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Consolidation

Consolidation[consolidationRules]primitive

generates an ExperimentSampleManipulation-compatible primitive that describes a transfer of multiple sources to a single destination.

Details

    Input
    Output
    Acoustic Liquid Handling Options
    Pipetting Options
    Attributes
  • Protected

Examples

Basic Examples  (3)

Create a primitive for combining multiple samples into one empty container:

Combine a specific sample and a general chemical model into an existing sample:

Combine a specific sample and a general chemical model into a generic container model:

Options  (28)

AspirationEquilibrationTime  (1)

Specify the delay length the pipette waits after aspirating before it is removed from the liquid:

AspirationMix  (1)

Indicate that the Sources should be mixed before aspirating:

AspirationMixRate  (1)

Specify the speed at which liquid is aspirated and dispensed in a liquid before it is aspirated:

AspirationMixVolume  (1)

Specify the volume of the Sources that should be aspirated and dispensed quickly to mix before aspiration:

AspirationNumberOfMixes  (1)

Specify the number of times the Sources should be aspirated and dispensed quickly to mix before aspiration:

AspirationPosition  (1)

Specify the location from which liquid should be aspirated:

AspirationPositionOffset  (1)

Specify the distance from the top of the container from which liquid should be aspirated:

AspirationRate  (1)

Specify the flow rate at which a Sources should be drawn into a pipette tip upon aspiration:

AspirationWithdrawalRate  (1)

Specify the speed at which the pipette is removed from the liquid after an aspiration:

CorrectionCurve  (1)

Specify the relationship between a target volume and the corrected volume that needs to be aspirated or dispensed to reach the target volume:

DispenseEquilibrationTime  (1)

Specify the delay length the pipette waits after dispensing before it is removed from the liquid:

DispenseMix  (1)

Indicate that the Destination should be mixed after dispensing the Sources. Mixing will occur after each source transfer, not just at the end:

DispenseMixRate  (1)

Specify the speed at which liquid is aspirated and dispensed in a liquid after a dispense:

DispenseMixVolume  (1)

Specify the volume of the Destination that should be aspirated and dispensed quickly to mix after dispensing the Sources:

DispenseNumberOfMixes  (1)

Specify the number of times the Destination should be aspirated and dispensed quickly to mix after dispensing the Sources:

DispensePosition  (1)

Specify the location from which liquid should be dispensed:

DispensePositionOffset  (1)

Specify the distance from the top from which liquid should be dispensed:

DispenseRate  (1)

Specify the flow rate at which a Sources is expelled from the pipette tip as it is dispensed to the Destination:

DispenseWithdrawalRate  (1)

Specify the speed at which the pipette is removed from the liquid after a dispense:

DynamicAspiration  (1)

Indicate that the liquid(s) being transferred has a high vapor pressure and droplet prevention should be used:

InWellSeparation  (1)

Indicate that droplets from multiple samples are transferred into and physically separated in the same destination well:

OverAspirationVolume  (1)

Specify the volume of air drawn into the pipette tip at the end of the aspiration of a liquid:

OverDispenseVolume  (1)

Specify the volume of air drawn blown out at the end of the dispensing of a liquid:

PipettingMethod  (1)

Specify a pipetting method object from which pipetting parameters should be used. Any additional specified pipetting parameters will override the object's value:

TipSize  (1)

Specify the tip size to use:

TipType  (2)

Specify the tip model to use:

Specify the tip type and size to use:

TransferType  (1)

Specify the nature of the Sources to help automatically determine other pipetting parameters:

Attributes  (1)

Protected  (1)

The Consolidation Head is protected: