tdk ed29
Abstract: tdk ed28 352-PIN AD17 C6200 C6201 TMS320C6201 16KX8 4ha5
Text: TMX320C6201 DIGITAL SIGNAL PROCESSOR SPRS051B – JANUARY 1997 – REVISED JUNE 1997 D D D D Highest Performance Fixed-Point Digital Signal Processor DSP : – 1 600 MIPS @ 200 MHz – Five-ns Cycle Time – Eight x 32-Bit Instructions/Cycle VelociTI Advanced Very-Long Instruction
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TMX320C6201
SPRS051B
32-Bit
16-Bit
32-/40-Bit)
tdk ed29
tdk ed28
352-PIN
AD17
C6200
C6201
TMS320C6201
16KX8
4ha5
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PDF
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tdk ed29
Abstract: TMS320C6201 352-PIN AD17 C6200 C6201 tdk ed28
Text: TMX320C6201 DIGITAL SIGNAL PROCESSOR SPRS051A – JANUARY 1997 – REVISED FEBRUARY 1997 D D D D Highest Performance Fixed-Point Digital Signal Processor DSP : – 1 600 MIPS @ 200 MHz – Five-ns Cycle Time – Eight x 32-Bit Instructions/Cycle VelociTI Advanced Very-Long Instruction
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Original
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TMX320C6201
SPRS051A
32-Bit
16-Bit
32-/40-Bit)
tdk ed29
TMS320C6201
352-PIN
AD17
C6200
C6201
tdk ed28
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PDF
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tdk ed29
Abstract: tdk ed28 tdk ed26 CHIP EPROM AE12 140 0000 001 352-PIN AD17 C6200 C6201 TMS320C6201
Text: TMX320C6201 DIGITAL SIGNAL PROCESSOR SPRS051B – JANUARY 1997 – REVISED JUNE 1997 D D D D Highest Performance Fixed-Point Digital Signal Processor DSP : – 1 600 MIPS @ 200 MHz – Five-ns Cycle Time – Eight x 32-Bit Instructions/Cycle VelociTI Advanced Very-Long Instruction
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Original
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TMX320C6201
SPRS051B
32-Bit
16-Bit
32-/40-Bit)
tdk ed29
tdk ed28
tdk ed26
CHIP EPROM AE12
140 0000 001
352-PIN
AD17
C6200
C6201
TMS320C6201
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PDF
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tdk ed28
Abstract: tdk ed29 140 0000 001 352-PIN AD17 C6200 C6201 TMS320C6201 SPRS051
Text: TMX320C6201 DIGITAL SIGNAL PROCESSOR SPRS051 – JANUARY 1997 D D D D Highest Performance Fixed-Point Digital Signal Processor DSP : – 1 600 MIPS @ 200 MHz – Five-ns Cycle Time – Eight x 32-Bit Instructions/Cycle VelociTI Advanced Very-Long Instruction
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Original
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TMX320C6201
SPRS051
32-Bit
16-Bit
32-/40-Bit)
tdk ed28
tdk ed29
140 0000 001
352-PIN
AD17
C6200
C6201
TMS320C6201
SPRS051
|
PDF
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tdk ed29
Abstract: tdk ed28 C6200 UZ111 4h4 1 DMC TOOLS r3311 352-PIN AD17 C6201
Text: TMX320C6201 DIGITAL SIGNAL PROCESSOR SPRS051 - JANUARY 1997 VelociTI Advanced Very-Long Instruction Word VLIW Architecture: - Eight Independent Functional Units - Two 16-Bit Multipliers (32-Bit Results) - Six Arithmetic Logic Units (ALUs) (32-/40-Bit)
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OCR Scan
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TMX320C6201
SPRS051
32-Bit
16-Bit
32-/40-Bit)
flTbl722
tdk ed29
tdk ed28
C6200
UZ111
4h4 1
DMC TOOLS
r3311
352-PIN
AD17
C6201
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PDF
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SPRA012
Abstract: 352-PIN HD15 TMS320C6X SPRU011 452-pin
Text: TMX320C6201 DIGITAL SIGNAL PROCESSOR SPRS051C – JANUARY 1997 – REVISED MARCH 1998 D D D D D D Highest Performance Fixed-Point Digital Signal Processor DSP TMX320C6201 – 5-ns Instruction Cycle Time – 200-MHz Clock Rate – Eight 32-Bit Instructions/Cycle
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Original
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TMX320C6201
SPRS051C
200-MHz
32-Bit
32-/40-Bit)
16-Bit
32-Bit
SPRA012
352-PIN
HD15
TMS320C6X
SPRU011
452-pin
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PDF
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SPRS067
