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broken links and footer
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@ -67,14 +67,14 @@ nav_sort: case_insensitive # default, equivalent to nil
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back_to_top: true
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back_to_top_text: "Back to top"
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#footer_content: "Copyright © 2017-2020 Patrick Marsceill. Distributed by an <a href=\"https://github.com/pmarsceill/just-the-docs/tree/master/LICENSE.txt\">MIT license.</a>"
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footer_content: "<a href=\"https://github.com/TomNisbet/TommyPROM">Return to GitHub project</a>"
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# Footer last edited timestamp
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#last_edit_timestamp: true # show or hide edit time - page must have `last_modified_date` defined in the frontmatter
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#last_edit_time_format: "%b %e %Y at %I:%M %p" # uses ruby's time format: https://ruby-doc.org/stdlib-2.7.0/libdoc/time/rdoc/Time.html
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# Footer "Edit this page on GitHub" link text
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gh_edit_link: true # show or hide edit this page link
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gh_edit_link: false # show or hide edit this page link
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gh_edit_link_text: "Return to GitHub project"
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gh_edit_repository: "https://github.com/tomnisbet/TommyPROM"
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gh_edit_branch: "master" # the branch that your docs is served from
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@ -19,7 +19,7 @@ The original code was specific to the 28C256 32Kx8 EEPROM, but it has been exten
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The 28C design can be used with other 5V EEPROMS as well. Many 5V chips, including UV
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EPROMs, such as the 2716, 2764, 27C2001 and 27C040, can be read, but not written, with the
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basic hardware. Some pin changes may be needed to get the signals to the correct pins on
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the device. See the [Extending the design](extending.html) page for details on suggested
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the device. See the [Extending the design](extending) page for details on suggested
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hardware and software changes needed to support new EPROM and EEPROM families.
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The PROM-specific code is modular and can be easily adapted to support additional devices.
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@ -40,7 +40,7 @@ Features include:
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* Optimized code that supports the timing requirements needed to unlock the 28C series Software Protection Algorithm.
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* Modular software design to easily support other EEPROM and EPROM families.
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The [hardware](hardware.html) page has descriptions of the hardware designs and links to schematics. The [software](software.html) page has class definitions and more information
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The [hardware](hardware) page has descriptions of the hardware designs and links to schematics. The [software](software) page has class definitions and more information
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on the software design.
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The project was inspired by the
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@ -105,11 +105,11 @@ have different port mappings and definitely will not work without software chang
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verify that the data and address paths are good.
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* 28C series EEPROMS, like the X28C256, sometimes ship from the factory with Data
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Protection enabled. Use the UNLOCK command to disable this. See the
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[28C256 Notes](28C256-notes.html) for more information.
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[28C256 Notes](28C256-notes) for more information.
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* Re-check all hardware connections and verify the the control pins are going to the
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Arduino pins that match the definitions in the code.
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* This repo contains a standalone program called HardwareVerify that allows low-level
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access to the address, data, and control lines through a menu-driven interface. See the [troubleshooting](troubleshooting.html) section for more tips.
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access to the address, data, and control lines through a menu-driven interface. See the [troubleshooting](troubleshooting) section for more tips.
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## Further Work
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* [ ]Add a new PromDevice class for 27 series EPROMS.
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@ -9,7 +9,7 @@ nav_order: 3
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The software is designed around several major blocks and classes. The code has been
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broken out into individual files to make it easy to extend the hardware support to
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additional EPROM and EEPROM families. See the
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[Adding Chip Families](extending.html) page for details on suggested hardware and software
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[Adding Chip Families](extending) page for details on suggested hardware and software
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changes needed.
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## CommandStatus class
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