參數(shù)資料
型號(hào): AD627BRZ-R7
廠商: Analog Devices Inc
文件頁(yè)數(shù): 11/25頁(yè)
文件大?。?/td> 0K
描述: IC AMP INST R-R 80MHZ DL 8SOIC
產(chǎn)品培訓(xùn)模塊: Power Line Monitoring
標(biāo)準(zhǔn)包裝: 1
放大器類型: 儀表
電路數(shù): 1
輸出類型: 滿擺幅
轉(zhuǎn)換速率: 0.06 V/µs
-3db帶寬: 80kHz
電流 - 輸入偏壓: 2nA
電壓 - 輸入偏移: 25µV
電流 - 電源: 60µA
電流 - 輸出 / 通道: 25mA
電壓 - 電源,單路/雙路(±): 2.2 V ~ 36 V,±1.1 V ~ 18 V
工作溫度: -40°C ~ 85°C
安裝類型: 表面貼裝
封裝/外殼: 8-SOIC(0.154",3.90mm 寬)
供應(yīng)商設(shè)備封裝: 8-SO
包裝: 標(biāo)準(zhǔn)包裝
其它名稱: AD627BRZ-R7DKR
AD627
Data Sheet
Rev. E | Page 18 of 24
MAKE vs. BUY: A TYPICAL APPLICATION ERROR
BUDGET
The example in Figure 41 serves as a good comparison between
the errors associated with an integrated and a discrete in-amp
implementation. A ±100 mV signal from a resistive bridge
(common-mode voltage = 2.5 V) is amplified. This example
compares the resulting errors from a discrete two-op-amp
instrumentation amplifier and the AD627. The discrete
implementation uses a four-resistor precision network
(1% match, 50 ppm/°C tracking).
The errors associated with each implementation (see Table 9)
show the integrated in-amp to be more precise at both ambient
and overtemperature. Note that the discrete implementation is
more expensive, primarily due to the relatively high cost of the
low drift precision resistor network.
The input offset current of the discrete instrumentation amplifier
implementation is the difference in the bias currents of the two-
op amplifiers, not the offset currents of the individual op amps.
In addition, although the values of the resistor network are chosen
so that the inverting and noninverting inputs of each op amp
see the same impedance (about 350 ), the offset current of
each op amp adds another error that must be characterized.
VOUT
+2.5V
+5V
AD627A GAIN = 9.98 (5+(200k/RG))
HOMEBREW IN-AMP, G = +10
*1% RESISTOR MATCH, 50ppm/°C TRACKING
RG
40.2k
1%
+10ppm/°C
AD627A
+5V
350
3.15k*
350*
3.15k*
±100mV
1/2
LT10781SB
1/2
00782-
039
Figure 41. Make vs. Buy
Table 9. Make vs. Buy Error Budget
Error Source
AD627 Circuit Calculation
Homebrew Circuit Calculation
Total Error
(ppm)
Total Error
Homebrew
(ppm)
ABSOLUTE ACCURACY at TA = 25°C
Total RTI Offset Voltage, mV
(250 μV + (1000 μV/10))/100 mV
(180 μV × 2)/100 mV
3,500
3,600
Input Offset Current, nA
1 nA × 350 Ω/100 mV
20 nA × 350 Ω/100 mV
3.5
70
Internal Offset Current
(Homebrew Only)
Not applicable
0.7 nA × 350 Ω/100 mV
2.45
CMRR, dB
77 dB
→141 ppm × 2.5 V/100 mV (1% match × 2.5 V)/10/100 mV
3,531
25,000
Gain
0.35% + 1%
1% match
13,500
10,000
Total Absolute Error
20,535
38,672
DRIFT TO 85°C
Gain Drift, ppm/°C
(75 + 10) ppm/°C × 60°C
50 ppm/°C × 60°C
3,900
3,000
Total RTI Offset Voltage, mV/°C
(3.0 μV/°C + (10 μV/°C/10)) ×
60°C/100 mV
(2 × 3.5 μV/°C × 60°C)/100 mV
2,600
4,200
Input Offset Current, pA/°C
(16 pA/°C × 350 Ω × 60°C)/100 mV
(33 pA/°C × 350 Ω × 60°C)/100 mV
3.5
7
Total Drift Error
6,504
7,207
Grand Total Error
27,039
45,879
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