[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"site-settings":3,"editable-solutions":23,"site-product-categories":263,"news-intelligent-battery-management-system-evolution":355},{"id":4,"companyNameCn":5,"companyNameEn":6,"phone":7,"email":8,"addressCn":9,"addressEn":10,"qrLabelCn":11,"qrLabelEn":12,"logoFileId":13,"logoUrl":14,"pageHeroFileId":15,"pageHeroUrl":16,"supportImageFileId":17,"supportImageUrl":18,"mapLat":19,"mapLng":20,"mapZoom":21,"updateTime":22},"1","信天翁半导体（杭州）有限公司","Xintianweng Semiconductor (Hangzhou) Co., Ltd.","0571-85122027","contact@xintianweng.com","浙江省杭州市西湖区天目山路294号杭钢冶金科技大厦","Hanggang Metallurgical Technology Building, No. 294 Tianmushan Road, Xihu District, Hangzhou, Zhejiang, China","公众号二维码","WeChat QR Code","2078057840478547970","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478547970","2084898906209054721","\u002Fapi\u002Fv1\u002Fassets\u002F2084898906209054721","2078057840478547972","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478547972",30.272681,120.123894,17,"2026-07-31T07:20:16",[24,93,122,140,202],{"id":25,"categorySlug":26,"categoryTitle":27,"categoryTitleEn":28,"categoryDescription":29,"categoryDescriptionEn":30,"categoryImageUrl":31,"categoryImageFileId":32,"slug":33,"title":34,"titleEn":35,"summary":36,"summaryEn":37,"imageUrl":31,"imageFileId":32,"videoUrl":38,"paragraphs":39,"paragraphsEn":42,"features":45,"featuresEn":50,"advantages":54,"advantagesEn":59,"specs":64,"specsEn":77,"documentIds":88,"documents":89,"sort":90,"status":91,"updateTime":92},"4","88d86c83","数字电源","IoT","为边缘节点、设备联网与本地数据处理提供 MCU 平台。","MCU platform for edge nodes, device connectivity, and local data processing.","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478548002","2078057840478548002","iot-terminal-control","物联网终端控制解决方案","IoT Terminal Control Solution","面向边缘节点与联网终端，提供本地运算、数据采集、存储扩展和网络连接能力。","Provides local computing, data acquisition, storage expansion, and network connectivity for edge nodes and connected terminals.","",[40,41],"方案面向边缘数据采集、设备状态监测和联网控制终端，以 ALB32F03x 承担本地实时控制与协议处理。","以太网、USB、CAN 和多路串行接口可连接通信模组、传感器与执行器，外部存储接口支持配置、日志与固件管理。",[43,44],"The solution targets edge data acquisition, device status monitoring, and networked control terminals, with ALB32F03x handling local real-time control and protocol processing.","Ethernet, USB, CAN, and multiple serial interfaces connect communication modules, sensors, and actuators; external storage interfaces support configuration, logs, and firmware management.",[46,47,48,49],"Cortex-M4F 本地运算","ADC 与多路传感接口","Ethernet \u002F USB \u002F CAN","QSPI 与外部存储扩展",[51,52,48,53],"Cortex-M4F local computing","ADC and multi-channel sensor interfaces","QSPI and external storage expansion",[55,56,57,58],"统一完成采集、控制与通信","支持多种联网模组和外围设备","提供完整开发资料与工具","适合形成系列化终端平台",[60,61,62,63],"Unified acquisition, control, and communication","Supports various connectivity modules and peripherals","Complete development resources and tools","Suitable for building a series of terminal platforms",[65,68,71,74],{"name":66,"value":67},"适用产品","ALB32F03x",{"name":69,"value":70},"本地运算","最高 288 MHz Cortex-M4F",{"name":72,"value":73},"外围接口","USB \u002F CAN \u002F SPI \u002F I2C \u002F USART",{"name":75,"value":76},"应用","物联网终端、边缘控制与设备联网",[78,80,83,85],{"name":79,"value":67},"Applicable Products",{"name":81,"value":82},"Local Computing","Up to 288 MHz Cortex-M4F",{"name":84,"value":73},"Peripheral