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CLIC NI Acquisition and Control Module update CLIC Module Working group meeting 3-10-2013 Adriaan Rijllart EN-ICE-MTA.

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Presentation on theme: "CLIC NI Acquisition and Control Module update CLIC Module Working group meeting 3-10-2013 Adriaan Rijllart EN-ICE-MTA."— Presentation transcript:

1 CLIC NI Acquisition and Control Module update CLIC Module Working group meeting 3-10-2013 Adriaan Rijllart EN-ICE-MTA

2 Content CLIC ACM requirements Motivation for NI systems Inventory of signals Prototype system proposal MiniaturisationPlanningSummary 3/10/2013CMWG - A. Rijllart2

3 ACM requirements 23000 modules-2m length-200 signals/module - details in excel file - large variety of signal sources (18 GHz wakefield monitor to DC temperature sensors or flow-meters) - requested readout speed: up to 100 Hz - single value readouts or vector readouts - FE electronics needs external timing reference with ps stability Standard industrial solution with crates and individual modules will explode the available budget TDR phase of CLIC (2011-2016) will seek industrial “custom solution” 3/10/2013CMWG - A. Rijllart3

4 Motivation for NI-PXI systems Industrial standard Hardware and software made to work together Large offer 600 alliance partners world wide Good support 3/10/2013CMWG - A. Rijllart4

5 Inventory of signals 3/10/2013CMWG - A. Rijllart5 Ch typeS-rate [S/s]Resolution [bits]# ch# ch + bu V. Fast ADC2 G800 Fast ADC200 M142848 Slow ADC1 k16105160 Slow DAC1 k18832 Raw DIO1 k146256 Serial I/O1432 Total301528

6 NI DAQ modules 3/10/2013CMWG - A. Rijllart6 Ch typeS-rate [S/s] Spec/NI Resolution [bits] Spec/NI Module type # ch/mod Price($)/ch U. fast ADC5 G10PXIe-516244100 V. fast ADC2 G8PXI-515323300 Fast ADC200 M (250 M)14NI 5761R43200 Slow ADC1 k (3 k)16PXI-622540/8040/20 Slow DAC1 k (8 k)18 (16)PXI-62252free Raw DIO1 k (1 M)PXI-622524free PXIe-65353250 Serial I/ONI 658416180

7 NI system proposal 3/10/2013CMWG - A. Rijllart7 Ch typeS-rate [S/s] NI Resolution [bits] NI #chModule type NI # ch NI# modules NI V. Fast ADC 2 G80PXI-515300 Fast ADC200 M (250 M) 1428NI 5761R287 Slow ADC1 k (3 k)16105PXI-62251604 Slow DAC1 k (8 k)18 (16)8PXI-622584* Raw DIO1 k (1 M)146PXI-6225964* PXIe-6535642 Serial I/O14NI 6584161 Total372* Included

8 NI system cost 3/10/2013CMWG - A. Rijllart8 Ch typeModule NI# ch NI# mod NICost $/modCost $ V. Fast ADCPXI-51530075000 Fast ADCNI 5761R2871230086100 Slow ADCPXI-6225160420008000 Slow DACPXI-622584**0 Raw DIOPXI-6225964**0 PXIe-653564220004000 Serial I/ONI 65841617500 CratePXIe-108518500 Controller – FPGA + fibre PXIe- PCIe8375 15500 PC800 Total372* Included120400

9 NI system overview 3/10/2013CMWG - A. Rijllart9 Fast ADCDIO + Slow ADC + DAC DIO Serial Synchro IEEE-1588 Controller

10 FlexRIO architecture 3/10/2013CMWG - A. Rijllart10

11 FPGA controller Fiber-Optic MXI-Express x4 link, PXIe-PCIe8375 838 MB/s sustained transfer rate Remote control of PXIe crate Cost 5 kCHF 3/10/2013CMWG - A. Rijllart11

12 Next steps NI-ACM Functional validation (DAQ, timing, data transfer) Purchase system with FPGA based controller Communication test with optical fibre (length) Validate on Module Test Stand Develop White Rabbit FPGA controller Radiation resistance test? Controller + DAQ boards 3/10/2013CMWG - A. Rijllart12

13 White Rabbit-FPGA controller Development by NI White Rabbit timing signal decoding Loop back in the daisy chain Estimated cost 25 kCHF The White Rabbit timing should be decoded on the FPGA The White Rabbit timing should be decoded on the FPGA The loop back mechanism should be implemented, if we want to be protected from a single fibre fault The loop back mechanism should be implemented, if we want to be protected from a single fibre fault 3/10/2013CMWG - A. Rijllart13

14 Miniaturisation Final system requirements: cheap consuming little power easy cooling (conduction?) smallSolution: Miniaturise 15 boards into 1 small box NI has long experience with custom design 3/10/2013CMWG - A. Rijllart14

15 CMW integration OASIS compatibility Choices: FESA 3 Lightweight CMW client A short study needed to compare the 2 solutions 3/10/2013CMWG - A. Rijllart15

16 NI-ACM (+ RF) Planning YearPersonnelMaterialWork Packages 20130.2 CERN staff 1.0 NI consultant 120 kCHF 5 kCHF 25 kCHF 130 kCHF Prototype NI-ACM Fibre controller with 100 m fibre Realisation of the “fibre +” interface Test of CLIC module on CTF3 RF measurement systems x4 20140.2 CERN staff 1.0 NI consultant 1.0 CLIC fellow 70 kCHFDefinition of a single board /highly compact NI-ACM TDR contribution 20150.1 CERN staff 1.0 CLIC fellow Radiation test TDR contribution 20160.1 CERN staff TDR contribution 3/10/2013CMWG - A. Rijllart16

17 Summary NI system can fit the ACM requirements Miniaturisation can solve the cost, power, cooling and space requirements Proposed program: Validation of NI-ACM functionality: 120 kCHF Fibre optic controller: 5 kCHF WR timing and loop back development: 25 kCHF 3/10/2013CMWG - A. Rijllart17

18 Thank you 3/10/2013CMWG - A. Rijllart18 Questions?


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