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Calorimeter Mu2e Development electronics Front-end Review

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Presentation on theme: "Calorimeter Mu2e Development electronics Front-end Review"— Presentation transcript:

1 Calorimeter Mu2e Development electronics Front-end Review
G. Corradi S. Ceravolo D.Tagnani F.Colao 8 november 2016

2 Calorimeter routing Detector Solenoid DAQ room ~7-8 m Floating LV
overall cross section ~180 cm2 Floating LV +28V / negative Floating positive HV 230 V (MPPC) ground ~60-80 m overall cross section ~210 cm2 LV HV isolation OVP filter Safety Ground Detector Ground Floating Structures

3 Layout front-end Mezanine Board Digitizer 3V3 8V 28V, 30W Unit 1
HV_250_DC_V 40mA, 10W per unit 28_DC_V 1.15A, 32W per unit Unit 2 Unit 3 Unit 4 28 DC V 10A, 280W per 8 units common sense HV_250 DC V 320mA, 80W per 8 units common sense Unit 5 Unit 6 Unit 7 Clock Distribution Unit 8

4 Architecture front-end
Optimization of the space in progress Cables and connectors in progress

5 Preamp-Regulator scheme

6 Electric preamplifier scheme
Preamplifier_SIPM Preamplifier Shaper filter Select Gain Select Pulse Test Differential Driver Linear Regulation Electric preamplifier scheme

7 Simulation before end after filter

8 Simulation bandwidth Preamplifier
Plot of the simulated transfer function, good phase margin Not forgetting that the source capacity of approximately 1nf

9 Simulation bandwidth after filter
Plot of the simulated transfer function, after shaper filter Amplitude and phase plot with gain Vout/Vin 30

10 Preliminary Specifications Preamplifier
Gain Vout/Vin 2 step remote control Dynamic differential /-1V Bandwidth Mhz Rise time ns Output impedance Ω Stability with source capacity max nf Coupling output end source AC Noise, with source capacity 1pf Power dissipation mW Power supply V Semi-gaussian shaping filter pole Time after shaper ns Injection test pulse charging, fixed amplitude mV Input protection mJ

11 Linear_ Regulator Electric linear regulator scheme Linear Driver
Decoder ADC 16bit Linear low Voltage section I2C line DAC 16bit Electric linear regulator scheme

12 Preliminary Specifications regulator
Vin max V Current limit 2mA Dynamic regulation 5V to 200V Settling time us Ramp-up programmable 1ms to 100ms Ripple estimated 3mVpp Stability, theoretical value Δt 10 °C better 50 ppm Power dissipation with out load min 50 mW Power dissipation max load, worst case max 350 mW Temperature measurement to 50°C Monitor current detector 50uA to 2mA Remote control I2C GND insulated from earth Ceq max 5pf Therma-Bridge to dissipate heat insulated gnd

13 PCB Layer TOP Preamplifier
Drivers Section Filter section Preamplifier section Dimention card 58mm x 30mm

14 PCB Layer Bottom, Linear Regulator
Output connector Analog signals Digital I2C Supply low voltage High voltage Temperature Sensor Detector Fixing hole and transfer heat Very low thermal resistance

15 Final Assemblay Thermal conducting Power to dissipate max 350mW Board
Thermal Contact By Bridge resistor Thermal conducting Power to dissipate max 350mW Board Temperature Sensor Case (Cu) Output Connector

16 Mechanical front-end support
Connector Output Electromagnetic shield Cooling channel Card Preamplifier_Regulator

17 Controller ARM first prototype
Regulator 8V Buffer I2C ARM Controller Primary HV_Generator Protection fuse 28V Voltage regulator 8V ARM Controller I2C communication buffer Communication line with Digitizer High voltage distributor

18 Controller Arm first prototipe
Rear view input output digital I2C View analog connector differential signals Connector views one-wire temperature measurement

19 Mezzanine card control 20 channels
Front Panel view

20 Mezzanine card control
Rear view Analog to Digital Interfaces with Digitizer

21 Mezzanine card control
View inserted Connectors on the Front panel

22 Mezzanine card control
Sizing connector spaces

23 Mezzanine card control Dimension
Retail size card

24 Status and perspectives
Preamp-regulator, completed test There are maximum dynamic problem Firmware almost completed Thermal tests to be completed Radiation resistance testing to be completed Connection cable between pre and controller we found a likely champion Project progress, primary regulator prototype 250V 350mA Project progress, primary regulator prototype 8V 1A, with active filter output. Project progress, controller ARM per 20 channels Draft of communication protocol I2C


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