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NDK晶振,贴片晶振,NX2012SA晶振,NX2012SA-32.768K-STD-MUB-1晶振
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- [欧美晶振新闻资讯]SPC5与STM8汽车微控制器的核心设计考量因素2026年07月23日 10:24
SPC5与STM8汽车微控制器的核心设计考量因素
在车载车身控制,灯光驱动,电源管理,传感器信号调理,车载开关执行等汽车电子场景中,STM88位汽车级微控制器与SPC532位高性能汽车微控制器是ST半导体两大主流核心方案.其中STM8主打高性价比,低功耗,高稳定性,广泛适配车载低压辅助控制,小型执行器控制场景;SPC5系列具备多核运算,高安全等级,宽温域工作能力,支持ASIL-D功能安全标准,多用于车载网关,动力控制,车身域高端控制场景.
在实际硬件开发中,工程师常通过外接晶体管完成功率拓展,开关驱动,信号放大,负载隔离等功能,弥补两款MCU内置驱动能力的短板.但汽车电子工况严苛,存在电压波动,高低温骤变,电磁干扰,振动湿热等复杂环境,晶体管与SPC5,STM8MCU的集成设计绝非简单引脚对接,若参数匹配失误,电路设计不规范,布局散热不合理,极易出现驱动失效,MCU引脚烧毁,信号失真,整车功能误动作,批量稳定性异常等问题.128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextNum":3}},"parent_id":"Txoud2fqcoBYtwxRX47cjXq8nvU","comments":[],"revisions":[],"locked":false,"author":"7592593332774128587","align":"left"}},"P3jDfcWdXdYzypcLVlxcJx4Anrg":{"id":"P3jDfcWdXdYzypcLVlxcJx4Anrg","snapshot":{"comments":[],"locked":false,"children":[],"text":{"initialAttributedTexts":{"text":{"0":"在实际硬件开发中,工程师常通过外接晶体管完成功率拓展、开关驱动、信号放大、负载隔离等功能,弥补两款MCU内置驱动能力的短板。但汽车电子工况严苛,存在电压波动、高低温骤变、电磁干扰、振动湿热等复杂环境,晶体管与SPC5、STM8 MCU的集成设计绝非简单引脚对接,若参数匹配失误、电路设计不规范、布局散热不合理,极易出现驱动失效、MCU引脚烧毁、信号失真、整车功能误动作、批量稳定性异常等问题。"},"attribs":{"0":"*0*1+5g"}},"apool":{"numToAttrib":{"0":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"1":["author","7592593332774128587"]},"nextNum":2}},"type":"text","parent_id":"Txoud2fqcoBYtwxRX47cjXq8nvU","revisions":[],"hidden":false,"author":"7592593332774128587","ai_extra":{"rewrite_command":1},"align":"left"}},"Txoud2fqcoBYtwxRX47cjXq8nvU":{"id":"Txoud2fqcoBYtwxRX47cjXq8nvU","snapshot":{"type":"page","parent_id":"","comments":[],"revisions":[],"locked":false,"hidden":false,"author":"7592593332774128587","children":["XuEHfqsfKdRfBfcv7tOc4Ho3nig","P3jDfcWdXdYzypcLVlxcJx4Anrg","P3sWfvQV6doiswcNtVXc4NLMnKg","L1YvfMQodd5RtZc8R9hcnMFCnRh","X29of4tUbdtnpHcjkhgcMZpanWg","VALJfdfj4dJrzCc2nVCcZ0bknqd","JmEcfv8JYdNO0dc9wTvcustSn9f","UuCYf5RxBdu4TGcREd6cGeDZnct","Zol4frtg2dvmiNcajySc8GlYnug","E8G6finD4dwtTgcYq4Ncoa18nPc","MHocfgGZ6dq3t8cjV8XcDJnBnw9","D5Aaf4V5odJy5XcftNwcgMOGnod","Zqh0fvrwvdOL56c80ASciMGnnVf","HXXTfdZQLdg6OJc4aQAclvQInkd","VmljfKc5FdqNXfc1BGrcBGYqnDg","ArohfiYGXdiMaBcvDnFcPfopnRd","C4crfOQwBds25gchA77cAONFnke","YRXMfM06pdrALCcvfphcYf0Hnbg","W2Y4fDAh9dD74CcJCxtcbrOpndg","AcDvf10uCdL3HIcURr0cPIDNnrd","SNisfZLZ5dcHycc1AnkcxukPnwh","NPXifzZhJdyyrmcjAcFcrKqdnWh","QeN9foejYdSc1zcLztHcDXR3nqd","I9zcfGUYzdkwmLcGNrTchvGOnIf","SGA9fKNLUdyFqUcAUzzcIPIinkh","QRt4fMYODdl8owcsl6wcFeCUnjh","Q1xYfAaM1d46fccjCjNcqmxPnRf","HyvUftckOde2GTce9GEcscFmnfc","XkIhffsWfdfqCecynmXct2rCnNc","Srjaf2MAYdKtn9cPCaJcHs7snEb","LGXYfVfold6tpFcog3xcbVqUn7P","Qwy6frPiGdSuXScmCGVc1svZnWc","Fb0DfIFCFd627jcrpiacz7kVnff","CyItf0FGvdNd9VcHhY2cTed6nQe","XOYQfrkCidOfK7cqyxucnHNenjd","Dv9Nf4tAcdW6yMcuZZ3cZnE9n5b","HDamfM0qvddJ7Nc7yDycIxFonPg","QddUfjcizdk73YcXBA3cECKRnTh","InnnfW1JYdhwcpcDOs8cXKKjnQd","UtAGfA97PdJvjEcO1eacrj3kn0d","JJLvfGcGpd4I4gcHHU9cY5TjnDf","Kl5OfP9i7dzkLLcTEsZc51ydnkd","G4EkfDGqpdQWw0cm2wLc2lOZn7y","QxJYfqEzldtqn0cSTq5c5p9onae","OqkJfqAw5d3O4kcQhvlcj3KanPc"],"text":{"apool":{"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"]},"nextNum":2},"initialAttributedTexts":{"attribs":{"0":"*0*1+u"},"text":{"0":"晶体管集成至SPC5与STM8汽车微控制器的核心设计考量因素"}}},"align":"","doc_info":{"editors":["7592593332774128587"],"options":["editors","edit_time"],"deleted_editors":null,"option_modified":null},"revision_container_id":"doxcnwCdURJYTSobBgEVKIYs7ke","status":{"streaming":{"enabled":false,"expired_at":"1784773531","is_create_command":true,"operator_id":"7592593332774128587","source":1}}}}},"payloadMap":{"XuEHfqsfKdRfBfcv7tOc4Ho3nig":{"level":1},"P3jDfcWdXdYzypcLVlxcJx4Anrg":{"level":1}},"extra":{"channel":"saas","pasteRandomId":"c172adfa-40d3-4d66-859d-2d29ef849da6","mention_page_title":{},"external_mention_url":{},"isEqualBlockSelection":true},"isKeepQuoteContainer":false,"selection":[{"id":2,"type":"text","selection":{"start":0,"end":198},"recordId":"XuEHfqsfKdRfBfcv7tOc4Ho3nig"},{"id":3,"type":"text","selection":{"start":0,"end":196},"recordId":"P3jDfcWdXdYzypcLVlxcJx4Anrg"}],"pasteFlag":"16f3fffa-8b50-405f-8862-cf547e5ac3af"}'>- 阅读(61)
- [欧美晶振新闻资讯]Rakon瑞康晶振高精度时钟测量优化2026年07月21日 15:26
Rakon瑞康晶振高精度时钟测量优化
在5G/6G高频通信,卫星导航,高速光传输,精密测试测量,军工航天,自动驾驶时序同步等高端领域,时钟抖动(Jitter)与相位噪声(PhaseNoise)是判定高精度晶振,时钟振荡器性能优劣的两大核心黄金指标.Rakon瑞康作为全球顶级高精度频率时序器件品牌,旗下OCXO,TCXO晶振,SAW振荡器,精密时钟模块以超低相位噪声,极致低抖动,超高频率稳定度,极小温漂与老化漂移的核心优势,广泛应用于高端精密设备核心时序链路,是行业高精度,高可靠时钟方案的标杆选择.
但在研发调试,产线校准,来料检测与可靠性验证过程中,大量工程师普遍面临一个共性测量难题:时钟信号幅度波动,瞬时幅值跳变,长期幅度衰减,会严重干扰抖动与相位噪声的测量精度,导致测试数据失真,指标虚高,重复性差,无法真实还原Rakon高精度时钟的极致性能,甚至出现优质器件被误判不良,参数校准偏差,产品性能定级失误等问题.如何精准剥离幅度变化带来的测量误差,获取纯净,真实,可信的时钟相位噪声与抖动数据,成为高端精密时钟测试的关键技术难点.
