Changes for page Trigger Howto

Last modified by sndueste on 2023/07/07 11:28

From version 26.1
edited by sndueste
on 2020/02/05 14:18
Change comment: There is no comment for this version
To version 6.1
edited by sndueste
on 2019/09/17 13:36
Change comment: There is no comment for this version

Summary

Details

Page properties
Content
... ... @@ -2,223 +2,19 @@
2 2  
3 3  {{toc/}}
4 4  
5 -= Introduction (user panel)
6 - =
5 += Introduction =
7 7  
8 -The MTCA based triggers have a jitter in the few ps range, the delay can be shifted in 9 ns steps, One can choose between 10 Hz triggers, Triggers connected to the (fast) FEL shutters,  frequencies locked to the pulses (e.g. 1MHz) and the actual bunch patterns. A detailed description can be found in [[x2Timer manual>>attach:x2Timer.pdf]] ([[Design Paper>>url:http://ttfinfo2.desy.de/doocs/Timing/CDRv2.2short.pdf||shape="rect"]]).
7 +The MTCA based triggers have a jitter in the few ps range, the delay can be shifted in 1 ns steps (over many ms), one can choose between 10 Hz triggers, frequencies locked to the pulses (e.g. 1MHz) and the actual bunch patterns. A detailed description can be found in [[x2Timer manual>>attach:x2Timer.pdf]].
9 9  
10 -In short:
9 +in short: the triggers are for low impedance (~~50 OHM terminated ?? ), 5V triggers with an adjustable width. The main control panel for the x2 timer has the control options for the 3 front modules (connected with a RJ45 cable - connecting to a "trigger box" with 2 trigger exits (Lemo) each) and 8 Lemo exits at the back of the crate. in the BL-beamline case these triggers are connected to the BNC (patch panel) ports at the rack.
11 11  
12 -* the triggers are for low impedance (~~50 Ohm )
13 -* signal level is + 5V - otherwise 0V (in the expert panel one can also invert the signal - base line is +5 V and trigger 0V)
14 -* The trigger are send to the MTCA several ms before the first FEL pulse (3.1 ms for the "standard" trigger, 21.5 ms for the "early" trigger).
15 -* The timer card can delay the trigger in 9 ns  steps for more than 100 ms (an option to shift the trigger in 1 ns steps is available in the expert panel)
16 -* The shown delay in µs is in respect to the //first// FEL pulse. negative delay: trigger comes before FEL, positive : trigger comes after the FEL.
17 -* The desired delay has to be entered in the "delay to be set" field and as second step pressing the "set delay" sends the delay value to the timer card. Then the trigger delay will be changed and the "actual delay" will be updated.
18 -* The trigger can be set to only provide a trigger signal if the FEL Fast shutter is open. One has to choose which FEL shutter to use.
19 -* The trigger  width can be adjusted from 9 ns to several ms in 9 ns steps
20 -* The timer card can in addition to the 10 Hz triggers also provide frequencies which are linked to the FEL repetition rate and the actual burst pattern of the FEL. For details how to set these modes see below
21 -* At the beamlines the triggers are provided with a  BNC patch panel
11 +The main control can be done with a simplified user panel which can handle the timing in respect to the FEL pulses and not in respect to some (arbitrary) reference time ( Event)[[~[~[image:url:http://hasfweb.desy.de/pub/Setup/TriggerHowto/Trigger_scheme.gif~|~|alt="Trigger_scheme.gif" width="800"~]~]>>attach:Trigger_scheme.gif]]
22 22  
23 -The main control can be done with a simplified user panel which can handle the timing in respect to the FEL pulses (and not in respect to some arbitrary event time)
24 24  
25 -
26 26  \\
27 27  
28 -[[image:attach:image2020-1-23_12-10-59.png||width="700"]]
16 += different trigger events (starting points) =
29 29  
30 -\\
31 -
32 -\\
33 -
34 -Choosing a FLASH1 trigger there are 2 options to be synchronized with the BL and the PG shutter :
