ProcessDefine.cs 61 KB

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  1. using System;
  2. using System.Collections.Generic;
  3. //using System.
  4. using Venus_RT.Devices;
  5. using Aitex.Core.RT.Log;
  6. using Venus_Core;
  7. using Aitex.Core.RT.SCCore;
  8. using Aitex.Core.RT.Tolerance;
  9. using System.Diagnostics;
  10. using MECF.Framework.Common.DBCore;
  11. //#pragma warning disable 0436
  12. namespace Venus_RT.Modules.PMs
  13. {
  14. class ProcessHelper
  15. {
  16. protected JetPMBase Chamber;
  17. private string Module;
  18. public RecipeHead m_RecipeHead;
  19. private static Dictionary<string, Func<ProcessUnitBase, RecipeStep, RState>> startHelper = new Dictionary<string, Func<ProcessUnitBase, RecipeStep, RState>>();
  20. private static Dictionary<string, Func<ProcessUnitBase, RecipeStep, RState>> checkerHelper = new Dictionary<string, Func<ProcessUnitBase, RecipeStep, RState>>();
  21. private static Dictionary<string, Action<ProcessUnitBase, RecipeStep>> endHelper = new Dictionary<string, Action<ProcessUnitBase, RecipeStep>>();
  22. private List<float> rfMatchC1 = new List<float>();
  23. private List<float> rfMatchC2 = new List<float>();
  24. private int rfMatchC1C2Index = 0;
  25. private List<float> biasRfMatchC1 = new List<float>();
  26. private List<float> biasRfMatchC2 = new List<float>();
  27. private int biasRfMatchC1C2Index = 0;
  28. public bool isLoop = false;
  29. public int loopsteps = 0;
  30. public int currentStepIndex = 0;
  31. private bool biasRFSetPointFlag = true;
  32. private double _scRFPowerAlarmTime;
  33. private double _scBiasRFPowerAlarmTime;
  34. private RecipeToleranceChecker _GasFlowToleranceChecker;
  35. private RecipeToleranceChecker _RFToleranceChecker;
  36. private RecipeToleranceChecker _BiasRFToleranceChecker;
  37. //private RecipeToleranceChecker _HeliumToleranceChecker;
  38. private RecipeToleranceChecker _PressureToleranceChecker;
  39. private RecipeToleranceChecker _HighTemperatureToleranceChecker;
  40. private RecipeToleranceChecker _MagnetToleranceChecker;
  41. private bool _isEnableMatchC1C2Offset;
  42. private int _matchC1C2OffsetValue;
  43. private bool _isEnableBiasMatchC1C2Offset;
  44. private int _biasMatchC1C2OffsetValue;
  45. private bool _isInstalledEPD;
  46. private Stopwatch _lastEPDStepTimeStopwatch;
  47. public long lastEPDStepTime;
  48. private Fdc _fdc;
  49. private string _RecipeId;
  50. public ProcessHelper(JetPMBase pm)
  51. {
  52. Chamber = pm;
  53. Module = pm.Module.ToString();
  54. Init();
  55. _GasFlowToleranceChecker = new RecipeToleranceChecker(Module);
  56. _RFToleranceChecker = new RecipeToleranceChecker(Module);
  57. _BiasRFToleranceChecker = new RecipeToleranceChecker(Module);
  58. //_HeliumToleranceChecker = new RecipeToleranceChecker(Module);
  59. _PressureToleranceChecker = new RecipeToleranceChecker(Module);
  60. _HighTemperatureToleranceChecker = new RecipeToleranceChecker(Module);
  61. _MagnetToleranceChecker = new RecipeToleranceChecker(Module);
  62. if (Chamber.ChamberType == JetChamber.Kepler2300 || Chamber.ChamberType == JetChamber.VenusSE || Chamber.ChamberType == JetChamber.VenusDE)
  63. {
  64. _isInstalledEPD = SC.GetValue<bool>($"{Module}.EPD.IsEnabled");
  65. }
  66. if (_isInstalledEPD)
  67. {
  68. _lastEPDStepTimeStopwatch = new Stopwatch();
  69. }
  70. }
  71. private void Init()
  72. {
  73. startHelper[$"{Module}.PressureByPressureModeUnit"] = (ProcessUnitBase unit, RecipeStep step) => PressureByPressureModeUnit_Start(unit, step);
  74. checkerHelper[$"{Module}.PressureByPressureModeUnit"] = (ProcessUnitBase unit, RecipeStep step) => PressureByPressureModeUnit_Check(unit, step);
  75. endHelper[$"{Module}.PressureByPressureModeUnit"] = (ProcessUnitBase unit, RecipeStep step) => PressureByPressureModeUnit_End(unit, step);
  76. //startHelper [$"{Module}.PressureByValveModeUnit"] = (ProcessUnitBase unit, RecipeStep step) => PressureByValveModeUnit_Start(unit, step);
  77. //checkerHelper [$"{Module}.PressureByValveModeUnit"] = (ProcessUnitBase unit, RecipeStep step) => PressureByValveModeUnit_Check(unit, step);
  78. //endHelper [$"{Module}.PressureByValveModeUnit"] = (ProcessUnitBase unit, RecipeStep step) => PressureByValveModeUnit_End(unit, step);
  79. startHelper[$"{Module}.TCPUnit"] = (ProcessUnitBase unit, RecipeStep step) => TCPUnit_Start(unit, step);
  80. checkerHelper[$"{Module}.TCPUnit"] = (ProcessUnitBase unit, RecipeStep step) => TCPUnit_Check(unit, step);
  81. endHelper[$"{Module}.TCPUnit"] = (ProcessUnitBase unit, RecipeStep step) => TCPUnit_End(unit, step);
  82. startHelper[$"{Module}.BiasUnit"] = (ProcessUnitBase unit, RecipeStep step) => BiasUnit_Start(unit, step);
  83. checkerHelper[$"{Module}.BiasUnit"] = (ProcessUnitBase unit, RecipeStep step) => BiasUnit_Check(unit, step);
  84. endHelper[$"{Module}.BiasUnit"] = (ProcessUnitBase unit, RecipeStep step) => BiasUnit_End(unit, step);
  85. startHelper[$"{Module}.GasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => GasControlUnit_Start(unit, step);
  86. checkerHelper[$"{Module}.GasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => GasControlUnit_Check(unit, step);
  87. endHelper[$"{Module}.GasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => GasControlUnit_End(unit, step);
  88. startHelper[$"{Module}.VenusSEGasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => VenusSEGasControlUnit_Start(unit, step);
  89. checkerHelper[$"{Module}.VenusSEGasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => VenusSEGasControlUnit_Check(unit, step);
  90. endHelper[$"{Module}.VenusSEGasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => VenusSEGasControlUnit_End(unit, step);
  91. startHelper[$"{Module}.VenusDEGasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => VenusDEGasControlUnit_Start(unit, step);
  92. checkerHelper[$"{Module}.VenusDEGasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => VenusDEGasControlUnit_Check(unit, step);
  93. endHelper[$"{Module}.VenusDEGasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => VenusDEGasControlUnit_End(unit, step);
  94. startHelper[$"{Module}.ESCHVUnit"] = (ProcessUnitBase unit, RecipeStep step) => ESCHVUnit_Start(unit, step);
  95. checkerHelper[$"{Module}.ESCHVUnit"] = (ProcessUnitBase unit, RecipeStep step) => ESCHVUnit_Check(unit, step);
  96. endHelper[$"{Module}.ESCHVUnit"] = (ProcessUnitBase unit, RecipeStep step) => ESCHVUnit_End(unit, step);
  97. startHelper[$"{Module}.ProcessKitUnit"] = (ProcessUnitBase unit, RecipeStep step) => ProcessKitUnit_Start(unit, step);
  98. checkerHelper[$"{Module}.ProcessKitUnit"] = (ProcessUnitBase unit, RecipeStep step) => ProcessKitUnit_Check(unit, step);