深圳市康华尔电子有限公司作为Rakon晶振品牌官方授权一级代理商,深耕高端精密时序器件领域多年,精通Rakon全系高精度晶振的性能特性,测试标准,工况适配与测量优化方案,同时具备丰富的量产测试,研发调试,问题整改落地经验.可为广大硬件企业,研发工程师,测试机构提供Rakon全系原装正品时钟器件,精准选型配套,测试方案优化,测量误差整改,批量量产供货一站式服务,助力企业精准释放高端时钟器件的极致性能,技术咨询与样品申领热线:0755-27838351.128587","type":"text","revisions":[],"hidden":false,"text":{"initialAttributedTexts":{"text":{"0":"在5G/6G高频通信、卫星导航、高速光传输、精密测试测量、军工航天、自动驾驶时序同步等高端领域,时钟抖动(Jitter)与相位噪声(Phase 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- [日本晶振新闻动态]RIVER日本大河晶振AI服务器全栈时钟解决方案2026年07月20日 09:42
RIVER日本大河晶振AI服务器全栈时钟解决方案
作为拥有七十余年精密石英晶体研发制造底蕴的日本精工品牌,RIVER日本大河晶振深耕高端服务器,数据中心时序领域多年,深度吃透AI服务器核心算力区,高速传输区,主板控制区,低功耗待机区的差异化工况与时序指标,依托独家KoT晶体切割专利,无PLL超低抖动架构,汽车级宽温高稳工艺,超低ESR低功耗技术,打造出专为AI服务器量身定制的全栈时钟解决方案.全系产品覆盖AI服务器从核心算力,高速互联到整机控制,长效待机的全维度时钟需求,一站式解决AI算力设备时序不稳定,噪声高,易漂移,功耗大,寿命短的行业痛点.深圳市康华尔电子为RIVER日本大河晶振官方授权代理商,原厂正品现货,全栈方案配套,一对一技术选型支撑,全力赋能AI服务器厂商提质降本,性能升级,咨询热线:0755-27838351.128587"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":true,"pasteRandomId":"3e17c2d7-c50d-4641-b822-156df3f66148","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":4,"type":"text","selection":{"start":0,"end":343},"recordId":"DP5RfN7gkdiQSkc2qmtcBx8XnVe"}],"payloadMap":{},"isCut":false}'>- 阅读(61)
- [NDK晶振实力优势]NDK差分输出振荡器硬核优势全解析2026年07月13日 11:34
NDK差分输出振荡器硬核优势全解析
NDK差分振荡器摒弃传统单端"单线对地传输"模式,采用D+,D-两路幅度相等,相位完全相反的差分信号同步传输.接收端通过对比两路信号的电压差值判定时钟逻辑,而非对地电压判定.外界耦合的电磁噪声,电源杂波,地线干扰属于共模噪声,会同时叠加在两路差分线上,接收端可自动抵消共模干扰,实现近乎无损的纯净时钟传输.依托这一先进架构,NDK差分晶振彻底突破单端晶振的抗干扰上限,噪声上限与速率上限,同时大幅降低PCB设计难度,兼顾超高信号完整性,超低相位噪声,极低EMI辐射,超强环境适应性四大核心价值,全面适配高频高速工业与通信场景.
