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TAM/25-P2 M31720P
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TAM/25-P2 M31720P (c) 199? Auva Computer, Inc The TAM/25-P2 M31720P is a classic, early-1990s 80386DX Baby AT motherboard engineered by Auva Computer, Inc. Designed around a full 32-bit internal and external data bus pipeline, it hosts an Intel or AMD 80386DX microprocessor operating at a stable 25 MHz, alongside a dedicated physical socket for an Intel 80387DX or Cyrix FasMath math co-processor. The mainboard is driven by the highly reliable Symphony Laboratories core logic chipset (typically combining the Symphony Wagner northbridge and Haydn southbridge controllers). True to the standard desktop configurations of its era, its expansion bus infrastructure relies entirely on seven 16-bit ISA slots and one 8-bit ISA slot. System memory handling is routed through eight traditional 30-pin SIMM sockets supporting up to 8 MB or 16 MB of Fast Page Mode (FPM) RAM, coupled with a discrete expandable L2 external cache matrix using static RAM (SRAM) DIP packages. - TRIVIA - The Symphony Silicon Logic: Symphony Laboratories was highly revered by motherboard designers during the early 386/486 transition because their chipsets offered extremely granular control over memory refresh cycles. The Symphony logic on the TAM/25-P2 was explicitly tuned to run the 30-pin SIMM banks with a tight page-interleave mode, significantly lowering DRAM access bottlenecking during heavy 32-bit computations. The White-Box Workhorse: Auva Computer operated as a major OEM and high-quality clone provider, supplying system integrators across North America and Europe who assembled generic mid-towers for small business servers and early corporate desktop workstations. The M31720P layout was known for its solid multi-layer PCB design which minimized electrical interference across the ISA tracks. - SOURCES - Machine's Bios.
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TAM/25-P2 M31720P (c) 199? Auva Computer, Inc The TAM/25-P2 M31720P is a classic, early-1990s 80386DX Baby AT motherboard engineered by Auva Computer, Inc. Designed around a full 32-bit internal and external data bus pipeline, it hosts an Intel or AMD 80386DX microprocessor operating at a stable 25 MHz, alongside a dedicated physical socket for an Intel 80387DX or Cyrix FasMath math co-processor. The mainboard is driven by the highly reliable Symphony Laboratories core logic chipset (typically combining the Symphony Wagner northbridge and Haydn southbridge controllers). True to the standard desktop configurations of its era, its expansion bus infrastructure relies entirely on seven 16-bit ISA slots and one 8-bit ISA slot. System memory handling is routed through eight traditional 30-pin SIMM sockets supporting up to 8 MB or 16 MB of Fast Page Mode (FPM) RAM, coupled with a discrete expandable L2 external cache matrix using static RAM (SRAM) DIP packages. - TRIVIA - The Symphony Silicon Logic: Symphony Laboratories was highly revered by motherboard designers during the early 386/486 transition because their chipsets offered extremely granular control over memory refresh cycles. The Symphony logic on the TAM/25-P2 was explicitly tuned to run the 30-pin SIMM banks with a tight page-interleave mode, significantly lowering DRAM access bottlenecking during heavy 32-bit computations. The White-Box Workhorse: Auva Computer operated as a major OEM and high-quality clone provider, supplying system integrators across North America and Europe who assembled generic mid-towers for small business servers and early corporate desktop workstations. The M31720P layout was known for its solid multi-layer PCB design which minimized electrical interference across the ISA tracks. - SOURCES - Machine's Bios.
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