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FOX晶振,贴片晶振,C6AS晶振 F-C6AS-C-C-E-M-20.0晶振
更多 +智能手机晶振,产品具有高精度超小型的表面贴片型石英晶体振荡器,最适用于移动通信终端的基准时钟等移动通信领域.比如智能手机,无线通信,卫星导航,平台基站等较高端的数码产品,晶振本身小型,薄型具备各类移动通信的基准时钟源用频率,贴片晶振具有优良的电气特性,耐环境性能适用于移动通信领域,满足无铅焊接的高温回流温度曲线要求.

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更多 +小型石英贴片晶振,外观尺寸具有薄型表面贴片型石英晶体谐振器,特别适用于有小型化要求的市场领域,比如智能手机,无线蓝牙,平板电脑等电子数码产品.晶振本身超小型,薄型,重量轻,晶体具有优良的耐环境特性,如耐热性,耐冲击性,在办公自动化,家电相关电器领域及Bluetooth,Wireless LAN等短距离无线通信领域可发挥优良的电气特性,满足无铅焊接的回流温度曲线要求.

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西铁城晶振,32.768K晶振,CFS-145晶振,CFS-14532768DZFB晶振
插件32.768K系列为满足市场不同产品对精度的要求,通常情况下分为±5PPM、±10PPM、±20PPM,如果有其他特殊要求的客户也可以分为在精度上分为正偏差以及负偏差.音叉型表晶32.768K晶振在产品中使用温度范围可以达到—20°到+70°的宽温要求.插件32.768K系列主要使用于较为高端大气上档次的汽车电子、智能家用电器、笔记本、插卡音响、智能手表、以及数码相机等产品中.更多 +

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TXC晶振,贴片晶振,7V晶振,3225陶瓷面晶振
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超低功耗MCU模拟器件优化ECS晶体振荡器精准选型准则
超低功耗MCU的核心优势在于休眠功耗极低,待机续航持久,其搭载的模拟电路主要负责信号采集,电压监测,定时唤醒,低频通信等功能,对时钟源的要求与常规高速MCU截然不同,传统晶振选型极易出现适配漏洞,核心痛点集中在四点:1.功耗不匹配,透支设备续航:普通晶振起振电流,工作电流偏高,无法适配nA级休眠,μA级待机的超低功耗MCU,即使MCU进入深度休眠模式,晶振持续耗电,大幅缩短电池供电设备的使用寿命.
2.参数不兼容,模拟采样失真:MCU模拟器件的AD采样,基准电压校准,低频信号处理对时钟稳定性要求极高,普通晶振温漂大,频率偏差高,会导致模拟数据采样误差,信号失真,降低设备检测精度.
3.负载阻抗不符,起振异常:低功耗MCU内部振荡电路驱动能力偏弱,常规高ESR(等效串联电阻)晶振易出现起振慢,起振不稳定,停振等问题,直接导致MCU死机,定时失效,唤醒异常.
4.温稳性不足,极端工况失效:工业,户外物联网设备温差跨度大,普通晶振高低温环境下频率漂移严重,造成MCU时钟错乱,模拟器件工作阈值偏移,设备故障率大幅提升.
