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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ASTM-D-5948
Abstract: ultravolt ASTMD-5948
Text: “FL” SERIES FLOATING HOT DECK LVPS WITH ISOLATED DIGITAL AND ANALOG I/O Isolated up to 15kV DC leakage current of <10nA AC leakage capacitance of <40pF 3 regulated floating LV power outputs Isolated digital I/O to and from floating hot deck Isolated analog I/O to and from floating hot deck
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IEC-60950-1,
15FL12-12W-I/O
ASTM-D-5948
ultravolt
ASTMD-5948
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702 P TRANSISTOR
Abstract: 702 TRANSISTOR split-gate flash
Text: Technical Comparison of Floating Gate Reprogrammable Nonvolatile Memories Technical Paper November 2001 Technical Comparison of Floating Gate Reprogrammable Nonvolatile Memories INTRODUCTION Floating gate reprogrammable EEPROMs, whether called flash memories, EPROMs, or byte alterable E2PROMs,
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S72020-00-000
702 P TRANSISTOR
702 TRANSISTOR
split-gate flash
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Untitled
Abstract: No abstract text available
Text: Edition 2 - May 2007 Floating spring-loaded contact technology Description: The floating concept is currently designed for middle and large volume production, as an elegant and cost efficient solution replacing double-side spring contacts. Floating assembly is a solderless solution for board-to-board applications and sub-modules
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Block Floating Point Implementation
Abstract: tms320c54x floating point processor a 69258 specifications block diagram of of TMS320C54X radix-4 DIT FFT C code 0C72 SPRA610 n5 st pt 2245 ym 238
Text: Application Report SPRA610 - December 1999 A Block Floating Point Implementation on the TMS320C54x DSP Arun Chhabra and Ramesh Iyer Digital Signal Processing Solutions ABSTRACT Block floating-point BFP implementation provides an innovative method of floating-point
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SPRA610
TMS320C54x
Block Floating Point Implementation
tms320c54x floating point processor
a 69258 specifications
block diagram of of TMS320C54X
radix-4 DIT FFT C code
0C72
n5 st
pt 2245
ym 238
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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: LM3407 LM3407 350 mA, Constant Current Output Floating Buck Switching Converter for High Power LEDs Literature Number: SNVS553A LM3407 350 mA, Constant Current Output Floating Buck Switching Converter for High Power LEDs General Description Features The LM3407 is a constant current output floating buck switching converter designed to provide constant current to high
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LM3407
LM3407
SNVS553A
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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
375/456-MHz
C674x
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DDR2 sdram pcb layout guidelines
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)
DDR2 sdram pcb layout guidelines
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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
375/456-MHz
C674x
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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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80960MC
Abstract: C90FDAA2
Text: Floating-Point Operation 7 CHAPTER 7 FLOATING-POINT OPERATION This chapter describes the floating-point processing capabilities of the 80960MC processor. The subjects discussed include the real number data types, the execution environment for floating-point operations, the floating-point instructions, and fault and exception handling.
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80960MC
C90FDAA2
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80960SB
Abstract: No abstract text available
Text: Floating-Point Instructions 1Q CHAPTER 10 FLOATING-POINT INSTRUCTIONS This chapter describes the floating-point processing capabilities of the 80960SB processor. The subjects discussed include the real number data types, the execution environment for floating-point operations, the floating-point instructions, and fault and exception handling.
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80960SB
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i960TM
Abstract: 400921FB
Text: Floating-Point Operation 7 CHAPTER 7 FLOATING-POINT OPERATION This chapter describes the floating-point processing capabilities o f the i960 MC processor. The subjects discussed include the real number data types, the execution environment for floating-point operations, the floating-point instructions and fault and exception handling.
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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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TMS34082
Abstract: CID20 TMS34082A TMS34082B-40 MSA15-0 TMS34020 emulator
Text: TMS34082A, TMS34082B GRAPHICS FLOATING-POINT PROCESSOR SCGS001A - D315Q, SEPTEMBER 1988 - REVISED SEPTEMBER 1992 • High-Performance Floating-Point RISC Processor Optimized for Graphics • TWo Operating Modes - Floating-Point Coprocessor for TMS34020 Graphics System Processor
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TMS34082A,
TMS34082B
SCGS001A
D315Q,
TMS34020
TMS34082
TMS34082A-40,
TMS34082B-40
CID20
TMS34082A
MSA15-0
TMS34020 emulator
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ADSP3220
Abstract: ADSP-3201 ADSP-3220
Text: Introduction Since the introduction o f o u r first floating-point chips in 1984, Analog Devices has been a leader in supplying fast floating-point arithm etic units. W e currently produce four floating-point chipsets, each consisting o f a m ultiplier and an A LU . All parts
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ADSP-3128A.
ADSP-3210
ADSP-3212
ADSP-3222
ADSP-3211
ADSP-3221
-883B
150ns.
300ns
600ns
ADSP3220
ADSP-3201
ADSP-3220
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am29325
Abstract: H-14 AM29325GC WF023740 ScansUX970 TB000640
Text: Am29325 32-Bit Floating-Point Processor • Single VLSI device performs high-speed floating-point arithmetic - Floating-point addition, subtraction, and multiplication in a single clock cycle - Internal architecture supports sum-of-products, Newton-Raphson division
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Am29325
32-Bit
32-bit,
16-bit
WF023790
WF023800
WF023810
16-Bit,
H-14
AM29325GC
WF023740
ScansUX970
TB000640
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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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Cy7C601
Abstract: tyn 618 P5H2
Text: PRODUCT DESCRIPTION CYPRESS ~ SEMICONDUCTOR CY7C608 RISC Floating-Point Controller Features • Provides interface between the CY7C601 Integer Unit and CY7C609 Floating-Point Unit • Provides SPARC compatible Floating-Point Arithmetic and registers • Very high performance
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CY7C608
CY7C601
CY7C609
CY7C608-33GC
CY7C608-25GC
tyn 618
P5H2
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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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MC68020 Minimum System Configuration
Abstract: MC68882 MC68881 M68000 64 pin MC68020 M68000 MC68000 MC68008 MC68010 MC68030
Text: MOTOROLA SEMICONDUCTOR TECHNICAL DATA MC68882 Technical Sum m ary HCMOS Enhanced Floating-Point Coprocessor The MC68882 floating-point coprocessor fully implements the IEEE Standard for Binary Floating-Point A rithm etic 754 for use with the Motorola M68000
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MC68882
MC68882
M68000
MC68881,
MC68881.
MC68020/MC68030
32-bit
68-LEAD
MC68020 Minimum System Configuration
MC68881
M68000 64 pin
MC68020
MC68000
MC68008
MC68010
MC68030
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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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PD102
Abstract: ncl 039 Am29C325 Am29325 AM29C33 pin diagram of amd am2 processor th02 H-14 AM27S43 Am29CPL14
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
PD102
ncl 039
AM29C33
pin diagram of amd am2 processor
th02
H-14
AM27S43
Am29CPL14
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