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builderpages:plasmo:start [2023/06/02 18:37] – Revision from 2023-06-02 builderpages:plasmo:start [2026/06/15 13:13] (current) – external edit 127.0.0.1
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 /* Imported from Wayback Machine /* Imported from Wayback Machine
    Original URL : https://www.retrobrewcomputers.org/doku.php?id=builderpages:plasmo:start    Original URL : https://www.retrobrewcomputers.org/doku.php?id=builderpages:plasmo:start
-   Snapshot date: 2023-06-02+   Snapshot date: 2025-05-16
    Generator    : wayback-archiver    Generator    : wayback-archiver
 */ */
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 As my exploration evolved, I also became interested in Z80 and Z280, especially Z280 which is an obscure but surprisingly modern CPU. As my exploration evolved, I also became interested in Z80 and Z280, especially Z280 which is an obscure but surprisingly modern CPU.
  
-====== 68030 Projects ======+====== 68K Projects ====== 
 + 
 +===== IP940 Base Board. ===== 
 + 
 +The [[builderpages:plasmo:68040:ip940:ip940base|IP940 Base]] hosts Perceptics' IP940 68040 mezzanine board. This is an experimental design that may change dramatically in later iterations. 
 + 
 +===== Tiny040 ===== 
 + 
 +[[builderpages:plasmo:68040:tiny040|Tiny040]] is an experimental 3.3V SBC based on 68040V. This design may change dramatically in later iterations.
  
 ===== Tiny030 ===== ===== Tiny030 =====
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 [[builderpages:plasmo:cb030:cb030_rev1|CB030]] is follow-on to Tiny030; it'll have more memory, compact flash mass storage, and I/O expansion. [[builderpages:plasmo:cb030:cb030_rev1|CB030]] is follow-on to Tiny030; it'll have more memory, compact flash mass storage, and I/O expansion.
- 
-====== 68020 Projects ====== 
  
 ===== MB020 ===== ===== MB020 =====
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 [[builderpages:plasmo:start|Tiny020]] is described near the end of this page. It will be moved here later. [[builderpages:plasmo:start|Tiny020]] is described near the end of this page. It will be moved here later.
- 
-====== 68000 Projects ====== 
  
 ===== MB012 ===== ===== MB012 =====
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 [[forum:index.php|Discussion]] about running Fuzix on Tiny68K [[forum:index.php|Discussion]] about running Fuzix on Tiny68K
 +
 +===== T68KRC =====
 +
 +[[builderpages:plasmo:t68krc_r01|T68KRC, rev0.1]] and [[builderpages:plasmo:t68kmb|T68MB]] are 68000 boards with RC2014 compatible bus.
 +
 +===== SBC68340 =====
 +
 +Single board [[builderpages:plasmo:68340:sbc68340r0:sbc68340r0home|computer based on MC68340]]
 +
 +===== Experimental 68K =====
 +
 +[[builderpages:plasmo:experimental68k:bb68008|BB68008]] is barebones 68008 prototyped on BB6580 board. It consists of MC68008, ATF22V10, 128K RAM and 8MHz oscillator
 +
 +[[builderpages:plasmo:68340:prototype|MC68340 Prototype]] from early 2000.
  
 ====== P90CE201 Projects ====== ====== P90CE201 Projects ======
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 ====== Standalone Computers ====== ====== Standalone Computers ======
 +
 +===== VGA65 =====
 +
 +[[builderpages:plasmo:vga65:vga65pcb_r0|VGA65]] is a bare-bone standalone 6502 computer with monochrome 640×480 VGA and PS2 keyboard
 +
 +===== 65ALL =====
 +
 +[[builderpages:plasmo:65all:65all_r1|65ALL Rev1]] is a stand-alone 6502 computer with RC6502 expansion connectors. The CPLD is EPM7128S in 100-pin QFP
 +
 +[[builderpages:plasmo:65all:65allr2:65allr2home|65ALL Rev2]] is very similar to 65ALL rev1 except the CPLD is EPM7128S in 84 PLCC package which is easier to find and assemble.
  
