Model[Instrument, MassSpectrometer]
The model for a mass spectrometer instrument used to determine the molecular weight of molecules in a sample by generating gas phase ions of the molecules and measuring their mass-to-charge ratio.
Organizational Information
Name
Name of this Object.
Format: Single
Class: String
Programmatic Pattern: _String
Pattern Description: A string.
ID
ID of this Object.
Format: Single
Class: String
Programmatic Pattern: _String
Pattern Description: The ID of this object.
Object
Object of this Object.
Format: Single
Class: Expression
Programmatic Pattern: Model[Instrument, MassSpectrometer, _String]
Pattern Description: The object reference of this object.
Type
Type of this Object.
Format: Single
Class: Expression
Programmatic Pattern: Model[Instrument, MassSpectrometer]
Pattern Description: Model[Instrument, MassSpectrometer]
Notebook
Notebook this object belongs to.
Format: Single
Class: Link
Programmatic Pattern: _Link
Pattern Description: An object of that matches ObjectP[Object[LaboratoryNotebook]].
Relation: Object[LaboratoryNotebook][Objects]
Objects
Objects that represent instances of this model.
Format: Multiple
Class: Link
Programmatic Pattern: _Link
Deprecated
Indicates if this instrument model is historical and no longer used in the lab.
Format: Single
Class: Expression
Programmatic Pattern: BooleanP
Authors
The person(s) who created this instrument model.
Format: Multiple
Class: Link
Programmatic Pattern: _Link
Relation: Object[User]
ImageFile
An example photo of this model of instrument.
Format: Single
Class: Link
Programmatic Pattern: _Link
Relation: Object[EmeraldCloudFile]
UserManualFiles
PDFs for the manuals or instruction guides for this model of instrument.
Format: Multiple
Class: Link
Programmatic Pattern: _Link
Relation: Object[EmeraldCloudFile]
Instrument Specifications
InstrumentSchematics
Detailed drawings of the instrument that explain its capabilities and limitations.
Format: Multiple
[[1]] Schematic
Header: Schematic
Class: Link
Programmatic Pattern: _Link
Relation: Object[EmeraldCloudFile]
[[2]] Caption
Header: Caption
Class: String
Programmatic Pattern: _String
PowerType
The type(s) of the power source(s) used by instruments of this model.
Format: Multiple
Class: Expression
Programmatic Pattern: PowerTypeP
BatteryRequirements
All battery requirements for battery-powered instruments of this model.
Format: Multiple
[[1]] Number of Batteries
Header: Number of Batteries
Class: Integer
Programmatic Pattern: GreaterP[0, 1]
[[2]] Battery Type
Header: Battery Type
Class: Expression
Programmatic Pattern: BatteryTypeP
PowerConsumption
Estimated power consumption rate of the instrument in Watts (Joule/Second).
Format: Single
Class: Real
Unit: 1 watt
Programmatic Pattern: GreaterEqualP[0 Watt]
Connector
All data connector requirements needed to interface the instruments of this model with a computer.
Format: Multiple
[[1]] Number of Connectors
Header: Number of Connectors
Class: Integer
Programmatic Pattern: GreaterP[0, 1]
[[2]] Connector Type
Header: Connector Type
Class: Expression
Programmatic Pattern: DataConnectorP
OperatingSystem
Operating system that the software of instruments of this model runs on.
Format: Single
Class: Expression
Programmatic Pattern: OperatingSystemP
PCICard
All PCICard requirements needed to install specialized hardware.
Format: Multiple
[[1]] Number of Cards
Header: Number of Cards
Class: Integer
Programmatic Pattern: GreaterEqualP[0, 1]
[[2]] Card Type
Header: Card Type
Class: Expression
Programmatic Pattern: PCICardP
Dongle
Indicates if an instrument of this model requires a security dongle in the computer to run.
Format: Single
Class: Expression
Programmatic Pattern: BooleanP
AssociatedAccessories
Items installed with the instrument for full function.
Format: Multiple
[[1]] Item
Header: Item
Class: Link
Programmatic Pattern: _Link
Relation: Model[Instrument][SupportedInstruments] | Model[Part][SupportedInstruments] | Model[Container, PlateSealMagazine][SupportedInstruments] | Model[Container, MagazineParkPosition][SupportedInstruments] | Model[Sensor][SupportedInstruments] | Model[Item][SupportedInstruments] | Model[Plumbing][SupportedInstruments] | Model[Wiring][SupportedInstruments]
[[2]] Quantity
Header: Quantity
Class: Integer
Programmatic Pattern: GreaterP[0, 1]
WasteType
The type of waste generated by this instrument.
