Input | Output | Supply | Temperature | ||||||
---|---|---|---|---|---|---|---|---|---|
Iload Min | Iload Max | VCM | VOUT Min | VOUT Max | IQ Max | VVS | Vee | Low | High |
1µA | 104 µA | –0.1V ≤ VCM ≤ 40V | 31.0mV at 1µA | 3.224V at 104µA | 65µA | 3.3V | GND (0V) | 0°C | 85°C |
This circuit demonstrates how to use a current sense amplifier to accurately and robustly measure small micro-amp currents and maximize dynamic range. The following error analysis can be applied to many current sense amplifiers. This design relies on using a precision, low input-bias current sense amplifier and analyzing the dynamic error due to input bias currents on large shunt resistors.
DC Simulation Results
The following graph shows a linear output response for load currents from 1µA to 104µA
Total Error Calculations
The following graph shows the total absolute error over temperature using both the assured limit specifications and the typical specifications. Note that accuracy is limited by the offset voltage at the lowest current sensed and limited by gain error at higher currents. Active offset chopping limits the error due to temperature.
Texas Instruments, SBOMAI6 circuit SPICE, simulation file
Texas Instruments, Getting started with current sense amplifiers, Precision labs video series
Texas Instruments, Extending the Common-Mode Voltage Range of Current-Output Current Shunt Monitors, application brief
Texas Instruments, Current sense amplifiers, products page
INA190A1 | ||||
---|---|---|---|---|
VVS | 1.8V to 5V (operating) | |||
VCM | -0.3V to 42V (survivability) | |||
VOUT | Up to (VVS) + 0.3V | |||
VOS | ±3µV to ±15µV | |||
IQ | 48µA to 65µA | |||
IIB | 0.5nA to 3nA | |||
BW | 45kHz at 25V/V (A1 gain variant) | |||
# of Channels | 1 | |||
INA190 |
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