Untitled
Abstract: No abstract text available
Text: Prototyping Microsemi Rad-Tolerant Devices Microsemi™ Prototyping CQFP PACKAGE Aldec RTAX-S/SL Prototyping Adaptors RTAX250S/SL RTAX1000S/SL RTAX2000S/SL RTAX4000S CQ208 CCGA/LGA PACKAGE Aldec and Microsemi have joined together, offering a new, innovative,
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RTAX250S/SL
RTAX1000S/SL
RTAX2000S/SL
RTAX4000S
CG624
CQ352
CG1152
CG1272
RTSX32SU
RTSX72SU
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RTAX2000S
Abstract: RTAX1000S-SL cga 624 RTAX1000S RTAX250S RTAX2000 624 CCGA SL D8 E26 RTAX4000S CCGA
Text: RTAX-S/SL RadTolerant FPGAs Package Pin Assignments 208 207 206 205 160 159 158 157 208-Pin CQFP Pin 1 1 2 3 4 156 155 154 153 Ceramic Tie Bar 208-Pin CQFP 108 107 106 105 101 102 103 104 53 54 55 56 49 50 51 52 Figure 3-1 • 208-Pin CQFP Top View Note
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208-Pin
RTAX250S/SL
IO43PB2F2
IO76PB5F5/CLKGP
IO02NB0F0
RTAX2000S
RTAX1000S-SL
cga 624
RTAX1000S
RTAX250S
RTAX2000
624 CCGA
SL D8 E26
RTAX4000S
CCGA
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ACTEL CCGA 624 mechanical
Abstract: LG1152 RTAX2000S ACTEL burn-in RTAX250S LGA 2011 Socket diagram RTAX2000 ACTEL CCGA 1152 mechanical cg624 RTAX1000S
Text: v5.4 RTAX-S/SL RadTolerant FPGAs Radiation Performance Leading-Edge Performance • • • • • • • • • • SEU-Hardened Registers Eliminate the Need for TripleModule Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeV-cm2/mg
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TM1019
ACTEL CCGA 624 mechanical
LG1152
RTAX2000S
ACTEL burn-in
RTAX250S
LGA 2011 Socket diagram
RTAX2000
ACTEL CCGA 1152 mechanical
cg624
RTAX1000S
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RTAX2000
Abstract: schematic diagram 2 sc 1020 RTAX1000 RTAX250 Synplify tmr RTAX2000S
Text: A dv an c ed v0 .5 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETth > 60 MeV-cm2/mg – SEU Rate < 10-10 Errors/Bit-Day in Worst-Case
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TM1019
com/documents/CQ352FPGA
RTAX2000
schematic diagram 2 sc 1020
RTAX1000
RTAX250
Synplify tmr
RTAX2000S
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RTAX250S
Abstract: RTAX2000S RTAX1000S LG1152 CG1272 RTAX4000S RTAX1000S-SL RTAX2000 CQ208 RTAX-S lvds
Text: P ro du c t Br ie f RTAX-S/SL RadTolerant FPGAs u e Radiation Performance Leading-Edge Performance • • • • • • • • • • SEU-Hardened Registers Eliminate the Need for TripleModule Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37
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TM1019
5172169PB-11/5
RTAX250S
RTAX2000S
RTAX1000S
LG1152
CG1272
RTAX4000S
RTAX1000S-SL
RTAX2000
CQ208
RTAX-S lvds
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RTAX2000S
Abstract: RTAX2000 CQ256 2-CQFP RTAX2000S-CQ352 SK-AX1-CQ352-KITBTM SK-AX250-CQ352RTFG484S RTAX2000S-CQ256
Text: Application Note AC274 CQFP to FBGA Adapter Sockets Table of Contents Introduction . . . . . . . . . . . . . . . . . . . . . . . . CQFP to FBGA Adapter Sockets . . . . . . . . . . . . . CQFP to FBGA Adapter Socket Assembly Procedure . . CQ352 to FG484 23x23 Adapter Socket Outline Drawing
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AC274
CQ352
FG484
23x23
FG896
CQ256
RTAX2000S
RTAX2000
2-CQFP
RTAX2000S-CQ352
SK-AX1-CQ352-KITBTM
SK-AX250-CQ352RTFG484S
RTAX2000S-CQ256
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AX2000-CQ256
Abstract: RTAX2000S-CQ352
Text: Application Note AC274 CQFP to FBGA Adapter Sockets Table of Contents Introduction . . . . . . . . . . . . . . . . . . . . . . . . CQFP to FBGA Adapter Sockets . . . . . . . . . . . . . CQFP to FBGA Adapter Socket Assembly Procedure . . CQ352 to FG484 23x23 Adapter Socket Outline Drawing
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AC274
CQ352
FG484
23x23
FG896
CQ256
AX2000-CQ256
RTAX2000S-CQ352
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MIL-PRF-38535 appendix a
Abstract: RTAX2000S rtax250s diode smd f6 sl TDC 1809 cga 624 624-CCGA RTAX2000 ACTEL CCGA to FBGA Adapter RTAX1000S
Text: v5.4 RTAX-S/SL RadTolerant FPGAs Radiation Performance Leading-Edge Performance • • • • • • • • • • SEU-Hardened Registers Eliminate the Need for TripleModule Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeV-cm2/mg
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TM1019
MIL-PRF-38535 appendix a
RTAX2000S
rtax250s
diode smd f6 sl
TDC 1809
cga 624
624-CCGA
RTAX2000
ACTEL CCGA to FBGA Adapter
RTAX1000S
