| 39 |
|
|
| 40 |
UInt_t minimo (UInt_t vet[], Long64_t n ); |
UInt_t minimo (UInt_t vet[], Long64_t n ); |
| 41 |
|
|
| 42 |
|
// prova |
| 43 |
|
|
| 44 |
|
|
| 45 |
UInt_t massimo (UInt_t vet[], Long64_t n); |
UInt_t massimo (UInt_t vet[], Long64_t n); |
| 46 |
|
|
| 206 |
// grafici corrente xe |
// grafici corrente xe |
| 207 |
|
|
| 208 |
|
|
| 209 |
TH2F *hITS1_1 = new TH2F("hITS1_1","Current:Section xe ",1000,min_obt,max_obt*1.006,1000,-500., 500.); |
TH2F *hITS1_1 = new TH2F("hITS1_1","Current:Section xe ",1000,min_obt,max_obt*1.006,1000,-50., 50.); |
| 210 |
|
|
| 211 |
// hITS1_1->SetBit(TH2::kCanRebin); |
// hITS1_1->SetBit(TH2::kCanRebin); |
| 212 |
|
|
| 216 |
|
|
| 217 |
hITS1_1->GetXaxis()->SetTitle("time"); |
hITS1_1->GetXaxis()->SetTitle("time"); |
| 218 |
|
|
| 219 |
hITS1_1->GetYaxis()->SetTitle("current [micronA]"); |
hITS1_1->GetYaxis()->SetTitle("current [nA]"); |
| 220 |
|
|
| 221 |
hITS1_1->GetYaxis()->SetTitleOffset(1.2); |
hITS1_1->GetYaxis()->SetTitleOffset(1.2); |
| 222 |
|
|
| 237 |
|
|
| 238 |
hITS1_2->GetXaxis()->SetTitle("time"); |
hITS1_2->GetXaxis()->SetTitle("time"); |
| 239 |
|
|
| 240 |
hITS1_2->GetYaxis()->SetTitle("current [micronA]"); |
hITS1_2->GetYaxis()->SetTitle("current [nA]"); |
| 241 |
|
|
| 242 |
hITS1_2->SetMarkerColor(2); |
hITS1_2->SetMarkerColor(2); |
| 243 |
|
|
| 256 |
|
|
| 257 |
hITS1_3->GetXaxis()->SetTitle("time"); |
hITS1_3->GetXaxis()->SetTitle("time"); |
| 258 |
|
|
| 259 |
hITS1_3->GetYaxis()->SetTitle("current [micronA]"); |
hITS1_3->GetYaxis()->SetTitle("current [nA]"); |
| 260 |
|
|
| 261 |
hITS1_3->SetMarkerColor(3); |
hITS1_3->SetMarkerColor(3); |
| 262 |
|
|
| 428 |
// grafici corrente xo |
// grafici corrente xo |
| 429 |
|
|
| 430 |
|
|
| 431 |
TH2F *hITS2_1 = new TH2F("hITS2_1","Current:Section xo ",1000,min_obt,max_obt*1.006,1000,-500., 500.); |
TH2F *hITS2_1 = new TH2F("hITS2_1","Current:Section xo ",1000,min_obt,max_obt*1.006,1000,-50., 50.); |
| 432 |
|
|
| 433 |
// hITS2_1->SetBit(TH2::kCanRebin); |
// hITS2_1->SetBit(TH2::kCanRebin); |
| 434 |
|
|
| 438 |
|
|
| 439 |
hITS2_1->GetXaxis()->SetTitle("time"); |
hITS2_1->GetXaxis()->SetTitle("time"); |
| 440 |
|
|
| 441 |
hITS2_1->GetYaxis()->SetTitle("current [micronA]"); |
hITS2_1->GetYaxis()->SetTitle("current [nA]"); |
| 442 |
|
|
| 443 |
hITS2_1->GetYaxis()->SetTitleOffset(1.2); |
hITS2_1->GetYaxis()->SetTitleOffset(1.2); |
| 444 |
|
|
| 645 |
// grafici corrente ye |
// grafici corrente ye |
| 646 |
|
|
| 647 |
|
|
| 648 |
TH2F *hITS3_1 = new TH2F("hITS3_1","Current:Section ye ",1000,min_obt,max_obt*1.006,1000,-500., 500.); |
TH2F *hITS3_1 = new TH2F("hITS3_1","Current:Section ye ",1000,min_obt,max_obt*1.006,1000,-50., 50.); |
| 649 |
|
|
| 650 |
// hITS3_1->SetBit(TH2::kCanRebin); |
// hITS3_1->SetBit(TH2::kCanRebin); |
| 651 |
|
|
| 655 |
|
|
| 656 |
hITS3_1->GetXaxis()->SetTitle("time"); |
hITS3_1->GetXaxis()->SetTitle("time"); |
| 657 |
