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TMS320

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445: 666: 743: 707: 269: 725: 31: 1246: 363:, external memory interface and GPIO. Due to features like PWM waveform synchronization with the ADC unit, the C2000 line is well suited to many real-time control applications. The C2000 family is used for applications like motor drive and control, industrial automation, solar and other renewable energy, server farms, digital power, 1250: 330:
C2000 microcontroller family consists of 32-bit microcontrollers with performance integrated peripherals designed for real-time control applications. C2000 consists of 5 sub-families: the newer C28x + ARM Cortex M3 series, C28x Delfino floating-point series, C28x Piccolo series, C28x fixed-point
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for non-commercial users, offering the bare compiler, assembler, optimizer and linker under a proprietary license. However, neither the IDE nor a debugger were included, so for debugging and JTAG access to the DSPs, users still need to purchase the complete toolchain.
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The TMS320 architecture has been around for a while so a number of product variants have developed. The product codes used by Texas Instruments after the first TMS32010 processor have involved a series of processor named "TMS320Cabcd", where
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application processors, and Digital Media peripherals. There are variants without ARMs, and without DSPs. Their marketing focuses on their video processing capabilities. Original chips supported NTSC and PAL, while newer ones support
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DA610/601 is a processor with a C67x core. It has on chip peripherals needed to connect to audio codecs for a 5.1 or 7.1 system. This chip is used in the YAMAHA high end receivers : RX-V1400, RX-V2400, RX-V1600, RX-V2600,
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TMS320C54x 16-bit fixed-point DSP, 6 stage pipeline with in-order-execution of opcodes, parallel load/store on arithmetic operations, multiply accumulate and other DSP enhancements. Internal multi-port memory. no cache unit.
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For this reason, those working with DSPs often abbreviate a processor as "C5x" when the actual name is, for example, TMS320C5510, since all products have the name "TMS320", and all processors with "C5" in the name are
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as a general-purpose processor for user interface and control, off-loading this function from the DSP. This ultimately led to the creation of a dual core ARM7+C54x DSP, which later evolved into the OMAP product
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TMS320C55x generation – fixed-point, runs C54x code but adds more internal parallelism (another ALU, dual MAC, more memory bandwidth) and registers, while supporting much lower power operation.
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TMS320C32, 40 to 60 MHz, 2 KB internal SRAM, 5 Volt, adds 2nd DMA coprocessor, changes external memory bus to allow 8/16/32-bit wide memory access where as other C3x parts are 32-bit only
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processor and a C55x core. It has some on-chip peripherals like a USB slave controller and security features. Documentation of this chip is only available after signing a Texas Instruments
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series, and C240x, an older 16-bit line that is no longer recommended for new development. The C2000 series is notable for its high performance set of on-chip control peripherals including
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TMS320C31, 27 to 60 MHz, 8 KB internal SRAM, 5 Volt, subset of TMS320C30 by removing 2nd serial port, removing 2nd memory bus, replacing user ROM with factory ROM bootloader
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and share the same basic features. Similarly, a subgrouping may be referred to as, for example, C55x, as processors in the same series and generation are even more similar.
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The C7000 series was released in early 2020, but cores are not available individually. As of August 2023, they are only available bundled inside other SOCs, such as the
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chips are based on the OMAP-L137, and include a 300 MHz C674x DSP and a 300 MHz ARM926ES-J core. The DA828 variant has reduced I/O and comes in a 176-pin
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TMS320C80 MVP (multimedia video processor) has a 32 bit floating-point "master processor" and four 32-bit fixed-point "slave processors". In many ways the
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TMS320VC33, 60 to 75 MHz, 136 KB internal SRAM, 3.3 Volt I/O with 1.8 Volt Core, superset of TMS320C31 by adding 128KB internal SRAM
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operation useful in both DSP applications as well as transformations used in computer graphics. The graphics controller card for the
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as part of their acquisition) to provide deep integration and support for the C6x series in GCC, as part of their effort to port the
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DSPs. All processors in these series are object-code compatible with the TMS32020 and source-code compatible with the TMS32010
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TMS320E25, identical to the TMS320C25, except with EPROM used for the 4K-word on-chip program store rather than ROM
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DN570 Workstation, released in 1985, was based on the TMS32010 and could transform 20,000 2D vectors per second.
