Changes for page MTCA ADCs
Last modified by sndueste on 2024/07/08 09:50
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edited by sndueste
on 2024/03/14 10:11
on 2024/03/14 10:11
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- 10-0494-adq412_datasheet.pdf
- 10-0494_C_ADQ412_datasheet.pdf
- 6954ds.pdf
- ACA-amilifier.pdf
- Clocking_AppNote.pdf
- EMP_protector.pdf
- Model_6954_Amplifier_Report.pdf
- Output_behaviour_of_Mini-Circuits_Amplifier.pdf
- ZFL-1000LN.pdf
- ZX85-12G-S+.pdf
- adc_mhz.jpg
- image2019-10-21_15-21-23.png
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- image2019-11-18_17-9-7.png
- pulse_energy_server.jpg
- sis8300l2-m-x009-1-v101.pdf
- sis8900-m-1-1-v104.pdf
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... ... @@ -1,43 +1,26 @@ 1 - === General info ===1 +Content: 2 2 3 -\\ 4 4 5 -* [[ADQ412 server description~[~[image:url:http://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif~|~|width="13" height="12"~]~]>>url:https://ttfinfo.desy.de/FLASHWiki/Wiki.jsp?page=SPdevicesDMA%20ADQ||shape="rect"]] 6 -* [[more ADC server descriptions~[~[image:url:http://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif~|~|width="13" height="12"~]~]>>url:https://ttfinfo.desy.de/DOOCSWiki/Wiki.jsp#section-C_2B_2B+Server+Interface-D_ADCscope?page=C%2B%2B%20Server%20Interface||shape="rect"]] 7 -* [[Description of the DAQ properties related to the ADCs~[~[image:url:http://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif~|~|width="13" height="12"~]~]>>url:https://ttfinfo.desy.de/DOOCSWiki/Wiki.jsp#section-C_2B_2B+Server+Interface-DaqfedConfiguration.?page=C%2B%2B%20Server%20Interface||shape="rect"]] 8 -* [[ a collection of usefull things related to the OPIS ADCs>>doc:FLASH.OPIS ADC related things]] 9 9 10 - \\5 +{{toc minLevel="2"/}} 11 11 12 - === Our cards ===7 +---- 13 13 14 - \\9 += Our ADC cards = 15 15 16 -== ==SP-Devices ADQ412AC ====11 +== GHz ADCs: SP-Devices ADQ412AC == 17 17 18 -We have ADQ412AC-4G-MTCA digitizer cards for the experiment crates (Exp1, Exp2 and FL2Exp1): 19 -[[ADQ412_datasheet.pdf>>attach:10-0494_C_ADQ412_datasheet.pdf]] ( [[new version>>attach:10-0494-adq412_datasheet.pdf]], [[sampling rates table>>attach:Clocking_AppNote.pdf]]) 20 -The cards are connected via Patch panels to the Experimental endstations .13 +We have ADQ412AC-4G-MTCA digitizer cards for the experiment crates (Exp1, Exp2 and FL2Exp1): 14 +[[ADQ412_datasheet.pdf>>attach:10-0494_C_ADQ412_datasheet.pdf]] ( [[new version>>attach:10-0494-adq412_datasheet.pdf]], [[sampling rates table>>attach:Clocking_AppNote.pdf]]) 15 +The cards are connected via Patch panels to the Experimental endstations and can be operated with a jddd panel: 21 21 22 - \\17 +[[image:attach:image2019-10-21_15-21-23.png||width="800"]] 23 23 24 -* **NOTE: between ADC and Patch panel we have installed an [[EMP protector>>attach:EMP_protector.pdf]] and an additional 1dB attenuator** 25 -* for the influence of the Patch cable and the EMP protector see also [[this logbook entry~[~[image:url:http://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif~|~|width="13" height="12"~]~]>>url:http://ttfinfo.desy.de/ExpHallelog/show.jsp?dir=/2016/27/08.07&pos=2016-07-08T17:41:07||shape="rect"]] 26 -* we can offer amplifiers to either amplify small signals or to decouple setups which