mip 291
Abstract: mip 290
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025 – AUGUST 1998 D D D D D D D D D D D D D Single-Chip Parallel Multiple Instruction / Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second Master Processor (MP)
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SMJ320C80
SGUS025
32-Bit
IEEE-754
64-Bit
TMS320C8X
SPRA269
mip 291
mip 290
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PDF
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Untitled
Abstract: No abstract text available
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B - AUGUST 1998 - REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction/Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
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PDF
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Untitled
Abstract: No abstract text available
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B - AUGUST 1998 - REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction/Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
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PDF
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Untitled
Abstract: No abstract text available
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B - AUGUST 1998 - REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction/Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
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PDF
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MIP 282
Abstract: AB32 AB34 SMJ320C80 LC1001 MIP 289
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B – AUGUST 1998 – REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction/Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
MIP 282
AB32
AB34
SMJ320C80
LC1001
MIP 289
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PDF
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322k
Abstract: DSP16210 DSP16000
Text: Advisory April 2002 DSP16000 Core In the DSP16000 core, the contents of the internal do loop cache are also accessible as memory at location 0x1ffc0 in most DSP16000 devices in order to facilitate saving and restoring of the cache contents on a subroutine call or context switch.
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Original
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DSP16000
DSP16410B
DSP16410CG
DSP16411
322k
DSP16210
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PDF
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STR 6750
Abstract: block diagram of 8*8 array multiplier CASE DIODE A5L 7809 pi 7809 voltage regulator datasheet ed28 zener DSP16000 DSP16410C DSP16410CG gsm model
Text: Data Sheet May 2003 DSP16410CG Digital Signal Processor 1 Features ! Twin DSP16000 dual-MAC cores perform up to 780 million MACs per second at 195 MHz ! Low power: — 1.575 V internal supply for power efficiency — 3.3 V I/O pin supply for compatibility
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Original
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DSP16410CG
DSP16000
16-bit
DS02-272WINF
DA02-001WINF)
STR 6750
block diagram of 8*8 array multiplier
CASE DIODE A5L
7809 pi
7809 voltage regulator datasheet
ed28 zener
DSP16410C
gsm model
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PDF
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motorola g18 gsm
Abstract: Y6 ZENER DIODE 7809 TO-220 ST ed28 zener motorola g18 gsm datasheet DSP16000 DSP1620 DSP16410B DA0001 motorola g18 gsm 900/1800/1900 data module
Text: Data Sheet June 2001 DSP16410B Digital Signal Processor 1 Features „ „ Twin DSP16000 dual-MAC cores for high throughput: — Up to 740 million MACs per second at 185 MHz — Supports 16+ channels of speech coding or modem processing Low power: — 1.8 V internal supply for power efficiency
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Original
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DSP16410B
DSP16000
16-bit
32-bit
32-biote
motorola g18 gsm
Y6 ZENER DIODE
7809 TO-220 ST
ed28 zener
motorola g18 gsm datasheet
DSP1620
DA0001
motorola g18 gsm 900/1800/1900 data module
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PDF
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MIP 289
Abstract: LC1 D33 LC1 D38 AB32 AB34 SMJ320C80 mip 291
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025 – AUGUST 1998 D D D D D D D D D D D D D Single-Chip Parallel Multiple Instruction / Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second Master Processor (MP)
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Original
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SMJ320C80
SGUS025
32-Bit
IEEE-754
64-Bit
MIP 289
LC1 D33
LC1 D38
AB32
AB34
SMJ320C80
mip 291
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PDF
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Untitled
Abstract: No abstract text available
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B − AUGUST 1998 − REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction / Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
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PDF
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LC1 b12 01
Abstract: No abstract text available
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B − AUGUST 1998 − REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction / Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
LC1 b12 01
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PDF
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MIP 282
Abstract: No abstract text available
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025A – AUGUST 1998 – REVIISED OCTOBER 2000 D D D D D D D D D D D D D Single-Chip Parallel Multiple Instruction / Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025A
32-Bit
IEEE-754
64-Bit
59629679101QXA
59629679101QYC
MIP 282
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PDF
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MIP 289
Abstract: No abstract text available
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B – AUGUST 1998 – REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction/Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
MIP 289
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PDF
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g 999 sab
Abstract: a7v dual zener diode AGERE DSP DSP16000 DSP16210 ed28 zener transistor a7g n17 u1
Text: Advisory April 2002 DSP16000 Core In the DSP16000 core, the contents of the internal do loop cache are also accessible as memory at location 0x1ffc0 in most DSP16000 devices in order to facilitate saving and restoring of the cache contents on a subroutine call or context switch.