|
|
| 658 |
hITS3_1->GetYaxis()->SetTitle("current [micronA]"); |
hITS3_1->GetYaxis()->SetTitle("current [nA]"); |
| 659 |
|
|
| 660 |
hITS3_1->GetYaxis()->SetTitleOffset(1.2); |
hITS3_1->GetYaxis()->SetTitleOffset(1.2); |
| 661 |
|
|
| 866 |
// grafici corrente yo |
// grafici corrente yo |
| 867 |
|
|
| 868 |
|
|
| 869 |
TH2F *hITS4_1 = new TH2F("hITS4_1","Current:Section yo",1000,min_obt,max_obt*1.006,1000,-500., 500.); |
TH2F *hITS4_1 = new TH2F("hITS4_1","Current:Section yo",1000,min_obt,max_obt*1.006,1000,-50., 50.); |
| 870 |
|
|
| 871 |
// hITS4_1->SetBit(TH2::kCanRebin); |
// hITS4_1->SetBit(TH2::kCanRebin); |
| 872 |
|
|
| 876 |
|
|
| 877 |
hITS4_1->GetXaxis()->SetTitle("time"); |
hITS4_1->GetXaxis()->SetTitle("time"); |
| 878 |
|
|
| 879 |
hITS4_1->GetYaxis()->SetTitle("current [micronA]"); |
hITS4_1->GetYaxis()->SetTitle("current [nA]"); |
| 880 |
|
|
| 881 |
hITS4_1->GetYaxis()->SetTitleOffset(1.2); |
hITS4_1->GetYaxis()->SetTitleOffset(1.2); |
| 882 |
|
|
| 1080 |
|
|
| 1081 |
// grafici temperatura |
// grafici temperatura |
| 1082 |
|
|
| 1083 |
TH2F *hITS5 = new TH2F("hITS5","Temperature ",1000,min_obt,max_obt*1.006,1000,30,40); |
TH2F *hITS5 = new TH2F("hITS5","Temperature ",1000,min_obt,max_obt*1.006,1000,20,50); |
| 1084 |
|
|
| 1085 |
hITS5->SetStats(0); |
hITS5->SetStats(0); |
| 1086 |
|
|
| 1962 |
|
|
| 1963 |
Double_t current_xe0_adc = pher->CALO_ENDRUN[0].CALO_HK0[0]; |
Double_t current_xe0_adc = pher->CALO_ENDRUN[0].CALO_HK0[0]; |
| 1964 |
|
|
| 1965 |
Double_t current_xe0 = current_xe0_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe0 = (current_xe0_adc-16384)/16.438; |
| 1966 |
|
|
| 1967 |
Double_t current_xe1_adc = pher->CALO_ENDRUN[0].CALO_HK0[1]; |
Double_t current_xe1_adc = pher->CALO_ENDRUN[0].CALO_HK0[1]; |
| 1968 |
|
|
| 1969 |
Double_t current_xe1 = current_xe1_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe1 = (current_xe1_adc-16384)/16.438; |
| 1970 |
|
|
| 1971 |
Double_t current_xe2_adc = pher->CALO_ENDRUN[0].CALO_HK0[2]; |
Double_t current_xe2_adc = pher->CALO_ENDRUN[0].CALO_HK0[2]; |
| 1972 |
|
|
| 1973 |
Double_t current_xe2 = current_xe2_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe2 = (current_xe2_adc-16384)/16.438; |
| 1974 |
|
|
| 1975 |
Double_t current_xe3_adc = pher->CALO_ENDRUN[0].CALO_HK0[3]; |
Double_t current_xe3_adc = pher->CALO_ENDRUN[0].CALO_HK0[3]; |
| 1976 |
|
|
| 1977 |
Double_t current_xe3 = current_xe3_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe3 = (current_xe3_adc-16384)/16.438; |
| 1978 |
|
|
| 1979 |
Double_t current_xe4_adc = pher->CALO_ENDRUN[0].CALO_HK0[4]; |
Double_t current_xe4_adc = pher->CALO_ENDRUN[0].CALO_HK0[4]; |
| 1980 |
|
|
| 1981 |
Double_t current_xe4 = current_xe4_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe4 = (current_xe4_adc-16384)/16.438; |
| 1982 |
|
|
| 1983 |
Double_t current_xe5_adc = pher->CALO_ENDRUN[0].CALO_HK0[5]; |
