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About the systems:
Cray Y-MP EL (yel)
Cyber 960 (cy960)
Cyber 860 (cy860)
Cyber 830 (phoenix)
SGI Origin 2000 (o2000)
CData 4680 (majestix)
Sun Enterprise 10000 (e10k)
Cray T3E (t3e)
NEC SX-4B (sx4b)
NEC UP4800/675 (siox)
Cray J916 (uhu)
Cray J932 (huh)
Cray C90
Cray T3D
Fujitsu VPP300 (vpp)
Bull DPS 6000
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Tours day on Nov 23rd 2002
Tours day on Nov 29th 2003
Tours day on Nov 27th 2004
Picking up a Cray J932
Acquisition of IPPs Cray J916
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Cyber Disk Emulator
MUNIAC Vacuum Tube Computer

Team Members:
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Alexander Mann
Freddy Meerwaldt
Wolfgang Stief

In memory of:
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Control Data Corp
Cray Research
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Overview of the CDC Cyber models

CDCNum Cost CPU IS CPU MEM MEM cache max max ECS
Model Year Mfg Indic Type word cycle cycle banks word CM/SCM /LCM/UEM
1604 1959 48-bit 32kW
160A 1959 12-bit
3100 24-bit
3170 24-bit 128kW
3200 24-bit 1250 128kW
3300 24-bit x2 256kW
3500 24-bit x2 256kW
3400
3600 48-bit 1400 256kW
3800 48-bit 256kW
6200 unified - 100 1000 16 - 64kW 2MW
6400 unified - 100 1000 32 - 128kW 2MW
6500 2x uni - 100 1000 32 - 128kW 2MW
6600 1964 8.8 10 FU 8 100 1000 32 - 128kW 2MW
6700 uni+10FU -/8 100 1000 32 - 128kW 2MW
7600 1968 9 FU 12 27.5 275 32 - 64kW 512kW
Cy 71 uni /x2 -
Cy 72 uni /x2 -
Cy 73 unified -
Cy 74 2x uni -
Cy 76=7600 9 FU 12 27.5 275 32 - 64kW 512kW
Cy171 1977 uni /x2 - 50 400 8/16 - 256kW 2MW
Cy172 1973 uni /x2 - 50 400 8/16 - 256kW 2MW
Cy173 1973 unified - 50 400 8/16 - 256kW 2MW
Cy174 1973 2x uni - 50 400 8/16 - 256kW 2MW
Cy175 1973 9 FU 12 25 400 16 - 256kW 2MW
Cy176 1977 9 FU 12 27.5 82.5 16 - 256kW 2MW
170-720 1979 uni /x2 - 50 400 8 - 256kW 2MW
170-730 1979 uni /x2 - 50 400 8 - 256kW 2MW
170-750 1979 9 FU 12 25 400 8 - 256kW 2MW
170-760 1979 9 FU 12 25 200 8 - 256kW 2MW
170-176 1979 9 FU 12 27.5 82.5 16 - 256kW 2MW
170-815 0.1
-825 0.2
-835 0.7 unified 3 56 448 8 2k/4k 2MW 2MW
-845 1.0
170-855 1.5 unified 12 64 448 8 2k/4k 2MW 2MW
170-865 2.2 9 FU /x2 12 25 200 8 - 1MW 2MW
170-875 2.9 9 FU /x2 12 25 75 16 - 1MW 2MW
180-810 1983 0.1 unified P1 2 50 1200 2/4 - 2MW 8MW
-815 unified P1 2 50 400 2/4 - 2MW 4MW
-825 unified P1 2 50 400 2/4 - 2MW 4MW
-830 1983 0.2 uni /x2 P1 2 50 400 2/4 2k/4k 2MW 8MW
180-835 0.7 unified P2 3 56 448 8 2k/4k 2MW 2MW
180-840 1984 0.6 unified P3 12 64 384 8 2k/4k 2MW 16MW
-845 1983 1.0 unified P3 12 64 448 8 2k/4k 2MW 2MW
-850 1984 0.8 unified P3 12 64 384 8 2k/4k 2MW 16MW
-855 1982 1.5 uni /x2 P3 12 64 448 8 2k/4k 2MW 2MW
-860 1981 1.2 uni /x2 P3 12 64 384 8 2k/4k 2MW 16MW
-870 1981 2x uni P3 12 64 384 8 2k/4k 2MW 16MW
180-930 0.1 uni /x2 P0 3 50 400 4 2k/4k - 16MW
180-960 1989 1.2 uni /x2 P3P 12 11.2 358.4 8 2k/4k 2MW 32MW
180-990 1984 2.1 5FU/x2theta 64 16 64 8 4k 2MW 32MW
-995 1987 5FUx2 theta 64 16 64 8 4k 2MW 32MW
2000S 1990 11FU/x2 thetaE 192 9 193 16-64 16k - 64MW
2000V 1990 11FU/x2 thetaE 192 9 37 16-64 16k - 32MW
205-411 5.9 1 pipe 20 - 1MW
205-412 6.6 2 pipe 20 - 1MW
205-422 8.9 2 pipe 20 - 2MW
205-424 10.5 4 pipe 20 - 2MW
205-442 12.9 2 pipe 20 - 4MW
205-444 14.5 4 pipe 20 - 4MW
205-611 5.0 1 pipe 20 - 1MW
205-612 5.7 2 pipe 20 - 1MW
205-622 6.0 2 pipe 20 - 2MW
205-642 6.6 2 pipe 20 - 4MW
205-644 8.2 4 pipe 20 - 4MW
205-682 7.8 2 pipe 20 - 8MW
205-684 9.4 4 pipe 20 - 8MW
205-6S2 10.2 2 pipe 20 - 16MW
205-6S4 11.8 4 pipe 20 - 16MW

per pipe = 50 MFLOPS theoretical max speed 64 bit

per pipe = 100 MFLOPS theoretical max speed 32 bit

per pipe = 100 MFLOPS linked triad theoretical max speed 64 bit

per pipe = 200 MFLOPS linked triad theoretical max speed 32 bit

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Document last modified on: Thu, 31.July.2003 22:22:46