[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"layout-global":3,"blog-detail-electronic-component-lead-time-pricing-risk":84,"blog-related-articles-electronic-component-lead-time-pricing-risk":114,"blog-categories-sidebar":135,"article-related-products-electronic-component-lead-time-pricing-risk":166},{"msg":4,"code":5,"data":6},"操作成功",200,{"navTop":7,"footer":36},[8,18,24,30],{"id":9,"parentId":10,"title":11,"name":11,"label":11,"type":12,"url":13,"target":14,"icon":15,"sort":16,"children":17},6,0,"Electronic Components","LINK","\u002Felectronic-components","_self",null,10,[],{"id":19,"parentId":10,"title":20,"name":20,"label":20,"type":12,"url":21,"target":14,"icon":15,"sort":22,"children":23},7,"Manufacturers","\u002Fmanufacturers",20,[],{"id":25,"parentId":10,"title":26,"name":26,"label":26,"type":12,"url":27,"target":14,"icon":15,"sort":28,"children":29},8,"Request Quote","\u002Frequest-quote",30,[],{"id":31,"parentId":10,"title":32,"name":32,"label":32,"type":12,"url":33,"target":14,"icon":15,"sort":34,"children":35},9,"Tutorials","\u002Fresource",40,[],{"groups":37,"logoUrl":15,"socialLinks":15,"contactPhone":15,"contactEmail":80,"address":81,"description":82,"copyright":83},[38,54,65],{"id":39,"title":40,"sort":10,"links":41},2,"Products",[42,44,46,50],{"id":16,"label":43,"href":13,"target":14,"icon":15,"sort":16},"All Products",{"id":45,"label":20,"href":21,"target":14,"icon":15,"sort":22},11,{"id":47,"label":48,"href":49,"target":14,"icon":15,"sort":28},12,"Applications","\u002Fapplications",{"id":51,"label":52,"href":53,"target":14,"icon":15,"sort":34},19,"Series","\u002Fseries",{"id":55,"title":56,"sort":22,"links":57},3,"Services",[58,61],{"id":59,"label":60,"href":27,"target":14,"icon":15,"sort":16},13,"Submit Your Bom",{"id":62,"label":63,"href":64,"target":14,"icon":15,"sort":22},21,"Frequently Asked Questions","\u002Ffaq",{"id":66,"title":67,"sort":28,"links":68},4,"Company",[69,73,76],{"id":70,"label":71,"href":72,"target":14,"icon":15,"sort":16},16,"About Us","\u002Fabout-us",{"id":74,"label":75,"href":33,"target":14,"icon":15,"sort":22},17,"Blog",{"id":77,"label":78,"href":79,"target":14,"icon":15,"sort":28},18,"Contact Octatronics","\u002Fcontact-us","support@octatronics.com","RM502C, 5\u002FF, HO KING COMM CTR, 2-16 FAYUEN ST, MONGKOK KOWLOON, HONG KONG","Octatronics is a trusted sourcing platform for semiconductors and electronic components.","@2026 Octatronics. All rights reserved.",{"id":9,"title":85,"slug":86,"summary":87,"content":88,"coverImage":89,"category":90,"tags":91,"author":92,"viewCount":93,"isPublished":94,"isTop":95,"seoTitle":96,"seoDesc":97,"seoKeywords":98,"faqJson":99,"publishTime":100,"categoryId":66,"authorId":39,"articleCategory":101,"articleAuthor":103,"delFlag":95,"createBy":108,"createTime":109,"updateBy":108,"updateTime":110,"productCategoryIds":111,"manufacturerIds":112,"applicationIds":113},"Electronic Component Lead Times, Pricing, and Supply Chain Risk Explained","electronic-component-lead-time-pricing-risk","Understand electronic component lead times, how they differ from stock availability, why pricing changes, and how buyers can reduce supply chain risk.","\u003Cp>Electronic component lead time is the estimated time required to receive a part when it is not immediately available from stock. For engineers and buyers, lead time is more than a date on a quote. It is a signal about capacity, demand, supplier priority, allocation risk, and the probability that a BOM can support production without redesign or schedule delay.