JetPM.cs 36 KB

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  1. using Aitex.Core.Common.DeviceData;
  2. using Aitex.Core.RT.Device;
  3. using Aitex.Core.RT.Device.Unit;
  4. using Aitex.Core.RT.Event;
  5. using Aitex.Core.RT.SCCore;
  6. using Aitex.Core.RT.Log;
  7. using MECF.Framework.Common.Device.Bases;
  8. using MECF.Framework.Common.Equipment;
  9. using MECF.Framework.RT.EquipmentLibrary.HardwareUnits.PMs;
  10. using System;
  11. using System.Collections.Generic;
  12. using Venus_Core;
  13. using Venus_RT.Devices.IODevices;
  14. using Venus_RT.Devices.EPD;
  15. using Aitex.Core.RT.DataCenter;
  16. using Aitex.Core.RT.OperationCenter;
  17. namespace Venus_RT.Devices
  18. {
  19. enum ValveType
  20. {
  21. PVN21,
  22. PVN22,
  23. PV11,
  24. PV12,
  25. PV21,
  26. PV22,
  27. PV31,
  28. PV32,
  29. PV41,
  30. PV42,
  31. N2,
  32. Mfc1,
  33. Mfc2,
  34. Mfc3,
  35. Mfc4,
  36. Mfc5,
  37. Mfc6,
  38. Mfc7,
  39. Mfc8,
  40. PVHe1,
  41. PVHe2,
  42. GasFinal,
  43. SoftPump,
  44. FastPump,
  45. CHBPurge,
  46. TurboPumpPumping,
  47. TurboPumpPurge,
  48. Guage,
  49. LoadlockVent,
  50. LoadlockPumping
  51. }
  52. class JetPM : PM
  53. {
  54. private readonly IoLid _Lid;
  55. private readonly IoLid _LidLoadlock;
  56. private readonly IoCylinder _slitDoor;
  57. private readonly IoCylinder _LiftPin;
  58. private readonly IoCylinder _LoadLockArm;
  59. private readonly IoValve _PVN21Valve;
  60. private readonly IoValve _PVN22Valve;
  61. private readonly IoValve _PV11Valve;
  62. private readonly IoValve _PV12Valve;
  63. private readonly IoValve _PV21Valve;
  64. private readonly IoValve _PV22Valve;
  65. private readonly IoValve _PV31Valve;
  66. private readonly IoValve _PV32Valve;
  67. private readonly IoValve _PV41Valve;
  68. private readonly IoValve _PV42Valve;
  69. private readonly IoValve _N2Valve;
  70. private readonly IoValve _Mfc1Valve;
  71. private readonly IoValve _Mfc2Valve;
  72. private readonly IoValve _Mfc3Valve;
  73. private readonly IoValve _Mfc4Valve;
  74. private readonly IoValve _Mfc5Valve;
  75. private readonly IoValve _Mfc6Valve;
  76. private readonly IoValve _Mfc7Valve;
  77. private readonly IoValve _Mfc8Valve;
  78. private readonly IoValve _PVHe1Valve;
  79. private readonly IoValve _PVHe2Valve;
  80. private readonly IoValve _GasFinalValve;
  81. private readonly IoValve _SoftPumpValve;
  82. private readonly IoValve _FastPumpValve;
  83. private readonly IoValve _TurboPumpPumpingValve;
  84. private readonly IoValve _TurboPumpPurgeValve;
  85. private readonly IoValve _GuageValve;
  86. private readonly IoValve _LoadlockVentValve;
  87. private readonly IoValve _LoadlockPumpingValve;
  88. private readonly IoSensor _ATM_sw;
  89. private readonly IoSensor _CDAPressure;
  90. private readonly IoSensor _ATM_Loadlock_sw;
  91. private readonly IoSensor _N2Pressure_sw;
  92. private readonly IoSensor _VAC_sw;
  93. private readonly IoSensor _WLK_sw;
  94. private readonly IoSensor _Water_Flow;
  95. private readonly IoSensor _RFG_Interlock;
  96. private readonly IoSensor _PM_Lid_Closed;
  97. private readonly IoSensor _Source_RF_Fan;
  98. private readonly IoSensor _PM_SlitDoor_Closed;
  99. private readonly IoSensor _TurboPumpInterlock;
  100. private readonly PumpBase _MainPump;
  101. private readonly ESC5HighVoltage _ESCHV;
  102. private readonly AdixenTurboPump _TurboPump;
  103. private readonly PendulumValve _pendulumValve;
  104. private readonly ChillerBase _Chiller;
  105. private readonly RfPowerBase _Generator;//srf=>AdTecGenerator
  106. private readonly RfPowerBase _GeneratorBias;//brf=>CometRF
  107. private readonly RfMatchBase _Match;
  108. private readonly RfMatchBase _BiasMatch;
  109. private readonly IoSignalTower _SignalTower;
  110. private readonly IoHeater _ForelineTC;
  111. private readonly IoPressureControl _pressureController;
  112. private readonly IoGasStick[] _gasLines;
  113. private readonly IoGasStick _gasLineN2;
  114. private readonly IoBacksideHe _backsideHe;