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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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RTAX2000
Abstract: footprint cqfp 280 RTAX1000S actel cqfp 84
Text: A dv an c ed v0 .5 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETth > 60 MeV-cm2/mg – SEU Rate < 10-10 Errors/Bit-Day in Worst-Case
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TM1019
RTAX2000
footprint cqfp 280
RTAX1000S
actel cqfp 84
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56 pin edac connector
Abstract: PCB footprint cqfp 132 Silicon Sculptor II ACTEL CCGA 624 mechanical
Text: v2.0 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module 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
56 pin edac connector
PCB footprint cqfp 132
Silicon Sculptor II
ACTEL CCGA 624 mechanical
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RTAX2000
Abstract: rtax4000 CDB 455 C34 IO358 DIODE SMD V05 128X3
Text: v5.1 RTAX-S/SL RadTolerant FPGAs Radiation Performance Leading-Edge Performance • • • • • • • • • • SEU-Hardened Registers Eliminate the Need for TripleModule Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeV-cm2/mg
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TM1019
RTAX2000
rtax4000
CDB 455 C34
IO358
DIODE SMD V05
128X3
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CQ352
Abstract: antifuse
Text: v2.1 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module 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
CQ352
antifuse
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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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LGA 478 SOCKET PIN LAYOUT
Abstract: RTAX2000
Text: v5.2 RTAX-S/SL RadTolerant FPGAs Radiation Performance Leading-Edge Performance • • • • • • • • • • SEU-Hardened Registers Eliminate the Need for TripleModule Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETTH > 37 MeV-cm2/mg
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TM1019
LGA 478 SOCKET PIN LAYOUT
RTAX2000
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RTAX2000S-CQ352
Abstract: RTAX2000S RTAX2000S-CQ256 RTAX2000 SK-AX2-CQ256-KITBTM RTAX2000SL-1 SK-AX2000-CQ352RTFG896 CQ352 RTAX1000S-CQ352 FG896
Text: Application Note AC274 CQFP to FBGA Adapter Sockets Introduction RTAX-S/SL is Actel's next generation, designed-for-space, metal-to-metal, antifuse field programmable gate array FPGA family. The RTAX-S/SL is a derivative of the Axcelerator family with up to two million-system gates. The FPGA provides the designer with nearly 250K ASIC gates,
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AC274
RTAX2000S-CQ352
RTAX2000S
RTAX2000S-CQ256
RTAX2000
SK-AX2-CQ256-KITBTM
RTAX2000SL-1
SK-AX2000-CQ352RTFG896
CQ352
RTAX1000S-CQ352
FG896
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SILEX
Abstract: CQ352
Text: v2.0 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module 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
SILEX
CQ352
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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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Untitled
Abstract: No abstract text available
Text: A dv an c ed v0 .5 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETth > 60 MeV-cm2/mg – SEU Rate < 10-10 Errors/Bit-Day in Worst-Case
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RTAX2000S
Abstract: CDB 455 C34 RTAX1000S-CQ352 RTAX2000S-CQ352
Text: v3.0 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module 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
RTAX2000S
CDB 455 C34
RTAX1000S-CQ352
RTAX2000S-CQ352
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56 pin edac connector
Abstract: RTAX1000 edac 96 pin edac connector 292 CCGA
Text: v2.1 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module 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
56 pin edac connector
RTAX1000
edac 96 pin edac connector
292 CCGA
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4x1K
Abstract: edac 96 pin edac connector footprint cqfp 132 833 T12
Text: Advanced v0.5 RTAX-S RadTolerant FPGAs Designed for Space • • • • • • • • SEU-Hardened Registers Eliminate the Need for Triple-Module Redundancy TMR – Immune to Single-Event Upsets (SEU) to LETth > 60 MeV-cm2/mg – SEU Rate < 10-10 Errors/Bit-Day in Worst-Case
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TM1019
4x1K
edac 96 pin edac connector
footprint cqfp 132
833 T12
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