Double_t current_xe5_adc = pher->CALO_ENDRUN[0].CALO_HK0[5]; |
| 1984 |
|
|
| 1985 |
Double_t current_xe5 = current_xe5_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe5 = (current_xe5_adc-16384)/16.438; |
| 1986 |
|
|
| 1987 |
Double_t current_xe6_adc = pher->CALO_ENDRUN[0].CALO_HK0[6]; |
Double_t current_xe6_adc = pher->CALO_ENDRUN[0].CALO_HK0[6]; |
| 1988 |
|
|
| 1989 |
Double_t current_xe6 = current_xe6_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe6 = (current_xe6_adc-16384)/16.438; |
| 1990 |
|
|
| 1991 |
Double_t current_xe7_adc = pher->CALO_ENDRUN[0].CALO_HK0[7]; |
Double_t current_xe7_adc = pher->CALO_ENDRUN[0].CALO_HK0[7]; |
| 1992 |
|
|
| 1993 |
Double_t current_xe7 = current_xe7_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe7 = (current_xe7_adc-16384)/16.438; |
| 1994 |
|
|
| 1995 |
Double_t current_xe8_adc = pher->CALO_ENDRUN[0].CALO_HK0[8]; |
Double_t current_xe8_adc = pher->CALO_ENDRUN[0].CALO_HK0[8]; |
| 1996 |
|
|
| 1997 |
Double_t current_xe8 = current_xe8_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe8 = (current_xe8_adc-16384)/16.438; |
| 1998 |
|
|
| 1999 |
Double_t current_xe9_adc = pher->CALO_ENDRUN[0].CALO_HK0[9]; |
Double_t current_xe9_adc = pher->CALO_ENDRUN[0].CALO_HK0[9]; |
| 2000 |
|
|
| 2001 |
Double_t current_xe9 = current_xe9_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe9 = (current_xe9_adc-16384)/16.438; |
| 2002 |
|
|
| 2003 |
Double_t current_xe10_adc = pher->CALO_ENDRUN[0].CALO_HK0[10]; |
Double_t current_xe10_adc = pher->CALO_ENDRUN[0].CALO_HK0[10]; |
| 2004 |
|
|
| 2005 |
Double_t current_xe10 = current_xe10_adc/1.7348 - 9444. ; // micron A |
Double_t current_xe10 = (current_xe10_adc-16384)/16.438; |
| 2006 |
|
|
| 2007 |
|
|
| 2008 |
|
|
| 2021 |
|
|
| 2022 |
Double_t current_xo0_adc = pher->CALO_ENDRUN[1].CALO_HK0[0]; |
Double_t current_xo0_adc = pher->CALO_ENDRUN[1].CALO_HK0[0]; |
| 2023 |
|
|
| 2024 |
Double_t current_xo0 = current_xo0_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo0 = (current_xo0_adc-16384)/16.438; |
| 2025 |
|
|
| 2026 |
Double_t current_xo1_adc = pher->CALO_ENDRUN[1].CALO_HK0[1]; |
Double_t current_xo1_adc = pher->CALO_ENDRUN[1].CALO_HK0[1]; |
| 2027 |
|
|
| 2028 |
Double_t current_xo1 = current_xo1_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo1 = (current_xo1_adc-16384)/16.438; |
| 2029 |
|
|
| 2030 |
Double_t current_xo2_adc = pher->CALO_ENDRUN[1].CALO_HK0[2]; |
Double_t current_xo2_adc = pher->CALO_ENDRUN[1].CALO_HK0[2]; |
| 2031 |
|
|
| 2032 |
Double_t current_xo2 = current_xo2_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo2 = (current_xo2_adc-16384)/16.438; |
| 2033 |
|
|
| 2034 |
Double_t current_xo3_adc = pher->CALO_ENDRUN[1].CALO_HK0[3]; |
Double_t current_xo3_adc = pher->CALO_ENDRUN[1].CALO_HK0[3]; |
| 2035 |
|
|
| 2036 |
Double_t current_xo3 = current_xo3_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo3 = (current_xo3_adc-16384)/16.438; |