Format: Single
Class: Link
Programmatic Pattern: _Link
Relation: Model[Sample]
Detectors
A list of the measurement modules on this instrument.
Format: Multiple
Class: Expression
Programmatic Pattern: ChromatographyDetectorTypeP
MassAnalyzer
The type of the component of the mass spectrometer that performs ion separation based on mass-to-charge (m/z) ratio. The type of the component of the mass spectrometer that performs ion separation based on mass-to-charge (m/z) ratio. Time of flight (TOF) analyzers accelerate and resolve ions
using an applied electrical field, thereby resolving ions by their flight path (a function of m/z). QTOF (quantitative time of flight) mass analyzer can perform two accelerations and also measure ion fragments.
Format: Single
Class: Expression
Programmatic Pattern: MassAnalyzerTypeP
IonSources
The type of ionization source used to generate gas phase ions from the molecules in the sample. Electrospray ionization (ESI) produces ions using an electrospray in which a high voltage is applied to a liquid to create an aerosol, and gas phase ions are formed from the fine spray of charged droplets as a result of solvent evaporation and Coulomb fission. In matrix-assisted laser desorption/ionization (MALDI), the sample is embedded in a laser energy absorbing matrix which is then irradiated with a pulsed laser, ablating and desorbing the molecules with minimal fragmentation and creating gas phase ions from the analyte molecules in the sample.
Format: Multiple
Class: Expression
Programmatic Pattern: IonSourceP | GCIonSourceP
IonModes
The possible detection modes for ions (in Negative mode, negatively charged ions and in Positive mode, positively charged ions are generated and analyzed).
Format: Multiple
Class: Expression
Programmatic Pattern: IonModeP
AcquisitionModes
Data acquisition functions that can be performed on this instrument.
Format: Multiple
Class: Expression
Programmatic Pattern: AcquisitionModeP
FocusingElement
The type of focusing element for the ions.
Format: Single
Class: Expression
Programmatic Pattern: FocusingElementP
Reflectron
Boolean describing whether or not the TOF mass spectrometer is equipped with a ion mirror (reflectron) to increase the flight path of the ions in the flight tube and improve mass accuracy.
Format: Single
Class: Expression
Programmatic Pattern: BooleanP
LaserWavelength
Wavelength of the laser used for desorption/ionization.
Format: Single
Class: Real
Unit: 1 nanometer
Programmatic Pattern: GreaterEqualP[0 Meter Nano]
LaserPulseWidth
Duration of each laser pulse used for desorption/ionization.
Format: Single
Class: Real
Unit: 1 nanosecond
Programmatic Pattern: GreaterEqualP[0 Nano Second]
LaserFrequency
The shot frequency of the laser used for desorption/ionization.
Format: Single
Class: Real
Unit: 1 hertz
Programmatic Pattern: GreaterEqualP[0 Hertz]
LaserPower
Power of the laser used for desorption/ionization.
Format: Single
Class: Real
Unit: 1 watt
Programmatic Pattern: GreaterEqualP[0 Watt]
Pricing Information
PricingRate
The rate charged by the ECL for time used on this instrument in the course of conducting user experiments.
Format: Single
Class: Real
Unit: 1 US dollar per hour
Programmatic Pattern: USD
Hold[GreaterEqualP[0 ----]]
Hour
PricingCategory
The generic billing category this instrument model will be listed under.
Format: Single
Class: String
Programmatic Pattern: PricingCategoryP
PricingLevel
With respect to cost, the category of devices, for which this Instrument falls into.
Format: Single
Class: Integer
Programmatic Pattern: GreaterEqualP[0, 1]
Compatibility
PlugRequirements
All electrical requirements for plug-in parts of this model.
Format: Multiple
[PlugNumber]
Header: PlugNumber
Class: Integer
[Phases]
Header: Phases
Class: Integer
[Voltage]
Header: Voltage
Class: Integer
Unit: 1 volt
[Current]
Header: Current
Class: Real
Unit: 1 ampere
[PlugType]
Header: PlugType
Class: String
AllowedPositions
Generates a pattern of all the valid position names for this model of instrument.
Format: Computable
Programmatic Pattern: _Alternatives
Expression: SafeEvaluate[{Field[Positions]}, Computables`Private`allowedPositions[Field[Positions]]]
WettedMaterials
A list of materials in the instrument which may be wetted by user-specified liquids.
