source: trunk/MagicSoft/Simulation/Detector/include-MFadc/MFadc.hxx@ 2291

Last change on this file since 2291 was 2291, checked in by blanch, 21 years ago
Header file for MFadc.cxx 1.12
File size: 4.2 KB
Line 
1#ifndef __MFadc__
2#define __MFadc__
3//
4// class MFadc
5//
6// implemented by Harald Kornmayer
7//
8// This is a class to simulate the FADC.
9// It assumes a special response of the PMT for one single Photo-electron.
10//
11//
12//
13#include <stream.h>
14#include <math.h>
15
16#include "TObject.h"
17#include "TRandom.h"
18
19#include "Mdefine.h"
20
21#include "MTriggerDefine.h"
22#include "MFadcDefine.h"
23
24class MMcEvt ;
25
26//==========
27// MFadc
28//
29// The simulation of the Flash ADC system for the MAGIC teleskop is done with
30// this class.
31// So all methods concerning the FADC System should be done inside this
32// class.
33//
34// The Idea is to (in)put the data of the photo electrons into the class and
35// generate the response (output) of the FADC to that input. Response means
36// in this sense the ADC values of the different time slices for all pixels
37//
38// The pixelisation is done by the camera program of Jose Carlos.
39//
40// This class is closly connected to the MTrigger classs. So some of the
41// values defined in MTriggerDefine.h are also used by this class.
42//
43// But a lot of other stuff is defined in MFadcDefine.h.
44//
45//
46
47
48class MFadc {
49 private:
50 //
51 // then for all pixels the shape of all the analog signals
52 //
53 Bool_t used[CAMERA_PIXELS] ; // a boolean to indicated if the pixels is used in this event
54 Float_t pedestal[CAMERA_PIXELS] ; // Pedestal of FADCs
55
56 Float_t sig[CAMERA_PIXELS][(Int_t) SLICES_MFADC] ; // the analog signal for pixels
57 Float_t noise[CAMERA_PIXELS*(Int_t) SLICES_MFADC*101];
58
59 UChar_t output[CAMERA_PIXELS][FADC_SLICES]; // the analog signal for pixels that is read after a trigger occurs (high gain).
60
61 UChar_t output_lowgain[CAMERA_PIXELS][FADC_SLICES]; // analog signal, low gain.
62
63 //
64 // first the data for the response function
65 //
66 Float_t fwhm_resp ; // fwhm of the phe_response function (in ns)
67 Float_t ampl_resp ; // area below curve of the phe_response function (in counts * ns)
68 Float_t sing_resp[ RESPONSE_SLICES_MFADC ] ; // the shape of the phe_response function
69
70 //
71 // We may end up with a different reponse for the outer pixels
72 //
73 Float_t fwhm_resp_outer ; // fwhm of the phe_response function (in ns)
74 Float_t ampl_resp_outer ; // area below curve of the phe_response function (in counts * ns)
75 Float_t sing_resp_outer[ RESPONSE_SLICES_MFADC ] ; // the shape of the phe_response function
76 //
77 // RandomGenerator for the Electonic Noise
78 //
79
80 TRandom *GenElec ;
81
82
83public:
84
85 MFadc(Float_t ampl=MFADC_RESPONSE_AMPLITUDE,
86 Float_t fwhm=MFADC_RESPONSE_FWHM,
87 Float_t amplout=MFADC_RESPONSE_AMPLITUDE,
88 Float_t fwhmout=MFADC_RESPONSE_FWHM) ;
89
90 void Reset() ;
91
92 void Fill( Int_t, Float_t, Float_t, Int_t ) ;
93
94 void Fill( Int_t, Float_t, Float_t ) ;
95
96 void FillOuter( Int_t, Float_t, Float_t ) ;
97
98 void Set( Int_t iPix, Float_t res[(Int_t) SLICES_MFADC]);
99
100 void AddSignal( Int_t iPix, Float_t res[(Int_t) SLICES_MFADC]);
101
102 void SetPedestals( Int_t ped);
103
104 void SetPedestals( Float_t ped[CAMERA_PIXELS]);
105
106 void SetFwhm( Float_t fwhm){
107 fwhm_resp=fwhm;
108 }
109
110 void SetAmpl( Float_t ampl){
111 ampl_resp=ampl;
112 }
113
114 void SetFwhmOuter( Float_t fwhm){
115 fwhm_resp_outer=fwhm;
116 }
117
118 void SetAmplOuter( Float_t ampl){
119 ampl_resp_outer=ampl;
120 }
121
122 void Baseline();
123
124 void Pedestals();
125
126 void Offset( Float_t, Int_t );
127
128 void SetElecNoise(Float_t value=2.0);
129
130 void ElecNoise(Float_t value=2.0) ;
131
132 void Scan() ;
133
134 void Scan(Float_t time) ;
135
136 void GetResponse( Float_t *resp ) ;
137
138 void GetPedestals( Float_t *offset);
139
140 void TriggeredFadc(Float_t time);
141
142 void ShowSignal ( MMcEvt *McEvt , Float_t ) ;
143
144 UChar_t GetFadcSignal(Int_t pixel, Int_t slice);
145
146 UChar_t GetFadcLowGainSignal(Int_t pixel, Int_t slice);
147
148 Float_t GetAmplitude() {
149 return ampl_resp ;
150 }
151
152 Float_t GetFwhm() {
153 return fwhm_resp ;
154 }
155
156 Float_t GetAmplitudeOuter() {
157 return ampl_resp_outer ;
158 }
159
160 Float_t GetFwhmOuter() {
161 return fwhm_resp_outer ;
162 }
163
164} ;
165
166
167#endif
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