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Q-Tech首款全空间适用性QT8220系列温补晶振
针对全空间极端工况时序适配难题,高端军工航天时序标杆品牌Q-Tech实现技术全新突破,重磅推出业内首款具备全空间适用性的QT8220系列温补晶振,打破传统温补晶振工况局限,实现地面,低空,高空,近地轨道,太空全域空间全覆盖适配,彻底解决跨维度空间环境下的时钟精度不稳定,工况适配性差,极端环境失效率高的行业痛点,为全域航天航空,军工防务,低空智能装备,卫星组网等高端领域,提供首款真正意义上的全空间,高稳定,低漂移,高可靠精密时序解决方案.128587"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":false,"pasteRandomId":"43708971-9f2e-4a66-bbad-a0663852bd28","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":3,"type":"text","selection":{"start":0,"end":220},"recordId":"NLKCf2fq0dpEgVcbnuCcTGNYnoO"}],"payloadMap":{},"isCut":false}'>- 阅读(86)
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Microchip晶振PIC64-HPSC航天计算设计解决方案
传统航天计算方案多采用分立处理器,通用工业级器件,独立时钟振荡单元搭建,存在算力冗余不足,时序抖动偏大,抗辐射等级有限,系统架构臃肿,功耗偏高,长期运行漂移严重,单点故障风险高等诸多行业短板,无法适配新一代高轨卫星,深空探测器,商业低轨星座,智能航天载荷的高性能计算与长效稳定运行需求.针对航天领域高端算力国产化,高可靠,高精度,集成化的核心刚需,Microchip(微芯科技)重磅推出PIC64-HPSC 航天级64位高性能航天计算架构完整解决方案,搭配Microchip专属宇航级高精度抗辐射晶振时钟体系,构建从核心算力处理,时序基准支撑,抗干扰防护,低功耗值守,长寿命运行的全链路航天级设计体系,成为新一代高端星载计算系统的标杆解决方案.128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":true,"pasteRandomId":"6c299d6e-d1ec-44e7-84d4-39f34846b8a2","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":3,"type":"text","selection":{"start":0,"end":322},"recordId":"UZuPfhUzhdWy1scjmIVcrcTGnTb"}],"payloadMap":{},"isCut":false}'>- 阅读(66)
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Statek低功耗CXOXULP石英晶体振荡器全面解析
随着物联网智能化,无线便携化,微型终端普及化的全面爆发,各类智能电子设备正加速朝着微型化集成,无线化传输,超低功耗运行,超长效待机,免维护长效服役的核心方向迭代升级.全球高可靠时序器件标杆品牌Statek,重磅推出CXOXULP系列极致超低功耗石英晶体振荡器,依托美国原厂自研低功耗振荡架构,AT切割精密晶片工艺,极简电路优化设计,实现了行业顶尖的超低电流损耗,极速启动响应,超高频率稳定度,超宽温高可靠运行,完美适配全场景低功耗智能设备研发与量产需求,成为当下低功耗时序解决方案的标杆级产品.128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":false,"pasteRandomId":"1675447b-4cf4-424d-ac7c-8f39fcaacfbd","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":2,"type":"text","selection":{"start":0,"end":83},"recordId":"CQFUfPwkLdhloucVsYBcRvN3naf"}],"payloadMap":{},"isCut":false}'>128587"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":false,"pasteRandomId":"4c04d70a-889f-4f68-a01e-83dd17363893","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":3,"type":"text","selection":{"start":164,"end":328},"recordId":"SZFNfHIwkdyhdvcJnqPcWxDmnkd"}],"payloadMap":{},"isCut":false}'>- 阅读(58)
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Abracon晶振全系列射频与天线解决方案
随着5G普及,物联网全面落地,智能穿戴,工业无线终端,UWB高精度定位设备快速迭代,新一代无线电子产品正朝着微型化,多协议兼容,高频高速,高稳定性,低功耗五大核心方向升级.无线射频与天线系统作为设备信号传输的核心枢纽,其性能直接决定产品的通信距离,传输速率,抗干扰能力与使用寿命,也是当下无线产品设计研发的核心难点.针对行业设计痛点与市场升级需求,国际知名频率控制与射频器件品牌Abracon,推出全套高性能射频与天线解决方案,精准适配新一代无线设备研发需求,为多场景无线通信设计提供可靠核心支撑.128587"],"1":["ai-extra","{\"is_ai_gen\":true}"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":false,"pasteRandomId":"816a7dc6-94c7-41df-9cd9-4cb3f468b720","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":2,"type":"text","selection":{"start":0,"end":249},"recordId":"ASZQfCCA7dkh4EcJ1BCciAl1nYf"}],"payloadMap":{},"isCut":false}'>- 阅读(76)
