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KDS晶振,OSC晶振,DSO213AW晶振
有源晶振,是只晶体本身起振需要外部电压供应,起振后可直接驱动CMOS 集成电路,产品本身已实现与薄型IC(TSSOP封装,TVSOP封装)同样的1mm厚度,断开时的消费电流是15 µA以下,编带包装方式可对应自动搭载及IR回流焊接(无铅对应)产品有几种电压供选1.8V,2.5V,3V3.3V,5V,以应对不同IC产品需要..更多 +

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百利通亚陶晶振,有源晶振,S1613晶振
贴片式石英晶体振荡器,低电压启动功率,并且有多种电压供选择,比如有1.8V,2.5V,3.3V,3.8V,5V等,产品被广泛应用于,平板笔记本,GPS系统,光纤通道,千兆以太网,串行ATA,串行连接SCSI,PCI-Express的SDH / SONET发射基站等领域.符合RoHS/无铅.更多 +

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Raltron晶振,5032晶振,H130A晶振
二脚SMD陶瓷面贴片晶振,表面陶瓷封装,其实是属于压电石英晶振,是高可靠的环保性能,严格的频率分选,编带盘装,可应用于高速自动贴片机焊接,产品本身设计合理,成本和性能良好,产品被广泛应用于平板电脑,MP5,数码相机,USB接口最佳选择,包含RoHS指令豁免的密封玻璃中的铅.更多 +

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Raltron晶振,5070贴片晶振,F13晶振
普通贴片石英晶振外观使用金属材料封装的,具有高稳定性,高可靠性的石英晶体谐振器,晶振外观本身使用金属封装,充分的密封性能,可确保其高可靠性,采用编带包装,外包装采用朔胶盘,可在自动贴片机上对应自动贴装等优势.更多 +

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村田晶振,石英晶振,TAS-3225J晶振,XRCJH13M000F1QA0P0晶振
低频晶振可从7.98MHz起对应,小型,超薄型具备强防焊裂性,石英晶体在极端严酷的环境条件下也能发挥稳定的起振特性,产品本身具有耐热,耐振,耐撞击等优良的耐环境特性,满足无铅焊接以及高温回流温度曲线要求,符合AEC-Q200标准.更多 +

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CITIZEN晶振,压电石英晶体,CM130晶振
此款SMD晶体并且可以承受回流焊接的高温,波峰焊接,回流焊接等,贴片表晶主要特点是该产品排带包装,焊接模式主要使用SMT焊接,给现代SMT工艺带来高速的工作效率,32.768K系列产品本身具有体积小,厚度薄,重量轻等特点,产品本身具备优良的耐热性,耐环境特性,在办公自动化,家电领域,移动通信领域可发挥优良的电气特性,符合无铅标准。更多 +

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EPSON晶振,32.768K贴片晶振,FC-135晶振,FC-135R晶振
小体积SMD时钟晶体谐振器,是贴片音叉晶体,千赫频率元件,应用于时钟模块,智能手机,全球定位系统,因产品本身体积小,SMD编带型,可应用于高性能自动贴片焊接,被广泛应用到各种小巧的便携式消费电子数码时间产品,环保性能符合ROHS/无铅标准.更多 +

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EPSON晶振,贴片晶振,FC-13A晶振
32.768K贴片石英晶体谐振器,又简称为排带包装,这是这产品采用排带盘式包装,使产品在焊接时能采用SMT自动贴片机高速的焊接,大大节约人工,提高工作效率.产品具有优良的耐热性,耐环境特性,可发挥晶振优良的电气特性,符合RoHS规定,满足无铅焊接的高温回流温度曲线要求,金属外壳的封装使得产品在封装时能发挥比陶瓷谐振器外壳更好的耐冲击性.更多 +
- [技术支持]CTS西迪斯完整温度感测解决方案赋能电子设备全域升级2026年09月02日 11:51
CTS西迪斯完整温度感测解决方案赋能电子设备全域升级
市面上多数厂商仅能提供单一品类温控晶振产品,难以覆盖低成本消费级,高精密工业级,高温车载级,超高精度基站级等差异化场景需求,导致研发选型受限,方案适配难度大,产品性能无法突破.作为全球顶尖频率控制与传感解决方案服务商,CTS西迪斯依托数十年精密元器件研发制造积淀,打造了覆盖无源测温,软件温补,硬件温补,高温耐受,恒温稳频的全系列,多层级高质量温度感测与频率稳定解决方案,可精准匹配不同精度,不同工况,不同成本预算的电子产品设计需求.深圳市康华尔电子作为CTS西迪斯官方授权正规代理商,全程提供全系温控晶振选型,技术方案对接,样品测试,原厂正品现货批量供应服务,助力企业快速解决温度漂移难题,优化产品设计,咨询热线:0755-27838351.
