467 lines
15 KiB
YAML
467 lines
15 KiB
YAML
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# SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
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%YAML 1.2
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---
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$id: http://devicetree.org/schemas/iio/temperature/adi,ltc2983.yaml#
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$schema: http://devicetree.org/meta-schemas/core.yaml#
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title: Analog Devices LTC2983 Multi-sensor Temperature system
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maintainers:
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- Nuno Sá <nuno.sa@analog.com>
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description: |
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Analog Devices LTC2983 Multi-Sensor Digital Temperature Measurement System
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https://www.analog.com/media/en/technical-documentation/data-sheets/2983fc.pdf
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properties:
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compatible:
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enum:
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- adi,ltc2983
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reg:
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maxItems: 1
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interrupts:
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maxItems: 1
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adi,mux-delay-config-us:
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description:
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The LTC2983 performs 2 or 3 internal conversion cycles per temperature
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result. Each conversion cycle is performed with different excitation and
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input multiplexer configurations. Prior to each conversion, these
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excitation circuits and input switch configurations are changed and an
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internal 1ms delay ensures settling prior to the conversion cycle in most
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cases. An extra delay can be configured using this property. The value is
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rounded to nearest 100us.
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maximum: 255
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adi,filter-notch-freq:
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description:
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Set's the default setting of the digital filter. The default is
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simultaneous 50/60Hz rejection.
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0 - 50/60Hz rejection
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1 - 60Hz rejection
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2 - 50Hz rejection
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$ref: /schemas/types.yaml#/definitions/uint32
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minimum: 0
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maximum: 2
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'#address-cells':
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const: 1
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'#size-cells':
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const: 0
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patternProperties:
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"@([1-9]|1[0-9]|20)$":
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type: object
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properties:
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reg:
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description:
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The channel number. It can be connected to one of the 20 channels of
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the device.
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minimum: 1
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maximum: 20
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adi,sensor-type:
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description: Identifies the type of sensor connected to the device.
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$ref: /schemas/types.yaml#/definitions/uint32
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required:
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- reg
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- adi,sensor-type
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"^thermocouple@":
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type: object
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description:
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Represents a thermocouple sensor which is connected to one of the device
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channels.
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properties:
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adi,sensor-type:
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description: |
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1 - Type J Thermocouple
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2 - Type K Thermocouple
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3 - Type E Thermocouple
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4 - Type N Thermocouple
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5 - Type R Thermocouple
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6 - Type S Thermocouple
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7 - Type T Thermocouple
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8 - Type B Thermocouple
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9 - Custom Thermocouple
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$ref: /schemas/types.yaml#/definitions/uint32
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minimum: 1
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maximum: 9
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adi,single-ended:
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description:
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Boolean property which set's the thermocouple as single-ended.
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type: boolean
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adi,sensor-oc-current-microamp:
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description:
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This property set's the pulsed current value applied during
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open-circuit detect.
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enum: [10, 100, 500, 1000]
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adi,cold-junction-handle:
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description:
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Phandle which points to a sensor object responsible for measuring
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the thermocouple cold junction temperature.
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$ref: "/schemas/types.yaml#/definitions/phandle"
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adi,custom-thermocouple:
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description:
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This is a table, where each entry should be a pair of
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voltage(mv)-temperature(K). The entries must be given in nv and uK
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so that, the original values must be multiplied by 1000000. For
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more details look at table 69 and 70.
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Note should be signed, but dtc doesn't currently maintain the
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sign.
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$ref: /schemas/types.yaml#/definitions/uint64-matrix
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minItems: 3
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maxItems: 64
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items:
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minItems: 2
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maxItems: 2
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"^diode@":
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type: object
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description:
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Represents a diode sensor which is connected to one of the device
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channels.
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properties:
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adi,sensor-type:
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description: Identifies the sensor as a diode.
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$ref: /schemas/types.yaml#/definitions/uint32
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const: 28
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adi,single-ended:
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description: Boolean property which set's the diode as single-ended.
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type: boolean
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adi,three-conversion-cycles:
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description:
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Boolean property which set's three conversion cycles removing
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parasitic resistance effects between the LTC2983 and the diode.
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type: boolean
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adi,average-on:
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description:
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Boolean property which enables a running average of the diode
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temperature reading. This reduces the noise when the diode is used
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as a cold junction temperature element on an isothermal block
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where temperatures change slowly.