| 2037 |
|
|
| 2038 |
Double_t current_xo4_adc = pher->CALO_ENDRUN[1].CALO_HK0[4]; |
Double_t current_xo4_adc = pher->CALO_ENDRUN[1].CALO_HK0[4]; |
| 2039 |
|
|
| 2040 |
Double_t current_xo4 = current_xo4_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo4 = (current_xo4_adc-16384)/16.438; |
| 2041 |
|
|
| 2042 |
Double_t current_xo5_adc = pher->CALO_ENDRUN[1].CALO_HK0[5]; |
Double_t current_xo5_adc = pher->CALO_ENDRUN[1].CALO_HK0[5]; |
| 2043 |
|
|
| 2044 |
Double_t current_xo5 = current_xo5_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo5 = (current_xo5_adc-16384)/16.438; |
| 2045 |
|
|
| 2046 |
Double_t current_xo6_adc = pher->CALO_ENDRUN[1].CALO_HK0[6]; |
Double_t current_xo6_adc = pher->CALO_ENDRUN[1].CALO_HK0[6]; |
| 2047 |
|
|
| 2048 |
Double_t current_xo6 = current_xo6_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo6 = (current_xo6_adc-16384)/16.438; |
| 2049 |
|
|
| 2050 |
Double_t current_xo7_adc = pher->CALO_ENDRUN[1].CALO_HK0[7]; |
Double_t current_xo7_adc = pher->CALO_ENDRUN[1].CALO_HK0[7]; |
| 2051 |
|
|
| 2052 |
Double_t current_xo7 = current_xo7_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo7 = (current_xo7_adc-16384)/16.438; |
| 2053 |
|
|
| 2054 |
Double_t current_xo8_adc = pher->CALO_ENDRUN[1].CALO_HK0[8]; |
Double_t current_xo8_adc = pher->CALO_ENDRUN[1].CALO_HK0[8]; |
| 2055 |
|
|
| 2056 |
Double_t current_xo8 = current_xo8_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo8 = (current_xo8_adc-16384)/16.438; |
| 2057 |
|
|
| 2058 |
Double_t current_xo9_adc = pher->CALO_ENDRUN[1].CALO_HK0[9]; |
Double_t current_xo9_adc = pher->CALO_ENDRUN[1].CALO_HK0[9]; |
| 2059 |
|
|
| 2060 |
Double_t current_xo9 = current_xo9_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo9 = (current_xo9_adc-16384)/16.438; |
| 2061 |
|
|
| 2062 |
Double_t current_xo10_adc = pher->CALO_ENDRUN[1].CALO_HK0[10]; |
Double_t current_xo10_adc = pher->CALO_ENDRUN[1].CALO_HK0[10]; |
| 2063 |
|
|
| 2064 |
Double_t current_xo10 = current_xo10_adc/1.7348 - 9444. ; // micron A |
Double_t current_xo10 = (current_xo10_adc-16384)/16.438; |
| 2065 |
|
|
| 2066 |
|
|
| 2067 |
|
|
| 2080 |
|
|
| 2081 |
Double_t current_ye0_adc = pher->CALO_ENDRUN[2].CALO_HK0[0]; |
Double_t current_ye0_adc = pher->CALO_ENDRUN[2].CALO_HK0[0]; |
| 2082 |
|
|
| 2083 |
Double_t current_ye0 = current_ye0_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye0 = (current_ye0_adc-16384)/16.438; |
| 2084 |
|
|
| 2085 |
Double_t current_ye1_adc = pher->CALO_ENDRUN[2].CALO_HK0[1]; |
Double_t current_ye1_adc = pher->CALO_ENDRUN[2].CALO_HK0[1]; |
| 2086 |
|
|
| 2087 |
Double_t current_ye1 = current_ye1_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye1 = (current_ye1_adc-16384)/16.438; |
| 2088 |
|
|
| 2089 |
Double_t current_ye2_adc = pher->CALO_ENDRUN[2].CALO_HK0[2]; |
Double_t current_ye2_adc = pher->CALO_ENDRUN[2].CALO_HK0[2]; |
| 2090 |
|
|
| 2091 |