  99. endHelper[$"{Module}.ProcessKitUnit"] = (ProcessUnitBase unit, RecipeStep step) => ProcessKitUnit_End(unit, step);
  100. startHelper[$"{Module}.Kepler2200GasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => Kepler2200GasControlUnit_Start(unit, step);
  101. checkerHelper[$"{Module}.Kepler2200GasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => Kepler2200GasControlUnit_Check(unit, step);
  102. endHelper[$"{Module}.Kepler2200GasControlUnit"] = (ProcessUnitBase unit, RecipeStep step) => Kepler2200GasControlUnit_End(unit, step);
  103. startHelper[$"{Module}.HeaterUnit"] = (ProcessUnitBase unit, RecipeStep step) => HeaterUnit_Start(unit, step);
  104. checkerHelper[$"{Module}.HeaterUnit"] = (ProcessUnitBase unit, RecipeStep step) => HeaterUnit_Check(unit, step);
  105. endHelper[$"{Module}.HeaterUnit"] = (ProcessUnitBase unit, RecipeStep step) => HeaterUnit_End(unit, step);
  106. startHelper[$"{Module}.RFBoxUnit"] = (ProcessUnitBase unit, RecipeStep step) => RFBoxUnit_Start(unit, step);
  107. checkerHelper[$"{Module}.RFBoxUnit"] = (ProcessUnitBase unit, RecipeStep step) => RFBoxUnit_Check(unit, step);
  108. endHelper[$"{Module}.RFBoxUnit"] = (ProcessUnitBase unit, RecipeStep step) => RFBoxUnit_End(unit, step);
  109. startHelper[$"{Module}.MagnetUnit"] = (ProcessUnitBase unit, RecipeStep step) => MagnetUnit_Start(unit, step);
  110. checkerHelper[$"{Module}.MagnetUnit"] = (ProcessUnitBase unit, RecipeStep step) => MagnetUnit_Check(unit, step);
  111. endHelper[$"{Module}.MagnetUnit"] = (ProcessUnitBase unit, RecipeStep step) => MagnetUnit_End(unit, step);
  112. _fdc = new Fdc(Module);
  113. }
  114. private RState PressureByPressureModeUnit_Start(ProcessUnitBase unit, RecipeStep step)
  115. {
  116. var ProcessUnit = unit as PressureByPressureModeUnit;
  117. List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  118. _PressureToleranceChecker.IsStable = true;
  119. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  120. {
  121. toleranceObjects.Add(new ToleranceObject("Pressure", ProcessUnit.StartValue, ProcessUnit.StartValueWarningRange, ProcessUnit.StartValueAlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  122. _PressureToleranceChecker.Start(toleranceObjects, step.Type == StepType.Stable);
  123. }
  124. if (ProcessUnit.PressureUnitMode == PressureUnitMode.Pressure)
  125. {
  126. if (Chamber.SetPVPressure(ProcessUnit.StartValue))
  127. {
  128. return RState.Running;
  129. }
  130. }
  131. else if (ProcessUnit.PressureUnitMode == PressureUnitMode.Valve)
  132. {
  133. if (Chamber.SetPVPostion(ProcessUnit.StartValue))
  134. {
  135. return RState.Running;
  136. }
  137. }
  138. return RState.Failed;
  139. }
  140. private RState PressureByPressureModeUnit_Check(ProcessUnitBase unit, RecipeStep step)
  141. {
  142. var ProcessUnit = unit as PressureByPressureModeUnit;
  143. if (ProcessUnit.EnableRamp)
  144. {
  145. if (ProcessUnit.PressureUnitMode == PressureUnitMode.Pressure)
  146. {
  147. if (Chamber.SetPVPressure(ProcessUnit.StartValue + (int)((ProcessUnit.TargetValue - ProcessUnit.StartValue) * step.RampFactor())))
  148. return RState.Running;
  149. else
  150. return RState.Failed;
  151. }
  152. else if (ProcessUnit.PressureUnitMode == PressureUnitMode.Valve)
  153. {
  154. if (Chamber.SetPVPostion(ProcessUnit.StartValue + (int)((ProcessUnit.TargetValue - ProcessUnit.StartValue) * step.RampFactor())))
  155. return RState.Running;
  156. else
  157. return RState.Failed;
  158. }
  159. }
  160. if (ProcessUnit.PressureUnitMode == PressureUnitMode.Pressure && ProcessUnit.ToleranceMode != ToleranceMode.None)
  161. {
  162. return _PressureToleranceChecker.Monitor(Chamber.PendulumPressure);
  163. }
  164. else if (ProcessUnit.PressureUnitMode == PressureUnitMode.Valve && ProcessUnit.ToleranceMode != ToleranceMode.None)
  165. {
  166. return _PressureToleranceChecker.Monitor(Chamber.PendulumPosition);
  167. }
  168. return RState.Running;
  169. }
  170. private void PressureByPressureModeUnit_End(ProcessUnitBase unit, RecipeStep step)
  171. {
  172. var ProcessUnit = unit as PressureByPressureModeUnit;
  173. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  174. {
  175. _PressureToleranceChecker.End();
  176. }
  177. }
  178. private RState TCPUnit_Start(ProcessUnitBase unit, RecipeStep step)
  179. {
  180. _isEnableMatchC1C2Offset = SC.GetValue<bool>($"{Module}.Match.EnableC1C2StepOffset");
  181. _matchC1C2OffsetValue = SC.GetValue<int>($"{Module}.Match.C1C2StepOffsetValue");
  182. var ProcessUnit = unit as TCPUnit;
  183. List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  184. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  185. {
  186. toleranceObjects.Add(new ToleranceObject("RF", ProcessUnit.RFPower, ProcessUnit.RFPowerWarningRange, ProcessUnit.RFPowerAlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  187. _RFToleranceChecker.Start(toleranceObjects, step.Type == StepType.Stable);
  188. }
  189. float p1;
  190. float p2;
  191. if (ProcessUnit.C1 > 0)
  192. {
  193. p1 = ProcessUnit.C1;
  194. }
  195. else
  196. {
  197. p1 = ProcessUnit.AutoC1;
  198. }
  199. if (ProcessUnit.C2 > 0)
  200. {
  201. p2 = ProcessUnit.C2;
  202. }
  203. else
  204. {
  205. p2 = ProcessUnit.AutoC2;
  206. }
  207. if (_isEnableMatchC1C2Offset = false || Math.Abs(Chamber.RFMatchC1 - p1) > _matchC1C2OffsetValue || Math.Abs(Chamber.RFMatchC2 - p2) > _matchC1C2OffsetValue)
  208. {
  209. Chamber.SetMatchPosition(p1, p2);
  210. }
  211. if (ProcessUnit.RFPower > 5)
  212. {
  213. Chamber.GeneratorSetpower(ProcessUnit.RFPower);
  214. Chamber.GeneratorPowerOn(true);
  215. }
  216. else
  217. {
  218. Chamber.GeneratorSetpower(0);
  219. Chamber.GeneratorPowerOn(false);
  220. }
  221. if (ProcessUnit.MatchWorkMode == MatchWorkMode.Auto)
  222. {
  223. Chamber.SetMatchWorkMode(MatchWorkMode.Auto);
  224. }
  225. else if (ProcessUnit.MatchWorkMode == MatchWorkMode.Manual)
  226. {
  227. Chamber.SetMatchWorkMode(MatchWorkMode.Manual);
  228. }
  229. _scRFPowerAlarmTime = SC.GetValue<double>($"{Chamber.Name}.Rf.PowerAlarmTime");
  230. rfMatchC1.Clear();
  231. rfMatchC1.Clear();
  232. rfMatchC1C2Index = 0;
  233. return RState.Running;
  234. }
  235. private RState TCPUnit_Check(ProcessUnitBase unit, RecipeStep step)
  236. {
  237. var ProcessUnit = unit as TCPUnit;
  238. if (ProcessUnit.MaxReflectedPower > 0 && Chamber.ReflectPower > ProcessUnit.MaxReflectedPower && step.ElapsedTime() > _scRFPowerAlarmTime * 1000)
  239. {