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type: boolean
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adi,excitation-current-microamp:
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description:
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This property controls the magnitude of the excitation current
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applied to the diode. Depending on the number of conversions
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cycles, this property will assume different predefined values on
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each cycle. Just set the value of the first cycle (1l).
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enum: [10, 20, 40, 80]
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adi,ideal-factor-value:
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description:
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This property sets the diode ideality factor. The real value must
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be multiplied by 1000000 to remove the fractional part. For more
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information look at table 20 of the datasheet.
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$ref: /schemas/types.yaml#/definitions/uint32
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"^rtd@":
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type: object
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description:
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Represents a rtd sensor which is connected to one of the device channels.
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properties:
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reg:
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minimum: 2
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maximum: 20
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adi,sensor-type:
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description: |
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10 - RTD PT-10
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11 - RTD PT-50
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12 - RTD PT-100
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13 - RTD PT-200
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14 - RTD PT-500
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15 - RTD PT-1000
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16 - RTD PT-1000 (0.00375)
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17 - RTD NI-120
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18 - RTD Custom
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$ref: /schemas/types.yaml#/definitions/uint32
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minimum: 10
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maximum: 18
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adi,rsense-handle:
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description:
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Phandle pointing to a rsense object associated with this RTD.
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$ref: "/schemas/types.yaml#/definitions/phandle"
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adi,number-of-wires:
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description:
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Identifies the number of wires used by the RTD. Setting this
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property to 5 means 4 wires with Kelvin Rsense.
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$ref: /schemas/types.yaml#/definitions/uint32
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enum: [2, 3, 4, 5]
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adi,rsense-share:
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description:
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Boolean property which enables Rsense sharing, where one sense
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resistor is used for multiple 2-, 3-, and/or 4-wire RTDs.
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type: boolean
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adi,current-rotate:
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description:
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Boolean property which enables excitation current rotation to
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automatically remove parasitic thermocouple effects. Note that
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this property is not allowed for 2- and 3-wire RTDs.
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type: boolean
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adi,excitation-current-microamp:
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description:
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This property controls the magnitude of the excitation current
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applied to the RTD.
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enum: [5, 10, 25, 50, 100, 250, 500, 1000]
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adi,rtd-curve:
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description:
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This property set the RTD curve used and the corresponding
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Callendar-VanDusen constants. Look at table 30 of the datasheet.
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$ref: /schemas/types.yaml#/definitions/uint32
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minimum: 0
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maximum: 3
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adi,custom-rtd:
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description:
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This is a table, where each entry should be a pair of
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resistance(ohm)-temperature(K). The entries added here are in uohm
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and uK. For more details values look at table 74 and 75.
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$ref: /schemas/types.yaml#/definitions/uint64-matrix
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items:
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minItems: 3
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maxItems: 64
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items:
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minItems: 2
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maxItems: 2
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required:
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- adi,rsense-handle
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dependencies:
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adi,current-rotate: [ "adi,rsense-share" ]
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"^thermistor@":
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type: object
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description:
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Represents a thermistor sensor which is connected to one of the device
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channels.
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properties:
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adi,sensor-type:
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description:
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19 - Thermistor 44004/44033 2.252kohm at 25°C
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20 - Thermistor 44005/44030 3kohm at 25°C
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21 - Thermistor 44007/44034 5kohm at 25°C
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22 - Thermistor 44006/44031 10kohm at 25°C
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23 - Thermistor 44008/44032 30kohm at 25°C
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24 - Thermistor YSI 400 2.252kohm at 25°C
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25 - Thermistor Spectrum 1003k 1kohm
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26 - Thermistor Custom Steinhart-Hart
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27 - Custom Thermistor
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$ref: /schemas/types.yaml#/definitions/uint32
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minimum: 19
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maximum: 27
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adi,rsense-handle:
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description:
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Phandle pointing to a rsense object associated with this
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thermistor.
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$ref: "/schemas/types.yaml#/definitions/phandle"
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adi,single-ended:
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description:
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Boolean property which set's the thermistor as single-ended.
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type: boolean
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adi,rsense-share:
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description:
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Boolean property which enables Rsense sharing, where one sense
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resistor is used for multiple thermistors. Note that this property
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is ignored if adi,single-ended is set.
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type: boolean
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adi,current-rotate:
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description:
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Boolean property which enables excitation current rotation to
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automatically remove parasitic thermocouple effects.
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type: boolean
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adi,excitation-current-nanoamp:
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description:
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This property controls the magnitude of the excitation current
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applied to the thermistor. Value 0 set's the sensor in auto-range
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mode.
