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QorIQ

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25: 471: 1398:– Includes eight e500mc cores, each with 32/32kB instruction/data L1 caches and a 128 kB L2 cache. The chip has dual 1 MB L3 caches, each connected to a 64-bit DDR2/DDR3 memory controller. The chip contains a security and encryption module, capable of packet parsing and classification, and acceleration of encryption and 1316:
The P3 family processors share the same physical package with, and are also software backwards compatible with, P4 and P5. The P3 processors have 1.3 GHz 64-bit DDR3 memory controllers, 18 SerDes lanes for networking, hardware accelerators for packet handling and scheduling, regular expressions,
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LS1 means LS1XXX series (e.g., LS1021A, etc.); LS2 means LS2XXX series. LS2 means a higher performance level than LS1, and it does not indicate a second generation. The middle two digits of the product name are core count; the last digit distinguishes models, with, in most but not all cases, a higher
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The cores are supported by a hardware hypervisor and can be run in symmetric or asymmetric mode meaning that the cores can run and boot operating systems together or separately, resetting and partitioning cores and datapaths independently without disturbing other operating systems and applications.
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The cores are supported by a hardware hypervisor and can be run in symmetric or asymmetric mode meaning that the cores can run and boot operating systems together or separately, resetting and partitioning cores and datapaths independently without disturbing other operating systems and applications.
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processing units except the lowest end T1 family that uses the older e5500 core. Products will range from single core versions up to parts with 12 cores or more with frequencies ranging all the way up to 2.5 GHz. The processes will be sectioned into five classes according to performance and
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SoC processors targeting wireless infrastructure applications. The PSC913x family chips uses an e500 core based CPU and StarCore SC3850 DSPs will be available in 2011, and is manufactured on a 45 nm process, with e6500 and CS3900 core based 28 nm parts available in 2012 called P4xxx.
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because so many cores require a different system design. In order to restore simplicity and still get the highest level of performance, the telecommunication systems are based on a segregation of the cores. Some cores are used for the control plane while some others are used for a re-designed
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Freescale Semiconductor Inc. (acquired by NXP Semiconductors in late 2015) announced a network processor system architecture said to give the flexibility and scalability required by network infrastructure OEMs to handle the market trends of connected devices, massive datasets, tight security,
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pattern matching. The chip can be configured with up to eight Gigabit and two 10 Gigabit Ethernet controllers, three 5 GHz PCIe ports and two RapidIO interfaces. It also has various other peripheral connectivity such as two USB2 controllers. It is designed to operate below 30 W at
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fabric. The P5 series processors share the same physical package and are also software backwards compatible with P3 and P4. The P5 processors have 1.3 GHz 64-bit DDR3 memory controllers, 18 SerDes lanes for networking, hardware accelerators for packet handling and scheduling, regular
1570:– Processors with four cores running at speeds of 1.5 to 1.8 GHz. The '81 parts comes in smaller package, slightly different I/O options and therefore fewer I/O pins. The T2081 is pin compatible with the lower end T104x and T102x parts. 2064: 1057:
The QorIQ P Series processors are based on e500 or e5500 cores. The P10xx series, P2010 and P2020 are based on the e500v2 core, P204x, P30xx and P40xx on the e500mc core, and P50xx on the e5500 core. Features include 32/32
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is tailored for gateways, Ethernet switches, wireless LAN access points, and general-purpose control applications. It is the entry level platform, ranging from 400 to 800 MHz devices. It is designed to replace the
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with providing ECC for caches and DDR3/4 at 1000 to 1600 MT/s, dual PCI Express Controllers in x1/x2/x4 operation, SD/MMC, SATA 1/2/3, USB 2/3 with integrated PHY, and virtualized dTSEC Gigabit Ethernet Controllers.
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is designed for a wide variety of applications in the networking, telecom, military and industrial markets. It will be available in special high quality parts, with junction tolerances from −40 to 125
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for the P4080 that can be used prior to silicon availability to develop, test, and debug software for the chip. Currently, the simulator is only for the P4080, not the other chips announced in 2008.