  240. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} failed, RF Reflect Power:{Chamber.ReflectPower} exceeds the Max Limit:{ProcessUnit.MaxReflectedPower}");
  241. return RState.Failed;
  242. }
  243. if (step.ElapsedTime() > m_RecipeHead.RFHoldTime * 1000)
  244. {
  245. Chamber.GeneratorSetpower(0);
  246. Chamber.GeneratorPowerOn(false);
  247. }
  248. if (step.ElapsedTime() > rfMatchC1C2Index * 1000)
  249. {
  250. rfMatchC1.Add(Chamber.RFMatchC1);
  251. rfMatchC2.Add(Chamber.RFMatchC2);
  252. rfMatchC1C2Index += 1;
  253. }
  254. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  255. {
  256. return _RFToleranceChecker.Monitor(Chamber.ForwardPower);
  257. }
  258. return RState.Running;
  259. }
  260. private void TCPUnit_End(ProcessUnitBase unit, RecipeStep step)
  261. {
  262. var ProcessUnit = unit as TCPUnit;
  263. if (rfMatchC1.Count >= 6)
  264. {
  265. float allValue = 0;
  266. for (int i = 4; i < rfMatchC1.Count; i++)
  267. {
  268. allValue += rfMatchC1[i];
  269. }
  270. var average = allValue / (rfMatchC1.Count - 4);
  271. ProcessUnit.AutoC1 = (int)average;
  272. }
  273. if (rfMatchC2.Count >= 6)
  274. {
  275. float allValue = 0;
  276. for (int i = 4; i < rfMatchC2.Count; i++)
  277. {
  278. allValue += rfMatchC2[i];
  279. }
  280. var average = allValue / (rfMatchC2.Count - 4);
  281. ProcessUnit.AutoC2 = (int)average;
  282. }
  283. rfMatchC1.Clear();
  284. rfMatchC2.Clear();
  285. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  286. {
  287. _RFToleranceChecker.End();
  288. }
  289. }
  290. private RState BiasUnit_Start(ProcessUnitBase unit, RecipeStep step)
  291. {
  292. _isEnableBiasMatchC1C2Offset = SC.GetValue<bool>($"{Module}.BiasMatch.EnableC1C2StepOffset");
  293. _biasMatchC1C2OffsetValue = SC.GetValue<int>($"{Module}.BiasMatch.C1C2StepOffsetValue");
  294. var ProcessUnit = unit as BiasUnit;
  295. float p1;
  296. float p2;
  297. if (ProcessUnit.BiasC1 > 0)
  298. {
  299. p1 = ProcessUnit.BiasC1;
  300. }
  301. else
  302. {
  303. p1 = ProcessUnit.AutoBiasC1;
  304. }
  305. if (ProcessUnit.BiasC2 > 0)
  306. {
  307. p2 = ProcessUnit.BiasC2;
  308. }
  309. else
  310. {
  311. p2 = ProcessUnit.AutoBiasC2;
  312. }
  313. if (_isEnableBiasMatchC1C2Offset == false || Math.Abs(Chamber.BiasRFMatchC1 - p1) > _biasMatchC1C2OffsetValue || Math.Abs(Chamber.BiasRFMatchC2 - p2) > _biasMatchC1C2OffsetValue)
  314. {
  315. Chamber.SetBiasMatchPosition(p1, p2);
  316. }
  317. if (ProcessUnit.BiasRFPower > 5)
  318. {
  319. Chamber.GeneratorBiasPowerOn(true);
  320. if ((ProcessUnit.EnableRamp == false))
  321. {
  322. Chamber.GeneratorBiasSetpower(ProcessUnit.BiasRFPower);
  323. }
  324. }
  325. else
  326. {
  327. Chamber.GeneratorBiasPowerOn(false);
  328. Chamber.GeneratorBiasSetpower(0);
  329. }
  330. if (ProcessUnit.BiasMatchWorkMode == MatchWorkMode.Auto)
  331. {
  332. Chamber.SetBiasMatchWorkMode(MatchWorkMode.Auto);
  333. }
  334. else if (ProcessUnit.BiasMatchWorkMode == MatchWorkMode.Manual)
  335. {
  336. Chamber.SetBiasMatchWorkMode(MatchWorkMode.Manual);
  337. }
  338. if (ProcessUnit.BiasGeneratorMode == GeneratorMode.Pulsing)
  339. {
  340. Chamber.SetBiasPulseMode(true);
  341. Chamber.SetBiasPulseRateFreq(ProcessUnit.PulseRateFreq);
  342. Chamber.SetDiasPulseDutyCycle(ProcessUnit.PulseDutyCycle);
  343. }
  344. else
  345. {
  346. Chamber.SetBiasPulseMode(false);
  347. }
  348. List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  349. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  350. {
  351. toleranceObjects.Add(new ToleranceObject("BiasRF", ProcessUnit.BiasRFPower, ProcessUnit.RFPowerWarningRange, ProcessUnit.RFPowerAlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  352. _BiasRFToleranceChecker.Start(toleranceObjects, step.Type == StepType.Stable);
  353. }
  354. _scBiasRFPowerAlarmTime = SC.GetValue<double>($"{Chamber.Name}.BiasRf.PowerAlarmTime");
  355. biasRfMatchC1.Clear();
  356. biasRfMatchC1.Clear();
  357. biasRfMatchC1C2Index = 0;
  358. biasRFSetPointFlag = true;
  359. return RState.Running;
  360. }
  361. private RState BiasUnit_Check(ProcessUnitBase unit, RecipeStep step)
  362. {
  363. //var _scPowerAlarmTime = SC.GetValue<double>($"{Chamber.Name}.BiasRf.PowerAlarmTime");
  364. var ProcessUnit = unit as BiasUnit;
  365. if (ProcessUnit.BiasMaxReflectedPower > 0 && Chamber.BiasReflectPower > ProcessUnit.BiasMaxReflectedPower && step.ElapsedTime() > _scBiasRFPowerAlarmTime * 1000)
  366. {
  367. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} failed, Bias Reflect Power:{Chamber.BiasReflectPower} exceeds the Max Limit:{ProcessUnit.BiasMaxReflectedPower}");
  368. return RState.Failed;
  369. }
  370. if (step.ElapsedTime() > m_RecipeHead.BiasRFHoldTime * 1000)
  371. {
  372. Chamber.GeneratorBiasSetpower(0);
  373. Chamber.GeneratorBiasPowerOn(false);
  374. }
  375. if (step.ElapsedTime() > biasRfMatchC1C2Index * 1000)
  376. {
  377. biasRfMatchC1.Add(Chamber.BiasRFMatchC1);
  378. biasRfMatchC2.Add(Chamber.BiasRFMatchC2);
  379. biasRfMatchC1C2Index += 1;
  380. }
  381. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  382. {
  383. return _BiasRFToleranceChecker.Monitor(Chamber.BiasForwardPower);
  384. }
  385. if (ProcessUnit.EnableRamp)
  386. {
  387. //if (step.ElapsedTime() <= 500*cycleIndex)
  388. //{
  389. // return RState.Running;
  390. //}
  391. //cycleIndex += 1;
  392. if (ProcessUnit.TargetMode == TargetMode.Cycle)
  393. {
  394. if (biasRFSetPointFlag == true)
  395. {
  396. biasRFSetPointFlag = false;
  397. Chamber.GeneratorBiasSetpower((float)((ProcessUnit.BiasRFPower + (float)((float)(ProcessUnit.TargetBiasRFPower - ProcessUnit.BiasRFPower) / ((float)(loopsteps - 1) / (float)(currentStepIndex))))));
  398. }
  399. //float rampFactor = (float)currentStepIndex / (float)(loopsteps-1);
  400. //double rampFactor = step.RampFactor();
  401. //Chamber.GeneratorBiasSetpower((float)((ProcessUnit.BiasRFPower+ (ProcessUnit.TargetBiasRFPower - ProcessUnit.BiasRFPower)/(loopsteps)*currentStepIndex) + ((double)(ProcessUnit.TargetBiasRFPower - ProcessUnit.BiasRFPower) / ((double)loopsteps)) * rampFactor));
  402. }
  403. else
  404. {
  405. //double rampFactor = step.RampFactor();
  406. //Chamber.GeneratorBiasSetpower((float)(ProcessUnit.BiasRFPower + (ProcessUnit.TargetBiasRFPower - ProcessUnit.BiasRFPower) * rampFactor));
  407. }
  408. }
  409. return RState.Running;
  410. }
  411. private void BiasUnit_End(ProcessUnitBase unit, RecipeStep step)
  412. {
  413. var ProcessUnit = unit as BiasUnit;
  414. //Chamber.GeneratorBiasSetpower(0);
  415. //Chamber.GeneratorBiasPowerOn(false);
  416. if (biasRfMatchC1.Count >= 6)
  417. {
  418. float allValue = 0;