Interfaces",{"name":86,"value":87},"Applications","IoT terminals, edge control, and device connectivity",[],[],60,"PUBLISHED","2026-08-17T01:33:03",{"id":94,"categorySlug":95,"categoryTitle":96,"categoryTitleEn":97,"categoryDescription":98,"categoryDescriptionEn":99,"categoryImageUrl":100,"categoryImageFileId":101,"slug":102,"title":103,"titleEn":104,"summary":105,"summaryEn":105,"imageUrl":106,"imageFileId":107,"videoUrl":38,"paragraphs":108,"paragraphsEn":110,"features":111,"featuresEn":113,"advantages":114,"advantagesEn":115,"specs":116,"specsEn":117,"documentIds":118,"documents":119,"sort":120,"status":91,"updateTime":121},"2085254577626599426","automotive","新能源","New Energy","面向车载控制器、车身控制、照明与网关节点。","For vehicle controllers, body control, lighting, and gateway nodes.","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478547986","2078057840478547986","6244dc0a","光伏逆变器解决方案","PV Inverter Solution","test111","\u002Fapi\u002Fv1\u002Fassets\u002F2084898907299573761","2084898907299573761",[109],"test222",[109],[112],"test333",[112],[],[],[],[],[],[],11,"2026-08-17T01:32:30",{"id":123,"categorySlug":95,"categoryTitle":96,"categoryTitleEn":97,"categoryDescription":98,"categoryDescriptionEn":124,"categoryImageUrl":125,"categoryImageFileId":126,"slug":127,"title":128,"titleEn":128,"summary":38,"summaryEn":38,"imageUrl":16,"imageFileId":15,"videoUrl":38,"paragraphs":129,"paragraphsEn":130,"features":131,"featuresEn":132,"advantages":133,"advantagesEn":134,"specs":135,"specsEn":136,"documentIds":137,"documents":138,"sort":139,"status":91,"updateTime":121},"2085255192595451906","Targeting vehicle controllers, body control, lighting, and gateway nodes.","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478548000","2078057840478548000","9611e962","PFC+LLC",[],[],[],[],[],[],[],[],[],[],12,{"id":141,"categorySlug":142,"categoryTitle":143,"categoryTitleEn":144,"categoryDescription":145,"categoryDescriptionEn":146,"categoryImageUrl":147,"categoryImageFileId":148,"slug":149,"title":150,"titleEn":151,"summary":152,"summaryEn":153,"imageUrl":147,"imageFileId":148,"videoUrl":38,"paragraphs":154,"paragraphsEn":157,"features":160,"featuresEn":165,"advantages":170,"advantagesEn":175,"specs":180,"specsEn":190,"documentIds":198,"documents":199,"sort":200,"status":91,"updateTime":201},"3","consumer","消费电子","Consumer Electronics","支持智能家电、消费电子与显示控制终端。","Supports smart home appliances, consumer electronics, and display control terminals.","\u002Fapi\u002Fv1\u002Fassets\u002F2084886097127616513","2084886097127616513","smart-appliance-control","智能家电控制解决方案","Smart Home Appliance Control Solution","面向智能家电和消费电子控制板，提供实时控制、触控显示与多外设连接能力。","For smart home appliance and consumer electronics control boards, providing real-time control, touch display, and multi-peripheral connectivity.",[155,156],"方案适用于智能家电主控、显示控制、传感采集和多执行器协同。","丰富 GPIO、定时器、ADC、USB、串口和外部存储接口可支持完整的终端控制与交互功能。",[158,159],"The solution applies to smart home appliance main control, display control, sensor acquisition, and multi-actuator coordination.","Rich GPIO, timers, ADC, USB, serial ports, and external memory interfaces support complete terminal control and interaction functions.",[161,162,163,164],"多达 116 个快速 GPIO","多路 PWM 与定时器","USB OTG 与串行通信","外部存储与显示接口",[166,167,168,169],"Up to 116 fast GPIOs","Multiple PWM and timers","USB OTG and serial communication","External memory and display