R3000A
Abstract: functional diagram of ALU R3010A block alu IDT79R3081 R3081 2873 R3010A Integrated Device Technology CFC-1
Text: R3010A Core RISC FLOATING POINT ACCELERATOR FPA CORE Integrated Device Technology, Inc. FEATURES: DESCRIPTION: • Hardware support of single- and double-precision operations: — Floating-Point Add — Floating-Point Subtract — Floating-Point Multiply
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R3010A
50MHz
R3000A
64-bit
32-bit
R3010A
functional diagram of ALU
block alu
IDT79R3081
R3081
2873
R3010A Integrated Device Technology
CFC-1
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D-10
Abstract: D-12 D-16 DSP96002 3F800000 DSP96002 APPLICATIONS DSP96002 fft
Text: APPENDIX D D.1 FLOATING-POINT NUMBER STORAGE AND ARITHMETIC D.1.1 General The IEEE standard for binary floating point arithmetic provides for the compatibility of floating-point numbers across all implementations which use the standard by defining bit-level encoding of floating-point numbers.
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32-bit
DSP96002
D-10
D-12
D-16
3F800000
DSP96002 APPLICATIONS
DSP96002 fft
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C-15
Abstract: C-16 DSP96002 DSP96002 fft
Text: APPENDIX C IEEE ARITHMETIC C.1 FLOATING-POINT NUMBER STORAGE AND ARITHMETIC C.1.1 General The IEEE standard for binary floating point arithmetic provides for the compatibility of floating-point numbers across all implementations which use the standard by defining bit-level encoding of floating-point numbers.
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32-bit
DSP96002
C-15
C-16
DSP96002 fft
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5962R1023102VXC
Abstract: No abstract text available
Text: SMV320C6727B-SP www.ti.com SPRS675E – FEBRUARY 2013 – REVISED MAY 2013 Floating-Point Digital Signal Processor Check for Samples: SMV320C6727B-SP 1 Floating-Point Digital Signal Processor 1.1 Features 123 • 32- and 64-Bit 250-MHz Floating-Point DSPs
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SMV320C6727B-SP
SPRS675E
64-Bit
250-MHz
256K-Byte
384K-Byte
5962R1023102VXC
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5962R1023102VXC
Abstract: No abstract text available
Text: SMV320C6727B-SP www.ti.com SPRS675F – FEBRUARY 2013 – REVISED JUNE 2013 Floating-Point Digital Signal Processor Check for Samples: SMV320C6727B-SP 1 Floating-Point Digital Signal Processor 1.1 Features 123 • 32- and 64-Bit 250-MHz Floating-Point DSPs
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SMV320C6727B-SP
SPRS675F
64-Bit
250-MHz
256K-Byte
384K-Byte
5962R1023102VXC
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SPRS675G
Abstract: No abstract text available
Text: SMV320C6727B-SP www.ti.com SPRS675G – FEBRUARY 2013 – REVISED JANUARY 2014 Floating-Point Digital Signal Processor Check for Samples: SMV320C6727B-SP 1 Floating-Point Digital Signal Processor 1.1 Features 123 • 32- and 64-Bit 250-MHz Floating-Point DSPs
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SMV320C6727B-SP
SPRS675G
64-Bit
250-MHz
256K-Byte
384K-Byte
SPRS675G
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4D04
Abstract: No abstract text available
Text: TMS320C6743 SPRS565B – APRIL 2009 – REVISED JUNE 2011 www.ti.com TMS320C6743 Fixed/Floating-Point Digital Signal Processor Check for Samples: TMS320C6743 1 TMS320C6743 Fixed/Floating-Point Digital Signal Processor 1.1 Features 12 • Highlights – Up to 375-MHz FIxed/Floating-Point VLIW
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TMS320C6743
SPRS565B
TMS320C6743
32-Bit
16-Bit
4D04
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Untitled
Abstract: No abstract text available
Text: TMS320C6743 www.ti.com SPRS565C – APRIL 2009 – REVISED MARCH 2013 TMS320C6743 Fixed/Floating-Point Digital Signal Processor Check for Samples: TMS320C6743 1 TMS320C6743 Fixed/Floating-Point Digital Signal Processor 1.1 Features 12 • Highlights – Up to 375-MHz FIxed/Floating-Point VLIW
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TMS320C6743
SPRS565C
TMS320C6743
375-MHz
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pru 10.64