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SiTime晶振TCXO与OCXO的定位差异与选型指南
作为全球MEMS精密时序标杆品牌,SiTime推出的MEMS超TCXO与高端Emerald系列OCXO,彻底颠覆传统石英晶振的设计逻辑,凭借全硅固态架构,全数字补偿,可编程调谐,抗振抗冲击,低老化漂移等核心优势,大幅降低硬件设计门槛,同时全面提升系统时序上限.不同于传统石英器件严苛的布线要求,繁琐的外围匹配,固定的参数限制,SiTimeTCXO/OCXO具备高集成,高容错,可配置,高抗扰的设计特性,可帮助研发工程师快速完成高性能时序系统搭建,缩短研发周期,减少改版次数,降低量产不良率.深圳市康华尔电子有限公司作为SiTime官方授权一级代理商,专注为硬件研发团队提供SiTime全系TCXO,OCXO,可编程MEMS时钟芯片的精准选型,设计指导,电路适配,方案替换与批量量产配套服务,助力工程师一次性搞定精密时序设计,规避各类设计踩坑问题,技术咨询热线:0755-27838351.as-block-data="false" data-lark-html-role="root" data-page-id="TrgPddEydoIOypxQScpcCgTYn3b">ass="lark-record-clipboard" data-lark-record-format="docx/text" data-lark-record-data='{"rootId":"TrgPddEydoIOypxQScpcCgTYn3b","text":{"initialAttributedTexts":{"text":{"0":"作为全球MEMS精密时序标杆品牌,SiTime推出的MEMS超TCXO与高端Emerald系列OCXO,彻底颠覆传统石英晶振的设计逻辑,凭借全硅固态架构、全数字补偿、可编程调谐、抗振抗冲击、低老化漂移等核心优势,大幅降低硬件设计门槛,同时全面提升系统时序上限。不同于传统石英器件严苛的布线要求、繁琐的外围匹配、固定的参数限制,SiTime TCXO/OCXO具备高集成、高容错、可配置、高抗扰的设计特性,可帮助研发工程师快速完成高性能时序系统搭建,缩短研发周期、减少改版次数、降低量产不良率。深圳市康华尔电子有限公司作为SiTime思泰明官方授权一级代理商,专注为硬件研发团队提供SiTime全系TCXO、OCXO、可编程MEMS时钟芯片的精准选型、设计指导、电路适配、方案替换与批量量产配套服务,助力工程师一次性搞定精密时序设计,规避各类设计踩坑问题,技术咨询热线:0755-27838351。"},"attribs":{"0":"*0*1+q*0*1*2+p*0*1+5f*0*1*2+c*0*1+3i*0*1*2+d*0*1+1"}},"apool":{"numToAttrib":{"0":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"1":["author","7592593332774128587"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":true,"pasteRandomId":"bbe2c167-35f5-4539-a1ea-74d310cae396","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":3,"type":"text","selection":{"start":0,"end":398},"recordId":"JQe7fQsegdD72vcoOAqc07h6nkg"}],"payloadMap":{},"isCut":false}'>ass="ace-line ace-line old-record-id-JQe7fQsegdD72vcoOAqc07h6nkg" style="text-align: left;">
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- [公司资讯]RIVER日本大河晶振KCRO系列具备超低的抖动特性2026年07月21日 00:18
RIVER日本大河晶振KCRO系列具备超低的抖动特性
作为拥有七十余年晶体研发制造底蕴的日本老牌精工企业,RIVER日本大河晶振深耕高精度,低噪声时钟元器件领域,针对高端高速设备的时序痛点,重磅推出KCRO系列超低抖动晶振.该系列产品依托RIVER独家KoT切割专利技术与无PLL纯晶振振荡架构,突破传统时钟器件的噪声瓶颈,实现业界顶尖的超低抖动,超低相位噪声性能,为高速通信,智能算力,精密工控,高端车载等高精尖场景提供纯净,稳定,精准的基准时钟信号.深圳市康华尔电子为RIVER日本大河晶振官方授权代理商,原厂直供KCRO全系列超低抖动晶振,现货充足,技术配套完善,欢迎各大研发,量产企业咨询对接:0755-27838351.as-block-data="false" data-lark-html-role="root" data-page-id="VupEdMF5MoXoW7xYIolcfvaBnJe">ass="lark-record-clipboard" data-lark-record-format="docx/text" data-lark-record-data='{"rootId":"VupEdMF5MoXoW7xYIolcfvaBnJe","text":{"initialAttributedTexts":{"text":{"0":"作为拥有七十余年晶体研发制造底蕴的日本老牌精工企业,RIVER日本大河晶振深耕高精度、低噪声时钟元器件领域,针对高端高速设备的时序痛点,重磅推出KCRO系列超低抖动晶振。