interfaces",[171,172,173,174],"单芯片覆盖控制与交互","支持复杂外设组合","便于进行系列化产品开发","提供 Keil 支持包和 SDK",[176,177,178,179],"Single-chip coverage of control and interaction","Supports complex peripheral combinations","Facilitates series product development","Provides Keil support package and SDK",[181,182,185,188],{"name":66,"value":67},{"name":183,"value":184},"GPIO","多达 116 个",{"name":186,"value":187},"存储扩展","QSPI \u002F XMC \u002F SDRAM",{"name":75,"value":189},"智能家电、消费电子与显示控制终端",[191,192,194,196],{"name":79,"value":67},{"name":183,"value":193},"Up to 116",{"name":195,"value":187},"Memory Expansion",{"name":86,"value":197},"Smart home appliances, consumer electronics, and display control terminals",[],[],70,"2026-08-17T01:32:31",{"id":203,"categorySlug":204,"categoryTitle":205,"categoryTitleEn":206,"categoryDescription":207,"categoryDescriptionEn":208,"categoryImageUrl":209,"categoryImageFileId":210,"slug":211,"title":212,"titleEn":213,"summary":214,"summaryEn":215,"imageUrl":209,"imageFileId":210,"paragraphs":216,"paragraphsEn":219,"features":222,"featuresEn":227,"advantages":231,"advantagesEn":236,"specs":241,"specsEn":251,"documentIds":260,"documents":261,"sort":262,"status":91,"updateTime":201},"2","industrial","工业控制","Industrial Control","面向工业设备、仪表、人机界面和自动化控制。","For industrial equipment, instruments, HMI, and automation control.","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478548001","2078057840478548001","industrial-automation-control","工业自动化控制解决方案","Industrial Automation Control Solution","面向工业设备、仪表与自动化控制，提供高性能运算、模拟采集和多协议通信能力。","High-performance computing, analog acquisition, and multi-protocol communication for industrial equipment, instruments, and automation control.",[217,218],"ALB32F03x 集成高性能 Cortex-M4F 内核、丰富定时器、ADC、DMA 与通信接口，适合工业控制器和设备节点。","双 QSPI、XMC、SDRAM、以太网和多路串行接口可用于扩展存储、显示、人机界面与工业网络。",[220,221],"The ALB32F03x integrates a high-performance Cortex-M4F core, rich timers, ADC, DMA, and communication interfaces, suitable for industrial controllers and device nodes.","Dual QSPI, XMC, SDRAM, Ethernet, and multiple serial interfaces enable expansion of storage, display, HMI, and industrial networks.",[223,224,225,226],"最高 288 MHz 运算性能","3×12 位 5.33 MSPS ADC","XMC、双 QSPI 与 SDRAM 扩展","10\u002F100M Ethernet MAC",[228,229,230,226],"Up to 288 MHz computing performance","3x 12-bit 5.33 MSPS ADC","XMC, dual QSPI, and SDRAM expansion",[232,233,234,235],"兼顾实时控制与数据处理","降低外部接口扩展复杂度","支持多种工业通信外围","配套 SDK 与调试烧写工具",[237,238,239,240],"Balances real-time control and data processing","Reduces external interface expansion complexity","Supports multiple industrial communication peripherals","Comes with SDK and debug\u002Fprogramming tools",[242,243,246,249],{"name":66,"value":67},{"name":244,"value":245},"最高频率","288 MHz",{"name":247,"value":248},"模拟采集","3 个 12 位 ADC，最多 24 通道",{"name":75,"value":250},"工业设备、仪表、自动化控制与人机界面",[252,253,255,258],{"name":79,"value":67},{"name":254,"value":245},"Max Frequency",{"name":256,"value":257},"Analog Acquisition","3x 12-bit ADC, up to 24 channels",{"name":86,"value":259},"Industrial equipment, instruments, automation control, and HMI",[],[],20,[264,320,331,343],{"id":265,"name":266,"nameEn":267,"slug":268,"sort":269,"icon":270,"imageFileId":271,"imageUrl":272,"description":273,"descriptionEn":274,"enabled":275,"depth":276,"children":277},"100","微控制器","Microcontrollers","microcontroller",10,"https:\u002F\u002Fimages.unsplash.com\u002Fphoto-1518770660439-4636190af475?auto=format&fit=crop&w=1600&q=82","2078057840478547969","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478547969","ALB32MCU 