1 / 15

Solid State PSD related Short Activity Overview

Solid State PSD related Short Activity Overview. Dr. Matthias Kirsch. We develop and manufacture board level electronics. VME µTCA/MTCA.4 PCI/PCI Express Custom. Areas of Expertise. Digitizers w/wo DAC [ 100 MSPS 16-bit ] to [ 5 GSPS 10-bit ] Interfaces Mixed

dbergin
Download Presentation

Solid State PSD related Short Activity Overview

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Solid State PSD related Short Activity Overview Dr. Matthias Kirsch

  2. We develop and manufacture board level electronics • VME • µTCA/MTCA.4 • PCI/PCI Express • Custom

  3. Areas of Expertise • Digitizers w/wo DAC [100 MSPS 16-bit] to [ 5 GSPS 10-bit] • Interfaces • Mixed • Xilinx FPGA based

  4. COTS Example • 16-bit 100 MSPS SIS3302 VME Digitizers • UC Berkeley NUC and LBNL • Double-Sided Strip HPGe detector readout

  5. Double-Sided Strip HPGe detectors for advanced instrumentation classDigital signal processing – Digital concepts to determine energy, time, and 3D position informationEvaluation and comparison of gamma ray imaging modalities employing 3D Position sensitive, high-resolution Ge detectors – pinhole, parallel-hole, coded apertures, and Compton imaging (10 SIS3302)

  6. Custom Development Example • PCI Express Card Development for pnCCD stand-alone readout system • MPI HLL Munich

  7. pnCCD detector module

  8. CMX CMX transfer of signal charges DAQ-Board with FPGA and Memory DAQ-Board with FPGA and Memory DAQ-Board with FPGA and Memory CMX CMX cPCI-Bus cPCI-Bus cPCI-Bus CMC-Conn. CMC-Conn. CMC-Conn. CMX CMX pnCCD Optical Link Optical Link Optical Link CMX CMX CMX CMX CMX CMX pnCCD CMX CMX CMX CMX DAQ architecture @ lab./stand-alone system 4 DAQ-Boards #4 ADC-Board With 4 14-bit 100MHz ADCs #3 ADC-Board With 4 14-bit 100MHz ADCs 1 Detector with 1k×1k Pixel @ 120Hz (i.e. 240 MByte/sec. in total @ 16 nodes) #2 Analog-In (4) ADC-Board With 4 14-bit 100MHz ADCs CMC-Conn. #1 Analog-In (4) Digital-In ADC-Board With 4 14-bit 50MHz ADCs CMC-Conn. Trigger-Out Analog-In (4) CMC-Conn. Trigger-Out CMC-Conn. Analog-In (4) Trigger-Out DAQ-Board with FPGA and optical Link CMC-Conn. cPCI-Bus Optical Link Data-In Board VIRTEX-V 4 Optical Links PCIexpress-Bus (4-lane) 4 Optical Links (each max. 100 MByte/sec.)

  9. SIS1104 Quad Optical Link Receiver Board • 4 Lane PCI Express • Virtex 5 • 640 Mbyte/s sustainedto LINUX

  10. ImagingPerformance

  11. Work in Progress

  12. SIS3316 Digitizer Family 16 Channels 250 MSPS 14-bit or 125 MSPS 16-bit Offset DACs 3 Gain Settings 50 Ω / 1 MΩ Impedance 64 MSample/Channel Memory SFP Socket → Ethernet/Optical

  13. SIS3316 Digitizer Family perfect match for 100 to 256 pixel HPGe detector setups (Canberra, Semikon e.g.) flexible network architecture

  14. Industry co-operation BenefitsSo, what‘s in it for me? • Offload part of work after specification phase • Repair/support over life cycle of equipment • Commercial availability over typical product life span on the 10 year time frame

  15. Questions/Remarks

More Related