  419. for (int i = 4; i < biasRfMatchC1.Count; i++)
  420. {
  421. allValue += biasRfMatchC1[i];
  422. }
  423. var average = allValue / (biasRfMatchC1.Count - 4);
  424. ProcessUnit.AutoBiasC1 = (int)average;
  425. }
  426. if (biasRfMatchC2.Count >= 6)
  427. {
  428. float allValue = 0;
  429. for (int i = 4; i < biasRfMatchC2.Count; i++)
  430. {
  431. allValue += biasRfMatchC2[i];
  432. }
  433. var average = allValue / (biasRfMatchC2.Count - 4);
  434. ProcessUnit.AutoBiasC2 = (int)average;
  435. }
  436. biasRfMatchC1.Clear();
  437. biasRfMatchC1.Clear();
  438. biasRfMatchC1C2Index = 0;
  439. //cycleIndex = 0;
  440. biasRFSetPointFlag = true;
  441. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  442. {
  443. _BiasRFToleranceChecker.End();
  444. }
  445. }
  446. private RState GasControlUnit_Start(ProcessUnitBase unit, RecipeStep step)
  447. {
  448. Chamber.OpenValve(ValveType.GasFinal, true);
  449. var ProcessUnit = unit as GasControlUnit;
  450. if (ProcessUnit.Gas1 >= 1)
  451. {
  452. Chamber.FlowGas(0, ProcessUnit.Gas1);
  453. }
  454. else
  455. {
  456. Chamber.FlowGas(0, 0);
  457. }
  458. if (ProcessUnit.Gas2 >= 1)
  459. {
  460. Chamber.FlowGas(1, ProcessUnit.Gas2);
  461. }
  462. else
  463. {
  464. Chamber.FlowGas(1, 0);
  465. }
  466. if (ProcessUnit.Gas3 >= 1)
  467. {
  468. Chamber.FlowGas(2, ProcessUnit.Gas3);
  469. }
  470. else
  471. {
  472. Chamber.FlowGas(2, 0);
  473. }
  474. if (ProcessUnit.Gas4 >= 1)
  475. {
  476. Chamber.FlowGas(3, ProcessUnit.Gas4);
  477. }
  478. else
  479. {
  480. Chamber.FlowGas(3, 0);
  481. }
  482. if (ProcessUnit.Gas5 >= 1)
  483. {
  484. Chamber.FlowGas(4, ProcessUnit.Gas5);
  485. }
  486. else
  487. {
  488. Chamber.FlowGas(4, 0);
  489. }
  490. if (ProcessUnit.Gas6 >= 1)
  491. {
  492. Chamber.FlowGas(5, ProcessUnit.Gas6);
  493. }
  494. else
  495. {
  496. Chamber.FlowGas(5, 0);
  497. }
  498. if (ProcessUnit.Gas7 >= 1)
  499. {
  500. Chamber.FlowGas(6, ProcessUnit.Gas7);
  501. }
  502. else
  503. {
  504. Chamber.FlowGas(6, 0);
  505. }
  506. if (ProcessUnit.Gas8 >= 1)
  507. {
  508. Chamber.FlowGas(7, ProcessUnit.Gas8);
  509. }
  510. else
  511. {
  512. Chamber.FlowGas(7, 0);
  513. }
  514. _GasFlowToleranceChecker.IsStable = true;
  515. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  516. {
  517. List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  518. toleranceObjects.Add(new ToleranceObject("Gas1", ProcessUnit.Gas1, ProcessUnit.Gas1WarningRange, ProcessUnit.Gas1AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  519. toleranceObjects.Add(new ToleranceObject("Gas2", ProcessUnit.Gas2, ProcessUnit.Gas2WarningRange, ProcessUnit.Gas2AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  520. toleranceObjects.Add(new ToleranceObject("Gas3", ProcessUnit.Gas3, ProcessUnit.Gas3WarningRange, ProcessUnit.Gas3AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  521. toleranceObjects.Add(new ToleranceObject("Gas4", ProcessUnit.Gas4, ProcessUnit.Gas4WarningRange, ProcessUnit.Gas4AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  522. toleranceObjects.Add(new ToleranceObject("Gas5", ProcessUnit.Gas5, ProcessUnit.Gas5WarningRange, ProcessUnit.Gas5AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  523. toleranceObjects.Add(new ToleranceObject("Gas6", ProcessUnit.Gas6, ProcessUnit.Gas6WarningRange, ProcessUnit.Gas6AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  524. toleranceObjects.Add(new ToleranceObject("Gas7", ProcessUnit.Gas7, ProcessUnit.Gas7WarningRange, ProcessUnit.Gas7AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  525. toleranceObjects.Add(new ToleranceObject("Gas8", ProcessUnit.Gas8, ProcessUnit.Gas8WarningRange, ProcessUnit.Gas8AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  526. _GasFlowToleranceChecker.Start(toleranceObjects, step.Type == StepType.Stable);
  527. }
  528. return RState.Running;
  529. }
  530. private RState GasControlUnit_Check(ProcessUnitBase unit, RecipeStep step)
  531. {
  532. var ProcessUnit = unit as GasControlUnit;
  533. if (ProcessUnit.EnableRamp)
  534. {
  535. double rampFactor = step.RampFactor();
  536. Chamber.FlowGas(0, ProcessUnit.Gas1 + (ProcessUnit.Gas1Target - ProcessUnit.Gas1) * rampFactor);
  537. Chamber.FlowGas(1, ProcessUnit.Gas2 + (ProcessUnit.Gas2Target - ProcessUnit.Gas2) * rampFactor);
  538. Chamber.FlowGas(2, ProcessUnit.Gas3 + (ProcessUnit.Gas3Target - ProcessUnit.Gas3) * rampFactor);
  539. Chamber.FlowGas(3, ProcessUnit.Gas4 + (ProcessUnit.Gas4Target - ProcessUnit.Gas4) * rampFactor);
  540. Chamber.FlowGas(4, ProcessUnit.Gas5 + (ProcessUnit.Gas5Target - ProcessUnit.Gas5) * rampFactor);
  541. Chamber.FlowGas(5, ProcessUnit.Gas6 + (ProcessUnit.Gas6Target - ProcessUnit.Gas6) * rampFactor);
  542. Chamber.FlowGas(6, ProcessUnit.Gas7 + (ProcessUnit.Gas7Target - ProcessUnit.Gas7) * rampFactor);
  543. Chamber.FlowGas(7, ProcessUnit.Gas8 + (ProcessUnit.Gas8Target - ProcessUnit.Gas8) * rampFactor);
  544. }
  545. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  546. {
  547. return _GasFlowToleranceChecker.Monitor(Chamber.MFC1FeedBack, Chamber.MFC2FeedBack, Chamber.MFC3FeedBack, Chamber.MFC4FeedBack, Chamber.MFC5FeedBack, Chamber.MFC6FeedBack, Chamber.MFC7FeedBack, Chamber.MFC8FeedBack);
  548. }
  549. return RState.Running;
  550. }
  551. private void GasControlUnit_End(ProcessUnitBase unit, RecipeStep step)
  552. {
  553. var ProcessUnit = unit as GasControlUnit;
  554. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  555. {
  556. _GasFlowToleranceChecker.End();
  557. }
  558. }
  559. private RState Kepler2200GasControlUnit_Start(ProcessUnitBase unit, RecipeStep step)
  560. {
  561. List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  562. Chamber.OpenValve(ValveType.GasFinal, true);
  563. var ProcessUnit = unit as Kepler2200GasControlUnit;
  564. if (ProcessUnit.Gas1 >= 1)
  565. {
  566. Chamber.FlowGas(0, ProcessUnit.Gas1);
  567. }
  568. else
  569. {
  570. Chamber.FlowGas(0, 0);
  571. }
  572. if (ProcessUnit.Gas2 >= 1)
  573. {
  574. Chamber.FlowGas(1, ProcessUnit.Gas2);
  575. }
  576. else
  577. {
  578. Chamber.FlowGas(1, 0);
  579. }
  580. if (ProcessUnit.Gas3 >= 1)
  581. {
  582. Chamber.FlowGas(2, ProcessUnit.Gas3);
  583. }
  584. else
  585. {
  586. Chamber.FlowGas(2, 0);
  587. }
  588. if (ProcessUnit.Gas4 >= 1)
  589. {
  590. Chamber.FlowGas(3, ProcessUnit.Gas4);
  591. }
  592. else
  593. {
  594. Chamber.FlowGas(3, 0);
  595. }
  596. if (ProcessUnit.Gas5 >= 1)
  597. {
  598. Chamber.FlowGas(4, ProcessUnit.Gas5);
  599. }
  600. else
  601. {
  602. Chamber.FlowGas(4, 0);
