
rounded to the nearest LSB.
Gain of 16
Gain of 16
Gain of 16
16 (16)
16 (15.5)
0.1
0.13
0.18
0.23
0.29
0.48
0.88
0.99
21.5 (19)
21 (18.5)
20.5 (18)
20.5 (18)
20 (17.5)
19.5 (17)
18.5 (16)
18 (15.5)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
Gain of 32
0.065
0.078
0.11
0.17
0.2
0.32
0.45
0.63
Gain of 32
21 (18.5)
21 (18.5)
20.5 (18)
20 (17.5)
19.5 (17)
19 (16.5)
18.5 (16)
18 (15.5)
Gain of 32
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
16 (15.5)
Gain of 64
0.039
0.057
0.087
0.124
0.153
0.265
0.379
0.568
Gain of 64
21 (18.5)
20.5 (18)
20 (17.5)
19 (16.5)
19 (16.5)
18 (15.5)
17.5 (15)
17 (14.5)
Gain of 64
16 (16)
16 (16)
16 (16)
16 (16)
16 (16)
165 (15.5)
16 (15)
16 (14.5)
AD7792/AD7793
Gain of 128
Gain of 128
Gain of 128
0.041
0.055
0.086
0.118
0.144
0.283
0.397
0.593
20 (17.5)
19.5 (17)
19 (16.5)
18.5 (16)
18 (15.5)
17 (14.5)
16.5 (14)
16 (13.5)
16 (16)
16 (16)
16 (16)
16 (16)
16 (15.5)
16 (14.5)
16 (14)
15.5 (13.5)

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