may deliver voltage peaks fro the ADCs. The available ADCs are: 27 -** 20 dB, 1 GHz, 50 Ohm, ( [[Minicircuits ZFL-1000LN+>>attach:ZFL-1000LN.pdf]]) 28 -** 10 dB, 1.8 GHz, 50 Ohm, ( [[Becker und Hickl, ACA-1-10-I>>attach:ACA-amilifier.pdf]]) 29 29 30 -\\ 31 31 32 -\\ 21 +* **NOTE: between ADC and Patch panel we have installed an [[EMP protector>>attach:EMP_protector.pdf]] and an additional 1dB attenuator** 22 +* for the influence of the Patch cable and the EMP protector see also [[this logbook entry>>url:http://ttfinfo.desy.de/ExpHallelog/show.jsp?dir=/2016/27/08.07&pos=2016-07-08T17:41:07||shape="rect"]] 33 33 34 -* [[Here is a detailed evaluation >>attach:Output_behaviour_of_Mini-Circuits_Amplifier.pdf]] of the 2 amplifiers , their linearity and influence on the signal broadening for different input signals* 35 -* And the test of the [[ Philips scientific Model 6954>>attach:Model_6954_Amplifier_Report.pdf]] 36 - 37 -\\ 38 - 39 -\\ 40 - 41 41 (% class="wrapped" %) 42 42 |((( 43 43 Impedance AC ... ... @@ -47,7 +47,11 @@ 47 47 |((( 48 48 Input voltage range 49 49 )))|=((( 50 -800 mV pp!!!!!!!!!!!!!!!! 33 +the complete range is about 1V for 4096 counts. 34 + 35 +Thus +- 0.5 V for baseline at 0V 36 + 37 +BUT the baseline can also be shifted ... 51 51 ))) 52 52 |((( 53 53 Digitizer resolution ... ... @@ -61,7 +61,7 @@ 61 61 |((( 62 62 Sampling rate 63 63 )))|((( 64 -2 51 +2 * 65 65 )))|((( 66 66 GSPS 67 67 ))) ... ... @@ -79,7 +79,7 @@ 79 79 |((( 80 80 Sampling rate 81 81 )))|((( 82 -4 69 +4 * 83 83 )))|((( 84 84 GSPS 85 85 ))) ... ... @@ -91,29 +91,38 @@ 91 91 GHz 92 92 ))) 93 93 94 - \\81 + ~* note that the sample rate is NOT locked to the FLASH repetition rate ! Thus there is a not integer number of samples between FLASH pulses. The sample rate also differs slightly from ADC card to ADC card. The rough spacing is **1993.846** samples between 2 pulses at 1 MHz for details ask the local contact. 95 95 83 + 96 96 ===== ADC and DOOCS / DAQ ===== 97 97 98 98 The HDF5 names for the ADC traces are depending on the beamline : 99 -\\PG Beamline: 100 -{{code language="none"}}/FL1/Experiment/PG/ADQ412 GHz ADC/CH00/TD{{/code}} 101 -{{code language="none"}}/FL1/Experiment/PG/ADQ412 GHz ADC/CH01/TD{{/code}} 102 -{{code language="none"}}/FL1/Experiment/PG/ADQ412 GHz ADC/CH02/TD{{/code}} 87 +\\PG Beamline: 88 +{{code language="none"}}/FL1/Experiment/PG/ADQ412 GHz ADC/CH00/TD{{/code}} 89 +{{code language="none"}}/FL1/Experiment/PG/ADQ412 GHz ADC/CH01/TD{{/code}} 90 +{{code language="none"}}/FL1/Experiment/PG/ADQ412 GHz ADC/CH02/TD{{/code}} 103 103 {{code language="none"}}/FL1/Experiment/PG/ADQ412 GHz ADC/CH03/TD{{/code}} 104 104 105 -BL Beamlines: 106 -{{code language="none"}}/FL1/Experiment/BL1/ADQ412 GHz ADC/CH00/TD{{/code}} 107 -{{code language="none"}}/FL1/Experiment/BL1/ADQ412 GHz ADC/CH01/TD{{/code}} 108 -{{code language="none"}}/FL1/Experiment/BL1/ADQ412 GHz ADC/CH02/TD{{/code}} 109 -{{code language="none"}}/FL1/Experiment/BL1/ADQ412 GHz ADC/CH03/TD{{/code}} 110 -\\{{code language="none"}}/FL1/Experiment/BL2/ADQ412 GHz ADC/CH00/TD{{/code}} 111 -{{code language="none"}}/FL1/Experiment/BL2/ADQ412 GHz ADC/CH01/TD{{/code}} 112 -\\{{code language="none"}}/FL1/Experiment/BL3/ADQ412 GHz ADC/CH02/TD{{/code}} 93 +BL Beamlines: 94 +{{code language="none"}}/FL1/Experiment/BL1/ADQ412 