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A software suite written in Python to help with production tests of PCBs. AKA PTS.
%(red)This pts-base project is used to re-organise the current pts project In the future this project will replace the existing pts project.
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A software suite written in Python to help with production tests of PCBs. AKA PTS.
%(red)This pts-base project is used to re-organise the current pts project In the future this project will replace the existing pts project.
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Programmable attenuator of RF signals with very high voltage range (50mV – 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.
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This is a port of an older Linux ptpd to support White Rabbit extensions and run both in hosted and freestanding environment. In the future we plan to replace it with PPSI, which has a much better design, but ptp-noposix is currently working pretty well despite being difficult to maintain.
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SDB (Self-describing Bus) allows to enumerate the cores that are live in the current FPGA binary, either from the host computer or from the internal soft-core CPU in the FPGA itself. The project provides the software support and the specification. More info at the Wiki page
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A simple 4-lane PCIe carrier for a low pin count FPGA Mezzanine Card (VITA 57). It supports the White Rabbit timing and control network. Commercially available. Linux and Labview drivers available for some mezzanine cards. More info at the Wiki page
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Projects / Simple PCIe FMC carrier SPEC - Software
GNU General Public License v2.0 or laterSoftware support for the SPEC board, including kernel and user-space Linux code. The package also include the fmc-bus driver, which is expected to be used by other carriers as well.
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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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On the Open Hardware Repository you can find projects which use soft-cpu (e.g. mock-turtle, white-rabbit-core, wr-switch). This project offers a toolchain that you can use to compile your code for the soft-cpu target (only LM32 for the time being). The project provides only the necessary makefiles to build the toolchain, so it will be necessary to compile the toolchain.
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Configuration and boot software required to start up the SPEC7 board
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A USB controlled switch box with 1 to 4 switching. Can send out a reference voltage. Multiple configurations possible. Used for the calibration of ADC, TDC and Fine delay mezzanines. 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 -
This project hosts compliance tests dedicated for WR devices and based on the ATTEST framework available from Veryx Technologies. To use the material available in this project, the ATTEST framework needs to be purchased.
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This project covers all efforts geared to standardize White Rabbit, with a view to providing a stable specification which everyone can use to build compliant products.
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This project guides new users to start in the White Rabbit “World” with simple experiments. The starting kit uses two SPEC + FMC-DIO cards. Each node allows basic operations such as input timestamping or programmable output pulse generation. Additionally, specific software and gateware layers allow to use it as a standard network interface card implementing the White Rabbit technology functionalities.
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Projects / Wishbone slave generator
Affero General Public License v1.0wbgen2 is a tool for generating VHDL/Verilog cores which implement Wishbone bus slaves with certain registers, memory blocks, FIFOs and interrupts. The input is a C-like syntax file with an abstract description of what do we want to have in the slave. As a result, we get:
- Automatically allocated memory layout
- VHDL/Verilog code for the slave module
- C header files for driver development - Nice HTML documentation
Read the wbgen2-Documentation Get the latest version binaries https://www.ohwr.org/attachments/5659/wbgen2-bin.tar.bz2
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