Searched full:current (Results 1 – 25 of 1169) sorted by relevance
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/Documentation/hwmon/ |
D | max16601.rst | 58 curr1_input VCORE input current, derived from duty cycle and output 59 current. 60 curr1_max Maximum input current. 61 curr1_max_alarm Current high alarm. 64 curr2_input VCORE phase 0 input current. 67 curr3_input VCORE phase 1 input current. 70 curr4_input VCORE phase 2 input current. 73 curr5_input VCORE phase 3 input current. 76 curr6_input VCORE phase 4 input current. 79 curr7_input VCORE phase 5 input current. [all …]
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D | ina3221.rst | 21 The Texas Instruments INA3221 monitors voltage, current, and power on the high 23 and supply voltage, with programmable conversion times and averaging, current 33 curr[123]_input Current(mA) measurement channels 35 curr[123]_crit Critical alert current(mA) setting, activates the 36 corresponding alarm when the respective current 38 curr[123]_crit_alarm Critical alert current limit exceeded 39 curr[123]_max Warning alert current(mA) setting, activates the 40 corresponding alarm when the respective current 42 curr[123]_max_alarm Warning alert current limit exceeded 46 curr4_input Sum of current(mA) measurement channels, [all …]
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D | max16065.rst | 55 accurately monitor (+/-2.5%) one current channel using a dedicated high-side 56 current-sense amplifier. The MAX16065 manages up to twelve system voltages 67 one current channel using a dedicated high-side current-sense amplifier. The 74 MAX16070, and MAX16071 also support supply current monitoring. 99 in12_input Voltage on CSP (Current Sense Positive) pin. 100 Only if the chip supports current sensing and if 101 current sensing is enabled. 120 curr1_input Current sense input; only if the chip supports current 121 sensing and if current sensing is enabled. 122 Displayed current assumes 0.001 Ohm current sense [all …]
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D | lochnagar.rst | 12 Lochnagar 2 features built-in Current Monitor circuitry that allows for the 13 measurement of both voltage and current on up to eight of the supply voltage 14 rails provided to the minicards. The Current Monitor does not require any 17 The current and voltage measurements are obtained through the standard register 28 curr1_input Measured current for DBVDD1 (milliAmps) 35 curr2_input Measured current for 1V8 DSP (milliAmps) 42 curr3_input Measured current for 1V8 CDC (milliAmps) 49 curr4_input Measured current for VDDCORE DSP (milliAmps) 56 curr5_input Measured current for AVDD 1V8 (milliAmps) 61 curr6_input Measured current for SYSVDD (milliAmps) [all …]
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D | ir35221.rst | 40 curr1_input Measured input current 41 curr1_max Maximum current 42 curr1_max_alarm Current high alarm 45 curr[2-3]_input Measured output current 46 curr[2-3]_crit Critical maximum current 47 curr[2-3]_crit_alarm Current critical high alarm 48 curr[2-3]_highest Highest output current 49 curr[2-3]_lowest Lowest output current 50 curr[2-3]_max Maximum current 51 curr[2-3]_max_alarm Current high alarm
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D | inspur-ipsps1.rst | 29 curr1_input Measured input current 31 curr1_max Maximum current 32 curr1_max_alarm Current high alarm 33 curr2_input Measured output current in mA. 35 curr2_crit Critical maximum current 36 curr2_crit_alarm Current critical high alarm 37 curr2_max Maximum current 38 curr2_max_alarm Current high alarm
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D | ltc3815.rst | 58 curr1_input Measured input current. 59 curr1_highest Highest input current. 60 curr1_reset_history Reset input current history. 63 curr2_input Measured output current. 64 curr2_alarm Output current alarm. 65 curr2_highest Highest output current. 66 curr2_reset_history Reset output current history.