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cores and came in five different product platforms, P1, P2, P3, P4, and P5, segmented by performance and functionality. The platform keeps software compatibility with older
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cores at frequencies up to 1.5 GHz on the same chip, connected by the CoreNet coherency fabric. The chips include among other integrated functionality, integrated
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cores at frequencies up to 1.5 GHz on the same chip, connected by the CoreNet coherency fabric. The chips include among other integrated functionality, integrated
1383:, security and encryption engines, a queue manager scheduling on-chip events and a SerDes based on-chip high speed network configurable as multiple Gigabit Ethernet, 1309:, security and encryption engines, a queue manager scheduling on-chip events and a SerDes based on-chip high speed network configurable as multiple Gigabit Ethernet, 1949: 2044: 1338:– Quad 1.5 GHz cores, 128 kB L2 cache per core, single 1.3 GHz 64-bit DDR3 controller. Manufactured on a 45 nm process operating in a 12 W envelope. 457: 2009: 2259: 1785: 1469:– Dual e5500 2.2 GHz cores, dual 1 MB L3 caches, dual 1.333 lGHz DDR3 controllers, manufactured on a 45 nm process and operating in a 30W envelope. 1622:. For instance, when 4 or 8 cores are used, such as the P4080, in order to achieve millions of Packet Processing per seconds, the system does not scale with 1463:– Single e5500 2.2 GHz core, 1 MB L3 cache, single 1.333 lGHz DDR3 controller, manufactured on a 45 nm process and operating in a 30W envelope. 2252: 1456:
Applications range from high end networking control plane infrastructure, high end storage networking and complex military and industrial devices.
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agnostic Layerscape architecture. They are available since 2013 and target low and mid range networking and wireless infrastructure applications.
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The T1 family uses the e5500 64-bit single threaded core at 1.2 to 1.5 GHz with 256 kB L2 cache per core and 256kB shared CoreNet L3 cache.
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The initial LS-1 series does not include any accelerated packet processing layer, focusing typical power consumption of less than 3W using two
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Because of its complete set of network engines, this processor can be used for telecommunication systems (LTE eNodeB, EPC, WCDMA, BTS), so
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The QorIQ brand and the P1, P2 and P4 product families were announced in June 2008. Details of P3 and P5 products were announced in 2010.
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core scaling up to 2.5 GHz and allowing numerous auxiliary application processing units as well as multi core operation via the
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MontaVista Provides First No-Cost Evaluation of Commercial Linux for Freescale QorIQ P4080 Multicore Processor – Money.AOL.com
1932:"Freescale Introduces Industry's First Multimode Wireless Base Station Processor Family That Scales from Small to Large Cells" 405: 1720: 1618:
The QorIQ products bring some new challenges in order to design some control planes of telecommunication systems and their
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1.5 GHz. The processor is manufactured on a 45 nm SOI process and begun sampling to customers in August 2009.
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The Layerscape (LS) architecture is the latest evolution of the QorIQ family, in that features previously provided by
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to provide software developers with a high-performance commercial packet processing solution for the QorIQ platform.
1544:– A feature reduced version of the T4240 with only eight cores, and less I/O options and just two memory controllers. 1538:– The first product announced and incorporates twelve cores, three memory controllers and various other accelerators. 390: 1550:– A feature reduced version of the T4240 with only four cores, and less I/O options and just two memory controllers. 2822: 2084: 2030:
6WIND Software Provides 10x the Performance with Lower Power Consumption for Systems Based on Freescale QorIQ P4080
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D. Mistry, P. Modi, K. Deokule, A. Patel, H. Patki and O. Abuzaghleh, "Network traffic measurement and analysis,"
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platforms. The chips include, among other integrated functionality, a 512 kB L2 cache, a security engine, three
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interfaces. The chips are packaged in 689-pin packages which are pin compatible with the P1 family processors.
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layer is present in products featuring the e500mc or the e5500. The dual and multi-core devices supports both
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interfaces. The chip is packaged in 689-pin packages which are pin compatible with the P2 family processors.
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digit meaning greater performance. “A” at the end indicates the Arm processor. LX designates the 16 nm
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and network peripheral interfaces. These features are frequently required for networking, telecom/datacom,
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Introduced in June 2010, samples will be available late 2010 and full production is expected in 2011.