35 -
36 - [[image:attach:image2020-1-23_12-29-40.png||height="250"]]
37 -
38 -A yellow background indicates that the trigger is synchronized to a fast shutter:
39 -
40 -[[image:attach:image2020-1-23_12-31-41.png||height="250"]] or:[[image:attach:image2020-1-23_12-32-20.png||height="250"]]
41 -
42 -\\
43 -
44 -\\
45 -
46 -\\
47 -
48 -= Expert panels =
49 -
50 -\\
51 -
52 -[[image:attach:image2020-1-23_12-28-6.png||height="250"]] [[image:attach:image2019-9-17_13-8-46.png||height="400"]]
53 -
54 -With the **"Expert overview"** one gets the overview over all channels available on the timing card and can configure the card. This is useful to look what channels are using clock settings or burst mode settings that one wants to change ... and using the other tabs one can set parameters for clocks and bursts (see below)
55 -
56 -\\
57 -
58 -For each trigger channel there is in addition an **"Expert panel"** to set the properties of THIS channel
59 -
60 -[[image:attach:image2020-1-23_12-28-46.png||height="250"]] [[image:attach:image2019-9-17_13-15-38.png||width="550"]]
61 -
62 -\\
63 -
64 -\\
65 -
66 -= Set a constant frequency to a channel =
67 -
68 -=
69 -[[image:attach:image2019-9-17_13-18-9.png||height="250"]][[image:attach:image2019-9-17_13-18-37.png||height="149"]] =
70 -
71 -\\
72 -
73 -The timer card provides the option to generate  frequencies that are synched to the FEL reprate on the ps level. One can set 3 Clocks by deviding the reference frequency of 54.2 MHz by n.** Please check (using the Expert overview ) before changing a frequency of it is used for some other channel !!**
74 -
75 -Since our main FEL frequency is 100.31 MHz the dividers are not straight forward:
76 -
77 -[[image:attach:image2019-9-17_14-22-29.png||width="450" align="right"]]
78 -
79 -\\
80 -
81 -(% class="wrapped" %)
82 -|=(((
83 -Clock frequency
84 -)))|=(((
85 -Divider to be set
86 -)))
87 -|(((
88 -"1 MHz" (1000.31 kHz)
89 -)))|(((
90 -53
91 -)))
92 -|(((
93 -"500 kHz" (501.5 kHz)
94 -)))|(((
95 -107
96 -)))
97 -|(((
98 -"250 kHz" (250.8 kHz)
99 -)))|(((
100 -215
101 -)))
102 -|(% colspan="1" %)(((
103 -"200 kHz" (200.6 kHz)
104 -)))|(% colspan="1" %)(((
105 -269
106 -)))
107 -|(% colspan="1" %)(((
108 -"100 kHz" (100.3 kHz)
109 -)))|(% colspan="1" %)(((
110 -539
111 -)))
112 -
113 -\\
114 -
115 -== General FLASH frequencies: ==
116 -
117 -\\
118 -
119 -(% class="relative-table wrapped" style="width: 19.422%;" %)
120 -|(% class="highlight-grey" title="Hintergrundfarbe : Grau" data-highlight-colour="grey" %)(((
121 -(% style="color: rgb(0,0,0);" title="" %)**Name          
122 -**
123 -)))|(% class="highlight-grey" title="Hintergrundfarbe : Grau" data-highlight-colour="grey" %)(((
124 -(% style="color: rgb(0,0,0);" title="" %)**Frequency                
125 -**
126 -)))|(% class="highlight-grey" title="Hintergrundfarbe : Grau" data-highlight-colour="grey" %)(((
127 -(% style="color: rgb(0,0,0);" title="" %)**Divider**
128 -)))
129 -|(((
130 -1.3 GHz
131 -)))|(((
132 -1300.000000 MHz
133 -)))|(((
134 -\\
135 -)))
136 -|(((
137 -108 MHz
138 -)))|(((
139 -108.333333 MHz
140 -)))|(((
141 -12
142 -)))
143 -|(((
144 -9 MHz
145 -)))|(((
146 -9.02777777 MHz
147 -)))|(((
148 -144
149 -)))
150 -|(((
151 -4.5 MHz
152 -)))|(((
153 -4.513888 MHz
154 -)))|(((
155 -288
156 -)))
157 -|(((
158 -1 MHz
159 -)))|(((
160 -1.003086 MHz
161 -)))|(((
162 -1296
163 -)))
164 -
165 -\\
166 -
167 -Once a clock is configured with the right frequency one can choose in the "expert panel" of the according channel the "FPGA clock" in the "input source select"  chooser.
168 -
169 -One has to set the delay to values less than the repetition rate ... (so for 1 MHz between 0 and 990 µs)  and the trigger width also less than the rep rate ...
170 -
171 -This results in a continuous train of pulses with the set trigger width.