  115. // EndPoint
  116. private readonly EPDClient _epdClient;
  117. private readonly double _foreline_interlock_pressure = 750;
  118. public List<string> EPDCfgList => _epdClient.CFGFileList;
  119. public bool EPDCaptured => _epdClient.Captured;
  120. public bool EPDConnected => _epdClient.IsEPDConnected;
  121. // 盖子的状态
  122. public bool IsLidClosed => _Lid.OFFFeedback;
  123. public bool IsLidLoadlockClosed => _LidLoadlock.OFFFeedback;
  124. public bool IsSlitDoorClosed => !_slitDoor.ONFeedback && _slitDoor.OFFFeedback;
  125. public bool IsPumpRunning => _MainPump.IsRunning;
  126. public bool IsTurboPumpRunning => _TurboPump.IsRunning;
  127. public bool IsTurboPumpAtSpeed => _TurboPump.AtSpeed;
  128. public bool HasPumpError => _MainPump.IsError || !_MainPump.IsRunning;
  129. public bool HasTurboPumpError => _TurboPump.IsError || !_TurboPump.IsRunning;
  130. public bool IsCDA_OK => _CDAPressure.Value;
  131. public bool IsFastPumpOpened => _FastPumpValve.Status;
  132. public bool IsSoftPumpOpened => _SoftPumpValve.Status;
  133. public bool IsMfc1ValveOpened => _Mfc1Valve.Status;
  134. public bool IsMfc2ValveOpened => _Mfc2Valve.Status;
  135. public bool IsMfc3ValveOpened => _Mfc3Valve.Status;
  136. public bool IsMfc4ValveOpened => _Mfc4Valve.Status;
  137. public bool IsMfc5ValveOpened => _Mfc5Valve.Status;
  138. public bool IsMfc6ValveOpened => _Mfc6Valve.Status;
  139. public bool IsMfc7ValveOpened => _Mfc7Valve.Status;
  140. public bool IsMfc8ValveOpened => _Mfc8Valve.Status;
  141. // 压力信号
  142. public bool IsATM => _ATM_sw.Value;
  143. public bool LiftPinIsDown => _LiftPin.OFFFeedback;
  144. public bool LiftPinIsUp => _LiftPin.ONFeedback;
  145. public bool IsATMLoadlock => _ATM_Loadlock_sw.Value;
  146. public bool IsVACLoadLock => LoadlockPressure <= 1000;
  147. public bool IsVAC => _VAC_sw.Value;
  148. public bool IsWaterFlowOk => _Water_Flow.Value;
  149. public bool IsWLK => _WLK_sw.Value;
  150. public bool IsRFGInterlockOn => _RFG_Interlock.Value;
  151. public bool PMLidClosed => _PM_Lid_Closed.Value;
  152. public bool TurboPumpInterlock => _TurboPumpInterlock.Value;
  153. public bool SourceRFFanInterlock => _Source_RF_Fan.Value;
  154. public bool SlitDoorClosed => _PM_SlitDoor_Closed.Value;
  155. public double ProcessPressure => _pressureController.ProcessGauge.Value;
  156. public override double ChamberPressure => _pressureController.PressureGauge.Value;
  157. public double ForelinePressure => _pressureController.ForelineGauge.Value;
  158. public double TargetPressure => _pressureController.TargetPressure;
  159. public double LoadlockPressure => _pressureController.LoadLockGauge.Value;
  160. public double ESCHePressure => _pressureController.ESCHeGauge.Value;
  161. public int ESCOutputVoltage => _ESCHV.OutputVoltage;
  162. public float CoolantInletTempFB => _Chiller.CoolantInletTcFeedback;
  163. public float CoolantOutletTempFB => _Chiller.CoolantOutletTcFeedback;
  164. //Loadlock_Arm
  165. public bool IsLoadlockArmRetract => _LoadLockArm.OFFFeedback;
  166. public bool IsLoadlockArmExtend => _LoadLockArm.ONFeedback;
  167. //Loadlock_Arm DO
  168. public bool LoadlockArmRetract => _LoadLockArm.OFFSetPoint;
  169. public bool LoadlockArmExtend => _LoadLockArm.ONSetPoint;
  170. public float ReflectPower => _Generator.ReflectPower;
  171. public float BiasReflectPower => _GeneratorBias.ReflectPower;
  172. public bool BackSideHeOutOfRange => _backsideHe.OutOfRange;
  173. public new ModuleName Module { get; }
  174. public MovementPosition LiftPinPosition
  175. {
  176. get
  177. {
  178. MovementPosition pos = MovementPosition.Unknown;
  179. if (_LiftPin.ONFeedback && !_LiftPin.OFFFeedback)
  180. {
  181. pos = MovementPosition.Up;
  182. }
  183. else if (!_LiftPin.ONFeedback && _LiftPin.OFFFeedback)
  184. {
  185. pos = MovementPosition.Down;
  186. }
  187. return pos;
  188. }
  189. }
  190. public override bool CheckAtm()
  191. {
  192. return _ATM_sw.Value && ChamberPressure > 700000;
  193. }