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features, named T1 through T5, and will be manufactured in a 28 nm process beginning in 2012.
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The LS1 family is built on the Layerscape architecture is a programmable data-plane engine
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Please help update this article to reflect recent events or newly available information.
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QorIQ 45-nm communications MPUs feature dual cores, low power – ElectronicProducts.com
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To help software developers and system designers get started with the QorIQ P4080,
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and was available in the end of 2008 (P1 and P2), mid-2009 (P4) and 2010 (P5).
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T2080: QorIQ T Series T2080/T2081 Eight Virtual Core Communications Processors
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T4240: QorIQ T Series T4240/T4160 24/16 Virtual Core Communications Processors
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process and is pushing a very aggressive power envelope target, capping at 30
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2016 IEEE Long Island Systems, Applications and Technology Conference (LISAT)
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real-time service and increasingly unpredictable network traffic patterns.
555: 537: 385: 99: 94: 89: 84: 2274: 1289:. The P3 family offers a multi-core platform, with support for up to four 2584: 2575: 2513: 2151: 266: 242: 229: 224: 218: 2777: 2608: 2594: 2156: 1650: 1628: 1619: 1216: 1122: 1078: 533: 470: 347: 235: 1914:"6WIND - Virtualized Networking Software on Cloud Native Architecture" 1182:, four SerDes lanes, three Gbit Ethernet controllers and a TDM engine. 544:
products such as the PowerQUICC platform. In 2012 Freescale announced
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host controller and high speed interfaces which can be configured as
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platforms. The chips include among other integrated functionality,
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and 6WIND ported 6WIND's packet processing software to the P4080.
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QorIQ LS-1 and LS-2 families are ARM based processors using the
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platform, and initial products were built around one or more
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Migrating PowerQUICC® III Processors to QorIQ™ Platforms
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The T2 family uses the e6500 64-bit dual threaded core.
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The T4 family uses the e6500 64-bit dual threaded core.
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is a high performance networking platform, designed for
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expressions, RAID, security, cryptography and RapidIO.