  603. }
  604. if (ProcessUnit.Gas6 >= 1)
  605. {
  606. Chamber.FlowGas(5, ProcessUnit.Gas6);
  607. }
  608. else
  609. {
  610. Chamber.FlowGas(5, 0);
  611. }
  612. _GasFlowToleranceChecker.IsStable = true;
  613. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  614. {
  615. toleranceObjects.Add(new ToleranceObject("Gas1", ProcessUnit.Gas1, ProcessUnit.Gas1WarningRange, ProcessUnit.Gas1AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  616. toleranceObjects.Add(new ToleranceObject("Gas2", ProcessUnit.Gas2, ProcessUnit.Gas2WarningRange, ProcessUnit.Gas2AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  617. toleranceObjects.Add(new ToleranceObject("Gas3", ProcessUnit.Gas3, ProcessUnit.Gas3WarningRange, ProcessUnit.Gas3AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  618. toleranceObjects.Add(new ToleranceObject("Gas4", ProcessUnit.Gas4, ProcessUnit.Gas4WarningRange, ProcessUnit.Gas4AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  619. toleranceObjects.Add(new ToleranceObject("Gas5", ProcessUnit.Gas5, ProcessUnit.Gas5WarningRange, ProcessUnit.Gas5AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  620. toleranceObjects.Add(new ToleranceObject("Gas6", ProcessUnit.Gas6, ProcessUnit.Gas6WarningRange, ProcessUnit.Gas6AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  621. _GasFlowToleranceChecker.Start(toleranceObjects, step.Type == StepType.Stable);
  622. }
  623. return RState.Running;
  624. }
  625. private RState Kepler2200GasControlUnit_Check(ProcessUnitBase unit, RecipeStep step)
  626. {
  627. var ProcessUnit = unit as Kepler2200GasControlUnit;
  628. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  629. {
  630. return _GasFlowToleranceChecker.Monitor(Chamber.MFC1FeedBack, Chamber.MFC2FeedBack, Chamber.MFC3FeedBack, Chamber.MFC4FeedBack, Chamber.MFC5FeedBack, Chamber.MFC6FeedBack);
  631. }
  632. return RState.Running;
  633. }
  634. private void Kepler2200GasControlUnit_End(ProcessUnitBase unit, RecipeStep step)
  635. {
  636. var ProcessUnit = unit as Kepler2200GasControlUnit;
  637. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  638. {
  639. _GasFlowToleranceChecker.End();
  640. }
  641. }
  642. private RState VenusSEGasControlUnit_Start(ProcessUnitBase unit, RecipeStep step)
  643. {
  644. Chamber.OpenValve(ValveType.GasFinal, true);
  645. var ProcessUnit = unit as VenusSEGasControlUnit;
  646. Chamber.FlowGas(0, ProcessUnit.Gas1);
  647. if (ProcessUnit.Gas1 >= 1)
  648. {
  649. Chamber.OpenValve(ValveType.PV11, true);
  650. }
  651. Chamber.FlowGas(1, ProcessUnit.Gas2);
  652. if (ProcessUnit.Gas2 >= 1)
  653. {
  654. Chamber.OpenValve(ValveType.PV21, true);
  655. }
  656. Chamber.FlowGas(2, ProcessUnit.Gas3);
  657. if (ProcessUnit.Gas3 >= 1)
  658. {
  659. Chamber.OpenValve(ValveType.PV31, true);
  660. }
  661. Chamber.FlowGas(3, ProcessUnit.Gas4);
  662. if (ProcessUnit.Gas4 >= 1)
  663. {
  664. Chamber.OpenValve(ValveType.PV41, true);
  665. }
  666. Chamber.FlowGas(4, ProcessUnit.Gas5);
  667. if (ProcessUnit.Gas5 >= 1)
  668. {
  669. Chamber.OpenValve(ValveType.PV51, true);
  670. }
  671. Chamber.FlowGas(5, ProcessUnit.Gas6);
  672. if (ProcessUnit.Gas6 >= 1)
  673. {
  674. Chamber.OpenValve(ValveType.PV61, true);
  675. }
  676. Chamber.FlowGas(6, ProcessUnit.Gas7);
  677. if (ProcessUnit.Gas7 >= 1)
  678. {
  679. Chamber.OpenValve(ValveType.PV71, true);
  680. }
  681. Chamber.FlowGas(7, ProcessUnit.Gas8);
  682. if (ProcessUnit.Gas8 >= 1)
  683. {
  684. Chamber.OpenValve(ValveType.PV81, true);
  685. }
  686. Chamber.FlowGas(8, ProcessUnit.Gas9);
  687. if (ProcessUnit.Gas9 >= 1)
  688. {
  689. Chamber.OpenValve(ValveType.PV91, true);
  690. }
  691. Chamber.FlowGas(9, ProcessUnit.Gas10);
  692. if (ProcessUnit.Gas10 >= 1)
  693. {
  694. Chamber.OpenValve(ValveType.PVA1, true);
  695. }
  696. Chamber.FlowGas(10, ProcessUnit.Gas11);
  697. if (ProcessUnit.Gas11 >= 1)
  698. {
  699. Chamber.OpenValve(ValveType.PVB1, true);
  700. }
  701. Chamber.FlowGas(11, ProcessUnit.Gas12);
  702. if (ProcessUnit.Gas12 >= 1)
  703. {
  704. Chamber.OpenValve(ValveType.PVC1, true);
  705. }
  706. _GasFlowToleranceChecker.IsStable = true;
  707. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  708. {
  709. List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  710. toleranceObjects.Add(new ToleranceObject("Gas1", ProcessUnit.Gas1, ProcessUnit.Gas1WarningRange, ProcessUnit.Gas1AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  711. toleranceObjects.Add(new ToleranceObject("Gas2", ProcessUnit.Gas2, ProcessUnit.Gas2WarningRange, ProcessUnit.Gas2AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  712. toleranceObjects.Add(new ToleranceObject("Gas3", ProcessUnit.Gas3, ProcessUnit.Gas3WarningRange, ProcessUnit.Gas3AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  713. toleranceObjects.Add(new ToleranceObject("Gas4", ProcessUnit.Gas4, ProcessUnit.Gas4WarningRange, ProcessUnit.Gas4AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  714. toleranceObjects.Add(new ToleranceObject("Gas5", ProcessUnit.Gas5, ProcessUnit.Gas5WarningRange, ProcessUnit.Gas5AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  715. toleranceObjects.Add(new ToleranceObject("Gas6", ProcessUnit.Gas6, ProcessUnit.Gas6WarningRange, ProcessUnit.Gas6AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  716. toleranceObjects.Add(new ToleranceObject("Gas7", ProcessUnit.Gas7, ProcessUnit.Gas7WarningRange, ProcessUnit.Gas7AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  717. toleranceObjects.Add(new ToleranceObject("Gas8", ProcessUnit.Gas8, ProcessUnit.Gas8WarningRange, ProcessUnit.Gas8AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  718. toleranceObjects.Add(new ToleranceObject("Gas9", ProcessUnit.Gas9, ProcessUnit.Gas9WarningRange, ProcessUnit.Gas9AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  719. toleranceObjects.Add(new ToleranceObject("Gas10", ProcessUnit.Gas10, ProcessUnit.Gas10WarningRange, ProcessUnit.Gas10AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  720. toleranceObjects.Add(new ToleranceObject("Gas11", ProcessUnit.Gas11, ProcessUnit.Gas11WarningRange, ProcessUnit.Gas11AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  721. toleranceObjects.Add(new ToleranceObject("Gas12", ProcessUnit.Gas12, ProcessUnit.Gas12WarningRange, ProcessUnit.Gas12AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  722. _GasFlowToleranceChecker.Start(toleranceObjects, step.Type == StepType.Stable);
  723. }
  724. return RState.Running;
  725. }
  726. private RState VenusSEGasControlUnit_Check(ProcessUnitBase unit, RecipeStep step)
  727. {