Double_t current_ye2 = current_ye2_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye2 = (current_ye2_adc-16384)/16.438; |
| 2092 |
|
|
| 2093 |
Double_t current_ye3_adc = pher->CALO_ENDRUN[2].CALO_HK0[3]; |
Double_t current_ye3_adc = pher->CALO_ENDRUN[2].CALO_HK0[3]; |
| 2094 |
|
|
| 2095 |
Double_t current_ye3 = current_ye3_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye3 = (current_ye3_adc-16384)/16.438; |
| 2096 |
|
|
| 2097 |
Double_t current_ye4_adc = pher->CALO_ENDRUN[2].CALO_HK0[4]; |
Double_t current_ye4_adc = pher->CALO_ENDRUN[2].CALO_HK0[4]; |
| 2098 |
|
|
| 2099 |
Double_t current_ye4 = current_ye4_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye4 = (current_ye4_adc-16384)/16.438; |
| 2100 |
|
|
| 2101 |
Double_t current_ye5_adc = pher->CALO_ENDRUN[2].CALO_HK0[5]; |
Double_t current_ye5_adc = pher->CALO_ENDRUN[2].CALO_HK0[5]; |
| 2102 |
|
|
| 2103 |
Double_t current_ye5 = current_ye5_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye5 = (current_ye5_adc-16384)/16.438; |
| 2104 |
|
|
| 2105 |
Double_t current_ye6_adc = pher->CALO_ENDRUN[2].CALO_HK0[6]; |
Double_t current_ye6_adc = pher->CALO_ENDRUN[2].CALO_HK0[6]; |
| 2106 |
|
|
| 2107 |
Double_t current_ye6 = current_ye6_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye6 = (current_ye6_adc-16384)/16.438; |
| 2108 |
|
|
| 2109 |
Double_t current_ye7_adc = pher->CALO_ENDRUN[2].CALO_HK0[7]; |
Double_t current_ye7_adc = pher->CALO_ENDRUN[2].CALO_HK0[7]; |
| 2110 |
|
|
| 2111 |
Double_t current_ye7 = current_ye7_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye7 = (current_ye7_adc-16384)/16.438; |
| 2112 |
|
|
| 2113 |
Double_t current_ye8_adc = pher->CALO_ENDRUN[2].CALO_HK0[8]; |
Double_t current_ye8_adc = pher->CALO_ENDRUN[2].CALO_HK0[8]; |
| 2114 |
|
|
| 2115 |
Double_t current_ye8 = current_ye8_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye8 = (current_ye8_adc-16384)/16.438; |
| 2116 |
|
|
| 2117 |
Double_t current_ye9_adc = pher->CALO_ENDRUN[2].CALO_HK0[9]; |
Double_t current_ye9_adc = pher->CALO_ENDRUN[2].CALO_HK0[9]; |
| 2118 |
|
|
| 2119 |
Double_t current_ye9 = current_ye9_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye9 = (current_ye9_adc-16384)/16.438; |
| 2120 |
|
|
| 2121 |
Double_t current_ye10_adc = pher->CALO_ENDRUN[2].CALO_HK0[10]; |
Double_t current_ye10_adc = pher->CALO_ENDRUN[2].CALO_HK0[10]; |
| 2122 |
|
|
| 2123 |
Double_t current_ye10 = current_ye10_adc/1.7348 - 9444. ; // micron A |
Double_t current_ye10 = (current_ye10_adc-16384)/16.438; |
| 2124 |
|
|
| 2125 |
|
|
| 2126 |
|
|
| 2141 |
|
|
| 2142 |
Double_t current_yo0_adc = pher->CALO_ENDRUN[3].CALO_HK0[0]; |
Double_t current_yo0_adc = pher->CALO_ENDRUN[3].CALO_HK0[0]; |
| 2143 |
|
|
| 2144 |
Double_t current_yo0 = current_yo0_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo0 = (current_yo0_adc-16384)/16.438; |
| 2145 |
|
|
| 2146 |
Double_t current_yo1_adc = pher->CALO_ENDRUN[3].CALO_HK0[1]; |