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CTS的CA32L15552HLR汽车级时钟振荡器增加支持LVPECL和LVDS输出的器件
CTS Corporation (NYSE: CTS)宣布扩展其CA系列汽车级时钟晶体振荡器系列,增加支持LVPECL和LVDS差分晶体振荡器输出的器件。专为要求宽工作温度范围的汽车、工业和商业军事/航空航天应用而设计,所有CA系列器件均在TS16949认证生产线上制造,通过AEC-Q200认证,符合PPAP标准,工作温度范围为标准汽车温度范围-40°C至+125°C。
该系列新增产品提供一系列紧凑型密封陶瓷SMD封装尺寸,提供标准差分负载驱动能力,典型上升和下降时间小于0.7ns,以及标准引脚1输出使能/禁用功能。频率稳定性在-40°C/+85°C范围内低至25ppm,在-40°C/+125°C范围内高达100ppm。
新的LVPECL和LVDS有源差分晶振选项加入了现有的CA系列HCMOS输出时钟振荡器系列。有源晶振CA系列系列平台也适合支持广泛的细分市场;涵盖电信基础设施、网络、服务器应用、测试和测量、医疗诊断设备等等;为无风扇应用提供出色的相位抖动性能和扩展的温度范围。
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SHINSUNG的STC-D25-33S-1.0HZ-10.000MHz温补晶振型号列表
SHINSUNG新松晶振集团成立于1999年,主要研发生产销售石英晶体,石英晶体振荡器,TCXO温补晶振,VCXO压控晶振,有源贴片晶振,无源晶振,石英晶体谐振器等,所生产SHINSUNG Crystal均采用优异环保材料。
SHINSUNG晶体是一家专业生产时钟振荡器,工业设备晶振,数码电子晶振的厂家,由于产品具有体积小,耐高温,产品广泛应用于电子行业,石英晶振应用包括电信,微处理器,汽车,仪器仪表和医疗应用。应用范围广的特点,在市场得到广大群众的信赖Shinsung SAW Electronics在新的加工和测试结构设备上的投资确保公司将继续提供卓越的设计,并提供持续的新产品流,以满足客户在当前和未来的需求。
以顾客为中心,基于价值的管理,人类和谐的价值
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- IQD缩小石英晶振LFXTAL066431REEL的尺寸对设计的影响尺寸真的重要吗?–晶体尺寸缩小的设计效果
微型化是电子工业的一个持续趋势。可穿戴设备、智能家居设备、移动设备、汽车应用中的电子产品...-这些只是需要越来越小元件的应用的几个例子。每个电子元件制造商都在努力将越来越小的元件推向市场。但是这种尺寸的减小会在设计过程中引起不同的问题。为了帮助解决这些问题,本博客将重点讨论缩小石英晶振尺寸对设计的影响。
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松图晶振解说寻找EOL产品的7个技巧,Suntsu是电子元件的经销商和制造商。一直以来都在帮助用户克服寻找产品或替代的元器件,通过多年的使用的技巧,针对性整理成文档,方便用户需要时能够随时用起来。
自2002年以来,我们一直通过库存管理计划帮助我们的客户克服供应链挑战,生产更好的产品,节省资金,并改善现金流/交付周期。
组件的生命周期取决于需求和制造商提供的贴片石英晶体产品。如果需求很高,制造商将继续生产产品,但当他们提供更新的功能时,他们也会升级组件。严酷的事实是,每个电子元件都有有限的生命周期,最终注定会过时,随着技术的进步,采购这些元件变得越来越具有挑战性。
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- [台湾晶振行业资讯]Greenray新T58 TCXO提供高达50ppb的高频稳定性2023年10月14日 11:47
Greenray 新的T58 TCXO:提供高达50PPB的高频稳定性、高抗冲击能力和宽工作温度范围。
Q2,2023年–新型T58系列TCXO振荡器的工作频率范围为10至50MHz,在较宽的温度范围内频率稳定性可达50ppb,功耗低(< 8 mW),采用坚固的5.0x3.2mm封装,抗冲击能力可达50.000g。工作温度范围可扩展至-55°C至+125°C(指定部件号T56 TCXO)。T58 TCXO具有超过10年的小于4 ppm的长期老化、小于0.7 ppb/g的低加速度灵敏度、+3.3 VDC电源、CMOS或削波正弦输出和用于精确调谐或锁相应用的EFC。极高的频率稳定性和宽温度范围——非常适合各种应用,包括5G、Stratum3、移动无线电、移动仪器仪表、机载和无线通信、高冲击电子设备和微波接收机。
T58 TCXO温补晶振特征:
坚固耐用的5.0 x 3.2mm毫米封装贴片晶振
频率:10至52兆赫
稳定性达到0.05ppm (-40至+85°C)
3.3 Vdc电源
CMOS或限幅正弦输出- 阅读(739)
- [NDK晶振技术支持]领先同行WI2WI低相位噪声温补晶振专用于M2M通信2023年10月07日 14:03
领先同行WI2WI低相位噪声温补晶振专用于M2M通信,TORONTO, Wi2Wi Corporation ("Wi2Wi" or the "Company"), a leading global developer and manufacturer of end to end Wireless Connectivity Solutions, high precision Frequency Control, Timing and Microwave Filter devices, is pleased to announce a rugged, robust and reliable family of Temperature Compensated Crystal Oscillators (TCXO), the TCH series, a further promising extension of its product portfolio.