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is a mid performance networking platform, designed for
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Motorola-Freescale-NXP processors and microcontrollers
1721:"6 network and security trends you can expect in 2017" 1178:– includes two 800 MHz e500 cores, 256 kB shared 1092:, and can run multiple operating systems in parallel. 1869:"P4 Series P4080 multicore processor – Freescale.com" 498: 489: 1696:"Nov 2012: Layercape – New Embedded Family Solution" 1371:, memory controllers, multiple I/O-devices such as 1073:is present on some cores (not all) and support for 486: 1297:, memory controller, multiple I/O-devices such as 674: 554:QorIQ P Series processors were manufactured on a 2804: 1490:In February 2011 Freescale introduced the QorIQ 1893:"Virtutech page about P4080 simulation support" 1852:"NXP® Semiconductors Official Site | Home" 1494:platform which is a series of combined CPU and 1164:– Includes one 800 MHz e500 core, 256 kB 2260: 2085: 474:P4080 QorIQ processor Freescale Semiconductor 451: 2050:EE Times, NXP Processor Powers IoT, Networks 1614:Networking, IT and telecommunication systems 1679: 1677: 1675: 2267: 2253: 2092: 2078: 1317:RAID, security, cryptography and RapidIO. 548:-based QorIQ offerings beginning in 2013. 458: 444: 1121:controllers, a security engine, a 32-bit 1978: 1976: 1974: 1684:Freescale adopts ARM cores in QorIQ line 1672: 1066:, 36-bit physical memory addressing , a 532:). It is the evolutionary step from the 469: 1243:lanes which can be configured as three 665: 662:, military and aerospace applications. 2805: 2099: 1780: 1778: 1637:has partnered with networking company 2248: 2073: 1971: 74:NXP (formerly Freescale and Motorola) 2654: 1906: 1507:The QorIQ Advanced Multiprocessing, 18: 1775: 13: 1743: 14: 2834: 2038: 1820: 1796: 1772:, Farmingdale, NY, 2016, pp. 1–7. 1762: 1438:is based on the high performance 2045:NXP Semiconductors QorIQ website 1718: 1608: 1262:– Includes one 1.2 GHz core 482: 23: 2122:Communications Processor Module 2023: 1998: 1987: 1942: 1924: 1885: 1861: 1746:"The Top 8 IoT Trends For 2018" 1239:host controller and high speed 2287: 1844: 1737: 1712: 1688: 1387:, RapidIO or PCIe interfaces. 1313:, RapidIO or PCIe interfaces. 1172:for legacy phone applications. 675:Layerscape product family list 1: 1666: 1502: 602: 564:QorIQ T Series is based on a 1956:. 2011-06-21. Archived from 7: 1644: 1485: 1227:support, dual four-channel 1133:support, dual four-channel 1052: 10: 2839: 2760: 2739: 2723: 2664: 2653: 2649: 2627: 2560: 2536: 2509: 2484: 2432: 2369: 2313: 2297: 2286: 2282: 2221: 2195: 2107: 693: 32:This article needs to be 2006:"regular software stack" 81:PowerPC e series (2006) 2823:PowerPC microprocessors 2538:Memory management units 2298:Industrial control unit 2203:Freescale Semiconductor 1223:memory controller with 1129:memory controller with 660:wireless infrastructure 652:networking architecture 1631:based on a Fast Path. 1624:regular software stack 520:–based communications 475: 214:PowerPC series (1992) 2818:Power microprocessors 1574: 1554: 1526: 1429: 1355:and enterprise level 1342: 1272: 1215:controller, a 64-bit 1186: 1095: 1035:24 lanes 25 GHz 473: 1938:. February 14, 2011. 