13820"],"2":["bold","true"]},"nextnum":3}},"type":"text","referencerecordmap":{},"extra":{"channel":"saas","isequalblockselection":true,"pasterandomid":"e10e0d78-6cbc-4096-9bab-2e3d10de64d8","mention_page_title":{},"external_mention_url":{}},"iskeepquotecontainer":false,"isfromcode":false,"selection":[{"id":26,"type":"text","selection":{"start":0,"end":322},"recordid":"vu0uf6scpdkaxccfiiace8dlnoe"}],"payloadmap":{},"iscut":false}"="">- 阅读(76)
- [新闻资讯]为什么ECS振荡器对网络与通信连接至关重要2026年09月01日 17:49
为什么ECS振荡器对网络与通信连接至关重要
13820"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextnum":3}},"parent_id":"w22sdoktxovvyqxxrqcchvfl6af","comments":[],"author":"7672297316216213820","children":[],"align":"left","type":"text"}},"irdkf20evddcspcp12fchfmtnmc":{"id":"irdkf20evddcspcp12fchfmtnmc","snapshot":{"ai_extra":{"rewrite_command":1},"children":[],"text":{"apool":{"nextnum":2,"numtoattrib":{"0":["author","7672297316216213820"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"]}},"initialattributedtexts":{"text":{"0":"通俗来讲:晶振振荡器就是通信设备的“标准秒表”与“频率标尺”。标尺一旦偏移、抖动、漂移,整个通信链路就会出现错位、失真、丢包、断连。普通通用振荡器精度低、温漂大、噪声高,在温度变化、电压波动、电磁干扰、长时间运行工况下,频率持续偏移,直接造成各类通信顽疾,也是行业长期存在的隐形技术瓶颈。"},"attribs":{"0":"*0*1+40"}}},"type":"text","revisions":[],"hidden":false,"author":"7672297316216213820","align":"left","parent_id":"w22sdoktxovvyqxxrqcchvfl6af","comments":[],"locked":false}},"eyczfe5gjdxckec05yrcgitbnhh":{"id":"eyczfe5gjdxckec05yrcgitbnhh","snapshot":{"text":{"initialattributedtexts":{"text":{"0":"在高速无线通信与工业有线通信场景中,ppm级频率偏差、fs级时序抖动,都会被高速传输链路放大,最终表现为网速波动、通信误码率飙升、无线信道偏移、设备搜网慢、远距离通信失效、多设备组网冲突、云端数据同步失败等严重问题。"},"attribs":{"0":"*1*0+i*1*0*2+g*1*0+22"}},"apool":{"numtoattrib":{"0":["author","7672297316216213820"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextnum":3}},"parent_id":"w22sdoktxovvyqxxrqcchvfl6af","locked":false,"hidden":false,"children":[],"ai_extra":{"rewrite_command":1},"align":"left","type":"text","comments":[],"revisions":[],"author":"7672297316216213820"}},"w22sdoktxovvyqxxrqcchvfl6af":{"id":"w22sdoktxovvyqxxrqcchvfl6af","snapshot":{"type":"page","parent_id":"","revisions":[],"children":["v9bbfuctqdxsqncup3acfbuknrb","gaalfaqtzdvw6scfitqc6ruhnkb","ytdufuwjrdpwhic6nuscd8pontd","ywdpfymkfdqhz0cp7dtcvxhsnvc","pj9dfig3sdmhxscqx3gc8mwmnbb","irdkf20evddcspcp12fchfmtnmc","eyczfe5gjdxckec05yrcgitbnhh","bd6vfevo8dfmbmccinsc2q6ungc","oh5ofqtoedy6lpcu94rcwz7nnhb","yiqffrvp9dprxjczmgsccuxlnme","hrbpfa5vjd5rctched3ckf9encg","ntvcfenovd8fiecghegcx76cnih","r0f9fy1vjdetv2cvbxpcan8dnkc","cbo8fhepldikpych8z1cgamnneh","bfx7fbepydzjxkcrobachz0dnqz","jwqdfssiqdtmolcu7necxfmwnse","dcdpf96sdd9fetccmenckpbdn4b","wjipf1dvmdcd75cfgg3cegnontf","yafdfwjp9dgtjzcpnlhcudacnxe","jpb0fsqaddyeghcatktck7sqnaf","t1w9fu0vldz46ucm9i3c73lsnrg","gia8fif79dvnabcguhrcltuvnxc","l8sifdjyndknk1c7hmpcbu8mnsd","yjo6f3fjkde0yqc0eohchwk9n4e","i6qefuh9kd5vsncgwchcbl9tnmh","wgmyflqdfd9znpc8tpucdo8en4f","fd9yffsh7dhbevc5pmwczjttn3b","qivdfj4f3d05uqconekckg3hnzg","zij7flctkdr63ecqe0ucoiwlnif","cbsufspjjdizgmcqcswckclqnhe","tv3efpyjidahukcbyexc6txanwh","rhxcfm8uudma1vc8frpctngeniu","h6qkf2vjkdctbrc7fe7cf0xonhg","kaq8fmiw6d9bqpco216chaesndd"],"text":{"apool":{"nextnum":2,"numtoattrib":{"0":["author","7672297316216213820"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"]}},"initialattributedtexts":{"attribs":{"0":"*0*1+v"},"text":{"0":"通信稳定的核心基石:为什么ecs振荡器对网络与通信连接至关重要"}}},"doc_info":{"editors":["7672297316216213820"],"options":["editors","edit_time"],"deleted_editors":null,"option_modified":null},"revision_container_id":"doxc6dagjaxllv7cnz1nlteqk0e","comments":[],"locked":false,"hidden":false,"author":"7672297316216213820","align":"","status":{"streaming":{"enabled":false,"expired_at":"1788256137","is_create_command":true,"operator_id":"7672297316216213820","source":1}}}}},"payloadmap":{"pj9dfig3sdmhxscqx3gc8mwmnbb":{"level":1},"irdkf20evddcspcp12fchfmtnmc":{"level":1},"eyczfe5gjdxckec05yrcgitbnhh":{"level":1}},"extra":{"channel":"saas","pasterandomid":"650e1cd8-d03f-4da2-a5c5-3e7596a6f896","mention_page_title":{},"external_mention_url":{},"isequalblockselection":true},"iskeepquotecontainer":false,"selection":[{"id":6,"type":"text","selection":{"start":0,"end":148},"recordid":"pj9dfig3sdmhxscqx3gc8mwmnbb"},{"id":7,"type":"text","selection":{"start":0,"end":144},"recordid":"irdkf20evddcspcp12fchfmtnmc"},{"id":8,"type":"text","selection":{"start":0,"end":108},"recordid":"eyczfe5gjdxckec05yrcgitbnhh"}],"pasteflag":"4c5ed443-758b-4f00-8162-317f50622874"}"="" data-lark-record-format="docx/record" class="lark-record-clipboard" style="font-size:medium">
所有数字通信与无线射频通信,本质都是基于精准时序的信号交互过程.通信设备的发射端与接收端必须保持高度一致的频率节拍,才能完成载波对齐,信号调制,解调解码,数据帧对位,链路握手同步,数据包有序收发.振荡器正是为射频芯片,基带芯片,网口芯片,蓝牙/Wi?Fi模组提供标准基准频率与工作时钟的核心器件.
通俗来讲:晶振振荡器就是通信设备的"标准秒表"与"频率标尺".标尺一旦偏移,抖动,漂移,整个通信链路就会出现错位,失真,丢包,断连.普通通用振荡器精度低,温漂大,噪声高,在温度变化,电压波动,电磁干扰,长时间运行工况下,频率持续偏移,直接造成各类通信顽疾,也是行业长期存在的隐形技术瓶颈.
在高速无线通信与工业有线通信场景中,ppm级频率偏差,fs级时序抖动,都会被高速传输链路放大,最终表现为网速波动,通信误码率飙升,无线信道偏移,设备搜网慢,远距离通信失效,多设备组网冲突,云端数据同步失败等严重问题.
