How to Cut the Cord and Save Energy with Sub-GHz Wireless Networks for HVAC Systems

2024-07-12 SILICON LABS Official Website
transceivers,wireless MCUs,SoC,sub-GHz wireless solutions transceivers,wireless MCUs,SoC,sub-GHz wireless solutions transceivers,wireless MCUs,SoC,sub-GHz wireless solutions transceivers,wireless MCUs,SoC,sub-GHz wireless solutions

HVAC (heating, ventilation, and air conditioning) systems are essential for indoor comfort and health. However, they can be complex to install and maintain and often represent one of the largest energy expenses in most homes.


Wireless network solutions that can connect sensors, actuators, controllers, and other devices without the need for wires offer a promising way to tackle concerns asSoCiated with HVAC systems.


Benefits of Wireless Communication in HVAC Systems

Wireless communication enhances HVAC systems by seamlessly integrating them with smart home devices, granting convenient remote access and enabling data-driven intelligence for optimized performance and personalized comfort. This all leads to a deeper understanding of user behavior and environmental conditions.


Furthermore, wireless networks offer numerous technical advantages over traditional wired setups, including flexible adjustments, easy scalability, robust communication, and cost-effective operation. Integrating edge intelligence with AI/ML enables predictive maintenance, anomaly detection, and personalized comfort control, ultimately transforming the HVAC landscape with real-time data analysis, predictive capabilities, and innovative features like voice control.


Sub-GHz Wireless: The Optimal Solution for Reliable and Efficient HVAC Connectivity

Not all wireless networks are created equal. Each wireless technology presents unique characteristics and trade-offs that determine its suitability for specific smart HVAC applications.


Sub-GHz wireless networks, operating in the industrial, scientific, and medical (ISM) bands below 1 GHz (e.g., 315 MHz, 433 MHz, 868 MHz, 915 MHz), offer distinct advantages over higher-frequency technologies like Wi-Fi, Bluetooth, Zigbee, and Z-Wave, making them an ideal choice for HVAC applications. Their superior range allows them to effortlessly cover large areas and penetrate obstacles like walls, which is essential in HVAC systems where components are often spread out. Additionally, sub-GHz devices boast lower power consumption, enabling battery or energy harvesting operation for extended periods, perfect for HVAC components not directly connected to AC power. Sub-GHz networks also offer enhanced reliability and security due to reduced interference and congestion, ensuring seamless data transmission for critical HVAC control and monitoring functions while maintaining robust encryption for data protection.


Comparing Sub-GHz Wireless Technologies

When replacing traditional wires in HVAC systems, several sub-GHz wireless technologies present viable options:

Wi-SUN (Wireless Smart Ubiquitous Network), based on IEEE 802.15.4g, is ideal for large-scale mesh networks—devices connected directly in a web-like structure—found in smart grid, city, and building applications. It offers flexibility for diverse subsystems through both high-speed OFDM (Orthogonal Frequency Division Multiplexing) and low-power FSK (Frequency Shift Keying) physical layers (PHYs). However, Wi-SUN faces challenges like the lack of a unified network layer protocol, diverse regional regulations, and complex certification processes.

Z-Wave, a low-power, low-data rate mesh network technology, excels in simple HVAC applications like thermostats and sensors, with the added benefit of extended range with Z-Wave Long Range. Z-Wave, while easy to use, has limitations like vendor dependency, incompatibility with other wireless technologies, and limited bandwidth.

Proprietary solutions offer customization and optimization for specific HVAC needs but may lack interoperability, have high development and maintenance costs, and risk obsolescence due to their closed nature.


Understanding these trade-offs is crucial in selecting the right technology for a specific HVAC system.


SILICON LABS’ Powerful Sub-GHz Solutions

Silicon Labs leads in sub-GHz wireless solutions, offering a diverse portfolio of transceivers and wireless MCUs for various HVAC needs.


