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TMCS1100A2 Datasheet(PDF) 10 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) 10 Page - Texas Instruments

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EXT
EXT
B
B
I
G
OUT
EXT
Hall
V
IN
Hall
V
OUT,0A
V
B
* S
* A
I * G * S
* A
V
Hall
V
S
G * S
* A
10
TMCS1100
SBOS820 – SEPTEMBER 2019
www.ti.com
Product Folder Links: TMCS1100
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Copyright © 2019, Texas Instruments Incorporated
Accuracy Parameters (continued)
8.1.4 Reference Voltage Rejection Ratio
The zero current output voltage for the TMCS1100 is derived from sampling an external voltage on the VREF
pin. Ideally, the zero current output voltage directly tracks VREF; however, slight internal tolerances and
mismatches can cause minor errors. When the reference voltage deviates from half of the supply, an additional
effective output offset error is introduced into the device transfer function.
8.1.5 External Magnetic Field Errors
The TMCS1100 does not have stray field-rejection capabilities, so external magnetic fields from adjacent high-
current traces or nearby magnets can impact the output measurement. The total sensitivity (S) of the device is
comprised of the initial transformation of input current to magnetic field quantified as the magnetic coupling factor
(G), as well as the sensitivity of the Hall element and the analog circuitry that is factory calibrated to provide a
final sensitivity. The output voltage is proportional to the input current by the device sensitivity, as defined in
Equation 8.
where
•
S is the TMCS1100 sensitivity in mV/A.
•
G is the magnetic coupling factor in mT/A.
•
SHall is the senitivity of the Hall plate in mV/mT.
•
AV is the analog circuitry gain in V/V.
(8)
An external field, BEXT, is measured by the Hall sensor and signal chain, in addition to the field generated by the
leadframe current, and is added as an extra input term in the total output voltage function:
(9)
Observable from Equation 9 is that the impact of an external field is an additional equivalent input current signal,
IBEXT, shown in Equation 10. This effective additional input current has no dependence on Hall or analog circuitry
sensitivity, so all gain variants have equivalent input-referred current error due to external magnetic fields.
(10)



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