Format: Multiple
Class: Expression
Programmatic Pattern: MaterialP
FacilityRequirementFiles
PDFs for facility requirements and pre-installation checkoff forms provided by the supplier for instruments of this model.
Format: Multiple
Class: Link
Programmatic Pattern: _Link
Relation: Object[EmeraldCloudFile]
Dimensions & Positions
Dimensions
The external dimensions of this model of instrument.
Format: Single
[[1]] DimensionX
Header: DimensionX
Class: Real
Unit: 1 meter
Programmatic Pattern: GreaterP[0 Meter]
[[2]] DimensionY
Header: DimensionY
Class: Real
Unit: 1 meter
Programmatic Pattern: GreaterP[0 Meter]
[[3]] DimensionZ
Header: DimensionZ
Class: Real
Unit: 1 meter
Programmatic Pattern: GreaterP[0 Meter]
CrossSectionalShape
The shape of this model of instrument in the X-Y plane.
Format: Single
Class: Expression
Programmatic Pattern: Circle | Rectangle
ContainerImage2DFile
A top-down (X-Y plane) image of this model of instrument which can be overlaid on a 2D container plot.
Format: Single
Class: Link
Programmatic Pattern: _Link
Relation: Object[EmeraldCloudFile]
Shape2D
A Graphics primitive corresponding to the 2D shape of this model of instrument.
Format: Single
Class: Expression
Programmatic Pattern: _Polygon | _Circle
Shape3D
A Graphics primitive corresponding to the 3D shape of this model of instrument.
Format: Single
Class: Expression
Programmatic Pattern: _Polygon
Positions
Spatial definitions of the positions that exist in this model of instrument.
Format: Multiple
[Name]
Header: Name
Class: String
[Footprint]
Header: Footprint
Class: Expression
[MaxWidth]
Header: MaxWidth
Class: Real
Unit: 1 meter
[MaxDepth]
Header: MaxDepth
Class: Real
Unit: 1 meter
[MaxHeight]
Header: MaxHeight
Class: Real
Unit: 1 meter
AvailableLayouts
Readily available configurations of container models in specified positions on the deck of this instrument model.
Format: Multiple
Class: Link
Programmatic Pattern: _Link
Relation: Model[DeckLayout][InstrumentModel]
SyringePumpDiameter
The largest diameter of a syringe that can fit in the syringe pump of the mass spetrometer.
Format: Single
Class: Real
Unit: 1 meter
Programmatic Pattern: GreaterP[0 Meter]
SyringePumpLength
The longest syringe (in centimeter) that can fit in the syringe pump of the mass spetrometer.
Format: Single
Class: Real
Unit: 1 meter
Programmatic Pattern: GreaterP[0 Meter]
Storage Information
LocalCacheContents
Items required to be present in the local cache for instruments of this model, along with the required quantity of each item.
Format: Multiple
[[1]] Item Model
Header: Item Model
Class: Link
Programmatic Pattern: _Link
[[2]] Required Quantity
Header: Required Quantity
Class: Integer
Programmatic Pattern: GreaterEqualP[0, 1]
ProvidedStorageCondition
The physical conditions such as temperature and humidity this instrument provides for samples stored long term within it.
Format: Single
Class: Link
Programmatic Pattern: _Link
Relation: Model[StorageCondition]
Plumbing Information
Connectors
Specifications for the ports on this model of instrument that may connect to other plumbing components.
Format: Multiple
[[1]] Connector Name
Header: Connector Name
Class: String
Programmatic Pattern: ConnectorNameP
[[2]] Connector Type
Header: Connector Type
Class: Expression
Programmatic Pattern: ConnectorP
[[3]] Thread Type
Header: Thread Type
Class: Expression
Programmatic Pattern: ThreadP|GroundGlassJointSizeP|None
[[4]] Inner Diameter
Header: Inner Diameter
Class: Real
Unit: 1 inch
Programmatic Pattern: GreaterP[0 Inch]
[[5]] Outer Diameter
Header: Outer Diameter
Class: Real
Unit: 1 inch
Programmatic Pattern: GreaterP[0 Inch]
[[6]] Gender
Header: Gender
Class: Expression
Programmatic Pattern: ConnectorGenderP|None
Wiring Information
WiringConnectors
Specifications for the wiring ends of this instrument that may plug into and conductively connect to other items, parts or instruments.