\u003C\u002Fp>\u003Cp>In a stable market, lead time may be a planning input. In a tight market, it becomes a production risk. A component with a long or volatile lead time can delay builds, raise cost, force spot buys, increase counterfeit exposure, or trigger an emergency redesign.\u003C\u002Fp>\u003Ch2>Quick Answer: What Is Electronic Component Lead Time?\u003C\u002Fh2>\u003Cp>Electronic component lead time is the time between placing an order and receiving usable parts. It can refer to factory lead time, distributor incoming stock, backorder timing, or quoted delivery. A short lead time usually means the supply path is healthy, but buyers still need to verify stock quantity, orderable suffix, packaging, lifecycle, and traceability.\u003C\u002Fp>\u003Cp>ECIA tracks market trends and lead times across major component categories, including semiconductors, passives, and electromechanical components. High-service distributors such as DigiKey also distinguish between stock on hand, incoming stock, backorders, and manufacturer standard lead time.\u003C\u002Fp>\u003Ch2>Lead Time Is Not the Same as Stock\u003C\u002Fh2>\u003Cp>Stock is what a supplier can ship now. Lead time is what the supplier estimates for future supply. A part can have zero stock and a reasonable lead time if new inventory is already on order. Another part can have available stock today but a risky future if factory lead time is long and no replenishment is scheduled.\u003C\u002Fp>\u003Cp>Buyers should separate four fields: current stock, incoming stock, factory lead time, and quote validity. These fields answer different questions. Current stock tells whether the immediate build can be supported. Incoming stock tells whether distributor replenishment is expected. Factory lead time tells how long new supply may take. Quote validity tells how long price and delivery commitments remain open.\u003C\u002Fp>\u003Ch2>Common Lead-Time Terms\u003C\u002Fh2>\u003Ctable>\u003Ctbody>\u003Ctr>\u003Ctd>Term\u003C\u002Ftd>\u003Ctd>Meaning\u003C\u002Ftd>\u003Ctd>Why It Matters\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Current stock\u003C\u002Ftd>\u003Ctd>Quantity available to ship now\u003C\u002Ftd>\u003Ctd>Supports prototype or immediate production\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Incoming stock\u003C\u002Ftd>\u003Ctd>Parts already ordered by a distributor\u003C\u002Ftd>\u003Ctd>May support future builds if allocation does not change\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Factory lead time\u003C\u002Ftd>\u003Ctd>Manufacturer estimate for new production supply\u003C\u002Ftd>\u003Ctd>Useful for planning replenishment and volume orders\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Backorder\u003C\u002Ftd>\u003Ctd>Order placed for future fulfillment\u003C\u002Ftd>\u003Ctd>May be subject to date changes and allocation\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Allocation\u003C\u002Ftd>\u003Ctd>Supplier limits supply among customers\u003C\u002Ftd>\u003Ctd>Forecast, customer status, and order timing become important\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>NCNR\u003C\u002Ftd>\u003Ctd>Non-cancelable, non-returnable