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Prototype ROD. Prototype ROD (6U VME) Requirements 4 channel (CPMs) prototype Perform zero suppression Perform parity check Format data Buffer formatted data Readout via S-Link (160 Mbyte/s) Spy on ‘Events’ transferred. Prototype ROD (CP/Jet). Test Set-up. Prototype ROD (CP/Jet).
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Prototype ROD • Prototype ROD (6U VME) • Requirements • 4 channel (CPMs) prototype • Perform zero suppression • Perform parity check • Format data • Buffer formatted data • Readout via S-Link (160 Mbyte/s) • Spy on ‘Events’ transferred
Prototype ROD (CP/Jet) • Test Set-up
Prototype ROD (CP/Jet) • Test Set-up in the lab
Prototype ROD (CP/Jet) • Testing Slice data (CP) • Serialiser data (20 serialisers/CPM)
Prototype ROD • Testing RoI Data (CP) • RoI data (eight CP Chips/CPM)
Prototype ROD (CP/Jet) • Data received and formatted on the ROD • Data sent on to the DSS via S-link • Data captured on the ROD spy buffers ‘Event’
Prototype ROD (CP/Jet) • Status summary and plans • Two modules at same status • More tests and minor bugs to be sorted out
Prototype ROD (CP/Jet) • Firmware for the prototype ROD • Combine designs 1 & 2 and designs 3 & 4 to use one ROD per combination. • Four more designs to do. • If the format is given (as in CP RoIs) then RAL can do the designs (preferred)
Prototype ROD (CP/Jet) • Two more modules will be assembled after few more tests • Two (four) PCBs and components need to be ordered for slice test requirements. • Total of six (eight) prototype ROD modules for the slice tests.
Prototype ROD (CP/Jet) • More S-Link cards ordered (Delivery March/April 2001) • Six optical ODIN Double (160 Mbyte/s) LDCs • Six optical ODIN Double (160 Mbyte/s) LSCs • Six S-link to PCI carrier cards (destination)