ADSP-21xxx
Abstract: 21020F ADSP-2100 ADSP-21000 ADSP-21020 TSC21020F
Text: TSC21020F Radiation Tolerant 32/40–Bit IEEE Floating–Point DSP Microprocessor Introduction TEMIC Semiconductors is manufacturing a radiation tolerant version of the Analog Devices ADSP–21020 32/40–Bit Floating–Point DSP. The product is pin and code compatible with ADI
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TSC21020F
1024-Point
21020F
SCC9000
ADSP-21xxx
21020F
ADSP-2100
ADSP-21000
ADSP-21020
TSC21020F
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IC top 223p
Abstract: MRF high power transistor TSC21020E 32 TSC21020E ADSP-21xxx dmd 20 mrf 212 High frequency MRF transistor MRF 238 mrf 245
Text: TSC21020E Radiation Tolerant 32/40–Bit IEEE Floating–Point DSP Microprocessor Introduction TEMIC Semiconductors is manufacturing a radiation tolerant version of the Analog Devices ADSP–21020 32/40–Bit Floating–Point DSP. The product is pin and code compatible with ADI
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TSC21020E
1024-Point
SCC9000
IC top 223p
MRF high power transistor
TSC21020E 32
TSC21020E
ADSP-21xxx
dmd 20
mrf 212
High frequency MRF transistor
MRF 238
mrf 245
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ADSP-21xxx
Abstract: dmd20 ic tms 1000 ADSP-21XXX MEMORY ADSP-2100 ADSP-21000 ADSP-21020 TSC21020F 21020F
Text: TSC21020F Radiation Tolerant 32/40–Bit IEEE Floating–Point DSP Microprocessor Introduction Atmel is manufacturing a radiation tolerant version of the Analog Devices ADSP–21020 32/40–Bit Floating–Point DSP. The product is pin and code compatible with ADI
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TSC21020F
1024-Point
32-Bit
21020F
SCC9000
ADSP-21xxx
dmd20
ic tms 1000
ADSP-21XXX MEMORY
ADSP-2100
ADSP-21000
ADSP-21020
TSC21020F
21020F
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IC top 223p
Abstract: TSC21020E
Text: TSC21020E Radiation Tolerant 32/40–Bit IEEE Floating–Point DSP Microprocessor Introduction TEMIC Semiconductors is manufacturing a radiation tolerant version of the Analog Devices ADSP–21020 32/40–Bit Floating–Point DSP. The product is pin and code compatible with ADI
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TSC21020E
1024-Point
32-Bit
21020E
SCC9000
IC top 223p
TSC21020E
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DM 024
Abstract: No abstract text available
Text: Temic TSC21020F S e m i c o n d u c t o r s Radiation Tolerant 32/40-Bit IEEE Floating-Point DSP Microprocessor Introduction TEMIC Semiconductors is manufacturing a radiation tolerant version of the Analog Devices A D SP-21020 32/40-B it Floating-Point DSP.
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TSC21020F
32/40-Bit
SP-21020
32/40-B
1024-Point
21020F
SCC9000
TSC21020F
DM 024
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DAC5675AWHFG-V
Abstract: No abstract text available
Text: Product Folder Sample & Buy Technical Documents Support & Community Tools & Software DAC5675A-SP SGLS387G – JULY 2007 – REVISED MARCH 2015 DAC5675A-SP Radiation-Tolerant, 14-Bit, 400-MSPS Digital-to-Analog Converter 1 Features 3 Description • The DAC5675A-SP is a radiation-tolerant, 14-bit
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DAC5675A-SP
SGLS387G
DAC5675A-SP
14-Bit,
400-MSPS
14-bit
DAC5675AWHFG-V
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DSP-21020
Abstract: No abstract text available
Text: Temic TSC21020E S e m i c o n d u c t o r s Radiation Tolerant 32/40-Bit IEEE Floating-Point DSP Microprocessor Introduction TEMIC Semiconductors is manufacturing a radiation tolerant version of the Analog Devices ADSP-21020 32/40-Bit Floating-Point DSP. The product is pin and code compatible with ADI
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TSC21020E
32/40-Bit
ADSP-21020
1024-Pture
SCC9000
DSP-21020
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XQR4VSX55-10CF1140V
Abstract: XQR4VSX55 xqr4vlx200 XQR4VFX60-10CF1144V Virtex-4 radiation XQR4VSX55-10 XQR4VFX140 "radiation tolerant" ethernet phy CF1144 UG073
Text: R Radiation-Tolerant Virtex-4 QPro-V Family Overview DS653 v1.2 December 16, 2008 Preliminary Product Specification General Description The Virtex -4 QPro -V family of radiation-tolerant FPGAs meet the requirements of space applications that demand highperformance as well as control capabilities. For years, the only solution available to customers with high-performance space
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DS653
XQR4VSX55-10CF1140V