1936:www.businesswire.com 1790:www.businesswire.com 1026:16 x ARM Cortex-A72 1006:4 lanes 10 GHz 977:8 lanes 10 GHz 948:4 lanes 10 GHz 919:4 lanes 10 GHz 890:4 lanes 10 GHz 666:Initial announcement 381:OpenPOWER Foundation 16:Microprocessor range 1385:10 Gigabit Ethernet 1353:backbone networking 1311:10 Gigabit Ethernet 1251:interfaces and two 1071:floating point unit 997:8 x ARM Cortex-A53 968:4 x ARM Cortex-A72 939:2 x ARM Cortex-A53 910:4 x ARM Cortex-A53 881:2 x ARM Cortex-A72 861:3 lanes 5 GHz 803:4 lanes 6 GHz 774:4 lanes 6 GHz 745:3 lanes 6 GHz 736:1 x ARM Cortex-A53 559:fabrication process 2813:NXP Semiconductors 2101:NXP Semiconductors 852:2 x ARM Cortex-A9 832:1 lane 5 GHz 823:2 x ARM Cortex-A7 794:2 x ARM Cortex-A7 765:2 x ARM Cortex-A7 526:NXP Semiconductors 476: 434:historic in italic 262:RAD series (1997) 118:Qor series (2008) 2800: 2799: 2796: 2795: 2645: 2644: 2242: 2241: 1201:PowerQUICC II Pro 1117:controllers, two 1107:PowerQUICC II Pro 1062:data/instruction 1050: 1049: 468: 467: 430:Cancelled in gray 53: 52: 2830: 2657:Microcontrollers 2651: 2650: 2284: 2283: 2269: 2262: 2255: 2246: 2245: 2094: 2087: 2080: 2071: 2070: 2033: 2027: 2021: 2020: 2018: 2017: 2008:. 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2708: 2706: 2703: 2699: 2696: 2694: 2691: 2690: 2689: 2686: 2684: 2681: 2678: 2676: 2673: 2670: 2669: 2667: 2663: 2659: 2658: 2652: 2648: 2638: 2635: 2634: 2632: 2630: 2626: 2620: 2617: 2615: 2612: 2610: 2607: 2605: 2602: 2600: 2596: 2593: 2591: 2588: 2586: 2583: 2581: 2577: 2574: 2572: 2569: 2568: 2566: 2563: 2559: 2553: 2550: 2548: 2545: 2544: 2542: 2539: 2535: 2529: 2526: 2524: 2521: 2520: 2518: 2515: 2512: 2508: 2500: 2497: 2496: 2495: 2492: 2491: 2489: 2487: 2483: 2477: 2474: 2472: 2469: 2467: 2464: 2462: 2459: 2457: 2454: 2452: 2449: 2447: 2444: 2443: 2441: 2438: 2435: 2431: 2425: 2422: 2420: 2417: 2415: 2412: 2410: 2407: 2405: 2402: 2400: 2397: 2395: 2392: 2390: 2387: 2385: 2382: 2380: 2377: 2376: 2374: 2372: 2368: 2362: 2359: 2357: 2354: 2352: 2349: 2347: 2344: 2342: 2339: 2335: 2331: 2330: 2329: 2326: 2324: 2321: 2320: 2318: 2316: 2312: 2306: 2303: 2302: 2300: 2296: 2292: 2291: 2285: 2281: 2277: 2270: 2265: 2263: 2258: 2256: 2251: 2250: 2247: 2235: 2232: 2230: 2227: 2226: 2224: 2220: 2214: 2211: 2209: 2206: 2204: 2201: 2200: 2198: 2194: 2188: 2187:Vybrid Series 2185: 2183: 2180: 2178: 2175: 2173: 2170: 2168: 2165: 2163: 2160: 2158: 2155: 2153: 2150: 2148: 2145: 2143: 2140: 2138: 2135: 2133: 2130: 2128: 2125: 2123: 2120: 2118: 2115: 2114: 2112: 2110: 2106: 2102: 2095: 2090: 2088: 2083: 2081: 2076: 2075: 2072: 2066: 2063: 2061: 2058: 2056: 2053: 2051: 2048: 2046: 2043: 2042: 2031: 2026: 2012:on 2012-11-12 2011: 2007: 2001: 1995: 1990: 1984: 1979: 1977: 1975: 1960:on 2012-07-17 1959: 1955: 1951: 1945: 1937: 1933: 1927: 1919: 1915: 1909: 1894: 1888: 1870: 1864: 1853: 1847: 1829: 1823: 1805: 1799: 1791: 1787: 1781: 1779: 1771: 1765: 1751: 1747: 1740: 1726: 1725:Network World 1722: 1719:Hogg, Scott. 