| Power | 
| Real | Quantity: Power Unit: W | 
|---|
|  | Modelica.Electrical.Analog.Examples B6 diode bridge | 
|  | Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSquirrelCage with losses | 
|  | Modelica.Electrical.Machines.Examples.DCMachines Test example: Cooling of a DCPM motor | 
|  | Modelica.Magnetic.FundamentalWave.Examples.Components Comparison of equivalent circuits of eddy current loss models | 
|  | Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Asynchronous induction machine with squirrel cage and losses | 
|  | Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.Components Comparison of equivalent circuits of eddy current loss models | 
|  | Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Induction machine with squirrel cage and losses | 
|  | Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.SynchronousMachines Electrical excited synchronous machine operating as generator | 
|  | Modelica.Mechanics.MultiBody.Examples.Rotational3DEffects Demonstrates the usage of a BevelGear1D model and how to calculate the power of such an element | 
|  | Modelica.Mechanics.Rotational.Examples Example to show that gear efficiency may lead to stuck motion | 
|  | Modelica.Mechanics.Rotational.Examples Example to show combination of LossyGear and BearingFriction | 
|  | Modelica.Thermal.FluidHeatFlow.Examples Water pumping station | 
|  | Modelica.Electrical.Analog.Ideal Idealized operational amplifier with limitation | 
| Modelica.Electrical.Analog.Interfaces Partial model to include a conditional HeatPort in order to describe the power loss via a thermal network | |
|  | Modelica.Electrical.Machines.Examples.ControlledDCDrives.Utilities Parameters of a controlled DC permanent magnet drive | 
|  | Modelica.Electrical.Machines.Examples.ControlledDCDrives.Utilities DC-DC inverter | 
|  | Modelica.Electrical.Machines.Losses Parameter record for friction losses | 
|  | Modelica.Electrical.Machines.Losses Parameter record for stray load losses | 
|  | Modelica.Electrical.Machines.Losses Parameter record for core losses | 
|  | Modelica.Electrical.Machines.Losses Parameter record for permanent magnet losses | 
|  | PartialPowerBalanceInductionMachines Modelica.Electrical.Machines.Interfaces.InductionMachines Partial power balance of induction machines | 
|  | Modelica.Electrical.Machines.Interfaces.InductionMachines Power balance of asynchronous induction machines with squirrel cage | 
|  | Modelica.Electrical.Machines.Interfaces.InductionMachines Power balance of asynchronous induction machines with slipring | 
|  | Modelica.Electrical.Machines.Interfaces.InductionMachines Power balance of synchronous induction machines with permanent magnet | 
|  | Modelica.Electrical.Machines.Interfaces.InductionMachines Power balance of synchronous induction machines with electrical excitation | 
|  | Modelica.Electrical.Machines.Interfaces.InductionMachines Power balance of synchronous induction machines with reluctance rotor | 
|  | Modelica.Electrical.Machines.Interfaces.DCMachines Partial power balance of DC machines | 
|  | Modelica.Electrical.Machines.Interfaces.DCMachines Power balance of DC machines with permanent magnet | 
|  | Modelica.Electrical.Machines.Interfaces.DCMachines Power balance of DC machines with electrical excitation | 
|  | Modelica.Electrical.Machines.Interfaces.DCMachines Power balance of DC machines with series excitation | 
|  | Modelica.Electrical.Machines.Interfaces.DCMachines Power balance of DC machines with compound excitation | 
|  | Modelica.Electrical.Machines.Interfaces Power balance of transformers | 
|  | Modelica.Electrical.Machines.Utilities Calculates Impedances from nominal values | 
|  | Modelica.Electrical.PowerConverters.Interfaces.ACDC Positive and negative AC pin | 
|  | Modelica.Electrical.PowerConverters.Interfaces.ACDC AC multi phase plug | 