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Original
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DSP16000
g 999 sab
a7v dual zener diode
AGERE DSP
DSP16210
ed28 zener
transistor a7g
n17 u1
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PDF
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Untitled
Abstract: No abstract text available
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B - AUGUST 1998 - REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction/Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
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PDF
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HX830
Abstract: E1307 HX85 8A48 e1305 IC 4047 working the working of IC 4047 V830 CA850 V800
Text: User’s Manual CA830, CA850 C Compiler Package Operation Target Devices V830 Family V850 Family™ Supported Compilers CA830 Ver. 2.20 or later CA850 Ver. 2.20 or later Document No. U13998EJ1V0UM00 1st edition Date Published October 1999 N CP(K) 1998
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Original
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CA830,
CA850
CA830
CA850
U13998EJ1V0UM00
V850E,
V850E/MS1
HX830
E1307
HX85
8A48
e1305
IC 4047 working
the working of IC 4047
V830
V800
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PDF
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e3513
Abstract: AJ35 0x000017 mip 291 MO134A
Text: SMJ320C80 DIGITAL SIGNAL PROCESSOR SGUS025B – AUGUST 1998 – REVISED JUNE 2002 D Single-Chip Parallel Multiple D D D D D D D D D D D D Instruction/Multiple Data MIMD Digital Signal Processor (DSP) More Than Two Billion RISC-Equivalent Operations per Second
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Original
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SMJ320C80
SGUS025B
32-Bit
IEEE-754
64-Bit
e3513
AJ35
0x000017
mip 291
MO134A
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PDF
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a4714
Abstract: 1n5a19 IEEE 1284 Peripheral Interface Controller KPY 16 A4721 "4 port" passive hub color lcd controllor driver crt monitor block diagram 0x00120C00 Non VGA Video Controller IC 40 pin
Text: StrongARM SA-1101 Microprocessor Companion Chip Developer’s Manual PRELIMINARY January 1999 Notice: This document contains preliminary information on new products in production. The specifications are subject to change without notice. Verify with your local Intel sales
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Original
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SA-1101
SA-1101
a4714
1n5a19
IEEE 1284 Peripheral Interface Controller
KPY 16
A4721
"4 port" passive hub
color lcd controllor driver
crt monitor block diagram
0x00120C00
Non VGA Video Controller IC 40 pin
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PDF
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ADEE 275
Abstract: T75 TYPE 2000 pna60
Text: Advance Data Sheet April 2002 DSP16411 Digital Signal Processor 1 Features Two IEEE 1149.1 test ports JTAG boundary scan Twin DSP16000 dual-MAC cores perform up to 960 million MACs per second at 240 MHz Low power: — 1.0 V internal supply for power efficiency
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DSP16411
DSP16000
DSP16410B
DSP16410CG
ADEE 275
T75 TYPE 2000
pna60
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PDF
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ADEE 275
Abstract: 16411A1 MARKING CODE ADEE bas marking code a6 DA02-001WINF pna60 ADEE switch t85 M1641
Text: Advisory December 2002 DSP16411 Speed and Core Voltage Migration Overview Changes This document describes the migration of the Agere Systems DSP16411 from a core supply voltage VDD1, VDD1A of 1.0 V nominal to 1.2 V nominal. Associated with this increase in core supply voltage is a corresponding increase in operating frequency. Otherwise,
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Original
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DSP16411
DS02-037WINF,
DSP16410B
DSP16410CG
ADEE 275
16411A1
MARKING CODE ADEE
bas marking code a6
DA02-001WINF
pna60
ADEE
switch t85
M1641
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PDF
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SRUN10
Abstract: No abstract text available
Text: Data Sheet March 2003 DSP16411 Digital Signal Processor 1 Features ! Twin DSP16000 dual-MAC cores perform up to 1140 million MACs per second at 285 MHz ! Low power: — 1.2 V internal supply for power efficiency — 3.3 V I/O pin supply for compatibility !
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Original
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DSP16411
208-ball
DSP16000
SRUN10
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PDF
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CI 4017
Abstract: Agere 217 PBGA Agere outline drawings 217 pbga DSP16000 DSP16410CG DSP16411
Text: Data Sheet May 2003 DSP16411 Digital Signal Processor 1 Features ! Twin DSP16000 dual-MAC cores perform up to 1140 million MACs per second at 285 MHz ! Low power: — 1.2 V internal supply for power efficiency — 3.3 V I/O pin supply for compatibility ! 322K x 16 on-chip RAM
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Original
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DSP16411
DSP16000
16-bit
CI 4017
Agere 217 PBGA
Agere outline drawings 217 pbga
DSP16410CG
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PDF
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AB32
Abstract: AB34 SM320C80
Text: SM320C80 Digital Signal Processor Data Sheet Printed in U.S.A., August 1996 SGUS021 Book Type Data Sheet SM320C80 Digital Signal Processor 1996 SM320C80 DIGITAL SIGNAL PROCESSOR SGUS021 – AUGUST 1996 D D D D D D D D D D D D D Single-Chip Parallel Multiple
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Original
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SM320C80
SGUS021
32-Bit
IEEE-754
64-Bit
4040232-6/D
AB32
AB34
SM320C80
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PDF
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STR 6750
Abstract: ed28 zener DSP16410 DSP16410B DSP16410C ED11 ED15 ED17 ED26 zener diode c20 5t
Text: Data Addendum May 2001 DSP16410C Digital Signal Processor 1 Introduction 3 Device Identification This addendum contains information specific to the DSP16410C. The DSP16410C is pin-compatible and functionally identical to the DSP16410B. However, the DSP16410C provides higher speed operation and
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Original
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DSP16410C
DSP16410C.
DSP16410B.
DSP16410B
DS01-070WTEC)
STR 6750
ed28 zener
DSP16410
ED11
ED15
ED17
ED26
zener diode c20 5t
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PDF
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