  194. public bool CheckSlitDoorOpen()
  195. {
  196. return _slitDoor.State == CylinderState.Open;
  197. }
  198. public bool CheckSlitDoorClose()
  199. {
  200. return _slitDoor.State == CylinderState.Close;
  201. }
  202. public bool CheckLiftUp()
  203. {
  204. return _LiftPin.State == CylinderState.Open;
  205. }
  206. public bool CheckLiftDown()
  207. {
  208. return _LiftPin.State == CylinderState.Close;
  209. }
  210. public double TotalGasSetpoint
  211. {
  212. get
  213. {
  214. double sum = 0;
  215. foreach (var gas in _gasLines)
  216. {
  217. sum += gas.FlowSP;
  218. }
  219. return sum;
  220. }
  221. }
  222. public bool HasGasOutOfRange
  223. {
  224. get
  225. {
  226. foreach (var gas in _gasLines)
  227. {
  228. if (!gas.IsOutOfRange)
  229. return false;
  230. }
  231. return true;
  232. }
  233. }
  234. public JetPM(ModuleName mod) : base(mod.ToString())
  235. {
  236. Module = mod;
  237. _Lid = DEVICE.GetDevice<IoLid>($"{Module}.{VenusDevice.Lid}");
  238. _LidLoadlock = DEVICE.GetDevice<IoLid>($"{Module}.{VenusDevice.LidLoadlock}");
  239. _slitDoor = DEVICE.GetDevice<IoCylinder>($"{Module}.{VenusDevice.SlitDoor}");
  240. _LiftPin = DEVICE.GetDevice<IoCylinder>($"{Module}.{VenusDevice.LiftPin}");
  241. _LoadLockArm = DEVICE.GetDevice<IoCylinder>($"{Module}.{VenusDevice.LoadLockArm}");
  242. _PVN21Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePVN21}");
  243. _PVN22Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePVN22}");
  244. _PV11Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePV11}");
  245. _PV12Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePV12}");
  246. _PV21Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePV21}");
  247. _PV22Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePV22}");
  248. _PV31Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePV31}");
  249. _PV32Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePV32}");
  250. _PV41Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePV41}");
  251. _PV42Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePV42}");
  252. _N2Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveN2}");
  253. _Mfc1Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveMfc1}");
  254. _Mfc2Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveMfc2}");
  255. _Mfc3Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveMfc2}");
  256. _Mfc4Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveMfc2}");
  257. _Mfc5Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveMfc2}");
  258. _Mfc6Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveMfc2}");
  259. _Mfc7Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveMfc2}");
  260. _Mfc8Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveMfc2}");
  261. _PVHe1Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePVHe1}");
  262. _PVHe2Valve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValvePVHe2}");
  263. _GasFinalValve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveGasFinal}");
  264. _SoftPumpValve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveSoftPump}");
  265. _FastPumpValve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveFastPump}");
  266. _TurboPumpPumpingValve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveTurboPumpPumping}");
  267. _TurboPumpPurgeValve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveTurboPumpPurge}");
  268. _GuageValve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveGuage}");
  269. _LoadlockVentValve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveLoadlockVent}");
  270. _LoadlockPumpingValve = DEVICE.GetDevice<IoValve>($"{Module}.{VenusDevice.ValveLoadlockPumping}");
  271. _ATM_sw = DEVICE.GetDevice<IoSensor>($"{Module}.SensorATMSwitch");
  272. _ATM_Loadlock_sw = DEVICE.GetDevice<IoSensor>($"{Module}.SensorLoadlockATMSwitch");
  273. _N2Pressure_sw = DEVICE.GetDevice<IoSensor>($"{Module}.N2PressureOk");
  274. _VAC_sw = DEVICE.GetDevice<IoSensor>($"{Module}.SensorVacSwitch");
