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Kernel driver ina2xx
====================

Supported chips:
  * Texas Instruments INA219
    Prefix: 'ina219'
    Addresses: I2C 0x40 - 0x4f
    Datasheet: Publicly available at the Texas Instruments website
               http://www.ti.com/

  * Texas Instruments INA220
    Prefix: 'ina220'
    Addresses: I2C 0x40 - 0x4f
    Datasheet: Publicly available at the Texas Instruments website
               http://www.ti.com/

  * Texas Instruments INA226
    Prefix: 'ina226'
    Addresses: I2C 0x40 - 0x4f
    Datasheet: Publicly available at the Texas Instruments website
               http://www.ti.com/

  * Texas Instruments INA230
    Prefix: 'ina230'
    Addresses: I2C 0x40 - 0x4f
    Datasheet: Publicly available at the Texas Instruments website
               http://www.ti.com/

  * Texas Instruments INA231
    Prefix: 'ina231'
    Addresses: I2C 0x40 - 0x4f
    Datasheet: Publicly available at the Texas Instruments website
               http://www.ti.com/

Author: Lothar Felten <l-felten@ti.com>

Description
-----------

The INA219 is a high-side current shunt and power monitor with an I2C
interface. The INA219 monitors both shunt drop and supply voltage, with
programmable conversion times and filtering.

The INA220 is a high or low side current shunt and power monitor with an I2C
interface. The INA220 monitors both shunt drop and supply voltage.

The INA226 is a current shunt and power monitor with an I2C interface.
The INA226 monitors both a shunt voltage drop and bus supply voltage.

INA230 and INA231 are high or low side current shunt and power monitors
with an I2C interface. The chips monitor both a shunt voltage drop and
bus supply voltage.

The shunt value in micro-ohms can be set via platform data or device tree at
compile-time or via the shunt_resistor attribute in sysfs at run-time. Please
refer to the Documentation/devicetree/bindings/hwmon/ina2xx.txt for bindings
if the device tree is used.

Additionally ina226 supports update_interval attribute as described in
Documentation/hwmon/sysfs-interface. Internally the interval is the sum of
bus and shunt voltage conversion times multiplied by the averaging rate. We
don't touch the conversion times and only modify the number of averages. The
lower limit of the update_interval is 2 ms, the upper limit is 2253 ms.
The actual programmed interval may vary from the desired value.