Format: Multiple
[[1]] Wiring Connector Name
Header: Wiring Connector Name
Class: String
Programmatic Pattern: WiringConnectorNameP
[[2]] Wiring Connector Type
Header: Wiring Connector Type
Class: Expression
Programmatic Pattern: WiringConnectorP
[[3]] Gender
Header: Gender
Class: Expression
Programmatic Pattern: ConnectorGenderP|None
Qualifications & Maintenance
QualificationFrequency
A list of the Qualifications which should be run on instruments of this model and their required frequencies.
Format: Multiple
[[1]] Qualification Model
Header: Qualification Model
Class: Link
Programmatic Pattern: _Link
Relation: Model[Qualification][Targets]
[[2]] Time
Header: Time
Class: Real
Unit: 1 day
Programmatic Pattern: GreaterP[0 Second]
MaintenanceFrequency
A list of the maintenance protocols which should be run on instruments of this model and their required frequencies.
Format: Multiple
[[1]] Maintenance Model
Header: Maintenance Model
Class: Link
Programmatic Pattern: _Link
Relation: Model[Maintenance][Targets]
[[2]] Time
Header: Time
Class: Real
Unit: 1 day
Programmatic Pattern: GreaterP[0 Second]
ReplacementParts
A list of tracked replacement part models for this instrument.
Format: Multiple
Class: Link
Programmatic Pattern: _Link
PassiveClean
Indicates if the exterior surfaces of this instrument model can be cleaned while in use.
Format: Single
Class: Expression
Programmatic Pattern: BooleanP
VentilationFlowRate Requirement
The minimum flow rate of air generated by the instrument's ventilator for its safe and proper function.
Format: Single
Class: Real
Unit: 1 meter per second
Programmatic Pattern: Meter
Hold[GreaterP[0 ------]]
Second
VentilationFlowRate Recommendation
The flow rate of air generated by the instrument's ventilator recommended by its manufacturer.
Format: Single
Class: Real
Unit: 1 meter per second
Programmatic Pattern: Meter
Hold[GreaterP[0 ------]]
Second
ContinuousOperation
Indicates if the instrument is required to operate continuously in the lab, regardless of if it is InUse by a specific protocol, such as a freezer.
Format: Single
Class: Boolean
Programmatic Pattern: BooleanP
Inventory
Manufacturer
The company that originally manufactured this model of instrument.
Format: Single
Class: Link
Programmatic Pattern: _Link
SupportedInstruments
A list of instruments for which this model is an accompanying accessory.
Format: Multiple
Class: Link
Programmatic Pattern: _Link
Health & Safety
Sterile
Indicates that this model of instrument is used for protocols where SterileTechnique is indicated to be used.
Format: Single
Class: Expression
Programmatic Pattern: BooleanP
CultureHandling
Indicates the type of cellular samples (Mammalian or Microbial) that this instrument is used to handle.
Format: Single
Class: Expression
Programmatic Pattern: CellTypeP
GloveBoxStorage
Indiciates that this model of instrument permanently resides in the glove box.
Format: Single
Class: Boolean
Programmatic Pattern: BooleanP
HazardCategories
Hazards to be aware of during operation of instruments of this model.
Format: Multiple
Class: Expression
Programmatic Pattern: HazardCategoryP
SampleHandlingCategories
Special handling considerations that samples on this instrument require.
Format: Multiple
Class: Expression
Programmatic Pattern: HandlingCategoryP
Sensor Information
SensorBarrier
Type of sensors which cannot monitor the internal contents of instruments of this model from the outside.
Format: Multiple
Class: Expression
Programmatic Pattern: TypeP[Object[Sensor]]
Operating Limits
MinMass
The lowest value of mass-to-charge ratio (m/z) the instrument can detect.
Format: Single
Class: Real
Unit: 1 gram per mole
Programmatic Pattern: 0 Gram
Hold[GreaterEqualP[------]]
Mole
MaxMass
The highest value of mass-to-charge ratio (m/z) the instrument can detect.
Format: Single
Class: Real
Unit: 1 gram per mole
Programmatic Pattern: 0 Gram
Hold[GreaterEqualP[------]]
Mole
TandemMassSpectrometry
Indicate if this intrument is capable of conducting tandem mass spectrometry.
Format: Single
Class: Boolean
Programmatic Pattern: BooleanP
MinFragmentationMass
For the Mass Spectrometer that has tandem mass spectrometry feature, this value indicate the lowest value of mass-to-charge ratio (m/z) that the second mass analyzer (MS2) of instrument can detect.