Silicon Labs’ EFR32FG2x family, built on a multi-core architecture with Cortex® M33 and Cortex® M0+ cores, provides secure, high-performance, low-power options for designers. The EFR32FG23 excels in low-power systems, prioritizing RF performance and supporting Wi-SUN and proprietary architectures. The EFR32FG25, Silicon Labs’ most adaptable SoC, accommodates high-throughput OFDM, low-power FSK, and long-range O-QPSK PHYs, offering flexibility for different RF requirements. The EFR32FG28 supports multiple RF options, including Wi-SUN and Amazon Sidewalk, alongside proprietary solutions.


Silicon Labs also provides pin-compatible Z-Wave options with the EFR32ZG23 and EFR32ZG28 for seamless integration and faster time to market.


The Future of HVAC Connectivity

Sub-GHz wireless networks present a compelling solution for HVAC wire replacement. They provide long-range, low-power, reliable connectivity and the ability to enable AI-driven intelligence. Careful consideration of available technologies is key to successful implementation.

授权代理商:世强先进(深圳)科技股份有限公司
技术资料,数据手册,3D模型库,原理图,PCB封装文件,选型指南来源平台:世强硬创平台www.sekorm.com
现货商城,价格查询,交期查询,订货,现货采购,在线购买,样品申请渠道:世强硬创平台电子商城www.sekorm.com/supply/
概念,方案,设计,选型,BOM优化,FAE技术支持,样品,加工定制,测试,量产供应服务提供:世强硬创平台www.sekorm.com
集成电路,电子元件,电子材料,电气自动化,电机,仪器全品类供应:世强硬创平台www.sekorm.com
  • +1 赞 0
  • 收藏
  • 评论 0

本文由玄子转载自SILICON LABS Official Website,原文标题为:How to Cut the Cord and Save Energy with Sub-GHz Wireless Networks for HVAC Systems,本站所有转载文章系出于传递更多信息之目的,且明确注明来源,不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。

相关研发服务和供应服务

评论

   |   

提交评论

全部评论(0

暂无评论

相关推荐

【经验】EFR32xg SoC的Bin,S37,EBL和HEX目标文件有什么不同?

我们在使用Silicon Labs EFR32xg SoC开发 EmberZnet 时发现,当我们的固件编译结束之后可以得到各种各样的结果,包括 S37,GBL,HEX和BIN格式的目标文件,那么这些文件到底有什么区别的?在什么情况下我们要用到对应的文件呢?本文将具体介绍。

2020-07-11 -  设计经验 代理服务 技术支持 批量订货

【经验】使用串口来升级EFR32FG23无线SoC芯片固件的方法

本文主要介绍如何使用BootLoader——NCP UART XMODEM工程实现使用串口升级Silicon Labs EFR32FG23无线SoC芯片固件的方法。

2022-09-01 -  设计经验 代理服务 技术支持 批量订货

【经验】教你如何修改EFR32MG系列SOC ZigBee工程的CCA阈值

Silicon Labs公司的EFR32MG系列SOC单芯片已被广泛应用于智能家居市场产品中。对于ZigBee协议栈,无论单播还是广播,数据包在发送之前MAC层会检测CCA(Clear Channel Assessment ),如果检测到接收信号强度低于阈值,数据包就不发送。因此需要根据实际情况来设置合理的CCA阈值,本文就指导大家来设置EFR32MG系列SOC的CCA阈值。

2019-01-31 -  设计经验 代理服务 技术支持 批量订货
October 2024  - SILICON LABS  - 用户指南  - Version 1.2 代理服务 技术支持 批量订货 查看更多版本

Silicon Labs(芯科科技) Wi-Fi 芯片和模块选型指南

目录- Wi-Fi SoC and Module Selector Guide    Wi-Fi Lineup    Wi-Fi Development Kits    IoT Wi-Fi Technology Leader    Wi-Fi Applications    Company Profile   

型号- SLEXP8022A,SIWX915,RS9116,WF200,SIWX917,RS9116X-DB-EVK1,RS9116X-SB-EVK1,RS9116X-SB-EVK2

2023/10/3  - SILICON LABS  - 选型指南 代理服务 技术支持 批量订货 查看更多版本

AN1416: SiWx917 SoC Memory Map Application Note

型号- SIWG917M100MGTBA,SIWG917M121XGTBA,SIWG917,SIWG917M111XGTBA,SIWG917M110LGTBA,SIWX917,SIWG917M111MGTBA,SIWG917M141XGTBA