  728. var ProcessUnit = unit as VenusSEGasControlUnit;
  729. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  730. {
  731. return _GasFlowToleranceChecker.Monitor(Chamber.MFC1FeedBack, Chamber.MFC2FeedBack, Chamber.MFC3FeedBack, Chamber.MFC4FeedBack, Chamber.MFC5FeedBack, Chamber.MFC6FeedBack, Chamber.MFC7FeedBack, Chamber.MFC8FeedBack, Chamber.MFC9FeedBack, Chamber.MFC10FeedBack, Chamber.MFC11FeedBack, Chamber.MFC12FeedBack);
  732. }
  733. return RState.Running;
  734. }
  735. private void VenusSEGasControlUnit_End(ProcessUnitBase unit, RecipeStep step)
  736. {
  737. Chamber.FlowGas(0, 0);
  738. Chamber.FlowGas(1, 0);
  739. Chamber.FlowGas(2, 0);
  740. Chamber.FlowGas(3, 0);
  741. Chamber.FlowGas(4, 0);
  742. Chamber.FlowGas(5, 0);
  743. Chamber.FlowGas(6, 0);
  744. Chamber.FlowGas(7, 0);
  745. Chamber.FlowGas(8, 0);
  746. Chamber.FlowGas(9, 0);
  747. Chamber.FlowGas(10, 0);
  748. Chamber.FlowGas(11, 0);
  749. Chamber.FlowGas(12, 0);
  750. var ProcessUnit = unit as VenusSEGasControlUnit;
  751. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  752. {
  753. _GasFlowToleranceChecker.End();
  754. }
  755. }
  756. private RState VenusDEGasControlUnit_Start(ProcessUnitBase unit, RecipeStep step)
  757. {
  758. Chamber.OpenValve(ValveType.GasFinal, true);
  759. var ProcessUnit = unit as VenusDEGasControlUnit;
  760. Chamber.FlowGas(0, ProcessUnit.Gas1);
  761. if (ProcessUnit.Gas1 >= 1)
  762. {
  763. Chamber.OpenValve(ValveType.PV11, true);
  764. }
  765. Chamber.FlowGas(1, ProcessUnit.Gas2);
  766. if (ProcessUnit.Gas2 >= 1)
  767. {
  768. Chamber.OpenValve(ValveType.PV21, true);
  769. }
  770. Chamber.FlowGas(2, ProcessUnit.Gas3);
  771. if (ProcessUnit.Gas3 >= 1)
  772. {
  773. Chamber.OpenValve(ValveType.PV31, true);
  774. }
  775. Chamber.FlowGas(3, ProcessUnit.Gas4);
  776. if (ProcessUnit.Gas4 >= 1)
  777. {
  778. Chamber.OpenValve(ValveType.PV41, true);
  779. }
  780. Chamber.FlowGas(4, ProcessUnit.Gas5);
  781. if (ProcessUnit.Gas5 >= 1)
  782. {
  783. Chamber.OpenValve(ValveType.PV51, true);
  784. }
  785. Chamber.FlowGas(5, ProcessUnit.Gas6);
  786. if (ProcessUnit.Gas6 >= 1)
  787. {
  788. Chamber.OpenValve(ValveType.PV61, true);
  789. }
  790. Chamber.FlowGas(6, ProcessUnit.Gas7);
  791. if (ProcessUnit.Gas7 >= 1)
  792. {
  793. Chamber.OpenValve(ValveType.PV71, true);
  794. }
  795. Chamber.FlowGas(7, ProcessUnit.Gas8);
  796. if (ProcessUnit.Gas8 >= 1)
  797. {
  798. Chamber.OpenValve(ValveType.PV81, true);
  799. }
  800. Chamber.FlowGas(8, ProcessUnit.Gas9);
  801. if (ProcessUnit.Gas9 >= 1)
  802. {
  803. Chamber.OpenValve(ValveType.PV91, true);
  804. }
  805. Chamber.FlowGas(9, ProcessUnit.Gas10);
  806. if (ProcessUnit.Gas10 >= 1)
  807. {
  808. Chamber.OpenValve(ValveType.PVA1, true);
  809. }
  810. Chamber.FlowGas(10, ProcessUnit.Gas11);
  811. if (ProcessUnit.Gas11 >= 1)
  812. {
  813. Chamber.OpenValve(ValveType.PVB1, true);
  814. }
  815. Chamber.FlowGas(11, ProcessUnit.Gas12);
  816. if (ProcessUnit.Gas12 >= 1)
  817. {
  818. Chamber.OpenValve(ValveType.PVC1, true);
  819. }
  820. _GasFlowToleranceChecker.IsStable = true;
  821. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  822. {
  823. List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  824. toleranceObjects.Add(new ToleranceObject("Gas1", ProcessUnit.Gas1, ProcessUnit.Gas1WarningRange, ProcessUnit.Gas1AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  825. toleranceObjects.Add(new ToleranceObject("Gas2", ProcessUnit.Gas2, ProcessUnit.Gas2WarningRange, ProcessUnit.Gas2AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  826. toleranceObjects.Add(new ToleranceObject("Gas3", ProcessUnit.Gas3, ProcessUnit.Gas3WarningRange, ProcessUnit.Gas3AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  827. toleranceObjects.Add(new ToleranceObject("Gas4", ProcessUnit.Gas4, ProcessUnit.Gas4WarningRange, ProcessUnit.Gas4AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  828. toleranceObjects.Add(new ToleranceObject("Gas5", ProcessUnit.Gas5, ProcessUnit.Gas5WarningRange, ProcessUnit.Gas5AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  829. toleranceObjects.Add(new ToleranceObject("Gas6", ProcessUnit.Gas6, ProcessUnit.Gas6WarningRange, ProcessUnit.Gas6AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  830. toleranceObjects.Add(new ToleranceObject("Gas7", ProcessUnit.Gas7, ProcessUnit.Gas7WarningRange, ProcessUnit.Gas7AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  831. toleranceObjects.Add(new ToleranceObject("Gas8", ProcessUnit.Gas8, ProcessUnit.Gas8WarningRange, ProcessUnit.Gas8AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  832. toleranceObjects.Add(new ToleranceObject("Gas9", ProcessUnit.Gas9, ProcessUnit.Gas9WarningRange, ProcessUnit.Gas9AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  833. toleranceObjects.Add(new ToleranceObject("Gas10", ProcessUnit.Gas10, ProcessUnit.Gas10WarningRange, ProcessUnit.Gas10AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  834. toleranceObjects.Add(new ToleranceObject("Gas11", ProcessUnit.Gas11, ProcessUnit.Gas11WarningRange, ProcessUnit.Gas11AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  835. toleranceObjects.Add(new ToleranceObject("Gas12", ProcessUnit.Gas12, ProcessUnit.Gas12WarningRange, ProcessUnit.Gas12AlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  836. _GasFlowToleranceChecker.Start(toleranceObjects, step.Type == StepType.Stable);
  837. }
  838. return RState.Running;
  839. }
  840. private RState VenusDEGasControlUnit_Check(ProcessUnitBase unit, RecipeStep step)
  841. {
  842. var ProcessUnit = unit as VenusDEGasControlUnit;
  843. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  844. {
  845. return _GasFlowToleranceChecker.Monitor(Chamber.MFC1FeedBack, Chamber.MFC2FeedBack, Chamber.MFC3FeedBack, Chamber.MFC4FeedBack, Chamber.MFC5FeedBack, Chamber.MFC6FeedBack, Chamber.MFC7FeedBack, Chamber.MFC8FeedBack, Chamber.MFC9FeedBack, Chamber.MFC10FeedBack, Chamber.MFC11FeedBack, Chamber.MFC12FeedBack);
  846. }
  847. return RState.Running;
  848. }
  849. private void VenusDEGasControlUnit_End(ProcessUnitBase unit, RecipeStep step)
  850. {
  851. Chamber.FlowGas(0, 0);
  852. Chamber.FlowGas(1, 0);
  853. Chamber.FlowGas(2, 0);
  854. Chamber.FlowGas(3, 0);
  855. Chamber.FlowGas(4, 0);
  856. Chamber.FlowGas(5, 0);
  857. Chamber.FlowGas(6, 0);
  858. Chamber.FlowGas(7, 0);
  859. Chamber.FlowGas(8, 0);
  860. Chamber.FlowGas(9, 0);
  861. Chamber.FlowGas(10, 0);
  862. Chamber.FlowGas(11, 0);
  863. Chamber.FlowGas(12, 0);
  864. var ProcessUnit = unit as VenusDEGasControlUnit;