Format: Single
Class: Real
Unit: 1 gram per mole
Programmatic Pattern: 0 Gram
Hold[GreaterEqualP[------]]
Mole
MaxFragmentationMass
For the Mass Spectrometer that has tandem mass spectrometry feature, this value indicate the highest value of mass-to-charge ratio (m/z) that the second mass analyzer (MS2) of instrument can detect.
Format: Single
Class: Real
Unit: 1 gram per mole
Programmatic Pattern: 0 Gram
Hold[GreaterEqualP[------]]
Mole
MaxCollisionEnergy
For the Mass Spectrometer that has tandem mass spectrometry feature, this value indicate the highest value of voltage that could be applied to the collision cell.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MinCollisionEnergy
For the Mass Spectrometer that has tandem mass spectrometry feature, this value indicate the lowest value of voltage that could be applied to the collision cell.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MaxCollisionCellExitVoltage
For some Mass Spectrometers that has tandem mass spectrometry feature (e.g. ESI-QQQ), this value indicate the highest value of voltage that could be applied between the exit point of the collision cell and the second mass analyzer.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MinCollisionCellExitVoltage
For some Mass Spectrometers that has tandem mass spectrometry feature (e.g. ESI-QQQ), this value indicate the lowest value of voltage that could be applied between the exit point of the collision cell and the second mass analyzer.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MinGridVoltage
The minimum voltage the instrument can apply to the the grid eletrode.
Format: Single
Class: Real
Unit: 1 kilovolt
Programmatic Pattern: GreaterEqualP[0 Kilo Volt]
MaxGridVoltage
The maximum voltage the instrument can apply to the grid electrode.
Format: Single
Class: Real
Unit: 1 kilovolt
Programmatic Pattern: GreaterEqualP[0 Kilo Volt]
MinLensVoltage
The minimum voltage that can be applied to the ion focusing lens located at the entrance of the mass analyser.
Format: Single
Class: Real
Unit: 1 kilovolt
Programmatic Pattern: GreaterEqualP[0 Kilo Volt]
MaxLensVoltage
The maximum voltage that can be applied to the ion focusing lens located at the entrance of the mass analyser.
Format: Single
Class: Real
Unit: 1 kilovolt
Programmatic Pattern: GreaterEqualP[0 Kilo Volt]
MinGuideWireVoltage
The minimum voltage that can be applied to the guide wire used to focus the divergent ions in the mass analyzer.
Format: Single
Class: Real
Unit: 1 kilovolt
Programmatic Pattern: GreaterEqualP[0 Kilo Volt]
MaxGuideWireVoltage
The maximum voltage that can be applied to the guide wire used to focus the divergent ionsin the mass analyzer.
Format: Single
Class: Real
Unit: 1 kilovolt
Programmatic Pattern: GreaterEqualP[0 Kilo Volt]
MinAcceleratingVoltage
The minimum voltage the instrument can apply to the target plate to accelerate the ions.
Format: Single
Class: Real
Unit: 1 kilovolt
Programmatic Pattern: GreaterEqualP[0 Kilo Volt]
MaxAcceleratingVoltage
The maximum voltage the instrument can apply to the target plate to accelerate the ions.
Format: Single
Class: Real
Unit: 1 kilovolt
Programmatic Pattern: GreaterEqualP[0 Kilo Volt]
MinShots
The minimum number of laser shots that can be fired at each spot.
Format: Single
Class: Integer
Programmatic Pattern: GreaterEqualP[0, 1]
MaxShots
The maximum number of laser shots that can be fired at each spot.
Format: Single
Class: Integer
Programmatic Pattern: GreaterEqualP[0, 1]
MinDelayTime
The minimum delay between laser ablation and ion extraction accepted by the instrument.
Format: Single
Class: Real
Unit: 1 nanosecond
Programmatic Pattern: GreaterEqualP[0 Nano Second]
MaxDelayTime
The maximum delay between laser ablation and ion extraction accepted by the instrument.
Format: Single
Class: Real
Unit: 1 nanosecond
Programmatic Pattern: GreaterEqualP[0 Nano Second]
MinESICapillaryVoltage
Minimum voltage that can be applied to the stainless steel capillary from which the ion spray is generated.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MaxESICapillaryVoltage
Maximum voltage that can be applied to the stainless steel capillary from which the ion spray is generated.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterP[0 Volt]
MinDeclusteringVoltage
Minimum voltage that indicates the voltage between the ion block (the reduced-pressure chamber of the source block) and the stepwave ion guide (the optics before the quadrupole mass analyzer) for ESI-QTOF; Or the voltage applied between the orifice (where ions enter the mass spectrometer) and the ion guide to prevent the ionized small particles from aggregating together for ESI-QQQ.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MaxDeclusteringVoltage
Maximum voltage that indicates the voltage between the ion block (the reduced-pressure chamber of the source block) and the stepwave ion guide (the optics before the quadrupole mass analyzer) for ESI-QTOF; Or the voltage applied between the orifice (where ions enter the mass spectrometer) and the ion guide to prevent the ionized small particles from aggregating together for ESI-QQQ.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MinIonGuideVoltage
Minimum voltage that can be applied on the Ion guide to guides and focuses the ions through the high-pressure Ion guid region, this parameter is also labeled as Entrance Potential (EP).