Abstract: C6201 HD15 ED27
Text: TMX320C6701 FLOATING-POINT DIGITAL SIGNAL PROCESSOR SPRS067 – MAY 1998 D D D D D Highest Performance Floating-Point Digital Signal Processor DSP TMX320C6701 – 6-ns Instruction Cycle Time – 167-MHz Clock Rate – Eight 32-Bit Instructions/Cycle – 1 GFLOPS
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Original
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TMX320C6701
SPRS067
167-MHz
32-Bit
C6201
32-Bit
SPRS067
HD15
ED27
|
PDF
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Untitled
Abstract: No abstract text available
Text: HEADER LINE 1 FLOATING-POINT DIGITAL SIGNAL PROCESSOR S P R S 0 6 7 -M A Y 1998 • • • • • Highest Performance Floating-Point Digital Signal Processor DSP TMX320C6701 - 6-ns Instruction Cycle Time - 167-MHz Clock Rate - Eight 32-Bit Instructions/Cycle
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OCR Scan
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TMX320C6701
167-MHz
32-Bit
C6201
|
PDF
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PJ 1429
Abstract: No abstract text available
Text: TMX320C6201 DIGITAL SIGNAL PROCESSOR S P R S 0 5 1 C - JA N U A R Y 1 9 9 7 -R E V IS E D MARCH 1998 • • Instruction Set Features - Byte-Addressable 8-, 16-, 32-Bit Data - 32-Bit Address Range - 8-Bit Overflow Protection - Saturation - Bit-Field Extract, Set, Clear
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OCR Scan
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TMX320C6201
200-MHz
32-Bit
32-/40-Bit)
16-Bit
PJ 1429
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PDF
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tdk ed28
Abstract: EA7 SMD tdk ed29 smd diode h15 ed15 smd bhz ti cev smd smd transistor 2xX C6200 HD15
Text: SM320C6201, SMJ320C6201B DIGITAL SIGNAL PROCESSORS SGUS028A − NOVEMBER 1998 − REVISED JANUARY 1999 D Highest Performance Fixed-Point Digital D D D D D D Signal Processor DSP SM320C6201 − 6.67-ns Instruction Cycle Time − 150-MHz Clock Rate − Eight 32-Bit Instructions/Cycle
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Original
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SM320C6201,
SMJ320C6201B
SGUS028A
SM320C6201
67-ns
150-MHz
32-Bit
tdk ed28
EA7 SMD
tdk ed29
smd diode h15
ed15 smd
bhz ti
cev smd
smd transistor 2xX
C6200
HD15
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PDF
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cev smd
Abstract: smd cev C6200 HD15 SM320C6201 SMJ320C6201B MCBG004 tdk ed28
Text: SM320C6201, SMJ320C6201B DIGITAL SIGNAL PROCESSORS SGUS028A − NOVEMBER 1998 − REVISED JANUARY 1999 D Highest Performance Fixed-Point Digital D D D D D D Signal Processor DSP SM320C6201 − 6.67-ns Instruction Cycle Time − 150-MHz Clock Rate − Eight 32-Bit Instructions/Cycle
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Original
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SM320C6201,
SMJ320C6201B
SGUS028A
SM320C6201
67-ns
150-MHz
32-Bit
cev smd
smd cev
C6200
HD15
SM320C6201
SMJ320C6201B
MCBG004
tdk ed28
|
PDF
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ed15 smd
Abstract: EA7 SMD smd code EA6 ed17 SMD motorola 6800 assembly language guide 429-Ball 144AIR EA8 SMD EA6 SMD SMD ED11
Text: SM320C6201, SMJ320C6201B DIGITAL SIGNAL PROCESSORS SGUS028A - NOVEMBER 1998 - REVISED JANUARY 1999 Highest Performance Fixed-Point Digital Signal Processor DSP SM320C6201 - 6.67-ns Instruction Cycle Time - 150-MHz Clock Rate - Eight 32-Bit Instructions/Cycle
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OCR Scan
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SM320C6201,
SMJ320C6201B
SGUS028A
SM320C6201
67-ns
150-MHz
32-Bit
ed15 smd
EA7 SMD
smd code EA6
ed17 SMD
motorola 6800 assembly language guide
429-Ball
144AIR
EA8 SMD
EA6 SMD
SMD ED11
|
PDF
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EA7 SMD
Abstract: cev smd EA8 SMD N429 smd cev smd code EA2 SMD ED11 C6200 HD15 SM320C6201