GHz ADC/CH00/TD{{/code}} 95 +{{code language="none"}}/FL1/Experiment/BL1/ADQ412 GHz ADC/CH01/TD{{/code}} 96 +{{code language="none"}}/FL1/Experiment/BL1/ADQ412 GHz ADC/CH02/TD{{/code}} 97 +{{code language="none"}}/FL1/Experiment/BL1/ADQ412 GHz ADC/CH03/TD{{/code}} 98 +\\{{code language="none"}}/FL1/Experiment/BL2/ADQ412 GHz ADC/CH00/TD{{/code}} 99 +{{code language="none"}}/FL1/Experiment/BL2/ADQ412 GHz ADC/CH01/TD{{/code}} 100 +\\{{code language="none"}}/FL1/Experiment/BL3/ADQ412 GHz ADC/CH02/TD{{/code}} 113 113 {{code language="none"}}/FL1/Experiment/BL3/ADQ412 GHz ADC/CH03/TD{{/code}} 114 114 115 -DOOCS prop : {{code language="none"}}FLASH.FEL/ADC.ADQ.PG/EXP1.CH00/CH00.TD or CH00.DAQ.TD{{/code}} 116 -here the {{code language="none"}}CH00.TD{{/code}} is the full ADC trace as it is sampled ( typically several 100.000 samples per pulse train) while the {{code language="none"}}CH00.DAQ.TD{{/code}} trace only has the number of samples which are sent to the DAQ OR if //grouping// is actvated the {{code language="none"}}CH00.DAQ.TD{{/code}} contins only the grouped spectra. To read the ADC trace with an online analysis program the {{code language="none"}}CH00.DAQ.TD{{/code}} is preferable to use ... 103 +and at FLASH2 104 + 105 + 106 + 107 + 108 +\\\\{{code language="none"}}FL24:/FL2/Experiment/MTCA-EXP1/ADQ412 GHz ADC/CH00/TD/FL2/Experiment/MTCA-EXP1/ADQ412 GHz ADC/CH01/TD/FL2/Experiment/MTCA-EXP1/ADQ412 GHz ADC/CH02/TD/FL2/Experiment/MTCA-EXP1/ADQ412 GHz ADC/CH03/TD{{/code}} 109 + 110 + 111 +DOOCS prop : {{code language="none"}}FLASH.FEL/ADC.ADQ.PG/EXP1.CH00/CH00.TD or CH00.DAQ.TD{{/code}} 112 +here the {{code language="none"}}CH00.TD{{/code}} is the full ADC trace as it is sampled ( typically several 100.000 samples per pulse train) while the {{code language="none"}}CH00.DAQ.TD{{/code}} trace only has the number of samples which are sent to the DAQ OR if //grouping// is activated the {{code language="none"}}CH00.DAQ.TD{{/code}} contains only the grouped spectra. To read the ADC trace with an online analysis program the {{code language="none"}}CH00.DAQ.TD{{/code}} is preferable to use ... 117 117 DAQ channel: {{code language="none"}}FLASH.FEL/ADC.ADQ.PG/EXP1.CH00{{/code}} 118 118 119 119 in addition there are also additional parameters saved like: ... ... @@ -122,37 +122,52 @@ 122 122 * error (state) 123 123 * offset 124 124 125 - \\121 +== Amplifiers for the GHZ ADCs == 126 126 127 -==== Struck SIS8300-L2D ==== 123 +* **we can offer [[ Phillips scientific Model 6954>>attach:6954ds.pdf]] amplifiers** to either amplify small signals or to decouple setups which may deliver voltage peaks fro the ADCs. 124 +* The available ADCs 5x, 10x, 20 x 50x and 100x 125 +* The ADCs can be borrowed from Markus Braune 126 +* The Amplifiers fit perfectly to the dynamic range of the GHz ADCs - here a [[ test of the Phillips scientific amplifier>>attach:Model_6954_Amplifier_Report.pdf]] 127 +* There are also [[BiasTs>>attach:ZX85-12G-S+.pdf]] available that can be borrowed ([[link to internal page>>doc:FLASH.Bias T]])[[image:url:https://confluence.desy.de/download/attachments/177857419/20210414_161820.jpg?version=5&modificationDate=1618412745169&api=v2||alt="20210414_161820.jpg" thumbnail="true" height="250" width="333"]] 128 128 129 +== 108 MHz ADCs: Struck SIS8300-L2D == 130 + 129 129 There is one in each of the MTCAs in the hall: MTCA-EXP1 at PG/BL1, the other at BL2 and BL3. 