172 -
173 -= Creating an (own) burst trigger =
174 -
175 -One can use now a SECOND trigger channel which is set to a regular 10 Hz trigger  and gate the clock output to create a burst with defined start point and length,
176 -
177 -For the example we use the FRONT.TRG2 (BL3 Trg5) as gate pulse which defines the length of the burst (set with the trigger width) and the (rough) starting point of the burst. This trigger is only used as gate and the physical trigger output is NOT used.
178 -
179 -The  second channel (here FRONT.TRG3 (BL3 Trg6) which is set to the clock frequency defines the reprate (by the FPGA clock setting) , the exact starting point of the first trigger ( by the delay ) and the width of the  MHz/kHz triggers (width).
180 -
181 -**To get from the clock to the burst trigger** one has to:
182 -
183 -* set the  "2nd source select" to the gate trigger ( here FRONT.TRG2) - this defines a second source to considder for the trigger output.
184 -* and the "output source select" to "AND 2nd Ch."  this finally only sends a trigger if on both inputs (clock and gate) we have a high signal.
185 -
186 -\\
187 -
188 -[[image:attach:image2019-9-17_14-35-5.png||height="250"]] [[image:attach:image2019-9-17_14-34-38.png||width="400"]]
189 -
190 -\\
191 -
192 -\\
193 -
194 -= Real bunch trigger  - get a trigger for each FEL pulse =
195 -
196 -\\
197 -
198 -Sometimes it is convenient to get a trigger pulse for each pulse in the FEL. thus if the FEL number of bunches or reprate are changed, the trigger adapts accordingly.
199 -
200 -For this one has to select the source of interest in the expert overview panel (tab: "Bunch pattern") ... well for us this is FLASH1 (FL1D) or FLASH2 (FL2D)
201 -
202 -There are 6 different bunch pattern "channels" one can configure. Typically only 2 are needed ... And in each one there are 6 selectors to choose sources . We only need one - it does not matter in which one is used.
203 -
204 -[[~[~[image:attach:image2019-9-17_14-51-28.png~|~|height="250"~]~]>>attach:image2019-9-17_14-51-28.png]][[image:attach:image2019-9-17_14-47-15.png||thumbnail="true" height="199"]]
205 -
206 -\\
207 -
208 -In the expert panel one can now choose the configured "Bunch Pattern" as "Input source select"
209 -
210 -**NOTE: To shift the burst in time one can no longer use the delay of the individual channel BUT the delay in the "Bunch pattern" tab in the expert overview! This now shifts all bursts ... so you better know what you are doing. typically the burst is already shifted to the actual FEL timing ... Shifting the timing should be discussed with the beamline scientist / local contact ...**
211 -
212 -\\
213 -
214 -[[image:attach:image2019-9-17_15-4-47.png||height="250"]][[image:attach:image2019-9-17_14-52-40.png||height="250"]]
215 -
216 -\\
217 -
218 -\\
219 -
220 -= Different trigger events (starting points) =
221 -
222 222  one can configure each channel for an individual trigger event
223 223  
224 224  **FLASH1**
... ... @@ -229,16 +229,6 @@
229 229  )))|(((
230 230  function
231 231  )))
232 -|(% colspan="1" %)(((
233 -21
234 -)))|(% colspan="1" %)(((
235 -Trig16 + first bunch of FLASH1 - this trigger is shifted when FL1 starts later than "700"
236 -)))
237 -|(% colspan="1" %)(((
238 -180
239 -)))|(% colspan="1" %)(((
240 -shifts with the start time of FLASH1 as event 21 but comes 23 ms  before the FEL
241 -)))
242 242  |(((
243 243  16
244 244  )))|(((
... ... @@ -257,13 +257,18 @@
257 257  |(((
258 258  224
259 259  )))|(((
260 -E0 event of the BL fast shutter ( 19 ms before the FEL) - to be switched off in 2020
46 +E0 event of the BL fast shutter ( 19 ms before the FEL)
261 261  )))
262 262  |(((
263 263  225
264 264  )))|(((
265 -E1 event of the PG fast shutter ( 19 ms before the FEL) - to be switched off in 2020
51 +E1 event of the PG fast shutter ( 19 ms before the FEL)
266 266  )))
53 +|(((
54 +21
55 +)))|(((
56 +Trig16 + first bunch of FLASH1 - this trigger is shifted when FL1 starts later than "700"
57 +)))
267 267  
268 268  \\
269 269  
... ... @@ -285,7 +285,7 @@
285 285  |(((
286 286  181
287 287  )))|(((
288 -shifts with the start time of FLASH2 as event 22 but comes 23 ms  before the FEL
79 +shifts with the start time of FLASH2 as event 22 but comes 22 ms ! before the FEL
289 289  )))
290 290  
291 291  from this trigger as starting point one can shift the timing in 9 ns steps first and finally in 0.9 ns steps for fine adjustment.