  275. _Water_Flow = DEVICE.GetDevice<IoSensor>($"{Module}.SensorWaterFlowOk");
  276. _WLK_sw = DEVICE.GetDevice<IoSensor>($"{Module}.SensorWaterLeakOk");
  277. _CDAPressure = DEVICE.GetDevice<IoSensor>($"{Module}.SensorCDAPressureOk");
  278. _RFG_Interlock = DEVICE.GetDevice<IoSensor>($"{Module}.GeneratorInterlock");
  279. _PM_Lid_Closed = DEVICE.GetDevice<IoSensor>($"{Module}.SensorPMLidClosed");
  280. _Source_RF_Fan = DEVICE.GetDevice<IoSensor>($"{Module}.SensorSourceRFFan");
  281. _PM_SlitDoor_Closed = DEVICE.GetDevice<IoSensor>($"{Module}.SensorSlitDoorClosed");
  282. _TurboPumpInterlock = DEVICE.GetDevice<IoSensor>($"{Module}.TurboPumpInterlock");
  283. _ForelineTC = DEVICE.GetDevice<IoHeater>($"{Module}.ForelineHeater");
  284. _SignalTower = DEVICE.GetDevice<IoSignalTower>($"{Module}.SignalTower");
  285. _CDAPressure = DEVICE.GetDevice<IoSensor>($"{Module}.SensorCDAPressureOk");
  286. _pressureController = DEVICE.GetDevice<IoPressureControl>($"{Module}.{VenusDevice.PressureControl}");
  287. _gasLines = new IoGasStick[8];
  288. for (int index = 0; index < 8; index++)
  289. {
  290. _gasLines[index] = DEVICE.GetDevice<IoGasStick>($"{Module}.GasStick{index + 1}");
  291. }
  292. _gasLineN2 = DEVICE.GetDevice<IoGasStick>($"{Module}.GasStickN2");
  293. _backsideHe = DEVICE.GetDevice<IoBacksideHe>($"{Module}.BacksideHelium");
  294. _MainPump = DEVICE.GetDevice<PumpBase>($"{Module}.{VenusDevice.MainPump}");
  295. // RS232 Dry pump, SKY
  296. if (SC.GetValue<int>($"{mod}.DryPump.CommunicationType") == (int)CommunicationType.RS232)
  297. {
  298. if (SC.GetValue<int>($"{mod}.DryPump.MFG") == (int)DryPumpMFG.SKY)
  299. {
  300. _MainPump = DEVICE.GetDevice<SkyPump>($"{Module}.{VenusDevice.MainPump}");
  301. }
  302. else if (SC.GetValue<int>($"{mod}.DryPump.MFG") == (int)DryPumpMFG.Edwards)
  303. {
  304. _MainPump = DEVICE.GetDevice<EdwardsPump>($"{Module}.{VenusDevice.MainPump}");
  305. }
  306. }
  307. _ESCHV = DEVICE.GetDevice<ESC5HighVoltage>($"{Module}.{VenusDevice.ESCHV}");
  308. _TurboPump = DEVICE.GetDevice<AdixenTurboPump>($"{Module}.{VenusDevice.TurboPump}");
  309. _pendulumValve = DEVICE.GetDevice<PendulumValve>($"{Module}.{VenusDevice.PendulumValve}");
  310. if (SC.GetValue<bool>($"{mod}.Chiller.EnableChiller") &&
  311. SC.GetValue<int>($"{mod}.Chiller.CommunicationType") == (int)CommunicationType.RS232)
  312. {
  313. if (SC.GetValue<int>($"{mod}.Chiller.MFG") == (int)ChillerMFG.SMC)
  314. {
  315. _Chiller = DEVICE.GetDevice<SMCChiller>($"{Module}.{VenusDevice.Chiller}");
  316. }
  317. else if (SC.GetValue<int>($"{mod}.Chiller.MFG") == (int)ChillerMFG.AIRSYS)
  318. {
  319. _Chiller = DEVICE.GetDevice<AIRSYSChiller>($"{Module}.{VenusDevice.Chiller}");
  320. }
  321. }
  322. // RS223 AdTec Generator
  323. if (SC.GetValue<int>($"{mod}.Rf.CommunicationType") == (int)CommunicationType.RS232 &&
  324. SC.GetValue<int>($"{mod}.Rf.MFG") == (int)GeneratorMFG.AdTec)
  325. {
  326. _Generator = DEVICE.GetDevice<AdTecGenerator>($"{Module}.{VenusDevice.Rf}");
  327. }
  328. // Ethernet Comet Generator Bias
  329. if (SC.GetValue<bool>($"{mod}.BiasRf.EnableBiasRF"))
  330. {
  331. if (SC.GetValue<int>($"{mod}.BiasRf.CommunicationType") == (int)CommunicationType.Ethernet &&
  332. SC.GetValue<int>($"{mod}.BiasRf.MFG") == (int)GeneratorMFG.Comet)
  333. {
  334. _GeneratorBias = DEVICE.GetDevice<CometRF>($"{Module}.{VenusDevice.BiasRf}");
  335. }
  336. else if (SC.GetValue<int>($"{mod}.BiasRf.MFG") == (int)GeneratorMFG.AdTec)
  337. {
  338. _GeneratorBias = DEVICE.GetDevice<AdTecGenerator>($"{Module}.{VenusDevice.BiasRf}");
  339. }
  340. }
  341. // RS232 AdTec match
  342. if (SC.GetValue<int>($"{mod}.match.CommunicationType") == (int)CommunicationType.RS232 &&
  343. SC.GetValue<int>($"{mod}.match.MFG") == (int)MatchMFG.AdTec)
  344. {
  345. _Match = DEVICE.GetDevice<AdTecMatch>($"{Module}.{VenusDevice.Match}");
  346. }
  347. // Bias Match
  348. if (SC.GetValue<bool>($"{mod}.BiasMatch.EnableBiasMatch") &&