Abstract: No abstract text available
Text: TMS320C6743 www.ti.com SPRS565C – APRIL 2009 – REVISED MARCH 2013 TMS320C6743 Fixed/Floating-Point Digital Signal Processor Check for Samples: TMS320C6743 1 TMS320C6743 Fixed/Floating-Point Digital Signal Processor 1.1 Features 12 • Highlights – Up to 375-MHz FIxed/Floating-Point VLIW
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TMS320C6743
SPRS565C
TMS320C6743
375-MHz
pru 10.64
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Untitled
Abstract: No abstract text available
Text: SM320C6727B www.ti.com SPRS861 – JANUARY 2014 Floating-Point Digital Signal Processor Check for Samples: SM320C6727B 1 Floating-Point Digital Signal Processor 1.1 Features 123 • 32-/64-Bit 250-MHz Floating-Point DSP • Upgrades to C67x+ CPU From C67x DSP
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SM320C6727B
SPRS861
32-/64-Bit
250-MHz
256K-Byte
384K-Byte
133-MHz
32-Bit)
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pru 10.64
Abstract: 250V 1A TF 103C Using the TMS320C674x BootLoader 0x8B7DF02F TMS320C674x cpu Instruction Set reference guide SPRS565B
Text: TMS320C6743 SPRS565B – APRIL 2009 – REVISED JUNE 2011 www.ti.com TMS320C6743 Fixed/Floating-Point Digital Signal Processor Check for Samples: TMS320C6743 1 TMS320C6743 Fixed/Floating-Point Digital Signal Processor 1.1 Features 12 • Highlights – Up to 375-MHz FIxed/Floating-Point VLIW
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TMS320C6743
SPRS565B
TMS320C6743
32-Bit
16-Bit
pru 10.64
250V 1A TF 103C
Using the TMS320C674x BootLoader
0x8B7DF02F
TMS320C674x cpu Instruction Set reference guide
SPRS565B
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Using the TMS320C674x BootLoader
Abstract: No abstract text available
Text: TMS320C6743 SPRS565B – APRIL 2009 – REVISED JUNE 2011 www.ti.com TMS320C6743 Fixed/Floating-Point Digital Signal Processor Check for Samples: TMS320C6743 1 TMS320C6743 Fixed/Floating-Point Digital Signal Processor 1.1 Features 12 • Highlights – Up to 375-MHz FIxed/Floating-Point VLIW
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TMS320C6743
SPRS565B
TMS320C6743
32-Bit
16-Bit
Using the TMS320C674x BootLoader
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vhdl code 64 bit FPU
Abstract: vhdl code for march c algorithm vhdl code for pipelined matrix multiplication ieee floating point vhdl vhdl code for FFT 32 point ML403 UART ml403 vhdl code for matrix multiplication vhdl code for floating point matrix multiplication XILINX UART lite
Text: APU Floating-Point Unit v3.1 March 11, 2008 Product Specification Introduction LogiCORE Facts The Xilinx Auxiliary Processor Unit APU Floating-Point Unit LogiCORETM is a single-precision floating-point unit designed for the PowerPCTM 405 embedded microprocessor of the VirtexTM-4 FX FPGA
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Untitled
Abstract: No abstract text available
Text: TMS320C6743 SPRS565B – APRIL 2009 – REVISED JUNE 2011 www.ti.com TMS320C6743 Fixed/Floating-Point Digital Signal Processor Check for Samples: TMS320C6743 1 TMS320C6743 Fixed/Floating-Point Digital Signal Processor 1.1 Features 12 • Highlights – Up to 375-MHz FIxed/Floating-Point VLIW
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TMS320C6743
SPRS565B
TMS320C6743
375-MHz
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SPRS591C
Abstract: sprufe8 aa t 224 256kb nand flash JESD79-2A pru 10.64 TMS320C6746
Text: TMS320C6746 SPRS591C – NOVEMBER 2009 – REVISED OCTOBER 2011 www.ti.com TMS320C6746 Fixed/Floating-Point DSP Check for Samples: TMS320C6746 1 TMS320C6746 Fixed/Floating-Point DSP 1.1 Features 12 • Highlights – 375/456-MHz C674x Fixed/Floating-Point
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TMS320C6746
SPRS591C
TMS320C6746
32-/40-Bit)
32-Bit
Precision/32-Bit)
Precision/64-Bit)
SPRS591C
sprufe8
aa t 224
256kb nand flash
JESD79-2A
pru 10.64
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Untitled
Abstract: No abstract text available