1715: 1697: 1691: 1685: 1680: 1678: 1676: 1671: 1662: 1661:PowerPC e6500 1659: 1657: 1654: 1652: 1649: 1648: 1642: 1640: 1636: 1632: 1630: 1625: 1621: 1609:System design 1603: 1600: 1597: 1594: 1591: 1588: 1585: 1582: 1581: 1580: 1569: 1565: 1562: 1561: 1560: 1549: 1546: 1543: 1540: 1537: 1534: 1533: 1532: 1524: 1521: 1518: 1514: 1510: 1500: 1497: 1493: 1480: 1477: 1474: 1471: 1468: 1465: 1462: 1459: 1458: 1457: 1454: 1451: 1448: 1444: 1441: 1437: 1427: 1425: 1420: 1418: 1414: 1410: 1401: 1397: 1394: 1393: 1392: 1388: 1386: 1382: 1378: 1374: 1370: 1366: 1362: 1358: 1354: 1350: 1337: 1334: 1332: 1329: 1327: 1324: 1323: 1322: 1318: 1314: 1312: 1308: 1304: 1300: 1296: 1292: 1288: 1284: 1280: 1267: 1264: 1261: 1258: 1257: 1256: 1254: 1250: 1246: 1242: 1238: 1234: 1230: 1226: 1222: 1218: 1214: 1210: 1206: 1202: 1198: 1194: 1181: 1177: 1174: 1171: 1167: 1163: 1160: 1159: 1158: 1156: 1152: 1148: 1144: 1140: 1136: 1132: 1128: 1124: 1120: 1116: 1112: 1108: 1103: 1093: 1091: 1088: 1084: 1080: 1076: 1072: 1069: 1065: 1061: 1046: 1043: 1040: 1037: 1034: 1031: 1029:2.2 GHz 1028: 1025: 1022: 1021: 1017: 1014: 1011: 1008: 1005: 1002: 1000:1.6 GHz 999: 996: 993: 992: 988: 985: 982: 979: 976: 973: 971:1.8 GHz 970: 967: 964: 963: 959: 956: 953: 950: 947: 944: 942:1.4 GHz 941: 938: 935: 934: 930: 927: 924: 921: 918: 915: 913:1.6 GHz 912: 909: 906: 905: 901: 898: 895: 892: 889: 886: 884:1.3 GHz 883: 880: 877: 876: 872: 869: 866: 863: 860: 857: 855:1.2 GHz 854: 851: 848: 847: 843: 840: 837: 834: 831: 828: 826:0.6 GHz 825: 822: 819: 818: 814: 811: 808: 805: 802: 799: 797:1.2 GHz 796: 793: 790: 789: 785: 782: 779: 776: 773: 770: 768:1.2 GHz 767: 764: 761: 760: 756: 753: 750: 747: 744: 741: 739:1.0 GHz 738: 735: 732: 731: 728:QUICC Engine 727: 724: 722: 718: 715: 712: 709: 706: 703: 700: 699: 696: 691: 689: 687: 685: 683: 681: 680: 672: 663: 661: 657: 653: 648: 646: 640: 637: 632: 630: 626: 622: 618: 614: 610: 600: 598: 594: 590: 586: 582: 578: 573: 571: 567: 562: 560: 557: 552: 549: 547: 543: 539: 535: 531: 527: 523: 519: 515: 509: 480: 472: 461: 456: 454: 449: 447: 442: 441: 439: 438: 435: 428: 427: 422: 419: 417: 414: 412: 409: 407: 404: 402: 399: 397: 394: 392: 389: 387: 384: 382: 379: 378: 377: 376: 373:Related links 372: 371: 366: 365: 361: 359: 356: 354: 351: 349: 346: 344: 339: 338: 337: 336: 332: 331: 326: 325: 321: 319: 318: 314: 312: 311: 307: 306: 305: 304: 300: 299: 293: 291: 287: 286: 279: 276: 274: 271: 269: 268: 264: 263: 261: 256: 253: 252: 250: 247: 245: 244: 240: 238: 237: 233: 231: 228: 226: 223: 221: 220: 216: 215: 213: 212: 207: 204: 202: 199: 197: 194: 192: 189: 187: 184: 182: 181: 177: 175: 174: 170: 168: 167: 163: 161: 160: 156: 154: 153: 149: 148: 146: 143: 142: 141: 140: 136: 135: 128: 125: 123: 120: 119: 117: 116: 111: 108: 106: 103: 101: 98: 96: 93: 91: 88: 86: 83: 82: 80: 79: 78: 77: 73: 72: 69:architectures 68: 64: 60: 