  349. SC.GetValue<int>($"{mod}.BiasMatch.CommunicationType") == (int)CommunicationType.RS232 &&
  350. SC.GetValue<int>($"{mod}.BiasMatch.MFG") == (int)MatchMFG.AdTec)
  351. {
  352. _BiasMatch = DEVICE.GetDevice<AdTecMatch>($"{Module}.{VenusDevice.BiasMatch}");
  353. }
  354. _epdClient = DEVICE.GetDevice<EPDClient>($"{Module}.{VenusDevice.EndPoint}");
  355. DATA.Subscribe($"{Name}.ForelinePressure", () => ForelinePressure);
  356. DATA.Subscribe($"{Name}.ProcessPressure", () => ProcessPressure);
  357. DATA.Subscribe($"{Name}.ESCHePressure", () => ESCHePressure);
  358. DATA.Subscribe($"{Name}.LoadlockPressure", () => LoadlockPressure);
  359. DATA.Subscribe($"{Name}.IsATM", () => IsATM);
  360. DATA.Subscribe($"{Name}.IsVAC", () => IsVAC);
  361. DATA.Subscribe($"{Name}.LiftPinIsUp", () => LiftPinIsUp);
  362. DATA.Subscribe($"{Name}.LiftPinIsDown", () => LiftPinIsDown);
  363. DATA.Subscribe($"{Name}.PumpIsRunning", () => IsPumpRunning);
  364. DATA.Subscribe($"{Name}.TurboPumpIsRunning", () => IsTurboPumpRunning);
  365. DATA.Subscribe($"{Name}.IsSlitDoorClosed", () => IsSlitDoorClosed);
  366. DATA.Subscribe($"{Name}.IsLidClosed", () => IsLidClosed);
  367. DATA.Subscribe($"{Name}.SRfIsOn", () => _Generator.IsPowerOn);
  368. DATA.Subscribe($"{Name}.BRfIsOn", () => _GeneratorBias.IsPowerOn);
  369. DATA.Subscribe($"{Name}.TurboPumpRotationalSpeed", () => _TurboPump.RotationalSpeed);
  370. DATA.Subscribe($"{Name}.PendulumValve.Position", () => _pendulumValve.Position);
  371. DATA.Subscribe($"{Name}.PendulumValve.Pressure", () => _pendulumValve.Pressure);
  372. DATA.Subscribe($"{Name}.GetPVPosition", () => GetPVPosition());
  373. //DATA.Subscribe($"{Name}.TurboPumpIsRunning", () => _);
  374. OP.Subscribe($"{Module}.SetLiftPin", (cmd, args) => {
  375. if ((bool)args[0] == true)
  376. {
  377. SetLiftPin(MovementPosition.Up, out _);
  378. }
  379. else
  380. {
  381. SetLiftPin(MovementPosition.Down, out _);
  382. }
  383. return true;
  384. });
  385. OP.Subscribe($"{Module}.SetSRf", (cmd, args) => {
  386. GeneratorSetpower((float)args[0]);
  387. GeneratorPowerOn((bool)args[1]);
  388. return true;
  389. });
  390. OP.Subscribe($"{Module}.SetBRf", (cmd, args) => {
  391. SetBiasMatchPosition((float)args[0], (float)args[1]);
  392. GeneratorBiasPowerOn((bool)args[0]);
  393. return true;
  394. });
  395. OP.Subscribe($"{Module}.SetSlitDoor", (cmd, args) => {
  396. SetSlitDoor((bool)args[0], out _);
  397. return true;
  398. });
  399. OP.Subscribe($"{Module}.SetESCHV", (cmd, args) => {
  400. _ESCHV.SetPowerOnOff((bool)args[0]);
  401. return true;
  402. });
  403. OP.Subscribe($"{Module}.SetPVPostion", (cmd, args) => {
  404. SetPVPostion((int)args[0]);
  405. return true;
  406. });
  407. OP.Subscribe($"{Module}.SetPVPressure", (cmd, args) => {
  408. SetPVPressure((int)args[0]);
  409. return true;
  410. });
  411. OP.Subscribe($"{Module}.ClosePump", (cmd, args) => {
  412. TurnDryPump(false);
  413. return true;
  414. });
  415. OP.Subscribe($"{Module}.CloseTurboPump", (cmd, args) => {
  416. TurnTurboPump(false);
  417. return true;
  418. });
  419. _foreline_interlock_pressure = SC.GetValue<double>($"{mod}.ForelineInterlockPressure");
  420. }
  421. public void CloseValves()
  422. {
  423. _PVN21Valve.TurnValve(false, out _);
  424. _PVN22Valve.TurnValve(false, out _);
  425. _PV11Valve.TurnValve(false, out _);
  426. _PV12Valve.TurnValve(false, out _);
  427. _PV21Valve.TurnValve(false, out _);
  428. _PV22Valve.TurnValve(false, out _);
  429. _PV31Valve.TurnValve(false, out _);
  430. _PV32Valve.TurnValve(false, out _);
  431. _PV41Valve.TurnValve(false, out _);
  432. _PV42Valve.TurnValve(false, out _);
  433. _PVHe1Valve.TurnValve(false, out _);
  434. _PVHe2Valve.TurnValve(false, out _);
  435. _GasFinalValve.TurnValve(false, out _);
  436. _SoftPumpValve.TurnValve(false, out _);
  437. _FastPumpValve.TurnValve(false, out _);
  438. _TurboPumpPumpingValve.TurnValve(false, out _);
  439. _TurboPumpPurgeValve.TurnValve(false, out _);
  440. _GuageValve.TurnValve(false, out _);