- 阅读(66)
- [新闻资讯]TXC声子晶体技术大幅降低石英谐振腔锚点损耗2026年08月31日 11:37
TXC声子晶体技术大幅降低石英谐振腔锚点损耗
13820"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextnum":3}},"type":"text","referencerecordmap":{},"extra":{"channel":"saas","isequalblockselection":true,"pasterandomid":"e140a008-4030-4b70-93d2-a0237a0cb489","mention_page_title":{},"external_mention_url":{}},"iskeepquotecontainer":false,"isfromcode":false,"selection":[{"id":3,"type":"text","selection":{"start":0,"end":319},"recordid":"u37tfmlupdkrtrcsfbzcemtwnlc"}],"payloadmap":{},"iscut":false}"="" data-lark-record-format="docx/text" class="lark-record-clipboard" style="font-size:medium">
作为全球顶尖频率控制器件研发制造商,TXC台湾晶技深耕石英晶体微观声学结构与损耗机制多年,率先将声子晶体(PhononicCrystal,PnC)人工周期声学结构技术导入石英谐振腔设计与量产工艺,通过声学带隙隔离,振动能量局域束缚,锚点声波阻断机制,从物理根源大幅抑制锚点能量泄漏,显著提升谐振腔Q值,降低等效动态电阻,优化高频噪声性能,让TXC高端AT切割,高频泛音,VCXO/TCXO系列晶振实现更低损耗,更高纯净度,更强稳定性的性能突破.深圳市康华尔电子为TXC台湾晶技官方授权一级代理商,全系搭载声子晶体降噪工艺的原装TXC晶振现货供应,可提供技术选型,方案匹配,样品测试与批量配套服务,咨询热线:0755-27838351.
- 阅读(66)
- [新闻资讯]EPSON爱普生TG2016SLN小尺寸耐高温晶振2026年08月20日 11:15
EPSON爱普生TG2016SLN小尺寸耐高温晶振
TG2016SLN是一款工业级超小尺寸耐高温高精度TCXO温度补偿晶体振荡器,隶属于EPSON爱普生高端工业温补晶振产品线,品牌专为高温恶劣工况,微型化智能终端,长时稳定运行的工业IoT,车载电子,户外无线通信,高精度定位场景专项研发打造.区别于市面普通经济型TCXO晶振温度补偿精度低,耐高温能力弱,尺寸偏大,电压适配窄的短板,TG2016SLN从晶圆选材,电路架构,补偿算法,封装工艺全维度针对性优化,聚焦"高温稳定,微型集成,精准频稳,低耗兼容,长效可靠"五大核心方向,是小体积耐高温高精度时钟场景的迭代升级型核心器件.
13820"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":false,"pasteRandomId":"5efbde79-7293-4790-bdfc-1b51971b40c7","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":5,"type":"text","selection":{"start":6,"end":269},"recordId":"Lx0lfBY0wdgSk1c8uW4cgDzRnbd"}],"payloadMap":{},"isCut":false}'>- 阅读(63)
- [新闻资讯]JAUCH全新J021系列HCMOS输出石英晶体振荡2026年08月19日 09:55
JAUCH全新J021系列HCMOS输出石英晶体振荡
德国知名精密频率控制品牌JAUCH深耕晶振领域数十年,凭借德国精工制造工艺,成熟的频率校准技术与严苛的工业品控标准,重磅推出J021系列HCMOS输出石英晶体振荡器,以超小体积,超低工作电压,低功耗,高兼容,高稳定的核心优势,精准适配新时代低压节能型精密设备场景.深圳市康华尔电子作为JAUCH品牌正规授权代理,全系J021系列新品现货充足,原厂品质溯源可查,可提供选型咨询,样品测试,批量供货,技术对接一站式服务,咨询热线:0755-27838351.13820"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextNum":3}},"type":"text","referenceRecordMap":{},"extra":{"channel":"saas","isEqualBlockSelection":false,"pasteRandomId":"cd21effe-b084-403d-bbea-faa2a5a38968","mention_page_title":{},"external_mention_url":{}},"isKeepQuoteContainer":false,"isFromCode":false,"selection":[{"id":2,"type":"text","selection":{"start":170,"end":401},"recordId":"HyTZfr9J8dbqwZcdwUfciZEwn4f"}],"payloadMap":{},"isCut":false}'>- 阅读(61)
- [新闻资讯]什么是相位噪声和抖动ECS晶振的两大核心解析2026年07月23日 11:48
什么是相位噪声和抖动ECS晶振的两大核心解析
理想的时钟方波信号,每一个上升沿,下降沿都会在绝对精准的时间点准时出现,周期完全均匀,时序绝对规整.但实际电路中,受晶片热噪声,电源纹波,电磁干扰,温度漂移,器件老化等因素影响,时钟边沿会出现微小的,无规律的偏移,时而提前,时而滞后.这种实际时钟边沿与理想标准时间位置的偏差误差,就叫做时钟抖动(Jitter).它是纯粹的时域指标,聚焦"时间准不准".