88: 57: 807: 770:). Clones of the TMS320C546 went into production at PKK Milandr Moscow in 2009 under the designation 1967VC1T ( 604: 364: 42: 1035: 103: 1194: 842: 619: 583: 332: 237:, is equipped with three branch delay slots and supports both delayed and non-delayed branch instructions. 190: 168: 147: 65: 53: 1249:[Microprocessors and microcontrollers] (in Russian). Nizhny Novgorod: MVC. 2014. Archived from 586:. (There are also OMAP processors with other secondary processors, so these are not necessarily DSPs.) 1047: 826: 612: 528:
chips include an ARM Cortex-A9 or A15 (ARMv7) with a custom C64x+ derivative known as Tesla (or C64T)
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to C6x. This culminated in C6x being a supported architecture in GCC release 4.7 on March 22, 2012.
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co-processor and as the main CPU in some applications. Newer implementations support standard IEEE
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TMS32010, the very first processor in the first series introduced in 1983, using external memory
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for the description of an early commercial application of the TMS32010 for active noise control
1404: 1227:[1967VC1T (corresponding to TMS320C546)] (in Russian). Moscow: PKK Milandr. 20 May 2009 1375: 1174: 935: 815: 81: 46: 1275:[Dual-core microcontroller from Company "Milandr" for high-reliability applications] 290: 1055: 887: 877: 830: 791: 783: 771: 763: 683: 600: 579: 557: 178: 1010: 790:). PKK Milandr also manufactures a TMS320C54x with an additional ARM core as the 1901VC1T ( 360: 1411: 861: 779: 107: 1051: 1143: 400:
At the time, desire to improve the user interface of cellphones led to the adoption of
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Guttag, Karl; (USA), Texas Instruments Inc. (June 7, 1996). Picone, Joseph (ed.).
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The original TMS32010 and its subsequent variants are an example of a CPU with a
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Waves of Silence: Digisonix, active noise control, and the digital revolution
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DSPs. All processors in these series are code-compatible with the TMS32010
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memoir by T.I. manager on creation of TMS32010 Digital Signal Processor
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A number of devices from the TMS320 series are in production at NIIET
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TMS320C66x fixed- and floating point – backwards compatible with C674x
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TMS320C25, 40 MHz CMOS version with greatly enhanced feature set
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modules, and capture modules. The series also contains support for
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has developed preliminary support for the TMS320C6x series in the
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TMS320C64x+ fixed-point – major architectural update of TMS320C64x
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a top page for the recent (as of 2012) GCC and Linux ports to C6x
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TMS320C674x fixed- and floating point – merger of C64x+ and C67x+
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The processor is available in many different variants, some with
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Around 1991, a CMOS-version of the TMS32020 was manufactured by
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TMS320C67x+ floating point – architectural update of TMS320C67x
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TMS320C40, 40/50/60/80 MHz, cycle time 50/40/33/25 ns,
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TMS320LC31, 33 to 40 MHz, 3.3 Volt version of TMS320C31
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TMS320C67x floating point – code compatible with TMS320C62x
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variants. The floating-point DSP TMS320C3x, which exploits
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GCC 4.7 Release Series – Changes, New Features, and Fixes
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TMS320C64x fixed-point – code compatible with TMS320C62x
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TMS320C30, 27 to 50 MHz, 8 KB internal SRAM, 5 Volt
907:"The TMS320C30 Floating-Point Digital Signal Processor" 848:
In November 2007, TI released part of its toolchain as
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chips include an ARM Cortex-A8 (ARMv7) with a C64x+ DSP
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control for boundary scan and/or in-circuit debugging.