  865. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  866. {
  867. _GasFlowToleranceChecker.End();
  868. }
  869. }
  870. private RState ESCHVUnit_Start(ProcessUnitBase unit, RecipeStep step)
  871. {
  872. var ProcessUnit = unit as ESCHVUnit;
  873. if (ProcessUnit.ESCClampValtage > 0)
  874. {
  875. Chamber.SetESCClampVoltage(ProcessUnit.ESCClampValtage);
  876. }
  877. else
  878. {
  879. Chamber.SetESCClampVoltage(0);
  880. }
  881. Chamber.SetBacksideHePressure(ProcessUnit.BacksideHelium);
  882. Chamber.SetBacksideHeThreshold(ProcessUnit.MinHeFlow, ProcessUnit.MaxHeFlow);
  883. //List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  884. //if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  885. //{
  886. // toleranceObjects.Add(new ToleranceObject("ESCTemperature", ProcessUnit.ESCTemperature, ProcessUnit.ESCTemperatureWarningRange, ProcessUnit.ESCTemperatureAlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  887. // toleranceObjects.Add(new ToleranceObject("WallTemperature", ProcessUnit.WallTemperature, ProcessUnit.WallTemperatureWarningRange, ProcessUnit.WallTemperatureAlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  888. // _HeliumToleranceChecker.Start(toleranceObjects);
  889. //}
  890. return RState.Running;
  891. }
  892. private RState ESCHVUnit_Check(ProcessUnitBase unit, RecipeStep step)
  893. {
  894. var ProcessUnit = unit as ESCHVUnit;
  895. if (Chamber.BackSideHeOutOfRange && step.ElapsedTime() > ProcessUnit.CheckDelay)
  896. {
  897. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} failed, Backside Helium out of range.");
  898. return RState.Failed;
  899. }
  900. //if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  901. //{
  902. // return _HeliumToleranceChecker.Monitor(Chamber.ESCTemperature,Chamber.WallTemperature);
  903. //}
  904. return RState.Running;
  905. }
  906. private void ESCHVUnit_End(ProcessUnitBase unit, RecipeStep step)
  907. {
  908. Chamber.SetBacksideHeThreshold(0, 0);
  909. //var ProcessUnit = unit as ESCHVUnit;
  910. //if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  911. //{
  912. // _HeliumToleranceChecker.End();
  913. //}
  914. }
  915. private RState ProcessKitUnit_Start(ProcessUnitBase unit, RecipeStep step)
  916. {
  917. var ProcessUnit = unit as ProcessKitUnit;
  918. if (Chamber.SetLiftPin(ProcessUnit.LiftPinPostion, out string reason))
  919. {
  920. return RState.Running;
  921. }
  922. else
  923. {
  924. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} failed. Target Position:{ProcessUnit.LiftPinPostion}");
  925. return RState.Failed;
  926. }
  927. }
  928. private RState ProcessKitUnit_Check(ProcessUnitBase unit, RecipeStep step)
  929. {
  930. //var ProcessUnit = unit as ProcessKitUnit;
  931. return RState.Running;
  932. }
  933. private void ProcessKitUnit_End(ProcessUnitBase unit, RecipeStep step)
  934. {
  935. }
  936. private RState MagnetUnit_Start(ProcessUnitBase unit, RecipeStep step)
  937. {
  938. var ProcessUnit = unit as MagnetUnit;
  939. if (Chamber.MagnetSetpower(ProcessUnit.MagnetIntensity) && Chamber.SetFieldRatio(ProcessUnit.FieldRatio) && Chamber.SetWaveform(ProcessUnit.MagnetWaveform))
  940. {
  941. return RState.Running;
  942. }
  943. else
  944. {
  945. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} failed duo to Magnet Write Intensity failed");
  946. return RState.Failed;
  947. }
  948. }
  949. private RState MagnetUnit_Check(ProcessUnitBase unit, RecipeStep step)
  950. {
  951. var ProcessMagnetUnit = unit as MagnetUnit;
  952. if (ProcessMagnetUnit.ToleranceMode != ToleranceMode.None)
  953. {
  954. return _MagnetToleranceChecker.Monitor(Chamber.MagnetIntensity);
  955. }
  956. return RState.Running;
  957. }
  958. private void MagnetUnit_End(ProcessUnitBase unit, RecipeStep step)
  959. {
  960. var ProcessMagnetUnit = unit as MagnetUnit;
  961. if (ProcessMagnetUnit.ToleranceMode != ToleranceMode.None)
  962. {
  963. _MagnetToleranceChecker.End();
  964. }
  965. }
  966. private RState RFBoxUnit_Start(ProcessUnitBase unit, RecipeStep step)
  967. {
  968. var ProcessUnit = unit as RFBoxUnit;
  969. if (Chamber.SetRFBoxC1Position(ProcessUnit.C1))
  970. {
  971. return RState.Running;
  972. }
  973. else
  974. {
  975. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} failed duo to RFBox Write C1 failed ");
  976. return RState.Failed;
  977. }
  978. }
  979. private RState RFBoxUnit_Check(ProcessUnitBase unit, RecipeStep step)
  980. {
  981. return RState.Running;
  982. }
  983. private void RFBoxUnit_End(ProcessUnitBase unit, RecipeStep step)
  984. {
  985. }
  986. private RState HeaterUnit_Start(ProcessUnitBase unit, RecipeStep step)
  987. {
  988. var ProcessUnit = unit as HeaterUnit;
  989. var position = (HighTemperatureHeaterPosition)Enum.Parse(typeof(HighTemperatureHeaterPosition), ProcessUnit.SuspectPosition.ToString());
  990. Chamber.HighTemperatureHeaterGotoPosition(position);
  991. if (ProcessUnit.HeaterTemp > 0)
  992. {
  993. Chamber.SetHighTemperatureHeaterTemperature(ProcessUnit.HeaterTemp);
  994. }
  995. if (ProcessUnit.HeaterRatio > 0)
  996. {
  997. Chamber.SetHighTemperatureHeaterRatio(ProcessUnit.HeaterRatio);
  998. }
  999. _HighTemperatureToleranceChecker.IsStable = true;
  1000. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  1001. {
  1002. List<ToleranceObject> toleranceObjects = new List<ToleranceObject>();
  1003. toleranceObjects.Add(new ToleranceObject("HighTemperatureHeater Temperature", ProcessUnit.HeaterTemp, ProcessUnit.HeaterTempWarningRange, ProcessUnit.HeaterTempAlarmRange, ProcessUnit.ToleranceDelayTime, ProcessUnit.ToleranceMode));
  1004. _HighTemperatureToleranceChecker.Start(toleranceObjects, step.Type == StepType.Stable);
  1005. }
  1006. return RState.Running;
  1007. }
  1008. private RState HeaterUnit_Check(ProcessUnitBase unit, RecipeStep step)
  1009. {
  1010. var ProcessUnit = unit as HeaterUnit;
  1011. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  1012. {
  1013. return _HighTemperatureToleranceChecker.Monitor(Chamber.ChamberTemperature);
  1014. }
  1015. return RState.Running;
  1016. }
  1017. private void HeaterUnit_End(ProcessUnitBase unit, RecipeStep step)
  1018. {
  1019. var ProcessUnit = unit as HeaterUnit;
  1020. if (ProcessUnit.ToleranceMode != ToleranceMode.None)
  1021. {
  1022. _HighTemperatureToleranceChecker.End();
  1023. }
  1024. }
  1025. public bool LoadMethods(ProcessUnitBase unit)
  1026. {
  1027. var className = $"{Module}.{unit.GetType().Name}";
  1028. if (startHelper.ContainsKey(className) && checkerHelper.ContainsKey(className) && endHelper.ContainsKey(className))
  1029. {
