tbf/TBF/BenchControl/MettlerToledo/Standard/BalanceCfg.cs

132 lines
4.1 KiB
C#

///
/// Copyright (c) 2013-2018 Sensus Slovensko a.s.
///
using System;
using System.IO;
using System.Collections.Generic;
using System.IO.Ports;
using System.Xml.Serialization;
using TBF.BenchControl.Generic;
namespace TBF.BenchControl.MettlerToledo.Standard
{
public class BalanceCfg : ComponentCfgBase, GenericDevices.IScaleCfg, GenericDevices.ITankDrainingCfg
{
public static XmlSerializer Serializer = XmlSerializer.FromTypes(new[] { typeof(BalanceCfg) })[0];
public override XmlSerializer GetSerializer() { return Serializer; }
public IComponentCfgCtrl GetControl() { return new BalanceCfgCtrl(); }
///
/// Serialized parameters
///
public int ComPortNr;
public int BaudRate;
public Parity Parity;
public int DataBits;
public StopBits StopBits;
public Handshake Handshake;
/// Max. water mass in 'kg' or volume in 'l'
private float capacity;
public float Capacity { get { return capacity; } set { capacity = value; } }
/// Mass threshold for 'Tank is empty' in 'kg' (or volume in 'l')
private float empty;
public float Empty { get { return empty; } set { empty = value; } }
/// Mass threshold for 'Tank is empty' in 'kg' (or volume in 'l') when the drain valve is not open
private float emptyUp;
public float EmptyUp { get { return emptyUp; } set { emptyUp = value; } }
private string drainValve;
public string DrainValve { get { return drainValve; } set { drainValve = value; } }
private int drainTimeSec;
public int DrainTimeSec { get { return drainTimeSec; } set { drainTimeSec = value; } }
public string Format;
/// Buoyancy related serialized parameters displayed in Metrology tab page
private float buoyancyTemp;
private float buoyancyPress;
private float buoyancyHumi;
private float weightStandardDensity;
public float BuoyancyTemp
{
get { return buoyancyTemp; }
set { buoyancyTemp = value; }
}
public float BuoyancyPress
{
get { return buoyancyPress; }
set { buoyancyPress = value; }
}
public float BuoyancyHumi
{
get { return buoyancyHumi; }
set { buoyancyHumi = value; }
}
public float WeightStandardDensity
{
get { return weightStandardDensity; }
set { weightStandardDensity = value; }
}
/// Calibration info serialized parameters displayed in Metrology tab page
string calibCertificateNr;
DateTime calibDate;
DateTime calibValidDate;
public string CalibCertificateNr
{
get { return calibCertificateNr; }
set { calibCertificateNr = value; }
}
public DateTime CalibDate
{
get { return calibDate; }
set { calibDate = value; }
}
public DateTime CalibValidDate
{
get { return calibValidDate; }
set { calibValidDate = value; }
}
/// Private parameterless constructor invoked by all other (public) constructors
BalanceCfg()
{
Name = "WT1";
ParentName = string.Empty;
ComPortNr = 3;
BaudRate = 2400;
Parity = System.IO.Ports.Parity.Even;
DataBits = 7;
StopBits = System.IO.Ports.StopBits.One;
Handshake = System.IO.Ports.Handshake.XOnXOff;
Capacity = 200.0f;
Empty = 20.0f;
EmptyUp = 2.0f;
Format = "F3";
DrainValve = "VB1";
DrainTimeSec = 180;
BuoyancyTemp = 20.0f;
BuoyancyPress = 1.0f;
BuoyancyHumi = 40.0f;
}
public BalanceCfg(IComponentFactory factory)
: this()
{
this.Factory = factory;
}
public string ToString(int i)
{
return string.Format("Name={0}, {1}kg, empty={2}kg, emptyUp={3}kg, drainVlv={4}, drainTm={5}s, Com{6}, {7}Bd, {8}-bits, parity={9}, stopBits={10}, {11}",
Name, Capacity, Empty, EmptyUp, DrainValve, DrainTimeSec, ComPortNr, BaudRate, DataBits, Parity, StopBits, Handshake);
}
}
}