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This patch adds support for the Linear Technology LTC3676 8-output I2C voltage regulator IC. Cc: Jaffer Kapasi <[email protected]> Signed-off-by: Tim Harvey <[email protected]> Signed-off-by: Mark Brown <[email protected]>
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Linear Technology LTC3676 8-output regulators | ||
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Required properties: | ||
- compatible: "lltc,ltc3676" | ||
- reg: I2C slave address | ||
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Required child node: | ||
- regulators: Contains eight regulator child nodes sw1, sw2, sw3, sw4, | ||
ldo1, ldo2, ldo3, and ldo4, specifying the initialization data as | ||
documented in Documentation/devicetree/bindings/regulator/regulator.txt. | ||
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Each regulator is defined using the standard binding for regulators. The | ||
nodes for sw1, sw2, sw3, sw4, ldo1, ldo2 and ldo4 additionally need to specify | ||
the resistor values of their external feedback voltage dividers: | ||
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Required properties (not on ldo3): | ||
- lltc,fb-voltage-divider: An array of two integers containing the resistor | ||
values R1 and R2 of the feedback voltage divider in ohms. | ||
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Regulators sw1, sw2, sw3, sw4 can regulate the feedback reference from: | ||
412.5mV to 800mV in 12.5 mV steps. The output voltage thus ranges between | ||
0.4125 * (1 + R1/R2) V and 0.8 * (1 + R1/R2) V. | ||
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Regulators ldo1, ldo2, and ldo4 have a fixed 0.725 V reference and thus output | ||
0.725 * (1 + R1/R2) V. The ldo3 regulator is fixed to 1.8 V. The ldo1 standby | ||
regulator can not be disabled and thus should have the regulator-always-on | ||
property set. | ||
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Example: | ||
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ltc3676: pmic@3c { | ||
compatible = "lltc,ltc3676"; | ||
reg = <0x3c>; | ||
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regulators { | ||
sw1_reg: sw1 { | ||
regulator-min-microvolt = <674400>; | ||
regulator-max-microvolt = <1308000>; | ||
lltc,fb-voltage-divider = <127000 200000>; | ||
regulator-ramp-delay = <7000>; | ||
regulator-boot-on; | ||
regulator-always-on; | ||
}; | ||
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sw2_reg: sw2 { | ||
regulator-min-microvolt = <1033310>; | ||
regulator-max-microvolt = <200400>; | ||
lltc,fb-voltage-divider = <301000 200000>; | ||
regulator-ramp-delay = <7000>; | ||
regulator-boot-on; | ||
regulator-always-on; | ||
}; | ||
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sw3_reg: sw3 { | ||
regulator-min-microvolt = <674400>; | ||
regulator-max-microvolt = <130800>; | ||
lltc,fb-voltage-divider = <127000 200000>; | ||
regulator-ramp-delay = <7000>; | ||
regulator-boot-on; | ||
regulator-always-on; | ||
}; | ||
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sw4_reg: sw4 { | ||
regulator-min-microvolt = <868310>; | ||
regulator-max-microvolt = <168400>; | ||
lltc,fb-voltage-divider = <221000 200000>; | ||
regulator-ramp-delay = <7000>; | ||
regulator-boot-on; | ||
regulator-always-on; | ||
}; | ||
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ldo2_reg: ldo2 { | ||
regulator-min-microvolt = <2490375>; | ||
regulator-max-microvolt = <2490375>; | ||
lltc,fb-voltage-divider = <487000 200000>; | ||
regulator-boot-on; | ||
regulator-always-on; | ||
}; | ||
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ldo3_reg: ldo3 { | ||
regulator-min-microvolt = <1800000>; | ||
regulator-max-microvolt = <1800000>; | ||
regulator-boot-on; | ||
}; | ||
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ldo4_reg: ldo4 { | ||
regulator-min-microvolt = <3023250>; | ||
regulator-max-microvolt = <3023250>; | ||
lltc,fb-voltage-divider = <634000 200000>; | ||
regulator-boot-on; | ||
regulator-always-on; | ||
}; | ||
}; | ||
}; |
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