... ... @@ -292,40 +292,68 @@
292 292  
293 293  \\
294 294  
86 += Expert panels =
87 +
295 295  \\
296 296  
297 -= Info about the Fast shutter trigger =
90 +[[image:attach:image2019-9-17_13-10-56.png||height="250"]] [[image:attach:image2019-9-17_13-8-46.png||height="400"]]
298 298  
299 -Since Jan 2020 the fast shutter trigger at FLASH1 is generated via local inhibit at the EXP1 and EXP2 crate and not via E0 and E1 events anymore
92 +With the "Expert overview" one gets the overview over all channels available on the timing card and can configure the card. This is useful to look what channels are using clock settings or burst mode settings that one wants to change ... and using the other tabs one can set parameters for clocks and bursts (see below)
300 300  
301 -for details see [[doc:FLASH.Fast Shutter trigger inhibit system]]
302 -
303 303  \\
304 304  
305 -== Special trigger options for the fast shutter: ==
96 +For each trigger channel there is in addition a expert panel to set the properties of THIS channel
306 306  
307 -=== Fast shutter inhibit signal ===
98 +[[image:attach:image2019-9-17_13-14-52.png||height="250"]] [[image:attach:image2019-9-17_13-15-38.png||width="550"]]
308 308  
309 -It is possible to have the fast shutter inhibit signal (the signal coming from the fast shutter to the inhibit boxes connected to the X2 cards) directly available for users. For this one can select the output source as 2nd channel:
100 +\\
310 310  
311 -[[image:attach:image2020-2-5_10-59-41.png||height="250"]]
102 +\\
312 312  
313 313  \\
314 314  
315 -=== Inverse fast shutter trigger ===
106 += Set a constant frequency to a channel
107 +[[image:attach:image2019-9-17_13-18-9.png||height="250"]][[image:attach:image2019-9-17_13-18-37.png||height="149"]] =
316 316  
317 -If one wants to have an inverse fast shutter trigger (10 Hz signal that comes only if the fast shutter is** CLOSED**) one can use a T and a small Lemo cable to double the input from the fast shutter  to another input at the inhibit box.
109 +\\
318 318  
319 -In the FL2 case input1 is the regular fast shutter channel and input2 is usually not used. for this additional input one can set the input configuration to **inverse:**
111 +\\
320 320  
321 -[[image:attach:image2020-2-5_14-11-55.png||height="400"]]
113 +The timer card provides the option to generate  frequencies that are synched to the FEL reprate on the ps level. One can set 3 Clocks by deviding the reference frequency of 54.2 MHz by n.** Please check before changing a frequency of it is used for some other channel !!**
322 322  
323 -\\
115 +Since our main FEL frequency is 100.31 MHz the dividers are not straight forward:
324 324  
117 +|=(((
118 +Clock frequency
119 +)))|=(((
120 +Devider to be set
121 +)))
122 +|(((
123 +"1 MHz" (1000.31 kHz)
124 +)))|(((
125 +53
126 +)))
127 +|(((
325 325  \\
129 +)))|(((
130 +\\
131 +)))
132 +|(((
133 +\\
134 +)))|(((
135 +\\
136 +)))
326 326  
327 327  \\
328 328  
329 329  \\
330 330  
142 +* in order to generate a stable frequency one has to set the input source to FPGA clock (and use dividers to get the desired frequency)
143 +* to generate the burst patterns of the FEL one has to choose a trigger event (best 116 for FLASH 2 and 16 for FLASH1) and activate Destination 1 for FLASH1 and Destination 2 for FLASH2 . finally one has to assign the activated Bunch pattern mask to the trigger channel of choice . now the pattern can be shifted and the trigger width can be changed as with the 10 Hz triggers. **IMPORTANT: to move the bunchtrain to the desired starting point the DELAY in the expert panel (see below) has to be used. The Trigger in the user panel (see above) has to be set to 0 !!!**
144 +[[~[~[image:url:http://hasfweb.desy.de/pub/Setup/TriggerHowto/mtcatrigger2k.png~|~|alt="mtcatrigger2k.png" width="607" height="458"~]~]>>attach:mtcatrigger2k.png]]
145 +
146 +here an example defining the bunch pattern for FLASH1 to mask 1
147 +
331 331  \\
149 +
150 +[[here is a link to the old VME trigger system>>doc:FLASH.VMETrigger]]