 ===== Z80ALL ===== ===== Z80ALL =====
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 [[builderpages:plasmo:z80all:z80all_rev1:z80allr1quad|Z80ALL with quad serial board]]. Standalone operation of Z80ALL is accomplished with the addition of [[builderpages:plasmo:quadserplcc|quad serial board]], PS2 keyboard, and VGA monitor. [[builderpages:plasmo:z80all:z80all_rev1:z80allr1quad|Z80ALL with quad serial board]]. Standalone operation of Z80ALL is accomplished with the addition of [[builderpages:plasmo:quadserplcc|quad serial board]], PS2 keyboard, and VGA monitor.
  
-====== GRC ====== +[[builderpages:plasmo:z80all:z80allplcc:z80allr3|Z80ALL rev3]] PLCC versionThe rev3 version of Z80ALL is compatible with rev2 Z80ALL except the CPLD is in PLCC84 package which is cheaper and easier to assemble.
- +
-[[builderpages:plasmo:prcc|GRC]] stands for “Generic Retro Computer”It is a new modular computer ecosystem for 8-bit processors of 1970 and 1980.+
  
 ====== SBC for RC2014 ====== ====== SBC for RC2014 ======
  
 I stumbled across the [[https://rc2014.co.uk/|RC2014]] community in early 2018. I like the simple backplane and large collection of I/O modules. The single inline connector can also plug into a solderless breadboard for prototyping experiments. I stumbled across the [[https://rc2014.co.uk/|RC2014]] community in early 2018. I like the simple backplane and large collection of I/O modules. The single inline connector can also plug into a solderless breadboard for prototyping experiments.
 +
 +===== ZRC512 =====
 +
 +[[builderpages:plasmo:zrc512:zrc512home|ZRC512]] is a faster and through-hole version of [[builderpages:plasmo:zrc|ZRC]]. It is specifically designed for ROM-less RomWBW.
 +
 +===== Z1RCC =====
 +
 +[[builderpages:plasmo:z1rcc:prototype:home|Prototype Z1RCC]] based on modified RIZ180 pc board. A RC2014-compatible, RomWBW-capable, Z180 SBC
 +
 +[[builderpages:plasmo:z1rcc:rev0:home|Z1RCC]], a RC2014-compatible, RomWBW-capable Z180 SBC
 +
 +[[builderpages:plasmo:z1rcc:overclock:home|Overclocked Z1RCC]] to 36.8MHz based on Z8S180
  
 ===== ZZRCC ===== ===== ZZRCC =====
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 A [[builderpages:plasmo:z80mb64|mother board]] based on Z80SBC64 with 3 RC2014 expansion connectors. A [[builderpages:plasmo:z80mb64|mother board]] based on Z80SBC64 with 3 RC2014 expansion connectors.
  
-===== G8PP =====+===== T68KRC =====
  
-[[builderpages:plasmo:g8pp|Generic 8-bit processors prototype]] board is a hybrid board with printed wirings and prototype area to accommodate different 8-bit, 5V processors of 1970's and 1980's. G8PP in baseline configuration serves the function of clock, paged memory, compact flash, and serial port for RC2014, resulting in a CP/M capable RC2014 system with the addition of the Z80 CPU board.+[[builderpages:plasmo:t68krc_r01|T68KRC, rev0.1]] is Tiny68K that plugs into the RC2014 backplane and interface to its many I/O modules.
  
-G8PP Base (need better name) is a [[builderpages:plasmo:g8pp:g8ppbase|G8PP in baseline configuration]] plus a processor board on a RC2014 backplane. The control signals of RC2014 (nM1, nMREQ, nRD, nWR, nIORQ) as well as the 4 spare signals are reassigned depending on the targeted processorNo hardware changes are required when change to different processor board, but the CPLD must be reconfigured and new processor software loaded.+[[builderpages:plasmo:t68kmb|T68MB]] is T68KRC with 3 RC2014 expansion bus addedIt also has dedicated I2C connector for 128×64 OLED display.
  