order\u003C\u002Ftd>\u003Ctd>Reduces supplier risk but increases buyer commitment\u003C\u002Ftd>\u003C\u002Ftr>\u003C\u002Ftbody>\u003C\u002Ftable>\u003Ch2>Why Lead Times Increase\u003C\u002Fh2>\u003Cp>Lead times increase when demand exceeds available supply, when production capacity is limited, when a supplier prioritizes higher-volume programs, when raw materials or packages are constrained, or when logistics and qualification steps slow the supply chain. They can also increase when a product is nearing end of life and suppliers reduce inventory commitment.\u003C\u002Fp>\u003Cp>Not every lead-time increase means a shortage. Sometimes a manufacturer is normalizing inventory after an overstock cycle. Sometimes a distributor is waiting for new reels that are already scheduled. The key is trend direction. A lead time moving from 8 weeks to 12 weeks is different from a lead time jumping from 8 weeks to 40 weeks while authorized stock disappears.\u003C\u002Fp>\u003Ch2>How Pricing Connects to Lead Time\u003C\u002Fh2>\u003Cp>Pricing often follows availability. When stock is broad and lead times are short, buyers can compare channels and negotiate. When stock is limited and lead times are extending, suppliers may shorten quote validity, raise prices, increase MOQ, or require NCNR terms.\u003C\u002Fp>\u003Cp>Open-market prices can move faster than authorized-channel prices. That can be useful for urgent builds, but it also increases counterfeit and traceability risk. A low price in a constrained market should be investigated carefully. It may reflect old stock, mixed lots, incomplete documentation, or an unverified seller.\u003C\u002Fp>\u003Ch2>Risk by Component Type\u003C\u002Fh2>\u003Cp>Different components carry different lead-time patterns. Memory can be affected by data-center and AI demand. Power devices can be affected by automotive, industrial, and energy demand. Connectors may have tooling or plating constraints. Passives are usually broad, but specific case sizes, voltage ratings, or automotive grades can tighten. MCUs and analog ICs may be exposed to mature-node capacity or package constraints.\u003C\u002Fp>\u003Cp>A practical sourcing review should therefore score risk at the exact part-number level, not only the commodity level. The same manufacturer may have one stable regulator and one constrained regulator because they use different packages, die, test flows, or end-market demand.\u003C\u002Fp>\u003Ch2>How to Read Lead-Time Signals\u003C\u002Fh2>\u003Col>\u003Cli>Compare factory lead time with authorized distributor stock.\u003C\u002Fli>\u003Cli>Check whether incoming stock has committed dates or only general estimates.\u003C\u002Fli>\u003Cli>Review price movement across multiple authorized channels.\u003C\u002Fli>\u003Cli>Ask whether the part is active, NRND, obsolete, or under PCN\u002FEOL notice.\u003C\u002Fli>\u003Cli>Check whether the exact package and packing suffix are available.\u003C\u002Fli>\u003Cli>Look for sudden reductions in quote validity or new NCNR terms.\u003C\u002Fli>\u003Cli>Monitor whether alternates are also tightening.