TSX-V: YTY; Common Shares: 145,663,418
“We are very pleased to announce our new TCH series of rugged and best in class Temperature Compensated Crystal Oscillators (TCXO). The TC6 series further expands Wi2Wi's frequency control and timing devices portfolio to meet the most demanding technical requirements from the Avionics, Space and Military markets. The Company has received the first production orders for the TCH series from a marquee supplier to the Avionics and defense market.” said Michael Sonnenreich, Chairman of the Board.
“Wi2Wi continues to focus extensively on developing new products based upon client demand and assures a full line of products in each category we produce. The new TCH series of TCXO expands our current high stability, high shock and high vibration is ideal for high precision applications in avionics, space and military markets. The TCH series is a nice addition to our family of high reliability and high performing TCXO." said Zachariah Mathews, President and CEO of Wi2Wi.
Specifics on the new product series:
The TCH Series of Temperature Compensated Crystal Oscillator (TCXO) ensures a precise frequency and very high stability under demanding applications in extreme conditions. The TCH series provides excellent phase noise, low jitter, and superior performance in high vibration and high temperature environments. This TCXO is available in rugged package of 5 pin through hole in both standard and custom frequencies from 1.000MHz to 50.000 MHz. The TCH is available in various supply voltages, stability and temperature ranges, stability as low as 0.5ppm with operating temperature from 55°C to +125°C. The TCH series is available various supply voltages; or 5.0v, 12.0v and 15.0v that provides low power supply current incorporating a low power CMOS output.
About IoT and M2M
Essentially, IoT and M2M describethe network of physical objects or "things" embedded with electronics, software, sensors, and network connectivity, which enables these objects to collect and exchange data. Driven by several factors including the growth in the availability of Broadband Internet, which reduces the cost of connecting, and the related increase in Wi-Fi capabilities as well as sensors built into myriad technologies, this has been described as the “perfect storm” for the IoT. Almost any device with an on and off switch that can be connected to the Internet (and/or to each other) – anything from cell phones, coffee makers, washing machines, headphones, lamps, wearable devices, cars, as well as machine components in the engine of a jet airplane or the drill of an oil rig. According to analyst firm Gartner, by 2020 there will be over 26 billion connected devices. Others think this figure could be too conservative by a factor of four.
About Wi2Wi Corporation
Wi2Wi is a vertically-integrated technology company which designs, manufactures and markets high performance, low power wireless connectivity solutions, global navigation satellite system (GNSS) modules, and frequency control devices. The Company's products and services address numerous applications in the markets of Internet of Things (IoT), Machine to Machine (M2M), Avionics, Space, and Government Sponsored Projects. Wi2Wi's products and value-added services provide highly integrated, rugged, robust, and reliable multiprotocol wireless actuators with embedded software, along with customized timing and frequency control devices for customers, worldwide. The Company was founded in 2005 and is strategically headquartered in San Jose, California with satellite offices in Middleton, Wisconsin and Hyderabad, India. Wi2Wi's manufacturing operations, its laboratory for reliability and quality control, together with design and engineering for timing and frequency control devices are located in Middleton, WI. The branch office, located in Hyderabad, India, focuses on the development of wireless connectivity; both hardware and software. Wi2Wi's strategic objective is to service the unique needs of each customer by providing end to end wireless integration solutions and highly customizable timing and frequency control devices. Wi2Wi distinguishes itself from commodity grade products, with best in the market performance, highly reliable, low power wireless connectivity products with integrated software that supports broader temperature ranges and a longer product life cycle. Furthermore, Wi2Wi's end to end product solutions helps the customer substantially reduce their end product expense, certification cost, and overall R&D investment, in addition to substantially reducing the time to market. Wi2Wi has partnered with best in class global leaders in technology, manufacturing, and sales. The Company uses a wide network of manufacturer's representatives, worldwide, to promote its products and services, and has partnered with world class distributors for the fulfillment of orders along with direct sales.
多伦多,Wi2Wi公司全球领先的端到端无线连接解决方案、高精度频率控制、定时和微波滤波设备开发商和制造商(“Wi2Wi”或“公司”)很高兴宣布推出一款坚固、稳定、可靠的温度补偿石英晶体振荡器(TCXO)系列产品TCH系列,这是其产品组合的又一大扩展。
TSX五世:YTY;普通股:145,663,418
“我们非常高兴地宣布我们的新型TCH系列坚固耐用、同类最佳的温度补偿晶体振荡器(TCXO)。TC6系列进一步扩展了Wi2Wi的频率控制和定时设备组合,以满足航空电子、航天和军事市场最苛刻的技术要求。该公司已经从航空电子和国防市场的一家大型供应商那里获得了TCH系列的首批生产订单。”董事会主席迈克尔·索南里奇说。领先同行WI2WI低相位噪声温补晶振专用于M2M通信.
