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INA226AIDGST датащи(PDF) 12 Page - Texas Instruments |
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INA226AIDGST датащи(HTML) 12 Page - Texas Instruments |
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12 / 33 page ![]() ´ Power Register Current Register I C 2 Interface Voltage Register GND V BUS ADC V I A0 Alert A1 SDA SCL C 0.1 F BYPASS m Load Alert Register V (Supply Voltage) S Power Supply (0V to 36V) R 10 FILTER W £ R 10 FILTER W £ C 0.1 F to 1 F Ceramic Capacitor FILTER m m V IN- V IN+ INA226 SBOS547 – JUNE 2011 www.ti.com Filtering and Input Considerations Measuring current is often noisy, and such noise can be difficult to define. The INA226 offers several options for filtering by allowing the conversion times and number of averages to be selected independently in the Configuration Register. The conversion times can be set independently for the shunt voltage and bus voltage measurements to allow added flexibility in configuring the monitoring of the power-supply bus. The internal ADC is based on a delta-sigma ( ΔΣ) front-end with a 500kHz (±30%) typical sampling rate. This architecture has good inherent noise rejection; however, transients that occur at or very close to the sampling rate harmonics can cause problems. Because these signals are at 1MHz and higher, they can be managed by incorporating filtering at the input of the INA226. The high frequency enables the use of low-value series resistors on the filter with negligible effects on measurement accuracy. In general, filtering the INA226 input is only necessary if there are transients at exact harmonics of the 500kHz ( ±30%) sampling rate (greater than 1MHz). Filter using the lowest possible series resistance (typically 10 Ω or less) and a ceramic capacitor. Recommended values for this capacitor are 0.1 μF to 1.0μF. Figure 22 shows the INA226 with an additional filter added at the input. Overload conditions are another consideration for the INA226 inputs. The INA226 inputs are specified to tolerate 40V across the inputs. A large differential scenario might be a short to ground on the load side of the shunt. This type of event can result in full power-supply voltage across the shunt (as long the power supply or energy storage capacitors support it). Keep in mind that removing a short to ground can result in inductive kickbacks that could exceed the 40V differential and common-mode rating of the INA226. Inductive kickback voltages are best controlled by zener-type transient-absorbing devices (commonly called transzorbs) combined with sufficient energy storage capacitance. In applications that do not have large energy storage electrolytics on one or both sides of the shunt, an input overstress condition may result from an excessive dV/dt of the voltage applied to the input. A hard physical short is the most likely cause of this event, particularly in applications with no large electrolytics present. This problem occurs because an excessive dV/dt can activate the ESD protection in the INA226 in systems where large currents are available. Testing has demonstrated that the addition of 10 Ω resistors in series with each input of the INA226 sufficiently protect the inputs against this dV/dt failure up to the 40V rating of the INA226. Selecting these resistors in the range noted has minimal effect on accuracy. Figure 22. INA226 with Input Filtering 12 Submit Documentation Feedback Copyright © 2011, Texas Instruments Incorporated Product Folder Link(s): INA226 |
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