该系列产品依托RIVER独家KoT切割专利技术与无PLL纯晶振振荡架构,突破传统时钟器件的噪声瓶颈,实现业界顶尖的超低抖动、超低相位噪声性能,为高速通信、智能算力、精密工控、高端车载等高精尖场景提供纯净、稳定、精准的基准时钟信号。深圳市康华尔电子为RIVER日本大河晶振官方授权代理商,原厂直供KCRO全系列超低抖动晶振,现货充足、技术配套完善,欢迎各大研发、量产企业咨询对接:0755-27838351。"},"attribs":{"0":"*1*0+20*1*0*2+c*1*0+38*1*0*2+r*1*0+1p"}},"apool":{"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":true,"pasteRandomId":"31087e8f-8ba5-4ee2-9d03-1d7de8bbe544","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":3,"type":"text","selection":{"start":0,"end":288},"recordId":"W1yjfKfSJdLJiQcWvdvcaflpnwe"}],"payloadMap":{},"isCut":false}'>ass="ace-line ace-line old-record-id-W1yjfKfSJdLJiQcWvdvcaflpnwe" style="text-align: left;">- 阅读(62)
- [公司资讯]NDK音响专用超低相位噪声OCXO恒温晶振核心特长解析2026年07月14日 02:08
NDK音响专用超低相位噪声OCXO恒温晶振核心特长解析
在数字音频系统中,所有声音信号的采样,解码,转换,输出都需要依托晶振提供精准,纯净,稳定的时钟时序.普通晶振,常规TCXO温补晶振存在明显的近端相位噪声偏高,时钟抖动量大,短期频率稳定性不足等问题,这些细微的时钟误差,在音频系统中会被无限放大,成为音质劣化的核心根源.常规时钟器件的相位噪声缺陷,会引发一系列典型音质问题:近端杂散噪声会叠加在音频信号中,导致高频延伸不足,细节丢失,齿音刺耳;时钟抖动超标会造成时序错乱,引发低频拖沓浑浊,动态范围压缩,声场塌陷;频率瞬时偏移会破坏乐器结像定位,导致立体声分离度不足,人声与伴奏层次感模糊.尤其针对当下主流的DSD高清音源,高采样率无损音频,普通时钟器件的精度短板会彻底浪费高清音源的原始细节,无法实现高保真还原,这也是高端音响设备必须搭载超低相位噪声OCXO的核心原因.
而NDKDuCULoN®音频专用OCXO,彻底摒弃通用晶振的设计逻辑,以音频音质优化为核心导向,针对性攻克相位噪声,时钟抖动,频率稳定三大核心难题,是高端Hi-Fi音响,专业音频设备的御用级时钟基准.
as-block-data="false" data-lark-html-role="root" data-page-id="P7sUdggKRoUg02xQ3OQcHzjjn6c">ass="lark-record-clipboard" data-lark-record-format="docx/record" data-lark-record-data='{"isCut":false,"rootId":"P7sUdggKRoUg02xQ3OQcHzjjn6c","parentId":"P7sUdggKRoUg02xQ3OQcHzjjn6c","blockIds":[5,6,7],"recordIds":["PgUEflsbidr1QocsNEgcysRqnzc","N6jIfsgxcdOJmMcGiFscxrmlnZl","XjKFfaQnUdAcwUcZoC0cnt7Qn8g"],"recordMap":{"PgUEflsbidr1QocsNEgcysRqnzc":{"id":"PgUEflsbidr1QocsNEgcysRqnzc","snapshot":{"type":"text","parent_id":"P7sUdggKRoUg02xQ3OQcHzjjn6c","comments":[],"revisions":[],"locked":false,"hidden":false,"author":"7592593332774128587","ai_extra":{"rewrite_command":1},"children":[],"text":{"initialAttributedTexts":{"text":{"0":"在数字音频系统中,所有声音信号的采样、解码、转换、输出都需要依托晶振提供精准、纯净、稳定的时钟时序。普通晶振、常规TCXO温补晶振存在明显的近端相位噪声偏高、时钟抖动量大、短期频率稳定性不足等问题,这些细微的时钟误差,在音频系统中会被无限放大,成为音质劣化的核心根源。"},"attribs":{"0":"*1*0+3q"}},"apool":{"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"]},"nextNum":2}},"align":"left"}},"N6jIfsgxcdOJmMcGiFscxrmlnZl":{"id":"N6jIfsgxcdOJmMcGiFscxrmlnZl","snapshot":{"type":"text","parent_id":"P7sUdggKRoUg02xQ3OQcHzjjn6c","comments":[],"revisions":[],"locked":false,"hidden":false,"author":"7592593332774128587","ai_extra":{"rewrite_command":1},"children":[],"text":{"apool":{"nextNum":2,"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"]}},"initialAttributedTexts":{"attribs":{"0":"*0*1+6a"},"text":{"0":"常规时钟器件的相位噪声缺陷,会引发一系列典型音质问题:近端杂散噪声会叠加在音频信号中,导致高频延伸不足、细节丢失、齿音刺耳;时钟抖动超标会造成时序错乱,引发低频拖沓浑浊、动态范围压缩、声场塌陷;频率瞬时偏移会破坏乐器结像定位,导致立体声分离度不足、人声与伴奏层次感模糊。