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/Documentation/devicetree/bindings/power/supply/ |
D | bq25890.txt | 15 - ti,charge-current: integer, maximum charging current (in uA); 16 - ti,termination-current: integer, charge will be terminated when current in 18 - ti,precharge-current: integer, maximum charge current during precharge 24 - ti,boost-max-current: integer, maximum allowed current draw in boost mode 31 input current will be the lower between the resistor setting and the IINLIM 34 current is lowered, to avoid overheating (in degrees Celsius). If omitted, 51 ti,charge-current = <1000000>; 52 ti,termination-current = <50000>; 53 ti,precharge-current = <128000>; 56 ti,boost-max-current = <1000000>;
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D | gpio-charger.yaml | 42 charge-current-limit-gpios: 45 description: GPIOs used for current limiting 47 charge-current-limit-mapping: 48 description: List of tuples with current in uA and a GPIO bitmap (in 50 current limit. 55 Current limit in uA 58 charge-current-limit-gpios property. Bit 1 second to last 70 - charge-current-limit-gpios 73 charge-current-limit-gpios: [ charge-current-limit-mapping ] 74 charge-current-limit-mapping: [ charge-current-limit-gpios ] [all …]
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D | rt9455_charger.txt | 9 - richtek,output-charge-current: integer, output current from the charger to the 11 - richtek,end-of-charge-percentage: integer, percent of the output charge current. 12 When the current in constant-voltage phase drops 21 decrease voltage level when the over current 24 current provided by the power source. 26 - richtek,avg-input-current-regulation: integer, input current value in uA drained by the 39 richtek,output-charge-current = <500000>; 45 richtek,avg-input-current-regulation = <500000>;
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D | bq2415x.txt | 18 - ti,current-limit: integer, initial maximum current charger can pull 24 - ti,charge-current: integer, maximum charging current in mA. 25 - ti,termination-current: integer, charge will be terminated when current in 39 ti,current-limit = <100>; 42 ti,charge-current = <650>; 43 ti,termination-current = <100>;
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D | bq24257.txt | 12 - ti,charge-current: integer, maximum charging current in uA. 13 - ti,termination-current: integer, charge will be terminated when current in 22 - ti,current-limit: The maximum current to be drawn from the charger's input 23 (in uA). If this property is not specified, the input limit current is 44 ti,charge-current = <1000000>; 45 ti,termination-current = <50000>; 57 ti,charge-current = <500000>; 58 ti,termination-current = <50000>; 59 ti,current-limit = <900000>;
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D | summit,smb347-charger.yaml | 55 summit,mains-current-limit-microamp: 56 description: Maximum input current from AC/DC input (in uA) 58 summit,usb-current-limit-microamp: 59 description: Maximum input current from USB input (in uA) 61 summit,charge-current-compensation-microamp: 62 description: Charge current compensation (in uA) 73 - 1 # SMB3XX_SOFT_TEMP_COMPENSATE_CURRENT Current compensation 86 summit,mains-current-limit-microamp: 90 summit,usb-current-limit-microamp: 94 summit,charge-current-compensation-microamp: [all …]
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D | rohm,bd99954.yaml | 28 # Curve (1) represents charging current. 32 # a) Trickle-charge with constant current (8). 33 # b) pre-charge with constant current (6) 35 # First a constant current (5) phase (CC) 37 # target level - until charging current has dropped to termination 69 # - trickle-charge-current-microamp: 70 # Current used at trickle-charge phase (8 in above chart) 74 # - precharge-current-microamp: 75 # Current used at pre-charge phase (6 in above chart) 79 # - constant-charge-current-max-microamp [all …]
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D | bq24190.txt | 15 + precharge-current-microamp: maximum charge current during precharge 17 + charge-term-current-microamp: a charge cycle terminates when the 18 battery voltage is above recharge threshold, and the current is below 32 charge current on USB SDP ports, among other features). To simulate this on 39 precharge-current-microamp = <256000>; 40 charge-term-current-microamp = <128000>;
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/Documentation/devicetree/bindings/iio/adc/ |
D | palmas-gpadc.txt | 5 1 battery temp NTC (optional current source) 7 3 temp (with ext. diode, optional current source) 15 11 DC-DC current probe (how does this work?) 26 ti,channel0-current-microamp: Channel 0 current in uA. 28 ti,channel3-current-microamp: Channel 3 current in uA. 43 ti,channel0-current-microamp = <5>; 44 ti,channel3-current-microamp = <10>;