Double_t current_yo1_adc = pher->CALO_ENDRUN[3].CALO_HK0[1]; |
| 2147 |
|
|
| 2148 |
Double_t current_yo1 = current_yo1_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo1 = (current_yo1_adc-16384)/16.438; |
| 2149 |
|
|
| 2150 |
Double_t current_yo2_adc = pher->CALO_ENDRUN[3].CALO_HK0[2]; |
Double_t current_yo2_adc = pher->CALO_ENDRUN[3].CALO_HK0[2]; |
| 2151 |
|
|
| 2152 |
Double_t current_yo2 = current_yo2_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo2 = (current_yo2_adc-16384)/16.438; |
| 2153 |
|
|
| 2154 |
Double_t current_yo3_adc = pher->CALO_ENDRUN[3].CALO_HK0[3]; |
Double_t current_yo3_adc = pher->CALO_ENDRUN[3].CALO_HK0[3]; |
| 2155 |
|
|
| 2156 |
Double_t current_yo3 = current_yo3_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo3 = (current_yo3_adc-16384)/16.438; |
| 2157 |
|
|
| 2158 |
Double_t current_yo4_adc = pher->CALO_ENDRUN[3].CALO_HK0[4]; |
Double_t current_yo4_adc = pher->CALO_ENDRUN[3].CALO_HK0[4]; |
| 2159 |
|
|
| 2160 |
Double_t current_yo4 = current_yo4_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo4 = (current_yo4_adc-16384)/16.438; |
| 2161 |
|
|
| 2162 |
Double_t current_yo5_adc = pher->CALO_ENDRUN[3].CALO_HK0[5]; |
Double_t current_yo5_adc = pher->CALO_ENDRUN[3].CALO_HK0[5]; |
| 2163 |
|
|
| 2164 |
Double_t current_yo5 = current_yo5_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo5 = (current_yo5_adc-16384)/16.438; |
| 2165 |
|
|
| 2166 |
Double_t current_yo6_adc = pher->CALO_ENDRUN[3].CALO_HK0[6]; |
Double_t current_yo6_adc = pher->CALO_ENDRUN[3].CALO_HK0[6]; |
| 2167 |
|
|
| 2168 |
Double_t current_yo6 = current_yo6_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo6 = (current_yo6_adc-16384)/16.438; |
| 2169 |
|
|
| 2170 |
Double_t current_yo7_adc = pher->CALO_ENDRUN[3].CALO_HK0[7]; |
Double_t current_yo7_adc = pher->CALO_ENDRUN[3].CALO_HK0[7]; |
| 2171 |
|
|
| 2172 |
Double_t current_yo7 = current_yo7_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo7 = (current_yo7_adc-16384)/16.438; |
| 2173 |
|
|
| 2174 |
Double_t current_yo8_adc = pher->CALO_ENDRUN[3].CALO_HK0[8]; |
Double_t current_yo8_adc = pher->CALO_ENDRUN[3].CALO_HK0[8]; |
| 2175 |
|
|
| 2176 |
Double_t current_yo8 = current_yo8_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo8 = (current_yo8_adc-16384)/16.438; |
| 2177 |
|
|
| 2178 |
Double_t current_yo9_adc = pher->CALO_ENDRUN[3].CALO_HK0[9]; |
Double_t current_yo9_adc = pher->CALO_ENDRUN[3].CALO_HK0[9]; |
| 2179 |
|
|
| 2180 |
Double_t current_yo9 = current_yo9_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo9 = (current_yo9_adc-16384)/16.438; |
| 2181 |
|
|
| 2182 |
Double_t current_yo10_adc = pher->CALO_ENDRUN[3].CALO_HK0[10]; |
Double_t current_yo10_adc = pher->CALO_ENDRUN[3].CALO_HK0[10]; |
| 2183 |
|
|
| 2184 |
Double_t current_yo10 = current_yo10_adc/1.7348 - 9444. ; // micron A |
Double_t current_yo10 = (current_yo10_adc-16384)/16.438; |
| 2185 |
|
|
| 2186 |
|
|
| 2187 |
|
|