尤其针对当下主流的DSD高清音源、高采样率无损音频,普通时钟器件的精度短板会彻底浪费高清音源的原始细节,无法实现高保真还原,这也是高端音响设备必须搭载超低相位噪声OCXO的核心原因。"}}},"align":"left"}},"XjKFfaQnUdAcwUcZoC0cnt7Qn8g":{"id":"XjKFfaQnUdAcwUcZoC0cnt7Qn8g","snapshot":{"type":"text","parent_id":"P7sUdggKRoUg02xQ3OQcHzjjn6c","comments":[],"revisions":[],"locked":false,"hidden":false,"author":"7592593332774128587","ai_extra":{"rewrite_command":1},"children":[],"text":{"initialAttributedTexts":{"text":{"0":"而NDK DuCULoN®音频专用OCXO,彻底摒弃通用晶振的设计逻辑,以音频音质优化为核心导向,针对性攻克相位噪声、时钟抖动、频率稳定三大核心难题,是高端Hi-Fi音响、专业音频设备的御用级时钟基准。"},"attribs":{"0":"*1*0+2t"}},"apool":{"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"]},"nextNum":2}},"align":"left"}},"P7sUdggKRoUg02xQ3OQcHzjjn6c":{"id":"P7sUdggKRoUg02xQ3OQcHzjjn6c","snapshot":{"type":"page","parent_id":"","comments":[],"revisions":[],"locked":false,"hidden":false,"author":"7592593332774128587","children":["TsCwfcn1ddPnyQcxGLCch2N5nqd","TGwAfXgcRdon3FcEhPrcTtHangg","LbFafh2yZdzJXPcGCaYckZWgndh","PgUEflsbidr1QocsNEgcysRqnzc","N6jIfsgxcdOJmMcGiFscxrmlnZl","XjKFfaQnUdAcwUcZoC0cnt7Qn8g","SdIofUL3WdWi6DcizxPcEpKln3e","LBnSfLIb3dghedcngdscsKw2nif","Al1TfqRHvd9kQTcIgCCcT8glnLd","Iyn9fCKJmdxsdzc6jZvcVbm1nwg","OmB3fJX06d9jm3cxbWDc4Nijn8c","Y0fHf2EKWd5mFac67hYcpZbJnVN","B8wyf98eOdPExmcnVVzcteaWndi","FGZ3fMqoVdj6CpcW6rpcr8TBnnf","ZdQDf5t73d8Z8tciuEMcvZDcn8b","Ovu1fM6hfdZuZDcm8GBcjuSLnkc","WA3OfenR4dIEA5cARdQcxHY6nhe","FQyPfStmGdUKPacgWMmcJiGlnqf","Leb5fM9AbdaOufc6uqncO8U2nGf","CCBcfsYfPdCL2CcPeN1cDzgWnIc","T9U9f7eqsdPlgdcbzsqcfhX5nYe","Q7ZOfVdgpdjkJycvIs4cqxuvn7d","N1m4fV2OvdnTcDcN1mfc07TWnLu","NJxNfOw2Hdif0hcOObtccV5lnXf","UtfDfAYQadZOFicMTWTcTmU8nrh"],"text":{"apool":{"nextNum":2,"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"]}},"initialAttributedTexts":{"attribs":{"0":"*0*1+14"},"text":{"0":"还原极致原音细节:NDK音响专用DuCULoN®超低相位噪声OCXO核心特长解析"}}},"align":"","doc_info":{"editors":["7592593332774128587"],"options":["editors","edit_time"],"deleted_editors":null,"option_modified":null},"revision_container_id":"doxcnKaqfrMlPoxFBAl3LRL4oqh","status":{"streaming":{"enabled":false,"expired_at":"1783911866","source":1,"operator_id":"7592593332774