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$ref: /schemas/types.yaml#/definitions/uint32
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enum: [0, 250, 500, 1000, 5000, 10000, 25000, 50000, 100000, 250000,
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500000, 1000000]
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adi,custom-thermistor:
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description:
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This is a table, where each entry should be a pair of
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resistance(ohm)-temperature(K). The entries added here are in uohm
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and uK only for custom thermistors. For more details look at table
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78 and 79.
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$ref: /schemas/types.yaml#/definitions/uint64-matrix
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minItems: 3
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maxItems: 64
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items:
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minItems: 2
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maxItems: 2
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adi,custom-steinhart:
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description:
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Steinhart-Hart coefficients are also supported and can
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be programmed into the device memory using this property. For
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Steinhart sensors the coefficients are given in the raw
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format. Look at table 82 for more information.
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$ref: /schemas/types.yaml#/definitions/uint32-array
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items:
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minItems: 6
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maxItems: 6
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required:
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- adi,rsense-handle
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dependencies:
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adi,current-rotate: [ "adi,rsense-share" ]
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"^adc@":
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type: object
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description: Represents a channel which is being used as a direct adc.
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properties:
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adi,sensor-type:
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description: Identifies the sensor as a direct adc.
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$ref: /schemas/types.yaml#/definitions/uint32
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const: 30
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adi,single-ended:
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description: Boolean property which set's the adc as single-ended.
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type: boolean
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"^rsense@":
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type: object
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description:
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Represents a rsense which is connected to one of the device channels.
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Rsense are used by thermistors and RTD's.
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properties:
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reg:
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minimum: 2
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maximum: 20
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adi,sensor-type:
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description: Identifies the sensor as a rsense.
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$ref: /schemas/types.yaml#/definitions/uint32
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const: 29
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adi,rsense-val-milli-ohms:
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description:
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Sets the value of the sense resistor. Look at table 20 of the
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datasheet for information.
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required:
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- adi,rsense-val-milli-ohms
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required:
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- compatible
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- reg
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- interrupts
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additionalProperties: false
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examples:
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- |
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#include <dt-bindings/interrupt-controller/irq.h>
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spi {
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#address-cells = <1>;
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#size-cells = <0>;
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sensor_ltc2983: ltc2983@0 {
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compatible = "adi,ltc2983";
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reg = <0>;
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#address-cells = <1>;
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#size-cells = <0>;
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interrupts = <20 IRQ_TYPE_EDGE_RISING>;
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interrupt-parent = <&gpio>;
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thermocouple@18 {
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reg = <18>;
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adi,sensor-type = <8>; //Type B
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adi,sensor-oc-current-microamp = <10>;
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adi,cold-junction-handle = <&diode5>;
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};
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diode5: diode@5 {
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reg = <5>;
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adi,sensor-type = <28>;
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};
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rsense2: rsense@2 {
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reg = <2>;
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adi,sensor-type = <29>;
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adi,rsense-val-milli-ohms = <1200000>; //1.2Kohms
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};
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rtd@14 {
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reg = <14>;
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adi,sensor-type = <15>; //PT1000
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/*2-wire, internal gnd, no current rotation*/
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adi,number-of-wires = <2>;
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adi,rsense-share;
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adi,excitation-current-microamp = <500>;
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adi,rsense-handle = <&rsense2>;
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};
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adc@10 {
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reg = <10>;
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adi,sensor-type = <30>;
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adi,single-ended;
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};
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thermistor@12 {
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reg = <12>;
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adi,sensor-type = <26>; //Steinhart
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adi,rsense-handle = <&rsense2>;
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adi,custom-steinhart = <0x00F371EC 0x12345678
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0x2C0F8733 0x10018C66 0xA0FEACCD
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0x90021D99>; //6 entries
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};
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thermocouple@20 {
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reg = <20>;
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adi,sensor-type = <9>; //custom thermocouple
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adi,single-ended;
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adi,custom-thermocouple =
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/bits/ 64 <(-50220000) 0>,
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/bits/ 64 <(-30200000) 99100000>,
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/bits/ 64 <(-5300000) 135400000>,
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/bits/ 64 <0 273150000>,
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/bits/ 64 <40200000 361200000>,
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/bits/ 64 <55300000 522100000>,
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/bits/ 64 <88300000 720300000>,
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/bits/ 64 <132200000 811200000>,
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/bits/ 64 <188700000 922500000>,
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/bits/ 64 <460400000 1000000000>; //10 pairs
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};
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};
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};
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...
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