“Wi2Wi继续致力于根据客户需求开发新产品,并确保我们生产的每个类别的产品种类齐全。TCXO的新TCH系列扩展了我们目前的高稳定性、高冲击和高振动,是航空电子、航天和军事市场中高精度应用的理想选择。TCH系列是我们高可靠性和高性能TCXO振荡器家族的又一成员。”Wi2Wi总裁兼首席执行官扎卡里亚·马修斯(Zachariah Mathews)说。
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- [台湾晶振行业资讯]希华时钟晶体振荡器提供领先全球的理想方案2023年09月28日 16:57
希华时钟晶体振荡器提供领先全球的理想方案,随着各种高速串流资料讯号广泛使用,需要更高频的时脉讯号源,但传统机械(研磨)工法,已无法满足更高的频率需求,遂将半导体晶圆制程应用在石英晶片产业,使高频化、小型化、高精度振荡器产品得以实现,工法如下
1.应用光蚀刻工法,可轻易在wafer状态(晶圆级)下,一批次将数万颗石英晶体振荡器完成厚度加工达到所需要的频率。
2.同样应用光蚀刻工法,在wafer状态下,一批次将数万颗晶体振荡器完成晶片外型,且用光蚀刻法轻易将产品小型化,尺寸一致性更高,精度更好。
3.接着用同样工法完成发振区电极回路。
为什么要光刻?
1.小型化
(目前可至0806)
采用半导体制程,满足客户小型化产品需求2.高频化
(max500MHz)3D设计凹槽结构,强化晶片刚性满足客户高频化需求
3.高精度
(Accuracy 2um)批次生产,高对位精度产品,满足客户对电性及品质稳定度的需求
光蚀刻制程克服高频晶片技术障碍
由于石英晶片机械加工极限厚度约30um (55MHz),所以更高频率晶片(一般指基本波60MHz以上),需采用光蚀刻制程克服技术障碍。
* 石英晶片厚度越薄,晶体单元的频率越高,传统晶片采用机械加工厚度有局限性,最薄约30um(55MHz左右振荡频率)
* 使用光蚀刻制程,可3D结构设计阶梯结构及凹槽结构,强化晶片刚性,让振荡区厚度不受局限,使产品更易小型化、高频化、特性更好。希华时钟晶体振荡器提供领先全球的理想方案.由于更高频率晶片厚度偏太薄,晶片刚性不够,使用光蚀刻制程,结构可阶梯结构3D化设计,让振荡区厚度不受局限,一般可达到3~30um的技术需求,如图示:
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- [NDK晶振解决方案]领先同行Siward Crystal特别适合可穿戴设备2023年09月26日 17:06
领先同行Siward Crystal特别适合可穿戴设备,石英元件的起点,从人工水晶的生长开始
希华晶体科技是业界少数,且是台湾唯一一间具备人工水晶生产、晶片设计加工到晶体元件封装能力的企业。
融合日本、俄罗斯、中国长晶技术与生长参数,提供人工水晶、晶片设计到完成品制造的晶体企业,
超过30年长晶实绩,配合市场需求开发大尺寸水晶材料,客户包含电子、光学市场龙头企业
现代电子产品倚赖合成晶体,不论从网通、手机、消费性电子到车用电子,都能看到希华的贴片石英晶体与振荡器的产品应用。希华是台湾唯一能够生长人工水晶,掌握晶体中重要上游材料的企业,结合丰富的长晶经验与先进的制造技术与工艺,炼造出低杂质、低蚀刻、高纯度、高品质的人工水晶。
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- [欧美晶振新闻资讯]CTS时钟振荡器支持以太网应用2023年09月05日 17:02
CTS时钟振荡器支持以太网应用,CTS Corporation (NYSE: CTS), founded in 1896, is a global leader in the design and manufacturing of a diverse array of electronic components, sensors and actuators.
CTS Corporation (NYSE: CTS)成立于1896年,是设计和制造各种电子石英晶振元件、传感器和执行器的全球领导者.Primarily fulfilling the needs of original equipment manufacturers (OEMs), CTS is proud of its over 100-year heritage of innovative products and engineering excellence. CTS products are manufactured utilizing state-of-the-art technology driven by a highly capable and dedicated staff.
