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GHISMO : CENBG-SEA Development
AROUND ASIC MODULE BOARD:Versatile Analog Processing
Reference CENSEA171000xx-00
12/10/2018
2
Versioning
Index Evolution Date
00 Creation 01/06/2017
01 Update after TED design 07/09/2017
02 Update for GET WORKSHOP 8/10/2018
3
Document validation
Action Name Function/Entity Date Visa
Written by P. Hellmuth 05/09/2017
Written by F. Druillole 08/10/2018
Verified by A. Rebii
4
Project reference documents
Document Reference Transmitter Date
GES specification CENSEA17100015-00 P. HELLMUTH 28/04/2017
GHISMO : CENBG-SEA Development
AROUND ASIC MODULE BOARD:Versatile Analog Processing
Reference CENSEA171000xx-00
12/10/2018
6
Concept
Provide demonstration modules including hardware,
firmware and software
Provide Test module facilities
SEA building blocks will allow to adapt different detection
architectures
Each module must be documented and functional to
convince labs about the
interest to go further in developments
7
CENBG/SEA - STRATEGY – Building Blocks -
GHISMO
AMB
DAVIS
TED
SAM
PICOZED Zynq-TRENZ
ZedBoard SAM + FPCSA
Q-Injector
HWDAQ
SWDAQ
DAQGEN
TED
SAM
Q-SiPM
Bench
Ready to use
Under Dev.
To be dev.
Detector
Emulator
8
SW Building Block : Data Acquisition Verification Integration System
• Object Language: Java + XML + Doxygen• OSGI platform : Eclipse Equinox (COA)• Agile Method: UP simplifié (use case)• Automatic Build system : Maven +Nexus
N-Tier Arch:• GUI: RCP Eclipse• Processing:
Jython• Data Acess: SCPI
+ dll interface
9
DAVIS : Test development System
DAVIS : DATA ACQUISITION VERIFICATION INTEGRATION SYSTEM
Serveur APMConnect
Liaison TCP
Instruments
par SCPI
Script Python ou Interface de test
Extension
Descripteurs APM
Librairies de mesures
PeripheralCoreServer
(PServer)Plugin_Demo
Plugin_DGTZCAEN
Plugin_Visa
Plugin Descripteur
Javascript
engine
Interface
Liaison TCP
Liaison TCP
Drivers use
XML script (« Unicode »)
TED
Q-Injector
SAM Plugin_Ice
10
DAVIS : PRINCIPLE
11
SAM : A small versatile AMB (see A. Rebii slides)
SAM + Q-Injector
SAM integrated in a Box
SAM + ZAP Board
12
SAM (ZedBoard vs Trenz vs PicoZed)
The best solution is ZedBoardDeported solution via Cableis validated
Microcoax cots SAMTEC
In Future :
deployment in
others platforms
NAT MTCA DAQGEN
OpenClassroom next week at CENBG
13
FPCSAv2 (Dual Gain) + SAM
Objectves: Tests FE outside AGET Chip
Preparing using FEANICS Chip
14
DAVIS – FPCSA v2
Analog
Generator
FPSCAv2
Test Board
Bipolar to
unipolar
converter
(new design)
SAM DAQ
(AGET)
DT5730 CAEN
Digitizer
(12bit/500MHz
)
COMPARAISON WITH A STANDARD ADC
15
FPCSAv2 directly to AGET SCA
HIGH GAIN MODE LOW GAIN MODE
16
FPCSAv2 directly to AGET SCA
AUTOMATIC SWITCHING GAIN
17
FPCSAv2 directly to AGET SCA
Measures vs Simulation :
Small signal pseudo-oscillation
(link capacitor + buffer)
18
AMB TED: Time Energy design for Silicon Detector
19
TED (Time Energy Design) : Under development
Channels number 16
Voltage supply +/- 2.5 V
Power / channel 28 mW (34 mW in 1 GeV range)
Energy range +&- 10 MeV; 45 MeV; 110 MeV; 500 MeV
Peaking Time 1 µs; 3 µs
TAC range 300 ns; 600ns
Readout frequency 2 MHz serial
Energy resolution
Energy range: +&- 45
MeV
12.54 keV [Cin = 65 pF; I leak = 20 nA;
Peaking time = 1 µs]
Energy resolution
Energy range: +&- 500
MeV
125 keV
Timing resolution
Energy range: +&- 45
MeV
Proton 6 MeV: 263 ps; Alpha 20 MeV:
225 ps [threshold at 300 keV proton]
Timing resolution
Energy range: +&- 500
MeV
1.1 MeV: 10 ns; 10 MeV: 860 ps; 100
MeV: 280 ps [threshold at 1 MeV]
Base on ATHED Chip (P. Baron design)
Dedicated to Silicon Strip Detector+SiLi + CsI
Initial project: MUSTII / MUSETT
20
TED (Time Energy Design) : Under development
• Measure Energy & Time
• 16 channels multipled in current
• Acquisition controlled by external signal sequence
21
TED (Time Energy Design) : Under development
HW existsOPEN TOP TO TEST
ATHED ASIC
32 channels
14 bits 10MHz ADCGET
Connectors
FMC to DAQ
• TESTED – OK
• NOT VALIDATED
• NO DOCUMENTATION
22
TED (Time Energy Design) : Under development
TED + PICOZed comercial
Board + its motherboard
CONTROLLED With DAVIS
23
Q-Injector : a tool to test functional system
24
Q-Injector : a tool to test functional system
64 channels PROTOTYPE DONE By STUDENT PROJECT
SCPI Server on SPARTAN6 Xilinx
FPGA in Avnet MicroBoard
Validated for functional tests on SAM
128 channels instrument made for Juno sPMT ABC Card
(8 CATIROCs chip + KINTEX7)
• Juno test connector (ERNI+SAMTEC)• IF NEEDED : EVOLUTION to GET
Connectors
See instrument in Aubadiane room
25
2019-2010 : Development a NAT MTCA system
Based on DAQGEN IN2P3 Generic Project (CPPM + LAL + LPCcaen)
DAQGEN
T&M Network Switch
Computer Farm
Global Network
Data Server
Offline Analysis
External Systems
Control &Monitoring
100Gb/s
link
Data
Base
P
W
M
M
C
H
I
D
R
O
G
E
N
O
X
I
G
E
N
I
D
R
O
G
E
N
O
X
I
G
E
N
I
D
R
O
G
E
N
O
X
I
G
E
N
M
E
S
S
A
G
E
N
FE AMB
(Asic Mezzanine Board)TED
SAM
26
Conclusion :
• CENBG developped small system for educational & detector R&D
• Foreseen to use SAM & Q-Injector in 2 project
• Reno CATS (GANIL : S. Herlant)
• R2D2 as acquisition system
• TED: Prospect to SunRise ….
GHISMO
AMB
HWDAQ
SWDAQ
Detector
Emulator
Generic detector emulator Multi-purpose AMB
TPC
DSSD CsI SiLI
Generic software
Versatile
DaqHw