june1990
2020-03-01
对台积电是利好
市场分析师郭明錤:苹果可能会在新电脑中首次放弃英特尔芯片
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11:13","market":"hk","language":"zh","title":"市场分析师郭明錤:苹果可能会在新电脑中首次放弃英特尔芯片","url":"https://stock-news.laohu8.com/highlight/detail?id=2016133694","media":"半导体行业观察","summary":"来源:内容来自「TechTudo」,谢谢。市场分析师郭明錤表示,从2021年起,苹果可能会将英特尔处理器换上自己电脑上的芯片。这一措施已经在互联网上流传了一段时间,因为ARM架构组件已经被苹果开发出来","content":"<html><body><div>\n<p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\"><img arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" sc=\"\" src=\"https://static.tigerbbs.com/16c803a14c3c5b15a837f5d5aaa30777\" ui=\"\" visible=\"\" yahei=\"\"/></span></p><h4 arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" sc=\"\" ui=\"\" yahei=\"\"><span>来源:内容来自「<span>TechTudo</span>」,谢谢。</span></h4><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">市场分析师郭明錤表示,从2021年起,<a href=\"https://laohu8.com/S/AAPL\">苹果</a>可能会将<a href=\"https://laohu8.com/S/INTC\">英特尔</a>处理器换上自己电脑上的芯片。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这一措施已经在互联网上流传了一段时间,因为ARM架构组件已经被苹果开发出来,并在iphone和ipad上使用了十多年。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这种类型的处理器在最近几代中以良好的性能而备受瞩目,在某些情况下甚至超过了<a href=\"https://laohu8.com/S/AMD\">AMD</a>和Intel系列的顶级机型。</span></p><p><strong><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">分析师认为,苹果即将推出带有自己处理器的Mac。</span></strong></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">新一代苹果手机的处理器将取代iPhone 11、iPhone 11 Pro和iPhone 11 Pro Max中现有的A13。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这位分析人士说,随着5纳米制造工艺的到来,向最终的A14的迁移将得到支持,这与性能和能源消耗效率的提高有关。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">因此,新一代cpu将是这种变化的理想候选者。</span></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">从技术上讲,这种交换将远远超出简单的供应商更换。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">英特尔芯片是围绕一个名为x86的架构构建的,这与苹果处理器中使用的ARM标准模型非常不同。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这意味着,变更可能代表与在一个或其他体系结构中运行所创建的软件支持相关的挑战。</span></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这与<a href=\"https://laohu8.com/S/MSFT\">微软</a>和<a href=\"https://laohu8.com/S/QCOM\">高通</a>在将snapdragon(也属于ARM类型)引入Windows的过程中所面临的问题是一样的。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">无论如何,重要的是要记住,苹果在这方面有一些经验,因为它在2006年至2007年间成功地从<a href=\"https://laohu8.com/S/IBM\">IBM</a>的PowerPC平台迁移到Intel芯片。</span></p><p><img src=\"https://static.tigerbbs.com/29fced554df773895ee11a65893490c2\"/></p><p><span><em><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">苹果将利用向5纳米制造技术的进步来进行迁移-照片:</span></em></span><span><em><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">Reproduction / Apple</span></em></span></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">macOS系统最近的一些变化也促成了处理器间的交换,现在macOS系统提供了一些工具,开发人员可以更容易地转换为ipad创建的应用程序。