  441. _LoadlockVentValve.TurnValve(false, out _);
  442. _LoadlockPumpingValve.TurnValve(false, out _);
  443. _N2Valve.TurnValve(false, out _);
  444. _FastPumpValve.TurnValve(false, out _);
  445. _Mfc1Valve.TurnValve(false, out _);
  446. _Mfc2Valve.TurnValve(false, out _);
  447. _Mfc3Valve.TurnValve(false, out _);
  448. _Mfc4Valve.TurnValve(false, out _);
  449. _Mfc5Valve.TurnValve(false, out _);
  450. _Mfc6Valve.TurnValve(false, out _);
  451. _Mfc7Valve.TurnValve(false, out _);
  452. _Mfc8Valve.TurnValve(false, out _);
  453. foreach (var stick in _gasLines)
  454. {
  455. stick.Stop();
  456. }
  457. }
  458. public void TurnDryPump(bool on)
  459. {
  460. //_pressureController.StartPump(on);
  461. _MainPump?.SetPumpOnOff(on);
  462. }
  463. public void TurnTurboPump(bool on)
  464. {
  465. _TurboPump?.SetPumpOnOff(on);
  466. }
  467. public void OpenValve(ValveType vlvType, bool on)
  468. {
  469. switch (vlvType)
  470. {
  471. case ValveType.PVN21:
  472. _PVN21Valve.TurnValve(on, out _);
  473. break;
  474. case ValveType.PVN22:
  475. _PVN22Valve.TurnValve(on, out _);
  476. break;
  477. case ValveType.PV11:
  478. _PV11Valve.TurnValve(on, out _);
  479. break;
  480. case ValveType.PV12:
  481. _PV12Valve.TurnValve(on, out _);
  482. break;
  483. case ValveType.PV21:
  484. _PV21Valve.TurnValve(on, out _);
  485. break;
  486. case ValveType.PV22:
  487. _PV22Valve.TurnValve(on, out _);
  488. break;
  489. case ValveType.PV31:
  490. _PV31Valve.TurnValve(on, out _);
  491. break;
  492. case ValveType.PV32:
  493. _PV32Valve.TurnValve(on, out _);
  494. break;
  495. case ValveType.PV41:
  496. _PV41Valve.TurnValve(on, out _);
  497. break;
  498. case ValveType.PV42:
  499. _PV42Valve.TurnValve(on, out _);
  500. break;
  501. case ValveType.N2:
  502. _N2Valve.TurnValve(on, out _);
  503. break;
  504. case ValveType.PVHe1:
  505. _PVHe1Valve.TurnValve(on, out _);
  506. break;
  507. case ValveType.PVHe2:
  508. _PVHe2Valve.TurnValve(on, out _);
  509. break;
  510. case ValveType.GasFinal:
  511. _GasFinalValve.TurnValve(on, out _);
  512. break;
  513. case ValveType.SoftPump:
  514. _SoftPumpValve.TurnValve(on, out _);
  515. break;
  516. case ValveType.FastPump:
  517. _FastPumpValve.TurnValve(on, out _);
  518. break;
  519. case ValveType.TurboPumpPumping:
  520. _TurboPumpPumpingValve.TurnValve(on, out _);
  521. break;
  522. case ValveType.TurboPumpPurge:
  523. _TurboPumpPurgeValve.TurnValve(on, out _);
  524. break;
  525. case ValveType.Guage:
  526. _GuageValve.TurnValve(on, out _);
  527. break;
  528. case ValveType.LoadlockVent:
  529. _LoadlockVentValve.TurnValve(on, out _);
  530. break;
  531. case ValveType.LoadlockPumping:
  532. _LoadlockPumpingValve.TurnValve(on, out _);
  533. break;
  534. case ValveType.Mfc1:
  535. _Mfc1Valve.TurnValve(on, out _);
  536. break;
  537. case ValveType.Mfc2:
  538. _Mfc2Valve.TurnValve(on, out _);
  539. break;
  540. case ValveType.Mfc3:
  541. _Mfc3Valve.TurnValve(on, out _);
  542. break;
  543. case ValveType.Mfc4:
  544. _Mfc4Valve.TurnValve(on, out _);
  545. break;
  546. case ValveType.Mfc5:
  547. _Mfc5Valve.TurnValve(on, out _);
  548. break;
  549. case ValveType.Mfc6:
  550. _Mfc6Valve.TurnValve(on, out _);
  551. break;
  552. case ValveType.Mfc7:
  553. _Mfc7Valve.TurnValve(on, out _);
  554. break;
  555. case ValveType.Mfc8:
  556. _Mfc8Valve.TurnValve(on, out _);
  557. break;
  558. default:
  559. throw new ArgumentOutOfRangeException($"Argument error {vlvType}-{on}");
  560. }
  561. }
  562. public override void Monitor()
  563. {
  564. foreach (var gas in _gasLines)
  565. {
  566. gas.Monitor();
  567. }
  568. CheckInterlock();
  569. }
  570. private void CheckInterlock()
  571. {
  572. if (ProcessPressure > 100 && _GuageValve.SetPoint)
  573. {
  574. _GuageValve.TurnValve(false, out _);
  575. LOG.Write(eEvent.WARN_DEVICE_INFO, Module, $"Process pressure:{ProcessPressure} exceed 100 mtorr, Guage Valve (DO-31) closed automaticlly.");
  576. }