32位高性能微控制器。","ALB32MCU 32-bit high-performance microcontrollers and the associated development ecosystem.",true,1,[278,288,297,305,312],{"id":279,"parentId":265,"name":280,"nameEn":281,"slug":282,"sort":283,"icon":38,"description":284,"descriptionEn":285,"enabled":275,"depth":286,"children":287},"2077997708168163330","实时控制MCU","Real-Time Control MCU","real-time-mcu",0,"ALB32R系列 实时控制MCU","ALB32R Series Real-Time Control MCU",2,[],{"id":289,"parentId":265,"name":290,"nameEn":291,"slug":292,"sort":293,"icon":38,"description":294,"descriptionEn":295,"enabled":275,"depth":286,"children":296},"2077997899742998529","通用型MCU","Mainstream MCU","gp-mcu",5,"ALB32F系列 通用型MCU","ALB32F Series Mainstream MCU",[],{"id":298,"parentId":265,"name":299,"nameEn":300,"slug":301,"sort":269,"icon":38,"description":302,"descriptionEn":303,"enabled":275,"depth":286,"children":304},"2085264704089935873","增强型MCU","Enhanced MCU","enhanced-mcu","ALB32E系列 增强型MCU","ALB32E Series Enhanced MCU",[],{"id":306,"parentId":265,"name":307,"slug":308,"sort":309,"icon":38,"description":310,"enabled":275,"depth":286,"children":311},"2090638206032695297","AI MCU","ai-mcu",15,"ALB32 AI MCU",[],{"id":313,"parentId":265,"name":314,"nameEn":315,"slug":316,"sort":262,"icon":38,"description":317,"descriptionEn":318,"enabled":275,"depth":286,"children":319},"2085264981492813825","电机MCU","Motor-Specific SoC","motor-mcu","ALB32M系列 电机MCU","ALB32M Series Motor-Specific SoC",[],{"id":321,"name":322,"nameEn":323,"slug":324,"sort":262,"icon":325,"imageFileId":326,"imageUrl":327,"description":328,"descriptionEn":329,"enabled":275,"depth":276,"children":330},"110","电池管理","Battery Management","battery-management","https:\u002F\u002Fimages.unsplash.com\u002Fphoto-1593941707882-a5bba14938c7?auto=format&fit=crop&w=1600&q=82","2078057840478547977","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478547977","面向动力电池、储能系统与多串电芯采样保护应用。","For traction batteries, energy storage systems, and multi-cell sampling and protection applications.",[],{"id":332,"name":333,"nameEn":334,"slug":335,"sort":336,"icon":337,"imageFileId":338,"imageUrl":339,"description":340,"descriptionEn":341,"enabled":275,"depth":276,"children":342},"120","电源管理","Power Management","power-management",30,"https:\u002F\u002Fimages.unsplash.com\u002Fphoto-1509391366360-2e959784a276?auto=format&fit=crop&w=1600&q=82","2078057840478547982","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478547982","提供同步降压、稳压和系统电源轨所需的电源管理器件。","Power management devices for synchronous buck conversion, voltage regulation, and system power rails.",[],{"id":344,"name":345,"nameEn":346,"slug":347,"sort":348,"icon":349,"imageFileId":350,"imageUrl":351,"description":352,"descriptionEn":353,"enabled":275,"depth":276,"children":354},"140","功率器件","Power Devices","power-device",40,"https:\u002F\u002Fimages.unsplash.com\u002Fphoto-1558346490-a72e53ae2d4f?auto=format&fit=crop&w=1600&q=82","2078057840478547983","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478547983","提供各类功率器件。","Offers a range of power devices.",[],{"id":356,"categoryId":357,"category":358,"title":364,"titleEn":365,"slug":366,"coverUrl":367,"coverFileId":368,"summary":369,"summaryEn":370,"contentHtml":371,"contentHtmlEn":372,"author":373,"tags":374,"status":91,"publishedAt":375,"viewCount":376,"createTime":362,"updateTime":377,"deleted":283},"32004","6001",{"id":357,"name":359,"nameEn":360,"slug":361,"sort":269,"createTime":362,"updateTime":363,"deleted":283},"行业观察","Industry