\u003C\u002Fli>\u003C\u002Fol>\u003Ch2>Lead Time and Engineering Decisions\u003C\u002Fh2>\u003Cp>Lead time should be part of design review. A technically perfect component can be a poor production choice if it has no stock, a 52-week factory lead time, a single source, and no replacement. Engineers should review sourcing risk before schematic freeze and again before production release.\u003C\u002Fp>\u003Cp>For high-risk components, design teams can create flexible footprints, approve pin-compatible alternates, support multiple memory densities, or choose components with stronger second-source paths. Procurement teams can support this by providing current stock, historical lead time, supplier notes, and lifecycle data before the final BOM is approved.\u003C\u002Fp>\u003Ch2>A Practical Lead-Time Risk Score\u003C\u002Fh2>\u003Ctable>\u003Ctbody>\u003Ctr>\u003Ctd>Risk Factor\u003C\u002Ftd>\u003Ctd>Low Risk\u003C\u002Ftd>\u003Ctd>High Risk\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Stock\u003C\u002Ftd>\u003Ctd>Multiple authorized sources with volume stock\u003C\u002Ftd>\u003Ctd>No stock or only open-market stock\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Lead time\u003C\u002Ftd>\u003Ctd>Stable and short for several months\u003C\u002Ftd>\u003Ctd>Increasing, volatile, or above build schedule\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Lifecycle\u003C\u002Ftd>\u003Ctd>Active and recommended for new designs\u003C\u002Ftd>\u003Ctd>NRND, obsolete, EOL, or unclear\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Alternates\u003C\u002Ftd>\u003Ctd>Approved alternatives exist\u003C\u002Ftd>\u003Ctd>Single-source with no validated replacement\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Package\u003C\u002Ftd>\u003Ctd>Common package and packing options\u003C\u002Ftd>\u003Ctd>Unusual package, limited reel options, special suffix\u003C\u002Ftd>\u003C\u002Ftr>\u003Ctr>\u003Ctd>Quality\u003C\u002Ftd>\u003Ctd>Traceable authorized supply\u003C\u002Ftd>\u003Ctd>Unknown lot, weak paperwork, mixed seller history\u003C\u002Ftd>\u003C\u002Ftr>\u003C\u002Ftbody>\u003C\u002Ftable>\u003Ch2>How Octatronics Buyers Can Prepare an RFQ\u003C\u002Fh2>\u003Cp>A good RFQ should include manufacturer part number, acceptable manufacturers, quantity, target date, preferred packaging, annual usage, allowed alternates, lifecycle constraints, compliance needs, and whether partial shipment is acceptable. For critical parts, include whether date code limits, COO requirements, or traceability documents are required.\u003C\u002Fp>\u003Cp>This information helps suppliers distinguish a real production requirement from a speculative request. It also helps identify alternatives faster when the original component has a long lead time.\u003C\u002Fp>\u003Ch2>Key Takeaways\u003C\u002Fh2>\u003Col>\u003Cli>Lead time is a planning signal, not a guarantee.\u003C\u002Fli>\u003Cli>Stock, incoming stock, factory lead time, and quote validity should be reviewed separately.\u003C\u002Fli>\u003Cli>Pricing pressure often increases when lead times extend.\u003C\u002Fli>\u003Cli>Lead-time risk should be evaluated at the exact orderable part number level.\u003C\u002Fli>\u003Cli>The best time to approve alternatives is before production is constrained.\u003C\u002Fli>\u003C\u002Fol>\u003Ch2>Sources and Further Reading\u003C\u002Fh2>\u003Col>\u003Cli>ECIA: Market trends and component lead times\u003C\u002Fli>\u003Cli>DigiKey: Product lead-time guidance\u003C\u002Fli>\u003Cli>Global Electronics Association: memory constraints and lead-time impact\u003C\u002Fli>\u003C\u002Fol>\u003Ch2>FAQ\u003C\u002Fh2>\u003Ch3>Is distributor stock better than factory lead time?