參數(shù)資料
型號: ADA4941-1YRZ-R7
廠商: Analog Devices Inc
文件頁數(shù): 10/25頁
文件大?。?/td> 0K
描述: IC DIFF ADC DRIVER 18BIT 8SOIC
設計資源: Converting a Single-Ended Signal with AD7982 Differential PulSAR ADC (CN0032)
Converting a Single-Ended Signal with AD7984 Differential PulSAR ADC (CN0033)
標準包裝: 1,000
類型: ADC 驅(qū)動器
應用: 數(shù)據(jù)采集
安裝類型: 表面貼裝
封裝/外殼: 8-SOIC(0.154",3.90mm 寬)
供應商設備封裝: 8-SO
包裝: 帶卷 (TR)
ADA4941-1
Rev. C | Page 17 of 24
Table 7, Table 8, and Table 9 show typical error budgets for the
RF = 1.0 k, RG = 4.99 k, RS_IN = 825 , RS_REF = 0
Table 7. Output Voltage Error Budget for G = 2.4 Amplifier
Error
Source
Typical
Value
VOP_error
VON_error
VO_dm_error
VOS_A1
0.1 mV
+0.12 mV
0.12 mV
+0.24 mV
IBP_A1
3 A
+2.48 mV
2.48 mV
4.96 mV
IBN_A1
3 A
2.48 mV
+2.48 mV
+4.96 mV
VOS_A2
0.1 mV
0 mV
+0.2 mV
Total VO_error, dm = 0.44 mV
RF = 0 , RG = ∞, RS_IN = 0 , RS_REF = 0
Table 8. Output Voltage Error Budget for Amplifier Shown
Error
Source
Typical
Value
VOP_error
VON_error
VO_dm_error
VOS_A1
0.1 mV
+0.1 mV
0.1 mV
+0.2 mV
IBP_A1
3 A
+2.48 mV
2.48 mV
4.96 mV
IBN_A1
3 A
2.48 mV
+2.48 mV
+4.96 mV
VOS_A2
0.1 mV
0 mV
+0.2 mV
Total VO_error, dm = 0.4 mV
RF = 1.02 k, RG = 665 , RS_IN = 402 , RS_REF = 0
Table 9. Output Voltage Error Budget for G = 5 Amplifier
Error
Source
Typical
Value
VOP_error
VON_error
VO_dm_error
VOS_A1
0.1 mV
+0.25 mV
0.25 mV
+0.5 mV
IBP_A1
3 A
+1.21 mV
1.21 mV
2.4 mV
IBN_A1
3 A
1.21 mV
+1.21 mV
+2.4 mV
VOS_A2
0.1 mV
0 mV
+0.2 mV
Total VO_error, dm = 0.7 mV
OUTPUT VOLTAGE NOISE
1k
1k
RG
RF
RS
ipA2
inA2
vnA1
500
A2
A1
REF
IN
2
8
4
5
FB
OUT+
+
VOP
1
OUT–
+
VON
vnA2
RS–REF
ipA1
inA1
05704-
057
√4kT (1k)
√4kT (500)
√4kT (RS–REF)
√4kTRS
√4kTRG
√4kTRF
Figure 52. Noise Sources
Figure 52 shows the major contributors to the ADA4941-1
differential output voltage noise. The differential output noise
mean-square voltage equals the sum of twice the noise mean-
square voltage contributions from the noninverting channel
(A1), plus the noise mean-square voltage terms associated with
the inverting channel (A2).
[
]
[
]
2
_
4
1
2
4
2
4
2
_
2
)
_
(
1
2
)
_
(
1
2
_
,
n
VON
kTR
R
kTR
R
A1
in
R
A1
ip
R
A1
vn
R
n
dm
V
S
G
F
G
F
G
F
S
G
F
G
F
O
+
×
+
×
+
×
+
×
+
×
+
×
+
×
+
=
(13)
where VON_n2 is calculated as
(
)
[
] [
]
)
(
16
(500)
16
(1000)
8
)
_
(
1000
)
_
500
)(
_
(
4
2
_REF
R
kT
A2
in
REF
R
A2
ip
vn_A2
VON_n
S
+
=
(14)
where:
vn_A1 and vn_A2 are the input voltage noises of A1 and A2,
each equal to 2.1 nV/√Hz.
in_A1, in_A2, ip_A1, and ip_A2 are amplifier input current
noise terms, each equal to 1 pA/√Hz.
RS, RF, and RG are the external source, feedback, and gain
resistors, respectively.
kT is Boltzmann’s constant times absolute temperature, equal to
4.2 x 10-21 W-s at room temperature.
RS_REF is any source resistance at the REF pin.
When A1 is used as a unity gain follower, the output voltage
noise spectral density is at its minimum, 10 nV/√Hz. Higher
voltage gains have higher output voltage noise.
Table 10, Table 11, and Table 12 show the noise contributions
and output voltage noise for the circuits in Figure 48, Figure 49,
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