CTS主要满足原始设备制造商(OEM)的需求,并为其100多年的创新产品和卓越工程而自豪。CTS产品是由非常能干和敬业的员工利用最先进的技术制造的。
In a current vertically integrated era, where applications such as complex data and video along with voice, are increasing in demand, advanced technologies of high-speed information transfer require continuous improvements of information sharing systems. The World Wide Web has become an essential tool in our daily life when it comes to accessing various types of information/business databases, video conferencing or manufacturing networks. Enabling efficient communication flow over existing infrastructure has become challenging in order to satisfy demanding user requirements. High-speed data/video and voice channels along with effective routing systems have been created as a result.
在当前的垂直集成时代,随着需求的增加,高速信息传输的先进技术要求改进信息共享系统。网络已成为我们日常生活中访问各种类型的信息/商业数据库、视频会议或制造网络。通过现有基础设施实现高效的通信流为了满足苛刻的用户要求,变得具有挑战性。高速数据/视频和语音因此,已经创建了具有有效路由系统的信道。
Data Networks数据网络
For the purpose of this discussion, we can associate the flow of information within network channels to water flow within very complex system of pipelines of different shapes and sizes. Long haul channels that transfer information from state-to-state or city-to-city are called “TRUNKS”. Trunks connect multiple central office locations while utilizing fiber optics and high bandwidth cabling meshes along with highspeed routers and core switching systems. This accommodates the transfer of heavy masses of data packets (also called high band width data transporters). Once data packets reach a given central office destination (close-by to the final destination of the end user), they are transferred through soft-switching equipment to narrower data transport channels ultimately leading to the end-users (subscribers).
为了进行讨论,我们可以将网络渠道内的信息流与水在不同形状和尺寸的非常复杂的管道系统中流动。长途通道从一个州到另一个州或从一个城市到另一座城市的信息传递被称为“TRUNKS”。中继线连接多个中心办公室位置,同时利用光纤和高带宽布线网络以及高速路由器和核心交换系统。这可以容纳大量数据的传输数据包(也称为高带宽数据传送器)。一旦数据包到达给定的中心局目的地(靠近最终用户的最终目的地),它们通过软交换进行传输设备到更窄的数据传输信道,最终导致最终用户(订户)。
In many cases the subscribers are located within enterprises (i.e. business organizations, hospitals, office buildings, etc.) that share internal communication lines and network channels to support several business activities. In such cases, an internal high-speed network is typically installed.
在许多情况下,订阅者位于企业内部(即商业组织、医院、办公室建筑物等)共享内部通信线路和网络通道以支持多个业务活动。在这种情况下,通常会安装内部高速网络。
Ethernet Standard
以太网标准
Ethernet has evolved into the most widely implemented networking protocol today. Fast Ethernet increased the data speed from 10 Megabits per second (Mbits/s) to 100 Mbit/s to and from the users terminal. Gigabit Ethernet was the next iteration, increasing the speed to 1,000 Mbit/s. The initial standard for Gigabit Ethernet was issued by the IEEE in June 1998 as IEEE 802.3z.
以太网已发展成为当今实现最广泛的网络协议。而以太网需要进口晶体振荡器支持,快速以太网将往返用户的数据速度从每秒10兆比特提高到每秒100兆比特航空站千兆以太网是下一代,将速度提高到1000 Mbit/s。初始标准IEEE于1998年6月发布了用于千兆以太网的IEEE 802.3z。
Gigabit Ethernet access equipment is available in different speeds and bandwidth. Most common systems operate with 3.125Gbits/sec and 10Gbits/sec. 10 Gigabit Ethernet over twisted pair has just been completed, but as of June 2006, the only currently available adapters for copper wire requires special cabling and is limited to 15 meters for point-to-point communications. Major Gigabit Ethernet manufacturers include Cisco Systems, Broadcom (chipset manufacturer), Netgear, D-Link, Intel, Adtran and others.
千兆以太网接入设备有不同的速度和带宽。最常见系统以3.125Gbits/sec和10Gbits/sec运行。双绞线上的万兆以太网已完成,但截至2006年6月,目前唯一可用的铜线适配器需要特殊布线,点对点通信限制在15米以内。主要千兆以太网制造商包括Cisco Systems、Broadcom(芯片组制造商)、Netgear、D-Link、Intel、Adtran以及其他。CTS时钟振荡器支持以太网应用.- 阅读(673)
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