\u003C\u002Fh3>\u003Cp>Distributor stock is better for immediate needs, but factory lead time is important for replenishment and production planning. Both should be checked.\u003C\u002Fp>\u003Ch3>Why do prices rise when lead times rise?\u003C\u002Fh3>\u003Cp>Longer lead times often indicate tighter supply. When supply tightens, quote validity can shorten and sellers may increase prices or require stronger order commitments.\u003C\u002Fp>\u003Ch3>When should a buyer approve alternate parts?\u003C\u002Fh3>\u003Cp>Alternates should be approved before production release or before lead times become critical. Emergency replacement usually creates more engineering and quality risk.\u003C\u002Fp>","\u002Fprofile\u002Fupload\u002Fblog\u002F2026\u002F06\u002F14\u002Felectronic-component-lead-time-pricing-risk-cover.webp","Market Insights","electronic component lead time, component pricing, supply chain risk, backorder, allocation, sourcing","Emily Roberts",265,"1","0","Electronic Component Lead Times, Pricing, and Supply Chain Risk","Understand electronic component lead times, factory lead time, distributor stock, pricing pressure, allocation risk, and practical sourcing workflows.","electronic component lead time, component pricing, supply chain risk, backorder, allocation","[{\"question\":\"What does electronic component lead time mean?\",\"answer\":\"It is the estimated time between placing an order and receiving usable parts, especially when current stock is not enough.\"},{\"question\":\"Is lead time the same as stock availability?\",\"answer\":\"No. Stock is what can ship now, while lead time estimates future supply from incoming distributor inventory or manufacturer production.\"},{\"question\":\"How can buyers reduce lead-time risk?\",\"answer\":\"Buyers can monitor stock and factory lead time, approve alternatives, check lifecycle status, and share forecasts early.\"}]","2026-05-23T10:30:00.000+08:00",{"createBy":15,"createTime":15,"updateBy":15,"updateTime":15,"remark":15,"id":66,"name":90,"slug":102,"orderNum":15,"delFlag":15},"market-insights",{"createBy":15,"createTime":15,"updateBy":15,"updateTime":15,"remark":15,"id":39,"name":92,"avatar":104,"role":105,"expertise":106,"intro":107,"facebook":15,"youtube":15,"linkedin":15,"twitter":15,"delFlag":15},"\u002Fprofile\u002Fupload\u002F2026\u002F05\u002F03\u002Femily-roberts_20260503222557A001.jpg","Electronics Sourcing Specialist","Component procurement, lifecycle status, obsolete parts, supply chain risk","Emily Roberts is an electronics sourcing specialist with experience in component procurement, supplier evaluation, and lifecycle management. Her articles focus on helping engineers and purchasing teams identify reliable parts, compare alternatives, and reduce supply chain risk.