October 2024  - SILICON LABS  - 应用笔记或设计指南  - Version 1.1 代理服务 技术支持 批量订货

【经验】Matter入门指导3:基于GSDK创建Matter - SoC Lighting over Thread工程

本文主要介绍使用EFR32MG24 Breakout Board,基于GSDK创建Matter - SoC Lighting over Thread工程的方法,我们后面会使用这个工程的固件来做Matter over Thread灯设备的控制实验。

2023-05-18 -  设计经验 代理服务 技术支持 批量订货

【经验】EFR32FG23无线SoC使用I2C读写MSA311传感器寄存器的方法

本文以 Silicon Labs 的 EFR32FG23 无线SoC芯片的 rail_soc_simple_trx 工程为例,介绍如何使用EFR32FG23 芯片 I²C外设来读写敏芯微 MSA311三轴加速度传感器寄存器的方法。

2023-06-29 -  设计经验 代理服务 技术支持 批量订货

成功案例:FG2x Sub-GHz SoC助力思科优化Wi-SUN大规模网络管理

Silicon Labs与思科正在合作激发Sub-GHz/Wi-SUN网络创新。通过将其CoAP Simple Management Protocol (CSMP)解决方案引入芯科科技的EFR32FG25和EFR32FG28 Sub-GHz SoC来实现这一扩展能力。

2024-10-16 -  应用方案 代理服务 技术支持 批量订货

【经验】校准使用TCXO晶振的无线SoC芯片EFR32FG23频偏的方法

当无线SoC芯片EFR32FG23使用TCXO晶振时,无法通过修改Ctune值的方式来校准频偏。本文主要介绍通过设置频率offset值的方式,来校准使用TCXO晶振的EFR32FG23芯片频偏的方法。

2022-09-25 -  设计经验 代理服务 技术支持 批量订货

【经验】解析芯科科技SoC芯片EFR32FG23系列调试的六种常见问题

使用EFR32FG23系列SoC芯片设计的无线模块,如果出现无线模块无法正常连接时,可以通过如下几种方法来排查问题。本文通过芯科科技(Silicon Labs)BRD4001A母板的J-link来连接无线模块。

2022-11-24 -  设计经验 代理服务 技术支持 批量订货

Wi-SUN入门指导9:WSBRD使用OTA DFU升级Wi-SUN SoC Meter固件

本文主要介绍WSBRD使用OTA DFU升级Wi-SUN SoC Meter固件的方法。

2024-10-14 -  设计经验 代理服务 技术支持 批量订货

【经验】解析芯科科技无线SoC芯片EFR32FG23如何通过设置CTUNE值来校准频偏

芯科科技的无线SoC芯片EFR32FG23内部有高频晶振的可调电容,所以高频晶振旁边不需要再加负载电容。本文主要介绍如何使用Simplicity Studio 5 软件设置该芯片的CTUNE值,实现改变芯片内部的负载电容值,从而实现校准芯片频偏的方法。

2022-03-03 -  设计经验 代理服务 技术支持 批量订货

EFR32FG23 无线 SoC 产品系列数据表

型号- EFR32XG23,EFR32FG23B010F128GM40-C,EFR32FG23A010F256GM48-C,EFR32FG23B010F512IM40-C,EFR32FG23A020F512GM48-C,EFR32FG23A021F512GM40-C,EFR32FG23A010F512GM48-C,EFR32FG23A010F256GM40-C,EFR32FG23B010F512IM48-C,EFR32FG23A020F512GM40-C,EFR32FG23A010F512GM40-C,EFR32FG23B021F512IM40-C,EFR32FG23A011F512GM40-C,EFR32FG23B020F512IM40-C,EFR32FG23 FAMILY,EFR32FG23A020F256GM48-C,EFR32FG23B020F512IM48-CR,EFR32FG23,EFR32FG23B020F128GM40-C,EFR32FG23B021F512IM48-C,EFR32,EFR32FG23B020F512IM48-C,EFR32FG23A020F256GM40-C