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processor in the same chip; see the main article on
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Berlin: Verlag Technik. 689:DSC25 has an ARM7TDMI core and a TMS320 DSP 622:and signal processor for all processing of 486:Other parts with C6000 series DSPs include 806:The TMS320 series can be programmed using 317:Learn how and when to remove this message 87:This series of processors are used as a 27:Series of Digital Signal Processor chips 1376:Texas Instruments enters the DSP market 898: 856:In 2010, Texas Instruments contracted 710:Die of the General Instrument DSP32010 278:contains content that is written like 860:(the assignment later transferred to 596:DA variants (target "Digital audio") 7: 1247:"Микропроцессоры и микроконтроллеры" 1040:Digital Signal Processing Technology 837:. Additionally, a department at the 189:TMS320C2x, second generation 16-bit 184:TMS320C10, TMS320C15, TMS320C25, etc 758:version of the TMS320C25 under the 453:TMS320 C6000 series, or TMS320C6x: 167:TMS320C1x, first generation 16-bit 1304:Jan Parthey and Robert Baumgartl, 824:integrated development environment 423:(ARMv5TEJ) with a C55x series DSP. 41:is a blanket name for a series of 25: 1433:Texas Instruments microprocessors 1167:Digitaler Signalprozessor U320C20 839:Chemnitz University of Technology 739:under the designation U320C20FC. 633:chips are built around C67x+ DSPs 448:Texas Instruments TMS320C6726BRFP 397:cell phones made use of the C54x. 230:TMS320C4x, 32-bit floating point 210:TMS320C3x, 32-bit floating point 1382:C2000 low cost experimenter kits 1171:Digital signal processor U320C20 754:as the 1867 series, including a 492:chips include one or both of an 267: 717:manufactured the TMS32010 as a 433:(ARMv6) with a C55x series DSP. 245:TMS320C8x, multiprocessor chip 1225:"1967ВЦ1Т (аналог TMS320C546)" 1155:site includes more information 644:package instead of a 256-ball 516:(ARMv6) with a C64x series DSP 240:TMS320C44, subset of TMS320C40 1: 669:Texas Instruments TMS320DM270 543:, which features a C71x DSP. 389:, circa late 1990s when many 252:followed this design approach 100:modified Harvard architecture 60:. The TMS320 processors were 1321:"TI frees its DSP toolchain" 1338:Free DSP Compiler Available 686:core and a TMS320 C5409 DSP 679:core and a TMS320 C5409 DSP 1449: 1378:historical article from TI 1197:[DSP processors]. 34:Texas Instruments TMS32020 1428:Digital signal processors 693:Texas Instruments DaVinci 365:power-line communications 89:digital signal processing 58:floating-point arithmetic 43:digital signal processors 1011:"TMS320C4x User's Guide" 829:, which includes a mini 496:and a C64x+ or C674x DSP 1080:(subscription required) 843:GNU Compiler Collection 104:multiply-and-accumulate 80:, has as many as three 1387:c6000 Discussion Forum 1120:"LinuxDevices article" 795: 787: 775: 767: 747: 732: 711: 670: 584:Texas Instruments OMAP 578:variants also have an 449: 150:chips, including both 148:MOS integrated circuit 142:TMS320 processors are 68:chips, including both 66:MOS integrated circuit 54:fixed-point arithmetic 35: 778:) and in 2016 at MVC 745: 727: 709: 668: 447: 381:A popular choice for 299:neutral point of view 33: 1372:at Texas Instruments 1165:Heuer, Gert (1991). 