| 2215 |
|
|
| 2216 |
Double_t temp_adc_xe6 = pher->CALO_ENDRUN[0].CALO_HK1[6]; |
Double_t temp_adc_xe6 = pher->CALO_ENDRUN[0].CALO_HK1[6]; |
| 2217 |
|
|
| 2218 |
Double_t temp_xe6 = temp_adc_xe6/331.124 - 29.35; // [°C] |
Double_t temp_xe6 = temp_adc_xe6/200.74 - 58.3; // [°C] |
| 2219 |
|
|
| 2220 |
Double_t temp_adc_xo1 = pher->CALO_ENDRUN[1].CALO_HK1[1]; |
Double_t temp_adc_xo1 = pher->CALO_ENDRUN[1].CALO_HK1[1]; |
| 2221 |
|
|
| 2222 |
Double_t temp_xo1 = temp_adc_xo1/331.124 - 29.35; // [°C] |
Double_t temp_xo1 = temp_adc_xo1/200.74 - 58.3; // [°C] |
| 2223 |
|
|
| 2224 |
Double_t temp_adc_xo2 = pher->CALO_ENDRUN[1].CALO_HK1[2]; |
Double_t temp_adc_xo2 = pher->CALO_ENDRUN[1].CALO_HK1[2]; |
| 2225 |
|
|
| 2226 |
Double_t temp_xo2 = temp_adc_xo2/331.124 - 29.35; // [°C] |
Double_t temp_xo2 = temp_adc_xo2/200.74 - 58.3; // [°C] |
| 2227 |
|
|
| 2228 |
Double_t temp_adc_xo4 = pher->CALO_ENDRUN[1].CALO_HK1[4]; |
Double_t temp_adc_xo4 = pher->CALO_ENDRUN[1].CALO_HK1[4]; |
| 2229 |
|
|
| 2230 |
Double_t temp_xo4 = temp_adc_xo4/331.124 - 29.35; // [°C] |
Double_t temp_xo4 = temp_adc_xo4/200.74 - 58.3; // [°C] |
| 2231 |
|
|
| 2232 |
Double_t temp_adc_ye3 = pher->CALO_ENDRUN[2].CALO_HK1[3]; |
Double_t temp_adc_ye3 = pher->CALO_ENDRUN[2].CALO_HK1[3]; |
| 2233 |
|
|
| 2234 |
Double_t temp_ye3 = temp_adc_ye3/331.124 - 29.35; // [°C] |
Double_t temp_ye3 = temp_adc_ye3/200.74 - 58.3; // [°C] |
| 2235 |
|
|
| 2236 |
Double_t temp_adc_ye4 = pher->CALO_ENDRUN[2].CALO_HK1[4]; |
Double_t temp_adc_ye4 = pher->CALO_ENDRUN[2].CALO_HK1[4]; |
| 2237 |
|
|
| 2238 |
Double_t temp_ye4 = temp_adc_ye4/331.124 - 29.35; // [°C] |
Double_t temp_ye4 = temp_adc_ye4/200.74 - 58.3; // [°C] |
| 2239 |
|
|
| 2240 |
Double_t temp_adc_ye7 = pher->CALO_ENDRUN[2].CALO_HK1[7]; |
Double_t temp_adc_ye7 = pher->CALO_ENDRUN[2].CALO_HK1[7]; |
| 2241 |
|
|
| 2242 |
Double_t temp_ye7 = temp_adc_ye7/331.124 - 29.35; // [°C] |
Double_t temp_ye7 = temp_adc_ye7/200.74 - 58.3; // [°C] |
| 2243 |
|
|
| 2244 |
Double_t temp_adc_yo5 = pher->CALO_ENDRUN[3].CALO_HK1[5]; |
Double_t temp_adc_yo5 = pher->CALO_ENDRUN[3].CALO_HK1[5]; |
| 2245 |
|
|
| 2246 |
Double_t temp_yo5 = temp_adc_yo5/331.124 - 29.35; // [°C] |
Double_t temp_yo5 = temp_adc_yo5/200.74 - 58.3; // [°C] |
| 2247 |
|
|
| 2248 |
Double_t temp_adc_yo9 = pher->CALO_ENDRUN[3].CALO_HK1[9]; |
Double_t temp_adc_yo9 = pher->CALO_ENDRUN[3].CALO_HK1[9]; |
| 2249 |
|
|
| 2250 |
Double_t temp_yo9 = temp_adc_yo9/331.124 - 29.35; // [°C] |
Double_t temp_yo9 = temp_adc_yo9/200.74 - 58.3; // [°C] |
| 2251 |
|
|
| 2252 |
Double_t temp_adc_yo10 = pher->CALO_ENDRUN[3].CALO_HK1[10]; |
Double_t temp_adc_yo10 = pher->CALO_ENDRUN[3].CALO_HK1[10]; |
| 2253 |
|
|
| 2254 |
Double_t temp_yo10 = temp_adc_yo10/331.124 - 29.35; // [°C] |
Double_t temp_yo10 = temp_adc_yo10/200.74 - 58.3; // [°C] |
| 2255 |
|
|
| 2256 |
|
|
| 2257 |
hITS5->Fill(obt,temp_xe6); |
hITS5->Fill(obt,temp_xe6); |