Text: TMS320C6746 SPRS591C – NOVEMBER 2009 – REVISED OCTOBER 2011 www.ti.com TMS320C6746 Fixed/Floating-Point DSP Check for Samples: TMS320C6746 1 TMS320C6746 Fixed/Floating-Point DSP 1.1 Features 12 • Highlights – 375/456-MHz C674x Fixed/Floating-Point
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TMS320C6746
SPRS591C
TMS320C6746
32-/40-Bit)
32-Bit
Precision/32-Bit)
Precision/64-Bit)
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0.5-4B
Abstract: 2322 156 239 sprufe8
Text: TMS320C6746 SPRS591C – NOVEMBER 2009 – REVISED OCTOBER 2011 www.ti.com TMS320C6746 Fixed/Floating-Point DSP Check for Samples: TMS320C6746 1 TMS320C6746 Fixed/Floating-Point DSP 1.1 Features 12 • Highlights – 375/456-MHz C674x Fixed/Floating-Point
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TMS320C6746
SPRS591C
TMS320C6746
32-/40-Bit)
32-Bit
Precision/32-Bit)
Precision/64-Bit)
0.5-4B
2322 156 239
sprufe8
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Untitled
Abstract: No abstract text available
Text: TMS320C6746 SPRS591C – NOVEMBER 2009 – REVISED OCTOBER 2011 www.ti.com TMS320C6746 Fixed/Floating-Point DSP Check for Samples: TMS320C6746 1 TMS320C6746 Fixed/Floating-Point DSP 1.1 Features 12 • Highlights – 375/456-MHz C674x Fixed/Floating-Point
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SPRS591C
TMS320C6746
375/456-MHz
C674x
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Untitled
Abstract: No abstract text available
Text: NOV 2 i « # 1 Am29C325 CMOS 32-Bit Floating-Point Processor > 3 DISTINCTIVE CHARACTERISTICS Single VLSI device performs high-speed single precision floating-point arithmetic Floating-point addition, subtraction, and multiplication in a single clock cycle
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Am29C325
32-Bit
32-bit,
16-bit
Am29325
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Am29325
Abstract: H-14
Text: A m 29C 325 CMOS 32-Bit Floating-Point Processor FINAL DISTINCTIVE CHARACTERISTICS • • Single VLSI device performs high-speed single precision floating-point arithmetic Floating-point addition, subtraction, and multiplication in a single clock cycle
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Am29C325
32-Bit
32-bit,
16-bit
Am29325
H-14
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Untitled
Abstract: No abstract text available
Text: in te l CHAPTER 7 FLOATING-POINT UNIT The Intel Architecture Floating-Point Unit FPU provides high-performance floating-point processing capabilities. It supports the real, integer, and BCD-integer data types and the floating point processing algorithms and exception handling architecture defined in the IEEE 754 and
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01fl070fl
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29C325
Abstract: No abstract text available
Text: Am29C325 CMOS 32-B¡t Floating-Point Processor FINAL DISTINCTIVE CHARACTERISTICS • • Single VLSI device performs high-speed single precision floating-point arithmetic Floating-point addition, subtraction, and multiplication in a single clock cycle Internal architecture supports sum-of-products,
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Am29C325
32-bit,
16-bit
Am29325
29C325
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DSP-3201
Abstract: No abstract text available
Text: ANALOG DEVICES 32-Bit IEEE Floating-Point Chipset ADSP-3201/ADSP-3202 FEATURES Complete Chipset Implementing Floating-Point Arithmetic Fully Compatible with IEEE Standard 754 Arithmetic Operations on Three Data Formats: 32-Bit Single-Precision Floating Point
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32-Bit
ADSP-3211
ADSP-3221
240ns
750mW
144-Lead
OOUT31
DSP-3201
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Untitled
Abstract: No abstract text available
Text: SM J34082 FLOATING POINT PROCESSOR SEPTEMBER 1969 145-PIN GC PACKAGE Military Temperature Range: —55°C to 125°C TOP VIEW 1 2 3 4 5 6 7 8 9 1011 12131415 Operates as a SMJ34020 Floating Point Graphics Coprocessor or as a Standalone Floating Point Processor
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J34082
SMJ34020
SMJ34082
40-MHz
SMJ34082-40)
32-MHz
SMJ34082-32)
64-Bit
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