128587","is_create_command":true}}}}},"payloadMap":{"PgUEflsbidr1QocsNEgcysRqnzc":{"level":1},"N6jIfsgxcdOJmMcGiFscxrmlnZl":{"level":1},"XjKFfaQnUdAcwUcZoC0cnt7Qn8g":{"level":1}},"extra":{"channel":"saas","pasteRandomId":"c5db5b6f-1a36-47b4-b3dd-3a18bf95bce9","mention_page_title":{},"external_mention_url":{},"isEqualBlockSelection":true},"isKeepQuoteContainer":false,"selection":[{"id":5,"type":"text","selection":{"start":0,"end":134},"recordId":"PgUEflsbidr1QocsNEgcysRqnzc"},{"id":6,"type":"text","selection":{"start":0,"end":226},"recordId":"N6jIfsgxcdOJmMcGiFscxrmlnZl"},{"id":7,"type":"text","selection":{"start":0,"end":101},"recordId":"XjKFfaQnUdAcwUcZoC0cnt7Qn8g"}],"pasteFlag":"c9be0b1a-66e0-4533-897e-6e97ec36c446"}'>ass="ace-line ace-line old-record-id-PgUEflsbidr1QocsNEgcysRqnzc" style="text-align: left;">ass="ace-line ace-line old-record-id-N6jIfsgxcdOJmMcGiFscxrmlnZl" style="text-align: left;">ass="ace-line ace-line old-record-id-XjKFfaQnUdAcwUcZoC0cnt7Qn8g" style="text-align: left;">- 阅读(94)
- [公司资讯]Q-Tech晶振航天军事与高温场景完整解决方案2026年07月04日 05:20
Q-Tech晶振航天军事与高温场景完整解决方案
针对航天军事,高温极端工况的多维度严苛痛点,Q-Tech摒弃民用低成本设计逻辑,全程按照军工MIL标准,航天宇航级可靠性规范设计制造,从晶片选材,精密切角,应力优化,加固封装,预老化筛选,抗辐照工艺,动态稳频补偿全链路专项优化,形成适配极端高温,强振,辐照,宽温变场景的成熟解决方案,彻底解决普通晶振高温漂移大,老化快,抗扰弱,易失效的行业短板.as-block-data="false" data-lark-html-role="root" data-page-id="M1BWdUzTOoEs8vxhpi0cc1hNnfc">ass="lark-record-clipboard" data-lark-record-format="docx/text" data-lark-record-data='{"rootId":"M1BWdUzTOoEs8vxhpi0cc1hNnfc","text":{"initialAttributedTexts":{"text":{"0":"针对航天军事、高温极端工况的多维度严苛痛点,Q-Tech摒弃民用低成本设计逻辑,全程按照军工MIL标准、航天宇航级可靠性规范设计制造,从晶片选材、精密切角、应力优化、加固封装、预老化筛选、抗辐照工艺、动态稳频补偿全链路专项优化,形成适配极端高温、强振、辐照、宽温变场景的成熟解决方案,彻底解决普通晶振高温漂移大、老化快、抗扰弱、易失效的行业短板。"},"attribs":{"0":"*0*1+18*0*1*2+i*0*1+33"}},"apool":{"numToAttrib":{"0":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"1":["author","7592593332774128587"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":true,"pasteRandomId":"9e2b465f-875d-46f9-ba99-f75fe1c0637f","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":18,"type":"text","selection":{"start":0,"end":173},"recordId":"AEr0fNtzYdMlv8cyGQdcvBjrn0b"}],"payloadMap":{},"isCut":false}'>ass="ace-line ace-line old-record-id-AEr0fNtzYdMlv8cyGQdcvBjrn0b" style="text-align: left;">- 阅读(61)
- [公司资讯]Microchip晶振PIC18F-Q35借助CLB功能突破局限2026年07月03日 05:21
Microchip晶振PIC18F-Q35借助CLB功能突破局限