912:. ti.com. p. 14 827:Code Composer Studio 613:Dell Digital Jukebox 123:is the main series, 78:delayed branch logic 1052:1996SPIE.2750....2G 291:promotional content 250:Cell microprocessor 127:the generation and 1410:2016-03-04 at the 1016:. p. 171(7-9) 756:radiation-hardened 748: 733: 715:General Instrument 712: 671: 450: 341:quadrature encoder 293:and inappropriate 36: 1389:at DSPRelated.com 1060:10.1117/12.241977 990:Texas Instruments 965:Texas Instruments 936:Texas Instruments 816:assembly language 618:, as the primary 558:systems-on-a-chip 512:chips combine an 502:chips include an 429:chips combine an 419:chips combine an 327: 326: 319: 47:Texas Instruments 16:(Redirected from 1440: 1370:DSP product tree 1358: 1353: 1347: 1335: 1329: 1328: 1323:. Archived from 1317: 1311: 1302: 1296: 1295: 1293: 1291: 1286:on 27 April 2016 1285: 1278: 1269: 1263: 1262: 1260: 1258: 1243: 1237: 1236: 1234: 1232: 1221: 1215: 1214: 1212: 1210: 1195:"DSP-процессоры" 1191: 1185: 1184: 1162: 1156: 1154: 1152: 1151: 1142:. Archived from 1135: 1129: 1127: 1122:. 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Retrieved 901: 866:Linux kernel 858:CodeSourcery 855: 847: 805: 749: 734: 713: 637: 636:DA830/DA828 630: 629:TMS320DA7xx 609:Creative ZEN 599:DA25x is an 538: 535:C7000 series 457:-based DSPs 440:C6000 series 372:C5000 series 313: 307:January 2024 304: 289:by removing 285:Please help 277: 259:C2000 series 181:of 3 KB 141: 133: 128: 124: 120: 117: 97: 86: 51: 45:(DSPs) from 38: 37: 995:10 December 986:"TMS320C40" 942:10 December 931:"TMS320C25" 760:designation 659:DM variants 616:MP3 players 591:DA variants 191:fixed-point 169:fixed-point 82:delay slots 1422:Categories 1209:2 December 1150:2009-09-22 1104:2024-08-06 1099:www.ti.com 1073:January 7, 1020:2023-12-23 970:7 December 916:2023-11-04 894:References 822:and their 762:1867VM7T ( 287:improve it 158:variants. 144:fabricated 62:fabricated 1393:Linux-C6x 1231:9 January 820:toolchain 814:, and/or 731:U320C20FC 652:RX-V2500. 500:OMAP-L13x 18:TMS320C4x 1408:Archived 1341:Archived 1290:18 April 1257:18 April 1199:niiet.ru 1068:60536785 1046:: 2–11. 872:See also 850:freeware 835:DSP/BIOS 796:1901ВЦ1Т 788:1910ВМ1Т 776:1967ВЦ1Т 768:1867ВМ7Т 752:Voronezh 677:ARM7TDMI 510:OMAP243x 427:OMAP2420 395:Ericsson 357:watchdog 114:Variants 1048:Bibcode 833:called 792:Russian 784:Russian 772:Russian 764:Russian 490:DaVinci 1177:  1066:  684:ARM926 638:Aureus 631:Aureus 541:TDA4VM 39:TMS320 1284:(PDF) 1277:(PDF) 1169:[ 1137:this 1117:this 1095:(PDF) 1064:S2CID 1014:(PDF) 961:(PDF) 910:(PDF) 695:chips 565:HDTV. 520:OMAP3 514:ARM11 431:ARM11 417:OMAP1 405:line. 391:Nokia 361:McBSP 1403:see 1292:2018 1259:2018 1233:2017 1211:2019 1175:ISBN 1075:2017 1044:2750 997:2019 972:2023 944:2019 883:Ceva 646:PBGA 642:TQFP 611:and 576:OMAP 562:ARM9 552:The 504:ARM9 494:ARM9 455:VLIW 421:ARM9 402:ARM7 393:and 235:CMOS 156:CMOS 154:and 152:NMOS 93:JTAG 74:CMOS 72:and 70:NMOS 1056:doi 812:C++ 798:). 737:ZMD 729:ZMD 624:MP3 620:CPU 605:NDA 601:ARM 580:ARM 387:GSM 353:CAN 349:SPI 345:I²C 337:ADC 333:PWM 179:ROM 146:on 64:on 1424:: 1097:. 1062:. 1054:. 1042:. 1038:. 988:. 963:. 933:. 845:. 810:, 794:: 786:: 774:: 766:: 721:. 383:2G 359:, 355:, 347:, 339:, 335:, 129:cd 84:. 1294:. 1261:. 1235:. 1213:. 1183:. 1153:. 1107:. 1077:. 1058:: 1050:: 1023:. 999:. 974:. 946:. 919:. 808:C 648:. 462:W 320:) 314:( 309:) 305:( 301:. 283:. 125:b 121:a 20:)

Index

TMS320C4x

digital signal processors
Texas Instruments
fixed-point arithmetic
floating-point arithmetic
fabricated
MOS integrated circuit
NMOS
CMOS
delayed branch logic
delay slots
digital signal processing
JTAG
modified Harvard architecture
multiply-and-accumulate
Apollo Computer
code compatible
fabricated
MOS integrated circuit
NMOS
CMOS
fixed-point
ROM
fixed-point
CMOS
Cell microprocessor
an advertisement
improve it
promotional content

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