Text: SM320C6201, SMJ320C6201B DIGITAL SIGNAL PROCESSORS SGUS028A – NOVEMBER 1998 – REVISED JANUARY 1999 D D D D D D D Highest Performance Fixed-Point Digital Signal Processor DSP SM320C6201 – 6.67-ns Instruction Cycle Time – 150-MHz Clock Rate – Eight 32-Bit Instructions/Cycle
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Original
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SM320C6201,
SMJ320C6201B
SGUS028A
SM320C6201
67-ns
150-MHz
32-Bit
EA7 SMD
cev smd
EA8 SMD
N429
smd cev
smd code EA2
SMD ED11
C6200
HD15
SM320C6201
|
PDF
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ed16 smd
Abstract: ED31 smd
Text: SM320C6201, SMJ320C6201B DIGITAL SIGNAL PROCESSORS SGUS028A - NOVEMBER 1998 - REVISED JANUARY 1999 D Highest Performance Fixed-Point Digital D D D D D D Signal Processor DSP SM320C6201 - 6.67-ns Instruction Cycle Time - 150-MHz Clock Rate - Eight 32-Bit Instructions/Cycle
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Original
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SM320C6201,
SMJ320C6201B
SGUS028A
SM320C6201
67-ns
150-MHz
32-Bit
ed16 smd
ED31 smd
|
PDF
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ncl 039
Abstract: 5P17
Text: TMS320C6201, TMS320C6201B DIGITAL SIGNAL PROCESSORS SPRS051D - JANUARY 1997 - REVISED AUGUST 1998 GJC/GJL/GGP 352-PIN BALL GRID ARRAY BGA PACKAGES (BOTTOM VIEW) Highest Performance Fixed-Point Digital Signal Processor (DSP) TMS320C6201 - 5-ns Instruction Cycle Time
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OCR Scan
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TMS320C6201,
TMS320C6201B
SPRS051D
TMS320C6201
200-MHz
32-Bit
233-MHz
C6200
ncl 039
5P17
|
PDF
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CK01, H 135
Abstract: ed16 smd
Text: SM320C6201, SMJ320C6201B DIGITAL SIGNAL PROCESSORS S G U S 028A - N O VE M B ER 1998 - R EVISED JA N U A R Y 1999 Highest Performance Fixed-Point Digital Signal Processor DSP SM320C6201 - 6.67-ns Instruction Cycle Time - 150-MHz Clock Rate - Eight 32-Bit Instructions/Cycle
|
OCR Scan
|
SM320C6201,
SMJ320C6201B
SM320C6201
67-ns
150-MHz
32-Bit
CK01, H 135
ed16 smd
|
PDF
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UC3842 smps design
Abstract: ferrite core transformer calculation formula UC3842 smps project AN1889 uc3845 smps pcb design on uc3842 transformer winding formula step down transformer tank design calculation transformer calculation formula TDK Ferrite Core PC40
Text: AN1889 APPLICATION NOTE ESBT STC03DE170 IN 3-PHASE AUXILIARY POWER SUPPLY 1. INTRODUCTION The need to choose a high value of the fly-back voltage is well known to power supply designers when efficiency and high duty cycle become important requirements. Three-phase auxiliary power supplies,
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Original
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AN1889
STC03DE170
UC3842 smps design
ferrite core transformer calculation formula
UC3842 smps project
AN1889
uc3845 smps
pcb design on uc3842
transformer winding formula step down
transformer tank design calculation
transformer calculation formula
TDK Ferrite Core PC40
|
PDF
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ferrite core transformer calculation formula
Abstract: UC3842 smps project uc3842 smps Power Supply Schematic Diagram UC3842 smps design pcb design on uc3842 design of mosfet based power supply uc 3842 transformer winding formula step down TRANSISTOR R2W flyback transformer design uc3842 Switching Power Supply Schematic Diagram uc3842
Text: AN1889 APPLICATION NOTE ESBT STC03DE170 IN 3-PHASE AUXILIARY POWER SUPPLY S. Buonomo, F. Saya, G.Vitale 1. INTRODUCTION The need to choose a high value of the fly-back voltage is well known to power supply designers when the efficiency and the need of higher duty cycle become important. Three-phase auxiliary power
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Original
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AN1889
STC03DE170
ferrite core transformer calculation formula
UC3842 smps project
uc3842 smps Power Supply Schematic Diagram
UC3842 smps design