Insights","industry-insights","2026-07-10T11:49:34","2026-08-16T11:08:57","智能电池管理系统正在从集中采样走向区域控制与数字化诊断","Smart BMS Shifts from Centralized Sampling to Zone Control and Digital Diagnostics","intelligent-battery-management-system-evolution","\u002Fapi\u002Fv1\u002Fassets\u002F2078057840478547981","2078057840478547981","TI 白皮书讨论了区域控制、集中式 MCU、智能电池接线盒、数字孪生与机器学习在下一代电池管理系统中的应用。","A TI white paper discusses zone control, centralized MCUs, smart battery junction boxes, digital twins, and machine learning in next-generation battery management systems.","\u003Cp>电动汽车和储能系统对安全、续航、寿命与可维护性的要求不断提高，电池管理系统也从单一电压采样器演进为覆盖监测、计算、诊断和通信的分布式系统。\u003C\u002Fp>\n\u003Ch2>区域控制减少线束并提升扩展性\u003C\u002Fh2>\n\u003Cp>区域或域控制架构可以把靠近电池包的采样、执行与通信功能集中到更明确的节点，缩短模拟信号路径，减少线束复杂度，并为不同电池包容量提供更灵活的扩展方式。\u003C\u002Fp>\n\u003Ch2>集中式计算与智能接线盒协同\u003C\u002Fh2>\n\u003Cp>集中式 MCU 可统一执行荷电状态、健康状态和热管理算法，智能电池接线盒则承担电流、电压、绝缘和接触器状态监测。两者通过冗余通信和故障诊断提升系统完整性。\u003C\u002Fp>\n\u003Ch2>数字孪生与机器学习进入工程流程\u003C\u002Fh2>\n\u003Cp>数字孪生可以将实验、仿真和车辆运行数据连接起来，机器学习则可用于模型参数校正、异常识别和寿命预测。导入这些方法时仍需建立可解释性、边界条件和功能安全验证流程。\u003C\u002Fp>\n\u003Cp>\u003Cstrong>资料来源：\u003C\u002Fstrong>Texas Instruments，\u003Ca href=\"https:\u002F\u002Fwww.ti.com\u002Flit\u002Fwp\u002Fslyy226a\u002Fslyy226a.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">查看原文 PDF\u003C\u002Fa>\u003C\u002Fp>","\u003Cp>As electric vehicles and energy storage systems demand higher safety, range, longevity, and maintainability, battery management systems have evolved from simple voltage samplers to distributed systems covering monitoring, computation, diagnostics, and communication.\u003C\u002Fp>\n\u003Ch2>Zone Control Reduces Wiring and Enhances Scalability\u003C\u002Fh2>\n\u003Cp>Zone or domain control architectures consolidate sampling, actuation, and communication functions near the battery pack into more defined nodes, shortening analog signal paths, reducing wiring complexity, and offering more flexible scalability for different battery pack capacities.\u003C\u002Fp>\n\u003Ch2>Centralized Computing and Smart Junction Box Synergy\u003C\u002Fh2>\n\u003Cp>A centralized MCU can uniformly execute state-of-charge, state-of-health, and thermal management algorithms, while the smart battery junction box handles current, voltage, insulation, and contactor status monitoring. Together, they enhance system integrity through redundant communication and fault diagnostics.\u003C\u002Fp>\n\u003Ch2>Digital Twins and Machine Learning Enter Engineering Workflows\u003C\u002Fh2>\n\u003Cp>Digital twins connect experimental, simulation, and vehicle operation data, while machine learning can be used for model parameter calibration, anomaly identification, and life prediction. When adopting these methods, it is still necessary to establish explainability, boundary conditions, and functional safety validation processes.\u003C\u002Fp>\n\u003Cp>\u003Cstrong>Source:\u003C\u002Fstrong> Texas Instruments, \u003Ca href=\"https:\u002F\u002Fwww.ti.com\u002Flit\u002Fwp\u002Fslyy226a\u002Fslyy226a.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">View original PDF\u003C\u002Fa>\u003C\u002Fp>","来源：Texas Instruments","[\"电池管理\", \"汽车电子\", \"技术趋势\"]","2026-07-07T09:00:00","35","2026-09-16T02:14:20"]