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LMP8640 bảng dữ liệu(PDF) 13 Page - National Semiconductor (TI)

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tên linh kiện LMP8640
Giải thích chi tiết về linh kiện  Precision High Voltage Current Sense Amplifier
PDF  16 Pages
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nhà sản xuất  NSC [National Semiconductor (TI)]
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(4.1V) , the max Sense voltage across the shunt resistor is
evaluated according the following formula:
V
SENSE= (MAX Vin ADC) / Gain;
hence the max V
SENSE will be 205mV, 82mV, 41mV respec-
tively. The shunt resistor are then evaluated considering the
maximum monitored current :
R
S = (max VSENSE) / I_MAX
For each gain option the max shunt resistors are the follow-
ing : 20.5m
Ω, 8.2mΩ, 4.1mΩ respectively.
One of the project constraints requires RS<10m
Ω, it means
that the 20.5m
Ω will be discarded and hence the 50V/V and
100V/V gain options are still in play.
Third step – Shunt resistor selection
At this point an error budget calculation, considering the cal-
ibration of the Gain, Offset, CMRR, and PSRR, helps in the
selection of the shunt resistor. In the table below the contri-
bution of each error source is calculated considering the
values of the EC Table at 5V supply.
Resolution Calculation
ERROR SOURCE
Rs=4.1m
Rs=8.1m
CMRR calibrated ad mid
VCM range
77.9µV
77.9µV
PSRR calibrated at 5V
8.9µV
8.9µV
Total error (squared sum of
contribution)
78µV
78µV
Resolution
(Total error / R
S)
19.2mA
9.6mA
Accuracy Calculation
ERROR SOURCE
Rs=4.1m
Rs=8.1m
Tc Vos
182µV
182µV
Nosie
216µV
216µV
Gain drift
75.2µV
151µV
Total error (squared sum of
contribution)
293µV
320µV
Accuracy
100*(Max_V
SENSE / Total
Error)
0.7%
0.4%
From the tables above is clear that the 8.2m
Ω shunt resistor
allows the respect of the project's constraints. The power
burned on the Shunt is 820mW at 10A.
13
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