130 130 131 -They are 16 bit, 10 channel, 125 MS/s ADCs. 133 +They are 16 bit, 10 channel, 125 MS/s ADCs. Here is a link to the [[Struck website>>url:https://www.struck.de/sis8900.html||shape="rect"]] 132 132 133 -\\ 134 134 135 -* [[User Manual SIS8300-L2 ADC ACM>>attach:sis8300l2-m-x009-1-v101.pdf]] 136 -* [[User Manual SIS8900 RTM>>attach:sis8900-m-1-1-v104.pdf]] 137 - 138 138 50 Ohm input impedance, -1 V,...,+1 V default input range, analog signals can be routed to AC and DC input stage. The coupling is DC via op-amp (switching to AC transformer involves resoldering of SMD solder bridges). 139 139 140 140 Here is a trace of the first signal, a 1 MHz trigger connected from the x2timer board in the same MTCA: 141 141 142 -[[ ~[~[image:url:http://hasfweb.desy.de/pub/Setup/MtcaAdc/adc_mhz.jpg~|~|alt="adc_mhz.jpg" width="550" height="500"~]~]>>attach:adc_mhz.jpg]]140 +[[image:attach:adc_mhz.jpg||height="400"]] 143 143 144 -\\ 145 145 146 -== ==Using the Struck SIS8300-L2D to detect only integrated values of pulses ====143 +== Pulse energy server: Using the Struck SIS8300-L2D to detect only integrated values of pulses == 147 147 148 -FS-LA (Falko Peters) programmed a pulse detection server that automatically detects peaks in the sign el and integrates the samples around the peak.<\br> things to set:145 +FS-LA (Falko Peters) programmed a pulse detection server that automatically detects peaks in the signal and integrates the samples around the peak. 149 149 150 -* Peak height: from what signal on (incounts) is the signal to be counted as peak 147 +Things to set: 148 + 149 +* Min peak height: threshold fro which on some signal is considered to be a peak. The actual peak is then determined as the maximum of the counts after the threshold 151 151 * pre and post peak integration time: how much ns to be integrated before and after the peak sample that are taken into account for the peak 152 152 * pre and post peak noise time: before and after the samples that are taken for the actual signal these samples are used as background ( they also can be used to define the "deadtime" of the detector before it searches for new peaks. 153 153 154 -[[~[~[image:url:http://hasfweb.desy.de/pub/Setup/MtcaAdc/pulse_energy_server.jpg~|~|alt="pulse_energy_server.jpg" width="400" height="300"~]~]>>attach:pulse_energy_server.jpg]] 155 155 156 -\\ 157 157 158 -* [[attach:Model_6954_Amplifier_Report.pdf]]: Model_6954_Amplifier_Report.pdf 155 +[[image:attach:pulse_energy_server.jpg||height="400"]] [[image:attach:image2019-11-18_17-9-7.png||height="400"]] 156 + 157 + 158 + jddd server panel Definition of the parameters 159 + 160 + 161 + 162 + 163 +== Detailed expert stuff == 164 + 165 +* [[ a collection of usefull things related to the OPIS ADCs>>doc:FLASH.OPIS ADC related things]] 166 +* a list of [[doc:FLASH.our MTCA ADC cards]] (only internal link) 167 +* load tests: [[link to Logbook entry>>url:https://ttfinfo.desy.de/Flash2_FL26elog/show.jsp?dir=/2023/23&pos=2023-06-08T16:11:08||shape="rect"]] for the "mobile GHz ADC" we can save 12 ADCs with 1.8 Gsample for 333 µm / 600 ksamples without losses - but it produces looooots of data .. 168 + 169 +
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