  577. if(ForelinePressure > _foreline_interlock_pressure)
  578. {
  579. if(_TurboPumpPumpingValve.SetPoint || _TurboPumpPurgeValve.SetPoint || _pendulumValve.IsOpen)
  580. {
  581. _pendulumValve.TurnValve(false);
  582. _TurboPumpPurgeValve.TurnValve(false, out _);
  583. _TurboPumpPumpingValve.TurnValve(false, out _);
  584. LOG.Write(eEvent.WARN_DEVICE_INFO, Module, $"Foreline pressure:{ForelinePressure} exceed {_foreline_interlock_pressure} mtorr, Pendulum valve & PV6 & PV7 closed automaticlly.");
  585. }
  586. }
  587. }
  588. public void BuzzerBlinking(double time)
  589. {
  590. _SignalTower.BuzzerBlinking(time);
  591. }
  592. public void SwitchOnBuzzerAndRed()
  593. {
  594. _SignalTower.SwitchOnBuzzerAndRed("", null);
  595. }
  596. public override void Home()
  597. {
  598. // 与yp讨论过,PM 初始化不需要
  599. SetLiftPin(MovementPosition.Down, out _);
  600. SetSlitDoor(false, out _);
  601. }
  602. public bool SetLiftPin(MovementPosition dirt, out string reason)
  603. {
  604. reason = string.Empty;
  605. switch (dirt)
  606. {
  607. case MovementPosition.Down:
  608. return _LiftPin.SetCylinder(false, out reason);
  609. case MovementPosition.Up:
  610. return _LiftPin.SetCylinder(true, out reason);
  611. case MovementPosition.Left:
  612. case MovementPosition.Right:
  613. case MovementPosition.Middle:
  614. throw new ArgumentException("Movement argument error");
  615. }
  616. return true;
  617. }
  618. public void SetSlitDoor(bool open, out string reason)
  619. {
  620. reason = string.Empty;
  621. if(open)
  622. {
  623. double maxPressureDifference = SC.GetValue<double>("System.PMLLMaxPressureDifference");
  624. if(Math.Abs(LoadlockPressure - ChamberPressure) > maxPressureDifference)
  625. {
  626. reason = $"{Module} and Loadlock pressure difference exceeds the max limit";
  627. LOG.Write(eEvent.ERR_DEVICE_INFO, Module, reason);
  628. return;
  629. }
  630. }
  631. _slitDoor.SetCylinder(open, out reason);
  632. }
  633. public bool RetractWafer()
  634. {
  635. return _LoadLockArm.SetCylinder(false, out _);
  636. }
  637. public bool ExtendWafer()
  638. {
  639. return _LoadLockArm.SetCylinder(true, out _);
  640. }
  641. public bool FlowGas(int gasNum, double val)
  642. {
  643. if (_gasLines.Length <= gasNum)
  644. return false;
  645. _gasLines[gasNum].Flow(val);
  646. return true;
  647. }
  648. public bool StopGas(int gasNum)
  649. {
  650. if (_gasLines.Length <= gasNum)
  651. return false;
  652. _gasLines[gasNum].Stop();
  653. return true;
  654. }
  655. public void StopAllGases()
  656. {
  657. foreach (var line in _gasLines)
  658. {
  659. line.Stop();
  660. }
  661. }
  662. public bool TurnPendulumValve(bool on)
  663. {
  664. return _pendulumValve.TurnValve(on);
  665. }
  666. public bool SetPVPressure(int pressure)
  667. {
  668. return _pendulumValve.SetPressure(pressure);
  669. }
  670. public bool SetPVPostion(int position)
  671. {
  672. return _pendulumValve.SetPosition(position);
  673. }
  674. public int GetPVPosition()
  675. {
  676. return _pendulumValve.Position;
  677. }
  678. public void HeatChiller(double value, double offset)
  679. {
  680. _Chiller?.SetChillerTemp((float)value, (float)offset);
  681. _Chiller?.SetChillerOnOff(true);
  682. }
  683. public bool CheckChillerStatus()
  684. {
  685. return _Chiller != null /*&& _Chiller.IsRunning*/ && !_Chiller.IsError;
  686. }
  687. public void SetGeneratorCommunicationMode(int mode)
  688. {
  689. _Generator?.SetCommunicationMode(mode);
  690. }
  691. public bool GeneratorPowerOn(bool on)
  692. {
  693. if (_Generator == null) return false;
  694. if (on && !IsRFGInterlockOn)
  695. {
  696. LOG.Write(eEvent.ERR_RF, Module, "射频电源 Interlock条件不满足");
  697. return false;
  698. }
  699. return _Generator.SetPowerOnOff(on, out _);
  700. }
  701. public bool GeneratorSetpower(float val)
  702. {
  703. if (_Generator == null) return false;
  704. if (Math.Abs(val) > 0.01)
  705. _Generator.SetPower((ushort)val);
  706. return true;