从频域频谱角度观察,理想晶振输出的时钟信号,能量应该完全集中在单一中心频率点,波形纯净,无杂波,无旁瓣.但实际工作中,时钟信号会产生微小的相位波动,导致信号能量向中心频率两侧扩散,形成类似"裙摆"的噪声基底与离散杂散波.这种时钟信号在频域上的频谱杂散与能量扩散程度,就是相位噪声.它是纯粹的频域指标,聚焦"信号纯不纯",专门用来衡量高频射频,通信系统的时钟质量.134},"recordId":"T2pbf9td4d9YMmcqeYZcVjjDndc"}],"pasteFlag":"d655d475-1551-4535-b13b-9fd16f1755ca"}'>13b-9fd16f1755ca"}'>13-4db8-8311-713bdfb13779","mention_page_title":{},"external_mention_url":{},"isEqualBlockSelection":true},"isKeepQuoteContainer":false,"selection":[{"id":19,"type":"text","selection":{"start":0,"end":110},"recordId":"VogpfYv4dd8DGCchDtqczBmEncf"},{"id":20,"type":"text","selection":{"start":0,"end":71},"recordId":"Pv8uf3BGadam2zcIaf4cEJ90nte"}],"pasteFlag":"d655d475-1551-4535-b13b-9fd16f1755ca"}'>- 阅读(59)
- [新闻资讯]深度解析Rakon瑞康晶振相位噪声与时序抖动2026年07月21日 17:01
深度解析Rakon瑞康晶振相位噪声与时序抖动
依托全套核心技术加持,Rakon瑞康TCXO,OCXO系列产品在相位噪声,时序抖动指标上全面领跑行业,精准适配高端设备严苛标准.
超低相位噪声表现:主流高频TCXO产品可实现-130dBc/Hz@100Hz,-150dBc/Hz@1kHz的优质相噪指标,近端与远端噪声底噪极低,频谱纯净度远超同尺寸传统石英晶振;高端Mercury+™架构OCXO相位噪声性能达到仪器级,军工级水准,可满足基站核心时序,精密测试,航天测控的极致低噪声需求.
极致低时序抖动表现:得益于纯净载波输出与动态误差实时修正,Rakon集成式晶振时序抖动控制在飞秒级,全程时序边沿规整,偏移量极小,无瞬时跳变,无动态漂移,完美匹配高速数据传输,多传感器时序融合,精密同步授时等高规整度时序场景.