57: 56: 47: 35: 30: 21: 20: 2783:PowerPC 5000 2656: 2613: 2514:coprocessors 2371:68000 family 2334:Hitachi 6309 2289: 2196:Acquisitions 2161: 2117:555 timer IC 2025: 2014:. Retrieved 2010:the original 2000: 1989: 1962:. Retrieved 1958:the original 1944: 1935: 1926: 1917: 1908: 1896:. Retrieved 1887: 1875:. Retrieved 1863: 1846: 1834:. Retrieved 1822: 1810:. Retrieved 1798: 1789: 1769: 1764: 1753:. Retrieved 1749: 1739: 1728:. Retrieved 1724: 1714: 1702:. Retrieved 1690: 1656:PowerPC e500 1633: 1623: 1617: 1601: 1595: 1589: 1583: 1578: 1567: 1563: 1558: 1547: 1541: 1535: 1530: 1508: 1506: 1491: 1489: 1478: 1472: 1466: 1460: 1455: 1452: 1446: 1435: 1433: 1421: 1415:to create a 1411:worked with 1406: 1395: 1389: 1348: 1346: 1335: 1330: 1325: 1319: 1315: 1278: 1276: 1265: 1259: 1192: 1190: 1175: 1161: 1101: 1099: 1056: 720: 694: 669: 649: 647:generation. 641: 633: 606: 574: 563: 553: 550: 478: 477: 433: 386:AIM alliance 362: 322: 315: 308: 301:IBM/Nintendo 288: 265: 241: 234: 217: 178: 171: 164: 157: 150: 121: 41: 33: 2315:6800 family 2152:NXP ARM S32 1032:6x Gen 4.0 1003:3 x Gen3.0 974:3 x Gen3.0 945:1 x Gen3.0 916:3 x Gen2.0 887:2 x Gen2.0 858:2 x Gen2.0 829:1 x Gen2.0 800:2 x Gen2.0 771:2 x Gen2.0 742:1 x Gen2.0 516:-based and 2807:Categories 2778:PowerQUICC 2609:PowerQUICC 2424:DragonBall 2332:see also: 2290:Processors 2157:PowerQUICC 2016:2009-10-23 1964:2011-07-12 1755:2018-04-23 1730:2018-04-23 1667:References 1651:PowerQUICC 1629:data plane 1620:data plane 1513:e6500 core 1509:AMP Series 1503:AMP Series 1170:TDM engine 1087:asymmetric 1079:hypervisor 1077:through a 707:Frequency 603:Layerscape 534:PowerQUICC 528:(formerly 348:PWRficient 2724:16/32-bit 2671:6801/6803 2619:PPC e6500 2604:PPC e5500 2439:-variants 2222:Spin-offs 2208:Signetics 2127:GreenChip 2032:6wind.com 1954:Freescale 1898:24 August 1877:24 August 1836:24 August 1812:24 August 1704:24 August 1635:Freescale 1436:P5 series 1424:Freescale 1413:Virtutech 1409:Freescale 1369:L3 caches 1357:switching 1349:P4 series 1295:L3 caches 1283:switching 1279:P3 series 1193:P2 series 1102:P1 series 1083:symmetric 1044:100 Gbps 636:Cortex A7 613:Cortex A7 581:Cortex A9 577:Cortex A7 530:Freescale 518:Power ISA 401:Power.org 396:Blue Gene 67:Power ISA 2747:DSP568xx 2595:PPC 74xx 2590:PPC e500 2571:PPC e200 2419:ColdFire 2234:Nexperia 2182:Nexperia 2177:TriMedia 2109:Products 1645:See also 1492:Qonverge 1486:Qonverge 1180:L2 cache 1166:L2 cache 1064:L1 cache 1053:P Series 1023:LX2160A 994:LS1088A 965:LS1046A 907:LS1043A 878:LS1028A 849:LS1024A 820:LS1022A 791:LS1021A 762:LS1020A 733:LS1012A 725:DCE/PME 695:Security 656:datapath 324:Espresso 317:Broadway 2585:PPC 7xx 2576:PPC 6xx 2562:PowerPC 2499:MC88110 2494:MC88100 2476:68LC060 2471:68EC060 2466:68LC040 2461:68EC040 2456:68EC030 2451:68EC020 2446:68EC000 2229:Ampleon 2147:NXP LPC 1517:AltiVec 1447:CoreNet 1381:USB 2.0 1361:routing 1307:USB 2.0 1287:routing 1249:RapidIO 1213:USB 2.0 1149:lanes, 1119:USB 2.0 936:LA1575 721:Engine 713:SerDES 701:Device 631:cores. 