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LPV821 数据表(PDF) 16 Page - Texas Instruments

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部件名 LPV821
功能描述  650nA, Precision, Nanopower, Zero-Drift Amplifier
PDF  24 Pages
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制造商  TI1 [Texas Instruments]
网页  http://www.ti.com
标志 TI1 - Texas Instruments

LPV821 数据表(HTML) 16 Page - Texas Instruments

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LPV821
SNOSD36A – AUGUST 2017 – REVISED DECEMBER 2017
www.ti.com
Product Folder Links: LPV821
Submit Documentation Feedback
Copyright © 2017, Texas Instruments Incorporated
Typical Applications (continued)
9.2.1.2 Detailed Design Procedure
Referring to Figure 40, the load current passing though the shunt resistor (Rshunt) develops the shunt voltage,
Vshunt across the resistor. The shunt voltage is then amplified by the LPV821 by the ratio of R4 by R3 . The gain
of the difference amplifier is set by the ratio of R4 to R3 . To minimize errors, set R2 = R4 and R1 = R3 . The
bias voltage is supplied by buffering a resistor divider using a second LPV821 nanopower op amp. The circuit
equations are provided below.
Vout = Vshunt * Gain Diff + Vbias
(2)
Vshunt = Iload * Rshunt
(3)
GainDiff = R4 / R3
(4)
Vbias = [R6 / (R6 + R5)] * VCC
(5)
Rshunt = [Vshunt (max)] / [Iload (max)]
(6)
Because Vshunt is a low-side measurement, a maximum value 100 mV was selected.
Rshunt= Vshunt/ Iload= 100mV /1A =100mΩ
(7)
The tolerance of the shunt resistor, the ratio of R4 to R3 and the ratio of R2 to R1 are the main sources of gain
error in the signal path. To optimize the cost, a shut resistor with a tolerance of 0.5% was chosen. The main
sources of offset errors in the circuit are the voltage divider network comprise of R5, R6 and how closely the ratio
of R4 / R3 matches the ration of R2 / R1. The latter value affects the CMRR of the difference amplifier, ultimately
translating to an offset error.
The shunt voltage is scaled down by a divider network made of R1 and R2 before reaching the LPV821 amplifier
stage. The voltage present at the non-inverting node of the LPV821 should not exceed the common-mode range
of the device. The extremely low offset voltage and drift of the LPV821 ensures minimized offset error in the
measurement.
In case a bi-direction current sensing is required, for symmetric load current of –1 A to 1 A, the voltage divider
resistors R5 and R6 must be equal. To minimize power consumption, 100-kΩ resistors with a tolerance of 0.5%
were selected.
To set the gain of the difference amplifier, the common-mode range and output swing of the LPV821 must be
considered. The gain of the difference amplifier can now be calculated as shown below
Gain = [Vout (max) - Vout (min)] / [Rshunt * (Imax – Imin )] = [3.2 V - 100 mV] / [100 mΩ] * [1A – ( –1A)] = 15.5 V / V
(8)
10 Power Supply Recommendations
The LPV821 is specified for operation from 1.7 V to 3.6 (±0.85 V to ±1.8 V); many specifications apply from
–40°C to 125°C. The Typical Characteristics presents parameters that can exhibit significant variance with regard
to operating voltage or temperature.
CAUTION
Supply voltages larger than 4 V can permanently damage the device (see the Absolute
Maximum Ratings).
TI recommends placing 0.1-μF bypass capacitors close to the power-supply pins to reduce errors coupling in
from noisy or high-impedance power supplies. For more detailed information on bypass capacitor placement,
refer to the Layout section.



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