  707. }
  708. public bool GeneratorBiasPowerOn(bool on)
  709. {
  710. if (_GeneratorBias == null) return false;
  711. if (on && !IsRFGInterlockOn)
  712. {
  713. LOG.Write(eEvent.ERR_RF, Module, "Bias射频电源 Interlock条件不满足");
  714. return false;
  715. }
  716. return _GeneratorBias.SetPowerOnOff(on, out _);
  717. }
  718. public bool GeneratorBiasSetpower(float val)
  719. {
  720. if (_GeneratorBias == null) return false;
  721. if (Math.Abs(val) > 0.01)
  722. _GeneratorBias.SetPower((ushort)val);
  723. return true;
  724. }
  725. public bool GeneratorBiasSetMatchMode(bool val)
  726. {
  727. if (_GeneratorBias == null) return false;
  728. string reason = string.Empty;
  729. _GeneratorBias.SetMatchingAutoMode(val, out reason);
  730. return true;
  731. }
  732. public bool SetMatchPosition(float c1, float c2)
  733. {
  734. if (_Match == null) return false;
  735. string reason = string.Empty;
  736. _Match.SetMatchPosition(c1, c2, out reason);
  737. return true;
  738. }
  739. public bool SetBiasMatchPosition(float c1, float c2)
  740. {
  741. if (_BiasMatch == null) return false;
  742. string reason = string.Empty;
  743. _BiasMatch.SetMatchPosition(c1, c2, out reason);
  744. return true;
  745. }
  746. public bool SetBiasPulseMode(bool on)
  747. {
  748. if (_GeneratorBias == null) return false;
  749. _GeneratorBias.SetPulseMode(on);
  750. return true;
  751. }
  752. public bool SetBiasPulseRateFreq(int nFreq)
  753. {
  754. if (_GeneratorBias == null) return false;
  755. _GeneratorBias.SetPulseRateFreq(nFreq);
  756. return true;
  757. }
  758. public bool SetDiasPulseDutyCycle(int percentage)
  759. {
  760. if (_GeneratorBias == null) return false;
  761. _GeneratorBias.SetPulseDutyCycle(percentage);
  762. return true;
  763. }
  764. public bool SetESCClampVoltage(int nVoltage)
  765. {
  766. if (_ESCHV == null) return false;
  767. return _ESCHV.SetOutputVoltage(nVoltage);
  768. }
  769. public bool CheckGeneratorAndHVInterlock(VenusDevice device)
  770. {
  771. eEvent evt = device == VenusDevice.Rf ? eEvent.ERR_RF : eEvent.ERR_ESC_HV;
  772. string deviceName = device == VenusDevice.Rf ? "RF Generator" : "ESC HV";
  773. if (!PMLidClosed)
  774. {
  775. LOG.Write(evt, Module, $"Cannot Power ON {deviceName} as PM Lid is Open.");
  776. return false;
  777. }
  778. if (!IsVAC)
  779. {
  780. LOG.Write(evt, Module, $"Cannot Power ON {deviceName} as PM is not Vacuum.");
  781. return false;
  782. }
  783. if(!IsWaterFlowOk)
  784. {
  785. LOG.Write(evt, Module, $"Cannot Power ON {deviceName} as Water Flow is OFF.");
  786. return false;
  787. }
  788. if(!IsRFGInterlockOn)
  789. {
  790. LOG.Write(evt, Module, $"Cannot Power ON {deviceName} as Generator Interlock is OFF.");
  791. return false;
  792. }
  793. if(!SourceRFFanInterlock)
  794. {
  795. LOG.Write(evt, Module, $"Cannot Power ON {deviceName} as Source RF Fan is OFF.");
  796. return false;
  797. }
  798. if(!SlitDoorClosed)
  799. {
  800. LOG.Write(evt, Module, $"Cannot Power ON {deviceName} as Slit Door is open.");
  801. return false;
  802. }
  803. return true;
  804. }
  805. #region EndPoint
  806. public void EPDRecipeStart()
  807. {
  808. _epdClient.RecipeStart();
  809. }
  810. public void EPDRecipeStop()
  811. {
  812. _epdClient.RecipeStop();
  813. }
  814. public void EPDStepStart(string cfgName)
  815. {
  816. _epdClient.StepStart(cfgName);
  817. }
  818. public void EPDStepStop()
  819. {
  820. _epdClient.StepStop();
  821. }
  822. #endregion
  823. public void SetBacksideHeFlow(double flow)
  824. {
  825. if (_backsideHe == null) return ;
  826. _backsideHe.Flow(flow);
  827. }
  828. public bool SetBacksideHePressure(int mTorr)
  829. {
  830. if (_backsideHe == null) return false;
  831. return _backsideHe.SetBacksideHelium(mTorr);
  832. }
  833. public bool SetBacksideHeThreshold(int nMin, int nMax)
  834. {
  835. if (_backsideHe == null) return false;
  836. return _backsideHe.SetFlowThreshold(nMin, nMax);
  837. }
  838. }
  839. }