-[[builderpages:plasmo:g8pp:g8ppbasez80|G8PP + Z80]]+===== Simple80 =====
  
-[[builderpages:plasmo:g8pp:g8ppbase8085|G8PP + 8085]]+[[builderpages:plasmo:simple80|simple traditional SBC]] design with 3 RC2014 expansion connectors but without glue logic.
  
-[[builderpages:plasmo:g8pp:g8ppbase6502|G8PP + 6502]]+[[builderpages:plasmo:simple80r1|Simple80 Rev 1]]. The compact flash interface is on board. It is software compatible with original Simple80
  
-[[builderpages:plasmo:g8pp:g8ppbase6809|G8PP + 6809]]+===== EaZy80 =====
  
-G8PP + 1802+A glue-less Z80 SBC similar to Simple80 but uses KIO (Z84C90) instead of SIO. Eazy80 Rev2 is the current version replacing rev0 and rev1. The earlier revisions are retained for historical reasons. Eazy80 rev2 has two configurations that are sufficiently different to merit their own homepages.
  
-[[builderpages:plasmo:g8pp:g8ppbase68k8|G8PP + 68008]]+[[builderpages:plasmo:eazy80:eazy80rev2:eazy80rev2home|Eazy80 Glue-less 128K RAM]] configuration
  
-G8PP + 32008+[[builderpages:plasmo:eazy80:eazy80rev2:eazy80-512|Eazy80-512 for RomWBW]] configuration
  
-===== T68KRC =====+<del>[[builderpages:plasmo:eazy80:rev0pcb:eazy80r0home|EaZy80 Rev0]]. Requires significant engineering changes</del>
  
-[[builderpages:plasmo:t68krc_r01|T68KRC, rev0.1]] is Tiny68K that plugs into the RC2014 backplane and interface to its many I/O modules.+<del>[[builderpages:plasmo:eazy80:eazy80r1pcb:eazy80r1home|Eazy80 Rev1]] corrects errors in rev0 pc board</del>
  
-[[builderpages:plasmo:t68kmb|T68MB]] is T68KRC with 3 RC2014 expansion bus added. It also has a dedicated I2C connector for 128×64 OLED display.+===== BB80 =====
  
-===== Simple80 =====+BB80, aka Muntz80, is a very simple Z80 SBC consists of Z80, RAM, and GAL22V10 (or ATF22V10).
  
-[[builderpages:plasmo:simple80|simple traditional SBC]] design with 3 RC2014 expansion connectors but without glue logic. +[[builderpages:plasmo:bb80:bb80prototype|BB80 Prototype]] explores the concept of very simple Z80 computer.
- +
-[[builderpages:plasmo:simple80r1|Simple80 Rev 1]]. The compact flash interface is on board. It is software compatible with original Simple80+
  
 ===== K80 ===== ===== K80 =====
  
 A [[builderpages:plasmo:k80|traditional SBC design using a KIO]] (Z84C9012) and over-clocked to 22MHz. It also has 2 RC2014 expansion connectors. A [[builderpages:plasmo:k80|traditional SBC design using a KIO]] (Z84C9012) and over-clocked to 22MHz. It also has 2 RC2014 expansion connectors.
 +
 +[[builderpages:plasmo:k80:k80w_r21|K80W rev2.1]] is similar to K80 except it is designed for RomWBW
  
 ===== Micro80 ===== ===== Micro80 =====
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 [[builderpages:plasmo:protor5:proto65:proto65r01|Proto65]] is a 6502 SBC based on ProtoR5 [[builderpages:plasmo:protor5:proto65:proto65r01|Proto65]] is a 6502 SBC based on ProtoR5
 +
 +[[builderpages:plasmo:protorc6:protorc6home|ProtoR6]] uses EPM570T100. It is a 3.3V board.
 +
 +[[builderpages:plasmo:idecpld:idecpldhome|IDECPLD]] is proto board connected via IDE (compact flash) interface
  
