MIPS R800000000

GPTKB entity

Statements (56)
Predicate Object
gptkbp:instance_of gptkb:microprocessor
gptkbp:bfsLayer 4
gptkbp:bfsParent gptkb:MIPS_Processors
gptkbp:application embedded systems
gptkbp:architectural_style gptkb:architect
evolved into MIP S32 and MIP S64
gptkbp:cache_size up to 1 MB
write-back cache
gptkbp:connects MIPS bus architecture
gptkbp:data_bus_width 32 bits
gptkbp:design RISC design philosophy
designed by MIPS engineers
gptkbp:developer MIPS development tools
gptkbp:ends_at bi-endian
gptkbp:fuel_capacity high power efficiency
gptkbp:has_website scientific computing
gptkbp:historical_event developed by MIPS Computer Systems
https://www.w3.org/2000/01/rdf-schema#label MIPS R800000000
gptkbp:impact widely studied in computer architecture research
gptkbp:innovation introduced pipelining in RISC
gptkbp:involved_units integrated FPU
gptkbp:is_compatible_with backward compatible with MIPSI
gptkbp:language_of_instruction MIPS instruction set
fixed-length instructions
5-stage pipeline
over 100 instructions
MIPSISA
gptkbp:legacy influenced many RISC architectures
supports legacy MIPS software
gptkbp:manufacturer gptkb:MIPS_Computer_Systems
gptkbp:market dominant in the 1990s
launched in 1991
gptkbp:market_segment high-end computing
gptkbp:notable_features superscalar execution
gptkbp:notable_users used by SGI
gptkbp:number_of_cores single-core
gptkbp:operating_system supports various operating systems
gptkbp:performance high performance
high throughput
competes with Intel processors
gptkbp:power_consumption low power
gptkbp:predecessor gptkb:MIPS_R6000
gptkbp:ram up to 4 GB
supports virtual memory
gptkbp:registration 32 general-purpose registers
gptkbp:release_year gptkb:1991
gptkbp:speed up to 200 M Hz
gptkbp:successor gptkb:MIPS_R10000
MIPS R10000 architecture
gptkbp:supports hardware debugging support
supports multiple compilers
gptkbp:technology CMOS
adopted in various industries
gptkbp:throws supports external interrupts
gptkbp:used_in gptkb:server
workstations