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/Documentation/devicetree/bindings/iio/health/ |
D | max30102.txt | 16 - maxim,red-led-current-microamp: configuration for red LED current 17 - maxim,ir-led-current-microamp: configuration for IR LED current 18 - maxim,green-led-current-microamp: configuration for green LED current 29 maxim,red-led-current-microamp = <7000>; 30 maxim,ir-led-current-microamp = <7000>;
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/Documentation/devicetree/bindings/iio/dac/ |
D | ad5758.txt | 24 current or voltage output at the VIOUT pin. Only one mode 28 * 1: DPC current mode 30 * 3: PPC current mode 32 Depending on the selected output mode (voltage or current) one of the 42 - adi,range-microamp: Current output range 43 The array of current output ranges must contain two fields: 44 * <0 20000>: 0 mA to 20 mA current range 45 * <0 24000>: 0 mA to 24 mA current range 46 * <4 24000>: 4 mA to 20 mA current range 47 * <(-20000) 20000>: ±20 mA current range [all …]
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/Documentation/devicetree/bindings/iio/afe/ |
D | current-sense-shunt.txt | 1 Current Sense Shunt 4 When an io-channel measures the voltage over a current sense shunt, 5 the interesting measurement is almost always the current through the 6 shunt, not the voltage over it. This binding describes such a current 10 - compatible : "current-sense-shunt" 15 The system current is measured by measuring the voltage over a 19 compatible = "current-sense-shunt"; 22 /* Divide the voltage by 3300000/1000000 (or 3.3) for the current. */
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D | current-sense-amplifier.txt | 1 Current Sense Amplifier 4 When an io-channel measures the output voltage from a current sense 5 amplifier, the interesting measurement is almost always the current 7 describes such a current sense circuit. 10 - compatible : "current-sense-amplifier" 21 compatible = "current-sense-amplifier";
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/Documentation/devicetree/bindings/sound/ |
D | rt5651.txt | 30 - realtek,over-current-threshold-microamp 31 u32, micbias over-current detection threshold in µA, valid values are 34 - realtek,over-current-scale-factor 35 u32, micbias over-current detection scale-factor, valid values are: 36 0: Scale current by 0.5 37 1: Scale current by 0.75 38 2: Scale current by 1.0 39 3: Scale current by 1.5
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D | rt5640.txt | 49 - realtek,over-current-threshold-microamp 50 u32, micbias over-current detection threshold in µA, valid values are 53 - realtek,over-current-scale-factor 54 u32, micbias over-current detection scale-factor, valid values are: 55 0: Scale current by 0.5 56 1: Scale current by 0.75 57 2: Scale current by 1.0 58 3: Scale current by 1.5
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/Documentation/power/regulator/ |
D | overview.rst | 2 Linux voltage and current regulator framework 9 voltage and current regulators. 13 regulators (where voltage output is controllable) and current sinks (where 14 current limit is controllable). 29 some can control their output voltage and or current. 44 current limit. It only needs to enable or disable its 49 current limit to meet operation demands. 101 - regulator current output limit is 20mA @ 5V but is 110 - Domain-3 current limit is 0mA -> 20mA. 113 dynamically setting voltage or current limit levels. [all …]
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/Documentation/admin-guide/cgroup-v1/ |
D | pids.rst | 21 number of processes currently in the cgroup is given by pids.current. 24 to have pids.current > pids.max. This can be done by either setting the limit to 25 be smaller than pids.current, or attaching enough processes to the cgroup such 26 that pids.current > pids.max. However, it is not possible to violate a cgroup 34 pids.current tracks all child cgroup hierarchies, so parent/pids.current is a 35 superset of parent/child/pids.current. 54 # cat /sys/fs/cgroup/pids/parent/pids.current 61 # cat /sys/fs/cgroup/pids/parent/pids.current 72 # cat /sys/fs/cgroup/pids/parent/pids.current 74 # cat /sys/fs/cgroup/pids/parent/child/pids.current [all …]
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/Documentation/devicetree/bindings/mfd/ |
D | as3711.txt | 15 - su1-max-uA : maximum current 20 - su1-max-uA : maximum current 25 - su2-feedback-curr1 : CURR1 input used for current feedback 26 - su2-feedback-curr2 : CURR2 input used for current feedback 27 - su2-feedback-curr3 : CURR3 input used for current feedback 28 - su2-feedback-curr-auto: automatic current feedback selection 38 - su2-auto-curr1 : use CURR1 input for current feedback 39 - su2-auto-curr2 : use CURR2 input for current feedback 40 - su2-auto-curr3 : use CURR3 input for current feedback
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