Explore projects
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A VME card that is used to recover RF, bunch and revolution clocks over a white rabbit network.
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A VME rear transition module providing 24 Dry Contact Inputs. Dry contact switch connecting 24V to ground (limited to 20mA). Uses the SVEC as front-module. More info at the Wiki page CANCELLED PROJECT
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Programmable attenuator of RF signals with very high voltage range (50 mV – 1000 V) for protecting digitizers against damage by high voltage signals. Four channels with SMA connectors; Three attenuation values: 0, -20, -40 dB; Bandwidth: DC – 2 GHz. VME form factor with I2C management bus. No VME-bus interface, only power supply used. More info at the Wiki page
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VME board with 36 ADC channels with a sampling rate of 250 kS/s and 16 bits resolution. More info at the Wiki page
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A simple VME64x carrier for two low pin count FPGA Mezzanine Cards (VITA 57). It has memory and clocking resources and supports the White Rabbit timing and control network. Commercially available. More info at the Wiki page
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Software support for the SVEC board, including kernel and user-space Linux code.
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A simple VME64x carrier for two high pin count FPGA Mezzanine Cards (VITA 57). It has memory and clocking resources and supports the White Rabbit timing and control network. Follow-up of SVEC.
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A small PCB that generates 3.3 Volt so that a SVEC can work in older type of VME crates. The SVEC is a VME64x board where usually the 3.3 Volt supply is delivered by the crate itself. Older VME types do not generate this 3.3 Volt.
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The level conversion board project hosts a set of boards in VME form factor, with additional remote diagnostics/monitoring via I2C.
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The VFC is a VME carrier for two VITA 57 (FMC) mezzanines. For more details please refer to the wiki pages. Obsolete project. Replaced by VFC-HD.
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A level conversion board in VME64x double-height form factor between TTL and RS485. Direction and levels are configurable. The project uses a Rear Transition Module for connectivity and a Front module with the active conversion and diagnostics electronics. More info at the Wiki page
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A three-channel TTL to NIM (Nuclear Instrumentation Module) level conversion board in VME form factor. More info at the Wiki page
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A level conversion board between TTL and 24V blocking levels in VME64x form factor. The project uses a rear transition module for connectivity and a front module with the active conversion and diagnostics electronics. More info at the Wiki page
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Gateware (VHDL) for the level conversion board Conv TTL Blocking in VME64x form factor between TTL and blocking levels. More info at the Wiki page
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A VME rear transition module providing fibre-optic and electrical (RS485) inputs and outputs. Uses the CONV-TTL-RS485 as front-module. More info at the Wiki page
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Projects / VME64x core
GNU Lesser General Public License v2.1 onlyA VHDL core for a VME64x slave. The other side behaves like a Wishbone master.
More info at the Wiki pageUpdated -
Mathieu Saccani / VME64x core - msaccani
GNU Lesser General Public License v2.1 onlyA VHDL core for a VME64x slave. The other side behaves like a Wishbone master.
More info at the Wiki pageUpdated -
Legacy-VME64x core implements a legacy VME (VMEbus IEEE-1014) and VME64x (based on the vme64x-core) slave.
The core offers for SoC interconnection:
Master WB interconnection and Slave WB for MSI IRQ.The core also provides a universal layer abstraction for common hardware components in VME design (e.g VME buffers). It allows for geographical and hardware switch addressing. More info at the Wiki page
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Intel Arria V based VME64x carrier for one high pin count FMC with six SFP connectors, DDR3 memory and clocking resources to support White Rabbit. For more details please refer to the wiki pages.
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