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">此外,制造商在其家电商店制定了一项通用采购政策,在该政策中,为iOS购买的任何程序也可以安装在苹果电脑上。</span></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">除了表现出对个人电脑(已经在移动电话上出现)设计的更大控制之外,处理器背后的ARM架构往往使芯片在能耗方面效率更高。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">因此,这些CPU很可能首先出现在MacBooks中,MacBooks有一个可移植的建议。</span></p><p>*免责声明:本文由作者原创。文章内容系作者个人观点,半导体行业观察转载仅为了传达一种不同的观点,不代表半导体行业观察对该观点赞同或支持,如果有任何异议,欢迎联系半导体行业观察。</p><p><strong>今天是《半导体行业观察》为您分享的第2235期内容,欢迎关注。</strong></p><p>推荐阅读</p><p>★<span>氮化镓代工将成为新赛场</span></p><p>★<span>CIS封测业爆发,谁将成为最大受益者?</span></p><p>★<span>半导体制造企业开启军备竞赛</span></p><p>半导体行业观察</p><p><img src=\"https://static.tigerbbs.com/450051f0ca3fb1b99b08a09ad4691ae5\"/></p><p>『<strong>半导体第一垂直媒体</strong><span>』</span></p><p><strong>实时 专业 原创 深度</strong></p><p><strong>识别二维码</strong>,回复下方关键词,阅读更多</p><p>“芯”系疫情<span>|功率半导体</span><span>|TWS</span>|华为<span>|</span>存储<span>|</span>Fab|MCU|小米</p><p><span>回复 <strong>投稿</strong>,看《如何成为“半导体行业观察”的一员 》</span></p><p>回复 <strong>搜索</strong>,还能轻松找到其他你感兴趣的文章!</p><p><img src=\"https://static.tigerbbs.com/77da5c9fabeb9d1beeab10160b369424\"/></p>\n</div></body></html>","source":"weixin_highlight","collect":0,"html":"<!DOCTYPE html>\n<html>\n<head>\n<meta http-equiv=\"Content-Type\" content=\"text/html; 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overflow: hidden}\n.head .h-thumb { width: 30px; height: 30px; margin: 0; padding: 0; border-radius: 50%; float: left;}\n.head .h-content { margin: 0; padding: 0 0 0 9px; float: left;}\n.head .h-name {font-size: 13px; color: #eee; margin: 0;}\n.head .h-time {font-size: 11px; color: #7E829C; margin: 0;line-height: 11px;}\n.small {font-size: 12.5px; display: inline-block; transform: scale(0.9); -webkit-transform: scale(0.9); transform-origin: left; -webkit-transform-origin: left;}\n.smaller {font-size: 12.5px; display: inline-block; transform: scale(0.8); -webkit-transform: scale(0.8); transform-origin: left; -webkit-transform-origin: left;}\n.bt-text {font-size: 12px;margin: 1.5em 0 0 0}\n.bt-text p {margin: 0}\n</style>\n</head>\n<body>\n<div class=\"wrapper\">\n<header>\n<h2 class=\"title\">\n市场分析师郭明錤:苹果可能会在新电脑中首次放弃英特尔芯片\n</h2>\n\n<h4 class=\"meta\">\n\n\n<a class=\"head\" href=\"https://laohu8.com/wemedia/1001700217\">\n\n\n<div class=\"h-thumb\" style=\"background-image:url(https://static.tigerbbs.com/705285f8deea4d7b8e48df7848a67868);background-size:cover;\"></div>\n\n<div class=\"h-content\">\n<p class=\"h-name\">半导体行业观察 </p>\n<p class=\"h-time\">2020-03-01 11:13</p>\n</div>\n\n</a>\n\n\n</h4>\n\n</header>\n<article>\n<html><body><div>\n<p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\"><img arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" sc=\"\" src=\"https://static.tigerbbs.com/16c803a14c3c5b15a837f5d5aaa30777\" ui=\"\" visible=\"\" yahei=\"\"/></span></p><h4 arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" sc=\"\" ui=\"\" yahei=\"\"><span>来源:内容来自「<span>TechTudo</span>」,谢谢。