全工况指标一致性:依托半导体标准化ASIC制程,Rakon晶振跨批次,跨产品噪声与抖动指标高度统一,无传统分立晶振的参数离散问题,量产品质稳定,彻底解决高端设备批量调试参数不一,良率波动的痛点.130dBc/Hz@100Hz、-150dBc/Hz@1kHz的优质相噪指标,近端与远端噪声底噪极低,频谱纯净度远超同尺寸传统石英晶振;高端Mercury+™架构OCXO相位噪声性能达到仪器级、军工级水准,可满足基站核心时序、精密测试、航天测控的极致低噪声需求。"},"attribs":{"0":"*0*1*2+8*0*1+42"},"rows":{},"cols":{}}},"type":"text"}},"UPabf60rHdLcHoc7vVVcXiRenMc":{"id":"UPabf60rHdLcHoc7vVVcXiRenMc","snapshot":{"ai_extra":{"rewrite_command":1},"align":"left","author":"7592593332774128587","children":[],"comments":[],"hidden":false,"locked":false,"parent_id":"HnDadAmPdoA5p9xWtZscdRWXnFb","revisions":[],"text":{"apool":{"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextNum":3,"attribToNum":{"author,7592593332774128587":0,"ai-extra,{\"is_ai_gen\":true,\"rewrite_command\":1}":1,"bold,true":2}},"initialAttributedTexts":{"text":{"0":"极致低时序抖动表现:得益于纯净载波输出与动态误差实时修正,Rakon集成式晶振时序抖动控制在飞秒级,全程时序边沿规整、偏移量极小,无瞬时跳变、无动态漂移,完美匹配高速数据传输、多传感器时序融合、精密同步授时等高规整度时序场景。"},"attribs":{"0":"*0*1*2+9*0*1+2w"},"rows":{},"cols":{}}},"type":"text"}},"WLr0fFbLndzlVoceqjOcjiIXnJh":{"id":"WLr0fFbLndzlVoceqjOcjiIXnJh","snapshot":{"ai_extra":{"rewrite_command":1},"align":"left","author":"7592593332774128587","children":[],"comments":[],"hidden":false,"locked":false,"parent_id":"HnDadAmPdoA5p9xWtZscdRWXnFb","revisions":[],"text":{"initialAttributedTexts":{"text":{"0":"全工况指标一致性:依托半导体标准化ASIC制程,Rakon晶振跨批次、跨产品噪声与抖动指标高度统一,无传统分立晶振的参数离散问题,量产品质稳定,彻底解决高端设备批量调试参数不一、良率波动的痛点。"},"attribs":{"0":"*1*0*2+8*1*0+2h"}},"apool":{"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"],"2":["bold","true"]},"nextNum":3}},"type":"text"}},"HnDadAmPdoA5p9xWtZscdRWXnFb":{"id":"HnDadAmPdoA5p9xWtZscdRWXnFb","snapshot":{"type":"page","parent_id":"","comments":[],"revisions":[],"locked":false,"hidden":false,"author":"7592593332774128587","children":["XqwcfKI0BdfhMWcqYZPcFgCBnBf","IzrcforjPd7O2Ic7qwuccqtYn7g","PxmHf0efkdpB3scFTVjcaw9OnGe","Qnx8fakzSdltxecQkYRcyQAonre","N5IVf3Wdvdn06xc4U7icJ275nwg","W1VXfpvdydZNHycU8ofcoWCGn2c","JO9mfDtAUdFv4McGxxWcVYG9nic","RMBYfcm7ldgoRIcbQaJcr2K7nGf","M6Gnf3OtIdB5wucg4X9cEw9xnFf","LztxfonFCdrgIBcvaVkcXoWince","Rd4xfLIu3dpt2McJM8rcEDjqn7e","LZRLfIvhndCJegcp5OichLRlnXb","O7P4f51JKdVWCycYqLFceCdUnye","F98efxmeqdgD5gcWSDvcbIR8ntd","H4fgfPd5GdVxbMcMw6bcSHHynhg","WW7qfvgsRdcIb8c0g09cqREqnVh","MPpbf9abJdv2j0chIjgcUFiAnpg","J74Kf6nrRdrsTRcJOJEcTs02n2e","NKP4fRdCWd00sVcK08acvjb3nhd","MAzXfoU1BdDK00cSlhdcw0W1n4c","E3n0ferLqd6ypNcHLK3cL2skntf","QzglfEzORd8ffFcbnxzcqgMLnHh","RXKRfZWlkdhv0ecfEuyc3HA3nwb","Ce8Ff62Bgd0qBGcimFDcyxrgnac","V1mlfGKnAdc4xxcoPnCczfVknjd","U8oefb4xSd32DGcXCsHcdkLQnUh","Al8PfxVATd0iw1cYWe5crjCfnVc","TDasfU4u3d60HucJN6ic1j3Lnjt","GNwvfawVBd9ayEc7xfGcjr9AnCf","A5WVfsXGHdwWIBcpZrBcBlCXnsc","UPabf60rHdLcHoc7vVVcXiRenMc","WLr0fFbLndzlVoceqjOcjiIXnJh","GQODfcQHXdqC3rc6MBfcZnwjnUd","NL7Lf