  1030. unit.starter = startHelper[className];
  1031. unit.checker = checkerHelper[className];
  1032. unit.end = endHelper[className];
  1033. return true;
  1034. }
  1035. return false;
  1036. }
  1037. public void fdcStart(string recipeId)
  1038. {
  1039. if (m_RecipeHead.Type == RecipeType.Process)
  1040. {
  1041. _RecipeId = recipeId;
  1042. switch (Chamber.ChamberType)
  1043. {
  1044. case JetChamber.Kepler2200A:
  1045. case JetChamber.Kepler2200B:
  1046. List<string> kepler2200Names = new List<string>();
  1047. kepler2200Names.Add($"{Module}.MfcGas1.FeedBack");
  1048. kepler2200Names.Add($"{Module}.MfcGas2.FeedBack");
  1049. kepler2200Names.Add($"{Module}.MfcGas3.FeedBack");
  1050. kepler2200Names.Add($"{Module}.MfcGas4.FeedBack");
  1051. kepler2200Names.Add($"{Module}.MfcGas5.FeedBack");
  1052. kepler2200Names.Add($"{Module}.MfcGas6.FeedBack");
  1053. kepler2200Names.Add($"{Module}.Rf.ForwardPower");
  1054. _fdc.Reset(kepler2200Names);
  1055. break;
  1056. case JetChamber.Kepler2300:
  1057. List<string> kepler2300Names = new List<string>();
  1058. kepler2300Names.Add($"{Module}.MfcGas1.FeedBack");
  1059. kepler2300Names.Add($"{Module}.MfcGas2.FeedBack");
  1060. kepler2300Names.Add($"{Module}.MfcGas3.FeedBack");
  1061. kepler2300Names.Add($"{Module}.MfcGas4.FeedBack");
  1062. kepler2300Names.Add($"{Module}.MfcGas5.FeedBack");
  1063. kepler2300Names.Add($"{Module}.MfcGas6.FeedBack");
  1064. kepler2300Names.Add($"{Module}.MfcGas7.FeedBack");
  1065. kepler2300Names.Add($"{Module}.MfcGas8.FeedBack");
  1066. kepler2300Names.Add($"{Module}.Rf.ForwardPower");
  1067. kepler2300Names.Add($"{Module}.BiasRf.ForwardPower");
  1068. _fdc.Reset(kepler2300Names);
  1069. break;
  1070. }
  1071. }
  1072. }
  1073. public void fdcStop()
  1074. {
  1075. if (m_RecipeHead.Type == RecipeType.Process)
  1076. {
  1077. //ProcessDataRecorder.StepEnd(RecipeId, _currentRecipe.Steps[_currentStep].StepNo, _fdc.DataList);
  1078. _fdc.Stop();
  1079. }
  1080. }
  1081. //public void loopStep(bool isloop,int loopCount,int loopIndex)
  1082. //{
  1083. // isLoop = isloop;
  1084. // loopsteps=loopCount;
  1085. // currentStepIndex = loopIndex;
  1086. //}
  1087. private RState stepStarter(RecipeStep step)
  1088. {
  1089. step.StartStepTimer();
  1090. if (_isInstalledEPD)
  1091. {
  1092. Chamber.EPDStepStart(step.EPDConfig, step.StepNo);
  1093. if (step.Type == StepType.EndPoint)
  1094. {
  1095. _lastEPDStepTimeStopwatch.Restart();
  1096. }
  1097. }
  1098. if (m_RecipeHead.Type == RecipeType.Process)
  1099. {
  1100. switch (Chamber.ChamberType)
  1101. {
  1102. case JetChamber.Kepler2200A:
  1103. var kepler2200AGasSetPoints = step.LstUnit[1] as Kepler2200GasControlUnit;
  1104. var kepler2200ARFSetPoints = step.LstUnit[3] as TCPUnit;
  1105. _fdc.Start(kepler2200AGasSetPoints.Gas1, kepler2200AGasSetPoints.Gas2, kepler2200AGasSetPoints.Gas3, kepler2200AGasSetPoints.Gas4, kepler2200AGasSetPoints.Gas5, kepler2200AGasSetPoints.Gas6, kepler2200ARFSetPoints.RFPower);
  1106. break;
  1107. case JetChamber.Kepler2200B:
  1108. var kepler2200BGasSetPoints = step.LstUnit[1] as Kepler2200GasControlUnit;
  1109. var kepler2200BRFSetPoints = step.LstUnit[4] as TCPUnit;
  1110. _fdc.Start(kepler2200BGasSetPoints.Gas1, kepler2200BGasSetPoints.Gas2, kepler2200BGasSetPoints.Gas3, kepler2200BGasSetPoints.Gas4, kepler2200BGasSetPoints.Gas5, kepler2200BGasSetPoints.Gas6, kepler2200BRFSetPoints.RFPower);
  1111. break;
  1112. case JetChamber.Kepler2300:
  1113. var kepler2300GasSetPoints = step.LstUnit[3] as GasControlUnit;
  1114. var kepler2300RFSetPoints = step.LstUnit[1] as TCPUnit;
  1115. var kepler2300BiasRFSetPoints = step.LstUnit[2] as BiasUnit;
  1116. _fdc.Start(kepler2300GasSetPoints.Gas1, kepler2300GasSetPoints.Gas2, kepler2300GasSetPoints.Gas3, kepler2300GasSetPoints.Gas4, kepler2300GasSetPoints.Gas5, kepler2300GasSetPoints.Gas6, kepler2300GasSetPoints.Gas7, kepler2300GasSetPoints.Gas8, kepler2300RFSetPoints.RFPower, kepler2300BiasRFSetPoints.BiasRFPower);
  1117. break;
  1118. }
  1119. }
  1120. return RState.Running;
  1121. }
  1122. private RState stepChecker(RecipeStep step)
  1123. {
  1124. switch (step.Type)
  1125. {
  1126. case StepType.Time:
  1127. return step.ElapsedTime() >= step.Time * 1000 ? RState.End : RState.Running;
  1128. case StepType.OverEtch:
  1129. lastEPDStepTime = _lastEPDStepTimeStopwatch.ElapsedMilliseconds * step.OverEtchPercent / 100;
  1130. return step.ElapsedTime() >= lastEPDStepTime ? RState.End : RState.Running;
  1131. case StepType.EndPoint:
  1132. if (step.ElapsedTime() > step.MaxEndPointTime * 1000)
  1133. {
  1134. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} timeout, did not capture endpoint signal in {step.MaxEndPointTime} seconds");
  1135. return RState.Failed;
  1136. }
  1137. else
  1138. {
  1139. if (Chamber.EPDCaptured)
  1140. {
  1141. if (step.ElapsedTime() < step.MinEndPointTime * 1000)
  1142. {
  1143. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} timeout, capture endpoint signal less than {step.MinEndPointTime} seconds");
  1144. return RState.Failed;
  1145. }
  1146. else
  1147. {
  1148. return RState.End;
  1149. }
  1150. }
  1151. else
  1152. {
  1153. return RState.Running;
  1154. }
  1155. //return Chamber.EPDCaptured ? RState.End : RState.Running;
  1156. }
  1157. case StepType.Stable:
  1158. if (step.ElapsedTime() >= step.Time * 1000)
  1159. {
  1160. LOG.Write(eEvent.ERR_PROCESS, Chamber.Module, $"Step:{step.StepNo} timeout, did not Stable in {step.Time} seconds");
  1161. return RState.Failed;
  1162. }
  1163. else
  1164. {
  1165. if (_GasFlowToleranceChecker.IsStable && _PressureToleranceChecker.IsStable && _HighTemperatureToleranceChecker.IsStable)
  1166. {
  1167. return RState.End;
  1168. }
  1169. }
  1170. return RState.Running;
  1171. }
  1172. return RState.Running;
  1173. }
  1174. private RState stepEnder(RecipeStep step)
  1175. {
  1176. //if (step.Type == StepType.EndPoint)
  1177. //{
  1178. // Chamber.EPDStepStop();
  1179. //}
  1180. if (_isInstalledEPD)
  1181. {
  1182. Chamber.EPDStepStop();
  1183. if (step.Type == StepType.EndPoint)
  1184. {
  1185. _lastEPDStepTimeStopwatch.Stop();
  1186. }
  1187. }
  1188. if (m_RecipeHead.Type == RecipeType.Process)
  1189. {
  1190. ProcessDataRecorder.StepEnd(_RecipeId, step.StepNo, _fdc.DataList);
  1191. }
  1192. return RState.End;
  1193. }
  1194. public bool LoadStepFuns(RecipeStep step)
  1195. {
  1196. step.starter = stepStarter;
  1197. step.checker = stepChecker;
  1198. step.ender = stepEnder;
  1199. return true;
  1200. }
  1201. }
  1202. }