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TMCS1100A2 Datasheet(PDF) 8 Page - Texas Instruments

Part # TMCS1100A2
Description  TMCS1100 High-Precision, Isolated Current Sensor With External Reference
PDF  35 Pages
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

TMCS1100A2 Datasheet(HTML) 8 Page - Texas Instruments

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VOUT (V)
IIN (A)
IFS±
S = Slope (V/A)
VREF
IFS+
best fit linear
VREF
VOUT, 0 A
VOE
VNL
VREF + VFS+
VREF ± VFS±
8
TMCS1100
SBOS820 – SEPTEMBER 2019
www.ti.com
Product Folder Links: TMCS1100
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Copyright © 2019, Texas Instruments Incorporated
8 Parameter Measurement Information
8.1 Accuracy Parameters
The ideal first-order transfer function of the TMCS1100 is given by Equation 1, where the output voltage is a
linear function of input current. The accuracy of the device is quantified both by the error terms in the transfer
function parameters, as well as by nonidealities that introduce additional error terms not in the simplified linear
model.
VOUT = S × IIN + VREF
where
VOUT is the analog output voltage.
S is the ideal sensitivity of the device.
IIN is the isolated input current.
VREF is the voltage applied to the reference voltage input.
(1)
8.1.1 Sensitivity, Sensitivity Error, and Drift
Sensitivity is the proportional change in the sensor output voltage due to a change in the input conductor current.
This sensitivity is the slope of the first-order transfer function of the sensor, as shown in Figure 1. The sensitivity
of the TMCS1100 is tested and calibrated at the factory for high accuracy.
Figure 1. Sensitivity, Offset, and Nonlinearity Error
Deviation from ideal sensitivity is quantified by sensitivity error. Sensitivity error is defined as the percent
variation of the best-fit measured sensitivity from the ideal sensitivity, based on the variant of the TMCS1100.
When specified over a temperature range, this is the worst-case sensitivity error at any temperature within the
range.
eS = [(Sfit – Sideal) / Sideal] × 100%
where
eS is the sensitivity error.
Sfit is the best fit sensitivity.
SIdeal is the ideal sensitivity.
(2)



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