</span></h4><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">市场分析师郭明錤表示,从2021年起,<a href=\"https://laohu8.com/S/AAPL\">苹果</a>可能会将<a href=\"https://laohu8.com/S/INTC\">英特尔</a>处理器换上自己电脑上的芯片。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这一措施已经在互联网上流传了一段时间,因为ARM架构组件已经被苹果开发出来,并在iphone和ipad上使用了十多年。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这种类型的处理器在最近几代中以良好的性能而备受瞩目,在某些情况下甚至超过了<a href=\"https://laohu8.com/S/AMD\">AMD</a>和Intel系列的顶级机型。</span></p><p><strong><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">分析师认为,苹果即将推出带有自己处理器的Mac。</span></strong></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">新一代苹果手机的处理器将取代iPhone 11、iPhone 11 Pro和iPhone 11 Pro Max中现有的A13。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这位分析人士说,随着5纳米制造工艺的到来,向最终的A14的迁移将得到支持,这与性能和能源消耗效率的提高有关。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">因此,新一代cpu将是这种变化的理想候选者。</span></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">从技术上讲,这种交换将远远超出简单的供应商更换。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">英特尔芯片是围绕一个名为x86的架构构建的,这与苹果处理器中使用的ARM标准模型非常不同。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这意味着,变更可能代表与在一个或其他体系结构中运行所创建的软件支持相关的挑战。</span></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">这与<a href=\"https://laohu8.com/S/MSFT\">微软</a>和<a href=\"https://laohu8.com/S/QCOM\">高通</a>在将snapdragon(也属于ARM类型)引入Windows的过程中所面临的问题是一样的。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">无论如何,重要的是要记住,苹果在这方面有一些经验,因为它在2006年至2007年间成功地从<a href=\"https://laohu8.com/S/IBM\">IBM</a>的PowerPC平台迁移到Intel芯片。</span></p><p><img src=\"https://static.tigerbbs.com/29fced554df773895ee11a65893490c2\"/></p><p><span><em><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">苹果将利用向5纳米制造技术的进步来进行迁移-照片:</span></em></span><span><em><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">Reproduction / Apple</span></em></span></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">macOS系统最近的一些变化也促成了处理器间的交换,现在macOS系统提供了一些工具,开发人员可以更容易地转换为ipad创建的应用程序。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">此外,制造商在其家电商店制定了一项通用采购政策,在该政策中,为iOS购买的任何程序也可以安装在苹果电脑上。</span></p><p><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">除了表现出对个人电脑(已经在移动电话上出现)设计的更大控制之外,处理器背后的ARM架构往往使芯片在能耗方面效率更高。</span><span arial=\"\" gb=\"\" helvetica=\"\" neue=\"\" rgb=\"\" sans=\"\" sans-serif=\"\" yahei=\"\">因此,这些CPU很可能首先出现在MacBooks中,MacBooks有一个可移植的建议。</span></p><p>*免责声明:本文由作者原创。文章内容系作者个人观点,半导体行业观察转载仅为了传达一种不同的观点,不代表半导体行业观察对该观点赞同或支持,如果有任何异议,欢迎联系半导体行业观察。</p><p><strong>今天是《半导体行业观察》为您分享的第2235期内容,欢迎关注。</strong></p><p>推荐阅读</p><p>★<span>氮化镓代工将成为新赛场</span></p><p>★<span>CIS封测业爆发,谁将成为最大受益者?