April, 2023  - SILICON LABS  - 数据手册  - Rev. 1.2 代理服务 技术支持 批量订货

Wi-SUN入门指导8:生成Wi-SUN SoC Meter OTA DFU升级所需的固件

本文主要以BRD4270B开发板为例,介绍生成 Wi-SUN SoC Meter OTA DFU升级所需固件的方法。

2024-10-14 -  设计经验 代理服务 技术支持 批量订货
展开更多

电子商城

查看更多

品牌:SILICON LABS

品类:Wireless SoC

价格:¥14.7732

现货: 21,250

品牌:SILICON LABS

品类:Flex Gecko Wireless SoC

价格:¥78.9741

现货: 2,495

品牌:SILICON LABS

品类:Z-Wave Gecko Wireless SoC

价格:¥22.2062

现货: 2,076

品牌:SILICON LABS

品类:Z-Wave SoC

价格:¥43.0175

现货: 1,650

品牌:SILICON LABS

品类:Wireless Gecko SoC

价格:¥8.1764

现货: 103,128

品牌:SILICON LABS

品类:Mighty Gecko Multi-Protocol Wireless SoC

价格:¥27.0929

现货: 90,767

品牌:SILICON LABS

品类:Wireless SoC

价格:¥31.7756

现货: 88,300

品牌:SILICON LABS

品类:Wireless SoC

价格:¥19.9760

现货: 84,918

品牌:SILICON LABS

品类:Wireless SoC

价格:¥35.3989

现货: 82,727

品牌:SILICON LABS

品类:Wireless Gecko SoC

价格:¥10.4994

现货: 59,949

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

现货市场

查看更多

品牌:SILICON LABS

品类:Wireless SoC

价格:¥15.1400

现货:1,455

品牌:紫光展锐

品类:蜂窝通信芯片

价格:¥5.9241

现货:81,000

品牌:海思

品类:IC

价格:¥61.6424

现货:39,900

品牌:TI

品类:芯片

价格:¥7.1100

现货:33,668

品牌:Advanced Digital Chips

品类:集成芯片

价格:¥3.7800

现货:31,435

品牌:上海贝岭

品类:RS-485 Transceivers

价格:¥0.5000

现货:10,000

品牌:上海贝岭

品类:RS-232 Transceivers

价格:¥0.9500

现货:10,000

品牌:海思

品类:IC

价格:¥60.3549

现货:6,500

品牌:海思

品类:IC

价格:¥63.7125

现货:3,425

品牌:汇顶科技

品类:NB-IoT系列芯片(SoC)

价格:¥9.4889

现货:2,800

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

品牌:

品类:

价格:

现货:

服务

查看更多

IoT射频性能测试

支持 3Hz ~ 26.5GHz射频信号中心频率测试;9kHz ~ 3GHz频率范围内Wi-SUN、lora、zigbee、ble和Sub-G 灵敏度测量与测试,天线阻抗测量与匹配电路调试服务。支持到场/视频直播测试,资深专家全程指导。

实验室地址: 深圳/苏州 提交需求>

查看更多

授权代理品牌:接插件及结构件

查看更多

授权代理品牌:部件、组件及配件

查看更多

授权代理品牌:电源及模块

查看更多

授权代理品牌:电子材料

查看更多

授权代理品牌:仪器仪表及测试配组件

查看更多

授权代理品牌:电工工具及材料

查看更多

授权代理品牌:机械电子元件

查看更多

授权代理品牌:加工与定制

世强和原厂的技术专家将在一个工作日内解答,帮助您快速完成研发及采购。
我要提问

954668/400-830-1766(工作日 9:00-18:00)

service@sekorm.com

研发客服
商务客服
服务热线

联系我们

954668/400-830-1766(工作日 9:00-18:00)

service@sekorm.com

投诉与建议

E-mail:claim@sekorm.com

商务合作

E-mail:contact@sekorm.com

收藏
收藏当前页面