\n\nShe writes about electronic component availability, obsolete and hard-to-find parts, datasheet verification, manufacturer comparison, RFQ preparation, and practical sourcing strategies. Emily’s content is especially useful for OEMs, contract manufacturers, and buyers working with complex BOMs or urgent procurement requirements.","admin","2026-05-24T07:20:28.000+08:00","2026-06-24T01:43:06.000+08:00",[],[],[],[115,125],{"id":34,"title":116,"slug":117,"summary":118,"content":15,"coverImage":119,"category":90,"tags":120,"author":92,"viewCount":66,"isPublished":94,"isTop":95,"seoTitle":15,"seoDesc":15,"seoKeywords":15,"faqJson":15,"publishTime":121,"categoryId":66,"authorId":39,"articleCategory":122,"articleAuthor":123,"delFlag":15,"createBy":15,"createTime":124,"updateBy":15,"updateTime":15,"productCategoryIds":15,"manufacturerIds":15,"applicationIds":15},"Last-Time-Buy Decisions: Stockpile, Bridge Buy, or Redesign?","last-time-buy-decision-framework","An EOL notice with a last-time-buy deadline forces one of three choices: lifetime stockpile, bridge buy, or redesign. This framework covers the demand math, the hidden costs, and the decision criteria for each.","\u002Fprofile\u002Fupload\u002Fblog\u002F2026\u002F07\u002F22\u002Flast-time-buy-decision-framework-cover.webp","last time buy, LTB, lifetime buy, bridge buy, EOL stockpile, obsolescence management, redesign decision","2026-07-28T10:00:00.000+08:00",{"createBy":15,"createTime":15,"updateBy":15,"updateTime":15,"remark":15,"id":66,"name":90,"slug":102,"orderNum":15,"delFlag":15},{"createBy":15,"createTime":15,"updateBy":15,"updateTime":15,"remark":15,"id":39,"name":92,"avatar":104,"role":15,"expertise":15,"intro":15,"facebook":15,"youtube":15,"linkedin":15,"twitter":15,"delFlag":15},"2026-07-22T23:56:24.000+08:00",{"id":19,"title":126,"slug":127,"summary":128,"content":15,"coverImage":129,"category":90,"tags":130,"author":92,"viewCount":131,"isPublished":94,"isTop":95,"seoTitle":15,"seoDesc":15,"seoKeywords":15,"faqJson":15,"publishTime":132,"categoryId":66,"authorId":39,"articleCategory":133,"articleAuthor":134,"delFlag":15,"createBy":15,"createTime":109,"updateBy":15,"updateTime":15,"productCategoryIds":15,"manufacturerIds":15,"applicationIds":15},"How to Reduce BOM Sourcing Risk for Electronic Component Procurement","reduce-bom-sourcing-risk","A practical guide for reducing BOM sourcing risk, including lifecycle checks, lead-time review, alternates, compliance, traceability, and RFQ preparation.","\u002Fprofile\u002Fupload\u002Fblog\u002F2026\u002F06\u002F14\u002Freduce-bom-sourcing-risk-cover.webp","BOM sourcing risk, component procurement, alternates, lifecycle management, RFQ, supply chain risk",112,"2026-05-23T10:40:00.000+08:00",{"createBy":15,"createTime":15,"updateBy":15,"updateTime":15,"remark":15,"id":66,"name":90,"slug":102,"orderNum":15,"delFlag":15},{"createBy":15,"createTime":15,"updateBy":15,"updateTime":15,"remark":15,"id":39,"name":92,"avatar":104,"role":15,"expertise":15,"intro":15,"facebook":15,"youtube":15,"linkedin":15,"twitter":15,"delFlag":15},[136,143,149,155,159],{"createBy":108,"createTime":137,"updateBy":108,"updateTime":138,"remark":139,"id":55,"name":140,"slug":141,"orderNum":142,"delFlag":95},"2026-04-10 07:22:11","2026-04-30 21:31:18","元件选型差异、Pin-to-Pin 替代方案、封装与硬核硬件设计指南。\n\n这个分类非常适合做 SEO 流量。\n\n主要写：\n\n电子元器件选型指南\n某类元件怎么选\n某个型号与替代型号区别\nPin-to-Pin 替代方案\n封装差异\n参数对比\n选型错误避坑\n\n适合文章例子：\n\nHow to Choose the Right MOSFET for Your Circuit\nSMD Capacitor Package Sizes Explained\nLDO vs Switching Regulator: Which One Should You Use?\nTUSB3410VF vs TUSB3410VFG4: What Is the Difference?