</span></p><p>★<span>半导体制造企业开启军备竞赛</span></p><p>半导体行业观察</p><p><img src=\"https://static.tigerbbs.com/450051f0ca3fb1b99b08a09ad4691ae5\"/></p><p>『<strong>半导体第一垂直媒体</strong><span>』</span></p><p><strong>实时 专业 原创 深度</strong></p><p><strong>识别二维码</strong>,回复下方关键词,阅读更多</p><p>“芯”系疫情<span>|功率半导体</span><span>|TWS</span>|华为<span>|</span>存储<span>|</span>Fab|MCU|小米</p><p><span>回复 <strong>投稿</strong>,看《如何成为“半导体行业观察”的一员 》</span></p><p>回复 <strong>搜索</strong>,还能轻松找到其他你感兴趣的文章!</p><p><img src=\"https://static.tigerbbs.com/77da5c9fabeb9d1beeab10160b369424\"/></p>\n</div></body></html>\n\n</article>\n</div>\n</body>\n</html>\n","type":0,"thumbnail":"https://static.tigerbbs.com/8c95dc9b62af63b498dce2238fb18ba3","relate_stocks":{"03086":"华夏纳指","AAPL":"苹果","INTC":"英特尔","09086":"华夏纳指-U"},"source_url":"http://mp.weixin.qq.com/s?__biz=MzU3OTA0MjQ3Mg==&mid=2247532170&idx=5&sn=b421b5d683dc9b1e7f1d58ba52892602&chksm=fd6e134dca199a5b9eb3a58e96b6cb7dbb40f95e9a798aeeb4ad0a1ff7a5e73de1633ce58576&scene=0#rd","is_english":false,"share_image_url":"https://static.laohu8.com/ecd74548980bc5b366aa8f4b37ed0bd5","article_id":"2016133694","content_text":"来源:内容来自「TechTudo」,谢谢。市场分析师郭明錤表示,从2021年起,苹果可能会将英特尔处理器换上自己电脑上的芯片。这一措施已经在互联网上流传了一段时间,因为ARM架构组件已经被苹果开发出来,并在iphone和ipad上使用了十多年。这种类型的处理器在最近几代中以良好的性能而备受瞩目,在某些情况下甚至超过了AMD和Intel系列的顶级机型。分析师认为,苹果即将推出带有自己处理器的Mac。新一代苹果手机的处理器将取代iPhone 11、iPhone 11 Pro和iPhone 11 Pro Max中现有的A13。这位分析人士说,随着5纳米制造工艺的到来,向最终的A14的迁移将得到支持,这与性能和能源消耗效率的提高有关。因此,新一代cpu将是这种变化的理想候选者。从技术上讲,这种交换将远远超出简单的供应商更换。英特尔芯片是围绕一个名为x86的架构构建的,这与苹果处理器中使用的ARM标准模型非常不同。这意味着,变更可能代表与在一个或其他体系结构中运行所创建的软件支持相关的挑战。这与微软和高通在将snapdragon(也属于ARM类型)引入Windows的过程中所面临的问题是一样的。无论如何,重要的是要记住,苹果在这方面有一些经验,因为它在2006年至2007年间成功地从IBM的PowerPC平台迁移到Intel芯片。苹果将利用向5纳米制造技术的进步来进行迁移-照片:Reproduction / ApplemacOS系统最近的一些变化也促成了处理器间的交换,现在macOS系统提供了一些工具,开发人员可以更容易地转换为ipad创建的应用程序。此外,制造商在其家电商店制定了一项通用采购政策,在该政策中,为iOS购买的任何程序也可以安装在苹果电脑上。除了表现出对个人电脑(已经在移动电话上出现)设计的更大控制之外,处理器背后的ARM架构往往使芯片在能耗方面效率更高。因此,这些CPU很可能首先出现在MacBooks中,MacBooks有一个可移植的建议。*免责声明:本文由作者原创。文章内容系作者个人观点,半导体行业观察转载仅为了传达一种不同的观点,不代表半导体行业观察对该观点赞同或支持,如果有任何异议,欢迎联系半导体行业观察。今天是《半导体行业观察》为您分享的第2235期内容,欢迎关注。推荐阅读★氮化镓代工将成为新赛场★CIS封测业爆发,谁将成为最大受益者?★半导体制造企业开启军备竞赛半导体行业观察『半导体第一垂直媒体』实时 专业 原创 深度识别二维码,回复下方关键词,阅读更多“芯”系疫情|功率半导体|TWS|华为|存储|Fab|MCU|小米回复 投稿,看《如何成为“半导体行业观察”的一员 》回复 搜索,还能轻松找到其他你感兴趣的文章!","news_type":1},"isVote":1,"tweetType":1,"viewCount":1238,"commentLimit":10,"likeStatus":false,"favoriteStatus":false,"reportStatus":false,"symbols":[],"verified":2,"subType":0,"readableState":1,"langContent":"CN","currentLanguage":"CN","warmUpFlag":false,"orderFlag":false,"shareable":true,"causeOfNotShareable":"","featuresForAnalytics":[],"commentAndTweetFlag":false,"andRepostAutoSelectedFlag":false,"upFlag":false,"length":14,"xxTargetLangEnum":"ZH_CN"},"commentList":[],"isCommentEnd":true,"isTiger":false,"isWeiXinMini":false,"url":"/m/post/983079696"}
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