pcb design on uc3842
design of mosfet based power supply uc 3842
transformer winding formula step down
TRANSISTOR R2W
flyback transformer design uc3842
Switching Power Supply Schematic Diagram uc3842
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PDF
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Untitled
Abstract: No abstract text available
Text: TMX320C6201 DIGITAL SIGNAL PROCESSOR SPRS051A-JANUARY 1 9 9 7 -REVISED FEBRUARY 1997 1 600 MI PS @ 200 M H z F i v e - n s C y c l e T i me - E i g h t x 3 2 - B i t I n s tr uc t i on s / C y c l e - • Six A r i t hme t i c L ogi c Uni t s A L U s (32-/40-B i t)
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OCR Scan
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TMX320C6201
SPRS051A-JANUARY
352-PIN
32-/40-B
|
PDF
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C5100 MOSFET
Abstract: UC3842 smps design UC3842 step up converter flyback smps uc3845 UC3842 smps project AN1889 SMPS CIRCUIT DIAGRAM UC3842 pcb design on uc3842 transistor c5100 NF-2000
Text: AN1889 Application note ESBT STC03DE170HV in 3-phase auxiliary power supply Introduction The need to choose a high value of the fly-back voltage is well known to power supply designers when efficiency and high duty cycle become important requirements. Threephase auxiliary power supplies, starting from a bulk voltage of 750 V, require theoretically
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Original
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AN1889
STC03DE170HV
C5100 MOSFET
UC3842 smps design
UC3842 step up converter
flyback smps uc3845
UC3842 smps project
AN1889
SMPS CIRCUIT DIAGRAM UC3842
pcb design on uc3842
transistor c5100
NF-2000
|
PDF
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RP402n461
Abstract: diode ed39
Text: RP402x Series High Efficiency Small Packaged Step-up DC/DC Converter NO.JA-317-140225 OUTLINE RP402x Series are high efficiency, synchronous step-up DC/DC converter ICs packaged in compact 5pin SOT23-5*1, or 8pin DFN PLP 2020-8. This IC can start up from low voltage (Typ. 0.7 V), therefore, it is suitable
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Original
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RP402x
JA-317-140225
OT23-5
Room403,
Room109,
10F-1,
RP402n461
diode ed39
|
PDF
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Untitled
Abstract: No abstract text available
Text: TMS320C6205 FIXED-POINT DIGITAL SIGNAL PROCESSOR SPRS106 – OCTOBER 1999 D D D D D D Signal Processor DSP TMS320C6205 – 5-ns Instruction Cycle Time – 200-MHz Clock Rate – Eight 32-Bit Instructions/Cycle – 1600 MIPS VelociTI Advanced Very Long Instruction
|
Original
|
TMS320C6205
SPRS106
TMS320C6205
200-MHz
32-Bit
C6200
32-/40-Bit)
16-Bit
|
PDF
|
tdk ed29
Abstract: TMS 320 C 6X processor datasheet ACF451832-153-T spru296 tdk ed28 x10 frequency multiplier x11 frequency multiplier AC97 C6200 PC99
Text: TMS320C6205 FIXED-POINT DIGITAL SIGNAL PROCESSOR SPRS106 – OCTOBER 1999 D D D D D D Highest Performance Fixed-Point Digital Signal Processor DSP TMS320C6205 – 5-ns Instruction Cycle Time – 200-MHz Clock Rate – Eight 32-Bit Instructions/Cycle – 1600 MIPS
|
Original
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TMS320C6205
SPRS106
200-MHz
32-Bit
C6200
32-/40-Bit)
16-Bit
32-Bit
tdk ed29
TMS 320 C 6X processor datasheet
ACF451832-153-T
spru296
tdk ed28
x10 frequency multiplier
x11 frequency multiplier
AC97
PC99
|
PDF
|
C6200
Abstract: TMS320C6000 TMS320C6211 TMS320C6211-150 TMS320C6211-167
Text: TMS320C6211 FIXED-POINT DIGITAL SIGNAL PROCESSOR FAMILY SPRS073A– AUGUST 1998– REVISED MARCH 1999 D D D D D D Best Price/Performance Fixed-Point Digital Signal Processor DSP TMS320C6211 – 6.7-, 6-ns Instruction Cycle Time – 150-, 167-MHz Clock Rates
|
Original
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TMS320C6211
SPRS073A
167-MHz
32-Bit
C6711
C6200
32-/40-Bit)
16-Bit
TMS320C6000
TMS320C6211
TMS320C6211-150
TMS320C6211-167
|
PDF
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