542:PowerPC 421:AltiVec 278:RAD5500 267:RAD6000 251:(2010) 206:Power10 127:Qorivva 63:PowerPC 34:updated 2773:MPC5xx 2768:M·CORE 2761:32-bit 2740:24-bit 2715:68HC16 2710:68HC12 2705:68HC11 2688:68HC08 2683:68HC05 2564:family 2516:(FPUs) 2361:68HC16 2356:68HC12 2351:68HC11 2346:68HC08 2341:68HC05 2142:Ne-XVP 2137:MIFARE 1786:"News" 1750:Forbes 1440:64-bit 1400:regexp 1365:e500mc 1291:e500mc 1241:SerDes 1147:SerDes 704:Cores 645:FinFET 538:e500mc 294:(1996) 292:series 273:RAD750 201:POWER9 196:POWER8 191:POWER7 186:POWER6 180:POWER5 173:POWER4 166:POWER3 159:POWER2 152:POWER1 65:, and 2731:683xx 2665:8-bit 2614:QorIQ 2552:68851 2547:68451 2540:(MMU) 2528:68882 2523:68881 2486:88000 2414:68060 2409:68040 2404:68030 2399:68020 2394:68012 2389:68010 2384:68008 2379:68000 2305:14500 2162:QorIQ 1918:6WIND 1872:(PDF) 1855:(PDF) 1831:(PDF) 1807:(PDF) 1699:(PDF) 1639:6WIND 1602:T1022 1596:T1020 1590:T1042 1584:T1040 1568:T2081 1564:T2080 1548:T4080 1542:T4160 1536:T4240 1479:P5040 1473:P5021 1467:P5020 1461:P5010 1443:e5500 1396:P4080 1373:DUART 1336:P3041 1331:P2041 1326:P2040 1299:DUART 1266:P2020 1260:P2010 1253:SGMII 1176:P1020 1162:P1011 1155:SGMII 716:SATA 710:PCIe 591:and 566:28 nm 556:45 nm 524:from 479:QorIQ 358:Xenon 342:Titan 333:Other 310:Gekko 145:Power 122:QorIQ 110:e6500 105:e5500 59:POWER 2788:i.MX 2698:RS08 2679:6804 2675:6802 2637:i.MX 2599:e600 2580:e300 2328:6809 2323:6800 2132:i.MX 1900:2023 1879:2023 1838:2023 1814:2023 1706:2023 1566:and 1520:SIMD 1434:The 1379:and 1377:GPIO 1359:and 1347:The 1305:and 1303:GPIO 1285:and 1277:The 1245:PCIe 1221:DDR3 1219:and 1217:DDR2 1203:and 1191:The 1153:and 1151:PCIe 1127:DDR3 1125:and 1123:DDR2 1109:and 1100:The 1085:and 1041:Yes 1038:Yes 1018:Yes 1012:Yes 1009:Yes 983:Yes 980:Yes 954:Yes 951:Yes 931:Yes 925:Yes 922:Yes 896:Yes 893:Yes 870:Yes 867:Yes 864:Yes 838:Yes 815:Yes 809:Yes 806:Yes 786:Yes 780:Yes 777:Yes 751:Yes 748:Yes 627:and 609:DPAA 416:CHRP 411:PReP 406:PAPR 391:RISC 364:X704 353:Cell 290:RS64 236:74xx 100:e600 95:e500 90:e300 85:e200 2693:S08 2629:ARM 2437:68k 1496:DSP 1237:MMC 1229:DMA 1225:ECC 1143:MMC 1135:DMA 1131:ECC 835:No 629:A72 625:A53 621:A15 597:ISA 593:A72 589:A53 585:A15 546:ARM 514:ARM 493:ɔːr 257:A2O 254:A2I 243:970 230:7xx 225:4xx 219:6xx 137:IBM 2809:: 1973:^ 1952:. 1934:. 1916:. 1788:. 1777:^ 1748:. 1723:. 1674:^ 1575:T1 1555:T2 1527:T4 1430:P5 1375:, 1343:P4 1301:, 1273:P3 1233:SD 1197:°C 1187:P2 1139:SD 1096:P1 1060:kB 1015:- 989:- 986:- 960:- 957:- 928:- 902:- 899:- 873:- 844:- 841:- 812:- 783:- 757:- 754:- 623:, 619:, 617:A9 615:, 587:, 583:, 579:, 505:uː 496:aɪ 432:, 249:A2 61:, 2597:/ 2578:/ 2268:e 2261:t 2254:v 2093:e 2086:t 2079:v 2019:. 1967:. 1920:. 1902:. 1881:. 1857:. 1840:. 1816:. 1792:. 1758:. 1733:. 1708:. 1235:/ 1141:/ 570:W 508:/ 502:j 499:k 490:k 487:ˈ 484:/ 459:e 452:t 445:v 46:) 42:( 36:.

Index

POWER
PowerPC
Power ISA
e200
e300
e500
e600
e5500
e6500
QorIQ
Qorivva
Power
POWER1
POWER2
POWER3
POWER4
POWER5
POWER6
POWER7
POWER8
POWER9
Power10
6xx
4xx
7xx
74xx
970
A2
RAD6000
RAD750

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