\n\n这个分类以后最容易带来精准询盘，因为搜索这些内容的人很多是工程师或采购。","Components Guide","components-guide",1,{"createBy":108,"createTime":144,"updateBy":108,"updateTime":145,"remark":146,"id":39,"name":147,"slug":148,"orderNum":39,"delFlag":95},"2026-04-10 07:20:22","2026-04-30 21:31:47","半导体底层原理、系统架构深度解析、高阶技术白皮书\n\n这个分类适合做专业度和 EEAT。\n\n主要写：\n\n半导体基础原理\n电路基础\n系统架构\n通信接口\n电源设计基础\n模拟\u002F数字\u002F射频知识\n工程概念解释\n\n适合文章例子：\n\nWhat Is a PN Junction?\nWhat Does an Op-Amp Do?\nI2C vs SPI vs UART Explained\nWhat Is a Voltage Reference?\nHow ADC Resolution Affects Measurement Accuracy\n\n注意：\n这个分类不要写成纯科普百科，要尽量和元器件、BOM、选型、应用场景连接起来。否则容易有流量但转化弱。","Technical Knowledge","technical-knowledge",{"createBy":108,"createTime":150,"updateBy":108,"updateTime":151,"remark":152,"id":142,"name":153,"slug":154,"orderNum":55,"delFlag":95},"2026-04-03 22:42:14","2026-04-30 21:32:17","厂商并购、新厂动态、全球半导体政策及原厂重大公告。\n\n这个分类适合让网站看起来“活跃”，但不是最优先的 SEO 分类。\n\n主要写：\n\n半导体厂商并购\n新工厂扩产\n政策变化\n原厂公告\n行业重大事件\nAI、汽车、工业、存储、功率半导体动态\n\n适合文章例子：\n\nSemiconductor Industry Trends in 2026\nHow AI Demand Is Changing the Semiconductor Supply Chain\nMajor Power Semiconductor Trends for Industrial Electronics\n\n但是要注意：\nIndustry News 内容时效性强，过期快。 刚上线可以放 2–3 篇撑门面，但不要把主要精力放这里。","Industry News","semiconductor-industry-news",{"createBy":108,"createTime":156,"updateBy":108,"updateTime":157,"remark":158,"id":66,"name":90,"slug":102,"orderNum":66,"delFlag":95},"2026-04-10 07:33:53","2026-04-30 21:32:30","交期（Lead Time）趋势分析、价格波动、供应链风险预警（采购必看）。\n\n这个分类对 Octatronics 很有价值，因为它更贴近采购决策。\n\n主要写：\n\nLead time 趋势\n价格波动\n缺货风险\nEOL 风险\n供应链风险\n采购策略\n替代料策略\nBOM 成本控制\n\n适合文章例子：\n\nElectronic Component Lead Times: What Buyers Should Watch\nWhy Some IC Prices Rise During Shortage Cycles\nHow to Reduce BOM Sourcing Risk\nObsolete Components: How to Plan Before Production Stops\n\n这个分类是给采购、供应链经理、OEM、EMS 看，非常适合引导 RFQ。",{"createBy":108,"createTime":160,"updateBy":108,"updateTime":161,"remark":162,"id":163,"name":164,"slug":165,"orderNum":163,"delFlag":95},"2026-04-10 07:34:12","2026-04-30 21:36:18","新产品系列上架、EOL（停产）预警、Datasheet 核心变更说明\n\n\n这个分类本身合理，但名字有一点偏“公司自己产品更新”的感觉。Octatronics 不是原厂，所以 Product Updates 需要定义清楚。\n\n可以写：\n\n新品系列介绍\nEOL 停产预警\nPCN 变更\nDatasheet 更新\n原厂推荐替代型号\n某系列器件更新\n某个品牌产品线变化\n\n适合文章例子：\n\nHow to Read an EOL Notice for Electronic Components\nWhat Is a Product Change Notification?\nDatasheet Revision: What Engineers Should Check\nHow to Evaluate Manufacturer Recommended Replacements\n\n如果想更准确，我建议把分类名改成：\n\nProduct Updates & Lifecycle\n\n或者：\n\nProduct Lifecycle Updates\n\n这样更符合电子元器件分销商的内容定位。",5,"Product News","product-news",[167,176,186,193,202,211,218,226,235,245],{"id":168,"mpn":169,"title":-1,"manufacturer":170,"manufacturerSlug":171,"categoryName":172,"categorySlug":173,"categorySlugPath":174,"shortDesc":-1,"coverImageUrl":-1,"slug":175},155286,"LTC6363HDCB","Analog Devices","analog-devices","Operational Amplifiers, Instrumentation Amplifiers and Buffer Amplifiers","operational-amplifiers-instrumentation-buffer-amplifiers","integrated-circuits-ics\u002Famplifier-and-linear-ics\u002Foperational-amplifiers-instrumentation-buffer-amplifiers","analog-devices-ltc6363hdcb",{"id":177,"mpn":178,"title":-1,"manufacturer":179,"manufacturerSlug":180,"categoryName":181,"categorySlug":182,"categorySlugPath":183,"shortDesc":184,"coverImageUrl":-1,"slug":185},467307,"M29DW323DT70ZE6E","Micron Technology Inc.","micron-technology-inc","Flash