|  | Modelica.Electrical.PowerConverters.Interfaces.ACDC Two AC multi phase plugs | 
|  | Modelica.Electrical.PowerConverters.Interfaces.ACDC Positive and negative DC pins | 
|  | Modelica.Electrical.PowerConverters.Interfaces.ACDC Single DC pin | 
|  | Modelica.Electrical.PowerConverters.Interfaces.DCAC Positive and negative DC pins | 
|  | Modelica.Electrical.PowerConverters.Interfaces.DCAC Single AC pin | 
|  | Modelica.Electrical.PowerConverters.Interfaces.DCAC AC multi phase plug | 
|  | Modelica.Electrical.PowerConverters.Interfaces.DCDC Positive and negative pins of side 1 | 
|  | Modelica.Electrical.PowerConverters.Interfaces.DCDC Positive and negative pins of side 2 | 
|  | Modelica.Electrical.QuasiStationary.SinglePhase.Utilities Ideal AC DC converter | 
|  | Modelica.Electrical.QuasiStationary.SinglePhase.Utilities Graetz rectifier bridge | 
|  | Transformer1PhaseWithHysteresis Modelica.Magnetic.FluxTubes.Examples.Hysteresis.Components Single Phase transformer with ferromagnetic core and hysteresis | 
|  | Transformer3PhaseYyWithHysteresis Modelica.Magnetic.FluxTubes.Examples.Hysteresis.Components Three phase transformer in Yy configuration | 
|  | Modelica.Magnetic.FluxTubes.Examples.Utilities Calculation of winding parameters (wire diameter, number of turns et al.) and recalculation with optionally chosen parameters; to be adapted to particular design tasks | 
| Modelica.Magnetic.FluxTubes.Interfaces Partial model to include a conditional HeatPort in order to describe the power loss via a thermal network | |
|  | Modelica.Magnetic.FluxTubes.Interfaces Partial hysteresis model | 
|  | Modelica.Mechanics.MultiBody.Joints Spherical - spherical joint aggregation (1 constraint, no potential states) with an optional point mass in the middle | 
|  | Modelica.Mechanics.MultiBody.Joints Universal - spherical joint aggregation (1 constraint, no potential states) | 
|  | Modelica.Mechanics.MultiBody.Joints Ideal 3-dim. gearbox (arbitrary shaft directions) | 
|  | Modelica.Mechanics.MultiBody.Joints.Assemblies Universal - prismatic - spherical joint aggregation (no constraints, no potential states) | 
|  | Modelica.Mechanics.MultiBody.Joints.Assemblies Universal - spherical - revolute joint aggregation (no constraints, no potential states) | 
|  | Modelica.Mechanics.MultiBody.Joints.Assemblies Universal - spherical - prismatic joint aggregation (no constraints, no potential states) | 
|  | Modelica.Mechanics.MultiBody.Joints.Assemblies Spherical - spherical - revolute joint aggregation with mass (no constraints, no potential states) | 
|  | Modelica.Mechanics.MultiBody.Joints.Assemblies Spherical - spherical - prismatic joint aggregation with mass (no constraints, no potential states) | 
|  | Modelica.Mechanics.MultiBody.Joints.Assemblies Planar revolute - revolute - revolute joint aggregation (no constraints, no potential states) | 
|  | Modelica.Mechanics.MultiBody.Joints.Assemblies Planar revolute - revolute - prismatic joint aggregation (no constraints, no potential states) | 
|  | Modelica.Fluid.Machines.BaseClasses Base model for centrifugal pumps | 
| Modelica.Fluid.Interfaces Lumped volume with mass and energy balance | |
| Modelica.Fluid.Interfaces Base class for distributed volume models | |
|  | Modelica.Media.Common.ThermoFluidSpecial | 
| Modelica.Thermal.FluidHeatFlow.Interfaces.Partials Simple friction model | |
| PartialElementaryConditionalHeatPort Modelica.Thermal.HeatTransfer.Interfaces Partial model to include a conditional HeatPort in order to dissipate losses, used for textual modeling, i.e., for elementary models | |
| PartialElementaryConditionalHeatPortWithoutT Modelica.Thermal.HeatTransfer.Interfaces Partial model to include a conditional HeatPort in order to dissipate losses, used for textual modeling, i.e., for elementary models | 
| Modelica.SIunits |