CLB(ConfigurableLogicBlock,可配置逻辑单元)是Microchip为PIC18F-Q35系列专属升级的创新性硬件架构,也是该系列MCU区别于传统通用8位单片机的核心亮点.不同于传统MCU固定的硬件外设架构,CLB是一套独立,可自由配置,可灵活组合的硬件逻辑资源,无需依赖CPU内核运算,无需新增外围分立器件,用户可通过配置软件自由搭建自定义组合逻辑,时序逻辑,触发逻辑,联动逻辑,真正实现"硬件逻辑按需定制",大幅释放MCU性能潜力与设计灵活性.PIC18F-Q35系列集成多组独立CLB逻辑单元,内部搭载可配置门电路,触发器,锁存器,多路选择器,同步/异步触发模块,信号滤波模块,边沿检测模块,支持各类基础逻辑运算与复杂时序逻辑组合.所有CLB逻辑均为纯硬件独立运行,无需CPU参与运算,不占用系统主频与内核资源,响应速度达到硬件纳秒级,时序精准,无软件延时,无抖动,无误差,完美解决软件模拟逻辑的各类缺陷.同时CLB支持在线配置,灵活改版,无需修改硬件电路,仅通过软件参数配置即可完成逻辑功能调整,极大降低产品迭代成本与改板风险.as-block-data="false" data-lark-html-role="root" data-page-id="AQzRdxlf1oIBKAxRofTc1c4Mn3f">ass="lark-record-clipboard" data-lark-record-format="docx/text" data-lark-record-data='{"rootId":"AQzRdxlf1oIBKAxRofTc1c4Mn3f","text":{"initialAttributedTexts":{"text":{"0":"CLB(Configurable Logic Block,可配置逻辑单元)是Microchip为PIC18F-Q35系列专属升级的创新性硬件架构,也是该系列MCU区别于传统通用8位单片机的核心亮点。不同于传统MCU固定的硬件外设架构,CLB是一套独立、可自由配置、可灵活组合的硬件逻辑资源,无需依赖CPU内核运算、无需新增外围分立器件,用户可通过配置软件自由搭建自定义组合逻辑、时序逻辑、触发逻辑、联动逻辑,真正实现“硬件逻辑按需定制”,大幅释放MCU性能潜力与设计灵活性。"},"attribs":{"0":"*0*1*2+11*0*1+40*0*1*2+m*0*1+y"}},"apool":{"numToAttrib":{"0":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"1":["author","7592593332774128587"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":true,"pasteRandomId":"ee8be3c6-f1e5-4525-8a4e-c7840ead28eb","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":8,"type":"text","selection":{"start":0,"end":237},"recordId":"ZFgdfSluFdk1D6cM1EXc5CvFnqh"}],"payloadMap":{},"isCut":false}'>ass="ace-line ace-line old-record-id-ZFgdfSluFdk1D6cM1EXc5CvFnqh" style="text-align: left;"> ass="lark-record-clipboard" data-lark-record-format="docx/text" data-lark-record-data='{"rootId":"AQzRdxlf1oIBKAxRofTc1c4Mn3f","text":{"initialAttributedTexts":{"text":{"0":"PIC18F-Q35系列集成多组独立CLB逻辑单元,内部搭载可配置门电路、触发器、锁存器、多路选择器、同步/异步触发模块、信号滤波模块、边沿检测模块,支持各类基础逻辑运算与复杂时序逻辑组合。所有CLB逻辑均为纯硬件独立运行,无需CPU参与运算,不占用系统主频与内核资源,响应速度达到硬件纳秒级,时序精准、无软件延时、无抖动、无误差,完美解决软件模拟逻辑的各类缺陷。同时CLB支持在线配置、灵活改版,无需修改硬件电路,仅通过软件参数配置即可完成逻辑功能调整,极大降低产品迭代成本与改板风险。"},"attribs":{"0":"*0*1+2w*0*1*2+7*0*1+3p"}},"apool":{"numToAttrib":{"0":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"1":["author","7592593332774128587"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":true,"pasteRandomId":"6817eaf4-9125-46d1-9afc-52a1276d4499","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":9,"type":"text","selection":{"start":0,"end":244},"recordId":"ILpIfE4kzdiE3acjNXgcNhLznFh"}],"payloadMap":{},"isCut":false}'>- 阅读(62)
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Statek用于BLE和MICS应用的医疗级石英晶体晶振
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