Memory","flash-memory","integrated-circuits-ics\u002Fmemory-ics\u002Fflash-memory","Package: Tray | Package \u002F Case: 48-TFBGA | Mounting Type: Surface Mount | Supply Voltage: 2.7V ~ 3.6V | Memory Size: 32Mbit | Operating Temperature: -40°C ~ 85°C (TA)","micron-technology-inc-m29dw323dt70ze6e",{"id":187,"mpn":188,"title":-1,"manufacturer":170,"manufacturerSlug":171,"categoryName":189,"categorySlug":190,"categorySlugPath":191,"shortDesc":-1,"coverImageUrl":-1,"slug":192},138549,"LT3756IMSE#TRPBF","LED Drivers","led-drivers","integrated-circuits-ics\u002Fpower-management-ics\u002Fled-drivers","analog-devices-lt3756imse-trpbf",{"id":194,"mpn":195,"title":-1,"manufacturer":196,"manufacturerSlug":197,"categoryName":198,"categorySlug":199,"categorySlugPath":200,"shortDesc":-1,"coverImageUrl":-1,"slug":201},437771,"TPS77328DGKG4","Texas Instruments","texas-instruments","Voltage Regulators - Linear","voltage-regulators-linear","integrated-circuits-ics\u002Fpower-management-ics\u002Fvoltage-regulators-linear","texas-instruments-tps77328dgkg4",{"id":203,"mpn":204,"title":-1,"manufacturer":205,"manufacturerSlug":206,"categoryName":207,"categorySlug":208,"categorySlugPath":209,"shortDesc":-1,"coverImageUrl":-1,"slug":210},331949,"8N4SV75BC-0162CDI8","Renesas","renesas","Programmable Timers and Oscillators","programmable-timers-and-oscillators","integrated-circuits-ics\u002Fclock-and-timing-ics\u002Fprogrammable-timers-and-oscillators","renesas-8n4sv75bc-0162cdi8",{"id":212,"mpn":213,"title":-1,"manufacturer":170,"manufacturerSlug":171,"categoryName":214,"categorySlug":215,"categorySlugPath":216,"shortDesc":-1,"coverImageUrl":-1,"slug":217},169611,"MAX274ACWI+","Active Filters","active-filters","integrated-circuits-ics\u002Finterface-ics\u002Factive-filters","analog-devices-max274acwi-2",{"id":219,"mpn":220,"title":-1,"manufacturer":196,"manufacturerSlug":197,"categoryName":221,"categorySlug":222,"categorySlugPath":223,"shortDesc":224,"coverImageUrl":-1,"slug":225},71723,"CC2511F16RSPR","Microcontrollers","microcontrollers","integrated-circuits-ics\u002Fembedded-processors-and-controllers\u002Fmicrocontrollers","2.4GHz RF Transceiver, 8051 MCU, 16KB Flash, USB, VQFN","texas-instruments-cc2511f16rspr",{"id":227,"mpn":228,"title":-1,"manufacturer":229,"manufacturerSlug":230,"categoryName":231,"categorySlug":232,"categorySlugPath":233,"shortDesc":-1,"coverImageUrl":-1,"slug":234},377888,"L4969UR","STMicroelectronics","stmicroelectronics","Specialized ICs","specialized-ics","integrated-circuits-ics\u002Fspecialized-ics","stmicroelectronics-l4969ur",{"id":236,"mpn":237,"title":-1,"manufacturer":238,"manufacturerSlug":239,"categoryName":240,"categorySlug":241,"categorySlugPath":242,"shortDesc":243,"coverImageUrl":-1,"slug":244},99454,"VS-MUR3020WT-N3","Vishay","vishay","Rectifier Diodes","rectifier-diodes","discrete-semiconductors\u002Fdiodes\u002Frectifier-diodes","DIODE RECTIFIER DIODE, Rectifier Diode","vishay-vs-mur3020wt-n3",{"id":246,"mpn":247,"title":-1,"manufacturer":170,"manufacturerSlug":171,"categoryName":248,"categorySlug":249,"categorySlugPath":250,"shortDesc":-1,"coverImageUrl":-1,"slug":251},176248,"MAX518BESA-T","Digital to Analog Converters (DAC)","digital-to-analog-converters-dac","integrated-circuits-ics\u002Fdata-acquisition-ics\u002Fdigital-to-analog-converters-dac","analog-devices-max518besa-t"]