 [[builderpages:plasmo:dpram|DPRAM]] is a prototype board based on IDT7134 dual port RAM to explore multiprocessor system. This version has a Z80 running as a slave processor and a EPM7064S CPLD as glue logic. [[builderpages:plasmo:dpram|DPRAM]] is a prototype board based on IDT7134 dual port RAM to explore multiprocessor system. This version has a Z80 running as a slave processor and a EPM7064S CPLD as glue logic.
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 ====== 6502 Projects ====== ====== 6502 Projects ======
  
-The goal is a modular stand-alone 6502 system with RC2014 backplane and repurposed RC2014 boards+===== 6502 Boards with RC6502 Expansion ===== 
 + 
 +[[builderpages:plasmo:vga65:vga65pcb_r0|VGA65]] is PCB version of [[builderpages:plasmo:vga65:vga65r1|VGA65 rev1 prototype]]
  
 [[builderpages:plasmo:crc65|CRC65]] stands for CPLD+RAM+CF+6502. It is an inexpensive, yet high performance 65C02 single board computer [[builderpages:plasmo:crc65|CRC65]] stands for CPLD+RAM+CF+6502. It is an inexpensive, yet high performance 65C02 single board computer
 +
 +[[builderpages:plasmo:crc65:crc65proto:home|CRC65 with prototype]] area. This is same [[builderpages:plasmo:crc65|CRC65 rev1]] but with prototype area.
  
 [[builderpages:plasmo:crc65:crc816|CRC816]] is CRC65 modified to accommodate W65C816 CPU. [[builderpages:plasmo:crc65:crc816|CRC816]] is CRC65 modified to accommodate W65C816 CPU.
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 [[builderpages:plasmo:start|ProtoRC]] is a family of RC2014 prototype boards that can be reused for 6502. [[builderpages:plasmo:start|ProtoRC]] is a family of RC2014 prototype boards that can be reused for 6502.
  
-===== Other 6502 projects =====+[[builderpages:plasmo:dualport6502:home|DPRAM65]] is a 6502 coprocessor based on dual port RAM. 
 + 
 +===== Prototyped 6502 projects ===== 
 + 
 +[[builderpages:plasmo:sb134:sb134_r0|SB134]] is a prototype board for W65C134. It uses a CPLD and RAM to explore W65C134. 
 + 
 +[[builderpages:plasmo:muntz65:prototype_home|Muntz65]] is a barebone 6502 computer based on 6502, RAM, and 22V10. 
 + 
 +[[builderpages:plasmo:crc65:vga65|VGA65 prototype]] is CRC65 modified as a VGA video board.
  
-[[builderpages:plasmo:crc65:vga65|VGA65]] is CRC65 modified as a VGA video board.+[[builderpages:plasmo:vga65:vga65r1|VGA65 prototype rev1]] revisited the earlier [[builderpages:plasmo:crc65:vga65|VGA65 prototype]] and restored the original CF interface.
  