XQR4VSX55
xqr4vlx200
XQR4VFX60-10CF1144V
Virtex-4 radiation
XQR4VSX55-10
XQR4VFX140
"radiation tolerant" ethernet phy
CF1144
UG073
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TTC-B-01
Abstract: DSP-21020 ADSP-21020 Radiation Tolerant DSP EA20 EA21 EA30 EA31 T7904E TSC21020F
Text: T7904E A Radiation Tolerant DSP Peripheral Controller Introduction After TEMIC has successfully released the TSC21020F DSP, a code and pin compatible radiation hard version including SEU hardening of the ADI ADSP-21020, ASTRIUM have, under an ESA contract, developed a TSC21020F companion
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T7904E
TSC21020F
ADSP-21020,
06-July-2000
T7904E-
MQFPF256
M/883
S/883
TTC-B-01
DSP-21020
ADSP-21020
Radiation Tolerant DSP
EA20
EA21
EA30
EA31
T7904E
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Untitled
Abstract: No abstract text available
Text: Revision 16 RTAX-S/SL and RTAX-DSP Radiation-Tolerant FPGAs Radiation Performance Specifications • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeVcm2/mg – SEU Rate < 10-10 Errors/Bit-Day (worst case GEO)
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TM1019
MIL-STD-883B
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RTAX250
Abstract: RTAX4000DL RTAX4000D CG624 RTAX4000S LG1152 TRANSISTOR TB 772 SL RTAX2000S ACTEL CCGA 624 mechanical transistor prc 606 j
Text: Revision 15 RTAX-S/SL and RTAX-DSP Radiation-Tolerant FPGAs Radiation Performance Specifications • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeVcm2/mg – SEU Rate < 10-10 Errors/Bit-Day (worst case GEO)
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TM1019
RTAX250
RTAX4000DL
RTAX4000D
CG624
RTAX4000S
LG1152
TRANSISTOR TB 772 SL
RTAX2000S
ACTEL CCGA 624 mechanical
transistor prc 606 j
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w32 smd transistor
Abstract: rtax250sl RTAX2000S w32 smd transistor 143 41-bit Carry Look-ahead Adder RTAX2000SL RTAX4000S BY415 RTAX4000D LG1152
Text: Revision 14 RTAX-S/SL and RTAX-DSP Radiation-Tolerant FPGAs Radiation Performance Specifications • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeVcm2/mg – SEU Rate < 10-10 Errors/Bit-Day (worst case GEO)
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TM1019
MIL-STD-883B
w32 smd transistor
rtax250sl
RTAX2000S
w32 smd transistor 143
41-bit Carry Look-ahead Adder
RTAX2000SL
RTAX4000S
BY415
RTAX4000D
LG1152
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RTAX2000D
Abstract: LG1152 CDB 455 C34
Text: Revision 14 RTAX-S/SL and RTAX-DSP Radiation-Tolerant FPGAs Radiation Performance Specifications • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeVcm2/mg – SEU Rate < 10-10 Errors/Bit-Day (worst case GEO)
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TM1019
RTAX2000D
LG1152
CDB 455 C34
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624 CCGA
Abstract: CQ352 transistor prc 606 j rtax250 RTAX2000 rtax4000
Text: Revision 14 RTAX-S/SL and RTAX-DSP Radiation-Tolerant FPGAs Radiation Performance Specifications • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeVcm2/mg – SEU Rate < 10-10 Errors/Bit-Day (worst case GEO)
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TM1019
624 CCGA
CQ352
transistor prc 606 j
rtax250
RTAX2000
rtax4000
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RTAX2000
Abstract: RTAX2000S RTAX1000SL rtax250 RTAX250SL RTAX4000SL RTAX1000 RTAX-S RTAX1000S-SL rtax250s
Text: Rev ision 13 RTAX-S/SL and RTAX-DSP Radiation-Tolerant FPGAs Radiation Performance Specifications • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeVcm2/mg – SEU Rate < 10-10 Errors/Bit-Day (worst case GEO)
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TM1019
MIL-STD-883B
Extended600
RTAX2000
RTAX2000S
RTAX1000SL
rtax250
RTAX250SL
RTAX4000SL
RTAX1000
RTAX-S
RTAX1000S-SL
rtax250s
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Untitled
Abstract: No abstract text available
Text: Adva nce P roduct Brie f RTAX-DSP Radiation-Tolerant FPGAs Projected Radiation Performance • • • • • SEU-Hardened Registers Eliminate the Need for TripleModule Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeV-cm2/mg – SEU Rate < 10-10 Errors/Bit-Day in Worst-Case
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TM1019
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BU-63825
Abstract: intel i960 series 245-DIR A 1029 - A 3000G Honeywell 1490 BU-63825X3 BU63825