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MaxIonGuideVoltage
Maximum voltage that can be applied on the Ion guide to guides and focuses the ions through the high-pressure Ion guid region, this parameter is also labeled as Entrance Potential (EP).
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterP[0 Volt]
MinSourceTemperature
The minimum temperature setting for the source block (the reduced pressure chamber holding the sample cone through which the ions travel on their way to the mass analyzer).
Format: Single
Class: Real
Unit: 1 degree Celsius
Programmatic Pattern: GreaterEqualP[0 Celsius]
MaxSourceTemperature
The maximum temperature setting for the source block (the reduced pressure chamber holding the sample cone through which the ions travel on their way to the mass analyzer).
Format: Single
Class: Real
Unit: 1 degree Celsius
Programmatic Pattern: GreaterP[0 Celsius]
MinDesolvationTemperature
The minimum temperature setting for the source desolvation heater that controls the nitrogen gas temperature used for solvent cluster evaporation before ions enter the mass spectrometer through the sampling cone.
Format: Single
Class: Real
Unit: 1 degree Celsius
Programmatic Pattern: GreaterEqualP[0 Celsius]
MaxDesolvationTemperature
The maximum temperature setting for the source desolvation heater that controls the nitrogen gas temperature used for solvent cluster evaporation before ions enter the mass spectrometer through the sampling cone.
Format: Single
Class: Real
Unit: 1 degree Celsius
Programmatic Pattern: GreaterEqualP[0 Celsius]
MinConeGasFlow
The minimum nitrogen gas flow ejected around the sample inlet cone to encourage solvent cluster evaporation.
Format: Single
Class: VariableUnit
Programmatic Pattern: Liter
Hold[GreaterEqualP[0 -----] | GreaterEqualP[0 PSI]]
Hour
MaxConeGasFlow
The maximum nitrogen gas flow ejected around the sample inlet cone to encourage solvent cluster evaporation.
Format: Single
Class: VariableUnit
Programmatic Pattern: Liter
Hold[GreaterEqualP[0 -----] | GreaterEqualP[0 PSI]]
Hour
MinDesolvationGasFlow
The minimum nitrogen gas flow ejected around the ion source capillary to encourage solvent evaporation.
Format: Single
Class: VariableUnit
Programmatic Pattern: Liter
Hold[GreaterEqualP[0 -----] | GreaterEqualP[0 PSI]]
Hour
MaxDesolvationGasFlow
The maximum nitrogen gas flow ejected around the ion source capillary to encourage solvent evaporation.
Format: Single
Class: VariableUnit
Programmatic Pattern: Liter
Hold[GreaterEqualP[0 -----] | GreaterEqualP[0 PSI]]
Hour
MinStepwaveVoltage
Minimum voltage that between the 1st and 2nd stage of the ion guide which leads ions coming from the sample cone towards the quadrupole mass analyzer.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterEqualP[0 Volt]
MaxStepwaveVoltage
Maximum voltage that between the 1st and 2nd stage of the ion guide which leads ions coming from the sample cone towards the quadrupole mass analyzer.
Format: Single
Class: Real
Unit: 1 volt
Programmatic Pattern: GreaterP[0 Volt]
MinInfusionFlowRate
The minimum flow rate at which the instrument can pump buffer or sample into the system via the built-in syringe pump system.
Format: Single
Class: Real
Unit: 1 milliliter per minute
Programmatic Pattern: 0 Milli Liter
Hold[GreaterEqualP[-------------]]
Minute
MaxInfusionFlowRate
The maximum flow rate at which the instrument can pump buffer or sample into the system via the built-in syringe pump system.
Format: Single
Class: Real
Unit: 1 milliliter per minute
Programmatic Pattern: 0 Milli Liter
Hold[GreaterP[-------------]]
Minute
Last modified on Mon 26 Sep 2022 15:43:54