 [[builderpages:plasmo:protor5:proto65:proto65r02|Proto65]] is an evolving project for building a standalone 6502 computer. [[builderpages:plasmo:protor5:proto65:proto65r02|Proto65]] is an evolving project for building a standalone 6502 computer.
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 [[builderpages:plasmo:apple2:ultrawarp2:rev0:uw2|UltraWarp2]] is a CPLD version of [[https://wiki.reactivemicro.com/UltraWarp|UltraWarp]] where all except one TTL logic are replaced with a CPLD [[builderpages:plasmo:apple2:ultrawarp2:rev0:uw2|UltraWarp2]] is a CPLD version of [[https://wiki.reactivemicro.com/UltraWarp|UltraWarp]] where all except one TTL logic are replaced with a CPLD
 +
 +[[builderpages:plasmo:apple2:a2cpld:a2cpldhome|A2CPLD]] is an Apple II board with CPLD that can hosts different processors
 +
 +====== Retro computers for EPM240 Development Board ======
 +
 +EPM240 Development board is a low cost educational board based on the 3.3V EPM240 CPLD. A number of retro computers can run at 3.3V, so a mezzanine board can host the 3.3V-capable retrocomputer and plug on top of the EPM240 dev board.
 +
 +==== 3V Z80 mezzanine board . ====
 +
 +Most CMOS Z80 can run at 3.5V. This [[builderpages:plasmo:epm240dev:3vz80:3vz80rev1_1|3V Z80 mezzanine board]] is for EPM240 dev board capable of running RomWBW.
 +
 +==== 3V 6502 mezzanine board ====
 +
 +W65C02 can be overclocked to 25MHz at 3.5V. This [[builderpages:plasmo:epm240dev:3v6502:3v6502r1|3V6502 mezzanine board]] can drive monochrome 640×480 VGA display and interface to PS2 keyboard.
 +
 +==== 3V Z180 mezzanine board ====
 +
 +Z8S180 is rated for 3.3V operation. This [[builderpages:plasmo:epm240dev:3vz180:3vz180r0|3VZ180 mezzanine board]] is designed for RomWBW. It can overclock to 50MHz reliably. It has been tested to 64MHz.
 +
 +====== MultiComp Boards ======
 +
 +===== Barebone 6502 and Z80 =====
 +
 +[[builderpages:plasmo:bb6580:bb6580r0home|BB6580]] is a barebone 6502 or Z80 computer. It also have an uncommitted 40-pin socket for prototyping.
 +
 +===== CPLD Trainer =====
 +
 +[[builderpages:plasmo:6502:cpld6502:cpld6502r1|Rev1 of CPLD traniner]] can accommodate Z80, 6502, and an uncommitted 40-pin CPU.
 +
 +===== GRC =====
 +
 +[[builderpages:plasmo:prcc|GRC]] stands for “Generic Retro Computer”. It is a new modular computer ecosystem for 8-bit processors of 1970 and 1980.
 +
 +===== G8PP =====
 +
 +[[builderpages:plasmo:g8pp|Generic 8-bit processors prototype]] board is a hybrid board with printed wirings and prototype area to accommodate different 8-bit, 5V processors of 1970's and 1980's. G8PP in baseline configuration serves the function of clock, paged memory, compact flash, and serial port for RC2014, resulting in a CP/M capable RC2014 system with the addition of the Z80 CPU board.
 +
 +G8PP Base (need better name) is a [[builderpages:plasmo:g8pp:g8ppbase|G8PP in baseline configuration]] plus a processor board on a RC2014 backplane. The control signals of RC2014 (nM1, nMREQ, nRD, nWR, nIORQ) as well as the 4 spare signals are reassigned depending on the targeted processor. No hardware changes are required when change to a different processor board, but the CPLD must be reconfigured and new processor software loaded.
 +
 +[[builderpages:plasmo:g8pp:g8ppbasez80|G8PP + Z80]]
 +
 +[[builderpages:plasmo:g8pp:g8ppbase8085|G8PP + 8085]]
 +
 +[[builderpages:plasmo:g8pp:g8ppbase6502|G8PP + 6502]]
 +
 +[[builderpages:plasmo:g8pp:g8ppbase6809|G8PP + 6809]]
 +
 +G8PP + 1802
 +
 +[[builderpages:plasmo:g8pp:g8ppbase68k8|G8PP + 68008]]
 +
 +G8PP + 32008
  
 ====== Pathfinder Projects ====== ====== Pathfinder Projects ======
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 [[builderpages:plasmo:smtsoldering|Soldering SMT]] components [[builderpages:plasmo:smtsoldering|Soldering SMT]] components
 +
 +[[builderpages:plasmo:bloopers|Bloopers]]. Oops!
  
 Repurpose the [[builderpages:plasmo:spx-mpu|ADC SPX-MPU]] board–MC68302 single board computer Repurpose the [[builderpages:plasmo:spx-mpu|ADC SPX-MPU]] board–MC68302 single board computer
  
 [[builderpages:plasmo:cmp68k_mpu302|CP/M 68K on the MPU302]], a repurposed ADC SPX-MPU board [[builderpages:plasmo:cmp68k_mpu302|CP/M 68K on the MPU302]], a repurposed ADC SPX-MPU board
 +
 +[[builderpages:plasmo:z80retro|Z80retro]] project
  
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