Text: BU-63825 SPACE LEVEL MIL-STD-1553 BC/RT/MT ADVANCED COMMUNICATION ENGINE SP’ACE II TERMINAL Make sure the next Card you purchase has. FEATURES • Direct Replacement for BU-61582 and BU-61583 • Radiation Tolerant & Radiation Hardened Versions • Fully Integrated 1553 Terminal
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BU-63825
MIL-STD-1553
BU-61582
BU-61583
BU-63825
BU-61580
1-800-DDC-5757
intel i960 series
245-DIR
A 1029 - A
3000G
Honeywell 1490
BU-63825X3
BU63825
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BU-63825
Abstract: intel i960 series BU63825
Text: BU-63825 SPACE LEVEL MIL-STD-1553 BC/RT/MT ADVANCED COMMUNICATION ENGINE SP’ACE II TERMINAL Make sure the next Card you purchase has. FEATURES • Direct Replacement for BU-61582 and BU-61583 • Radiation Tolerant & Radiation Hardened Versions • Fully Integrated 1553 Terminal
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BU-63825
MIL-STD-1553
BU-61582
BU-61583
BU-63825
BU-61580
1-800-DDC-5757
intel i960 series
BU63825
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FULL SUBTRACTOR using 41 MUX
Abstract: RTAX2000D RTAX2000 ACTEL CCGA 1152 mechanical LGA 052 diagram CG484 RTAX4000D ACTEL burn-in lg1152 CCGA
Text: P ro du c t Br ie f RTAX-DSP Radiation-Tolerant FPGAs Radiation Performance • • • • • SEU-Hardened Registers Eliminate the Need for TripleModule Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeV-cm2/mg – SEU Rate < 10-10 Errors/Bit-Day in Worst-Case
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TM1019
FULL SUBTRACTOR using 41 MUX
RTAX2000D
RTAX2000
ACTEL CCGA 1152 mechanical
LGA 052 diagram
CG484
RTAX4000D
ACTEL burn-in
lg1152
CCGA
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DMD29
Abstract: No abstract text available
Text: SPECIFICATION MHS / SCC040 Issue 2B February 2000 Page 1 of 51 PROJET SPACE GENERAL TITLE CMOS MONOLITHIC RADIATION TOLERANT 32/40-BIT IEEE FLOATING-POINT DSP MICROPROCESSOR SPECIFICATION MHS / SCC040 Issue 2B February 2000 Page 2 of 51 DOCUMENTATION CHANGE NOTICE
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SCC040
32/40-BIT
DMD29
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XRD 1640
Abstract: MQFPF256 NS1849 Radiation Tolerant DSP
Text: SPECIFICATION nº MHS/SCC 040 Preliminary 1 April 1998 of 62 PROJET SPACE GENERAL TITLE CMOS MONOLITHIC RADIATION TOLERANT 32/40–BIT IEEE FLOATING–POINT DSP MICROPROCESSOR Name Function Prepared P. BOUCHET Hirel engineer Checked S VANDEPEUTTE Product engineer
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XQR4VSX55
Abstract: UG071 UG070 UG072 UG073 Virtex-4QV XQR4V
Text: Space-Grade Virtex-4QV FPGAs: DC and Switching Characteristics R DS680 v2.0 April 12, 2010 Product Specification Virtex-4QV FPGA Electrical Characteristics Space-grade, radiation-tolerant Virtex -4QV FPGAs are available in the -10 speed grade and qualified for military
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DS680
XQR4VSX55
UG071
UG070
UG072
UG073
Virtex-4QV
XQR4V
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temic 80C32
Abstract: mmu ericsson MA31750 processor architecture MA31750 80C32 Harris Semiconductor IDT39C60 65656F 29C516E microcontroller radiation hard 80C32E
Text: ANM052 Radiation Tolerant SRAM for SPACE Applications Introduction The purpose of this document is to analyze the selection criteria for memory chips to be used in Spacecraft computers. A general trend is to implement more autonomous functions in Spacecraft, making use of increased
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ANM052
IDT49C460
IDT39C60
AN-24,
32kx8
HM-65664E
M-65656F
HRX/93
temic 80C32
mmu ericsson
MA31750 processor architecture
MA31750
80C32 Harris Semiconductor
65656F
29C516E
microcontroller radiation hard
80C32E
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MA31750 processor architecture
Abstract: atmel 80C32 atmel edac atmel 2816 memory mmu ericsson MA31750 6T SRAM a8961 microcontroller radiation hard SMKS-29C516E
Text: ANM052 Radiation Tolerant SRAM for SPACE Applications Introduction The purpose of this document is to analyze the selection criteria for memory chips to be used in Spacecraft computers. A general trend is to implement more autonomous functions in Spacecraft, making use of increased
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ANM052
IDT49C460
IDT39C60
AN-24,
32kx8
HM-65664E
M-65656F
HRX/93
MA31750 processor architecture
atmel 80C32
atmel edac
atmel 2816 memory
mmu ericsson
MA31750
6T SRAM
a8961
microcontroller radiation hard
SMKS-29C516E
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