6gtQd2jxqcOnIacCO7cnGe","EaeCfvQIjdnWktc2KX2c1PdOn6b","RDDNfaJ6ndX3WIc4kpZc1QVTnph","WlJAfCqyPd7T6dcFVoycUvQOnnb","IgdifMDV4dCeOGcZ9dAc7xIFntg","OA1Pfp3dsdiex3cgOYucX5Tinfc","QT9Rf5BZfdDjCKcZkpPcUGV5nDb","O6S0fQc6AdZVUBcuHQkcfWNNnCd","SRMcfrpGxdwVL1c2aB7cX3ImnPd","Hi9mfeF3HdIwVnc4MR7cFAdUncg","QLwmfc7H7d9xbuc6ZklcsFmzn6f","ZtMifni7Ad8G5ycSfanciC74nlf"],"text":{"initialAttributedTexts":{"attribs":{"0":"*0*1+12"},"text":{"0":"深度解析Rakon瑞康晶振相位噪声与时序抖动:高端精密设备信号纯净度核心保障"}},"apool":{"nextNum":2,"numToAttrib":{"0":["author","7592593332774128587"],"1":["ai-extra","{\"is_ai_gen\":true,\"rewrite_command\":1}"]}}},"align":"","doc_info":{"editors":["7592593332774128587"],"options":["editors","edit_time"],"deleted_editors":null,"option_modified":null},"revision_container_id":"doxcnS1xAnCI191tusGi4NeCzgh","status":{"streaming":{"enabled":false,"expired_at":"1784624546","is_create_command":true,"operator_id":"7592593332774128587","source":1}}}}},"payloadMap":{"GNwvfawVBd9ayEc7xfGcjr9AnCf":{"level":1},"A5WVfsXGHdwWIBcpZrBcBlCXnsc":{"level":1},"UPabf60rHdLcHoc7vVVcXiRenMc":{"level":1},"WLr0fFbLndzlVoceqjOcjiIXnJh":{"level":1}},"extra":{"channel":"saas","pasteRandomId":"54761baa-937b-4085-b46c-0adf56e3fe7a","mention_page_title":{},"external_mention_url":{},"isEqualBlockSelection":true},"isKeepQuoteContainer":false,"selection":[{"id":30,"type":"text","selection":{"start":0,"end":64},"recordId":"GNwvfawVBd9ayEc7xfGcjr9AnCf"},{"id":31,"type":"text","selection":{"start":0,"end":154},"recordId":"A5WVfsXGHdwWIBcpZrBcBlCXnsc"},{"id":32,"type":"text","selection":{"start":0,"end":113},"recordId":"UPabf60rHdLcHoc7vVVcXiRenMc"},{"id":33,"type":"text","selection":{"start":0,"end":97},"recordId":"WLr0fFbLndzlVoceqjOcjiIXnJh"}],"pasteFlag":"4153b7d2-ed04-4264-a6ae-d40e0fdec566"}'>- 阅读(105)
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CXOLP系列主打超微型紧凑封装设计,依托Statek原厂精密晶片微型化研磨工艺,极简集成化电路架构,高密度封装制程技术,在保留完整振荡性能与可靠性的前提下,极致压缩器件整体体积,封装尺寸远超常规通用晶振的精简水准,完美适配当下智能硬件高密度集成,超轻薄机身,微型化模组的设计趋势.无论是超薄智能穿戴,微型无线传感节点,小型便携医疗设备,还是轻量化智能家居模组,微型工业监测终端,均可无缝适配,助力终端产品实现更小,更薄,更轻的产品形态升级,大幅提升产品外观质感与市场差异化竞争力.138","is_create_command":true,"operator_id":"7592593332774128587","source":1}}}}},"payloadMap":{"G56VfGj7RdavBHcYq4WczPRvnve":{"level":1},"LF1of9b4Ndb0HrcfJuIctGClnqe":{"level":1}},"extra":{"channel":"saas","pasteRandomId":"e15d077d-9a4e-4e02-ba54-ff550d255bd7","mention_page_title":{},"external_mention_url":{},"isEqualBlockSelection":false},"isKeepQuoteContainer":false,"selection":[{"id":7,"type":"text","selection":{"start":7,"end":148},"recordId":"G56VfGj7RdavBHcYq4WczPRvnve"},{"id":8,"type":"text","selection":{"start":0,"end":198},"recordId":"LF1of9b4Ndb0HrcfJuIctGClnqe"}],"pasteFlag":"526da055-4f50-42dc-a071-04857b0e6f72"}'>- 阅读(62)
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