市場調查報告書
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1503441
到 2030 年窄頻物聯網 (NB-IoT) 晶片組市場預測:按部署、組件、設備、應用程式、最終用戶和地區進行的全球分析Narrowband IoT (NB-IoT) Chipset Market Forecasts to 2030 - Global Analysis By Deployment (In-Band, Stand-Alone and Guard), Component (Services, Software and Hardware), Device, Application, End User and By Geography |
根據Stratistics MRC預測,2024年全球窄頻物聯網(NB-IoT)晶片組市場規模將達到16.9679億美元,預測期內複合年成長率為38.0%,到2030年將達到117.1931億美元。 。
窄頻物聯網 (NB-IoT) 晶片組是專用為物聯網 (IoT) 裝置中的低功耗廣域 (LPWA)通訊而設計的硬體元件。它以低頻寬運行,可在各種物聯網應用中實現高效且經濟高效的連接。 NB-IoT 晶片組擴大了覆蓋範圍,讓設備即使在室內或地下等惡劣環境中也能通訊。 NB-IoT 晶片組優先考慮電源效率,一次充電即可運作數年。
根據最新資料,連接的物聯網設備數量約為144億。到 2031 年,這一數字預計將成長到 254.4 億台物聯網設備。
用於健康監測的穿戴式設備的需求增加
穿戴式健康監測設備的需求不斷成長是窄頻物聯網(NB-IoT)晶片組市場採用的主要促進因素。這些晶片組具有低功耗、擴展的覆蓋範圍和成本效益,使其成為將穿戴式裝置連接到蜂巢式網路的理想選擇。隨著人們對預防性醫療保健的日益關注以及持續監測心率和血壓等生命徵象的需求,NB-IoT 晶片組可實現從穿戴式設備到醫療保健提供者和用戶智慧型手機的無縫連接和資料傳輸。該技術有利於即時監測、及時干預和個人化醫療服務,推動穿戴式健康監測市場對 NB-IoT 晶片組的需求。
與 LPWA 技術的激烈競爭
LPWA(低功耗廣域)技術的激烈競爭是窄頻物聯網(NB-IoT)晶片組市場的主要限制因素。 LoRa 和 Sigfox 等 LPWA 技術提供替代的低功耗、廣域連接解決方案,並與 NB-IoT 直接競爭。這種競爭可能會給 NB-IoT 晶片組的市場引入帶來定價壓力和挑戰。此外,LPWA 選項的多樣性可能會讓消費者感到困惑並減慢決策流程,從而進一步抑制 NB-IoT 晶片組的採用。
智慧城市趨勢增加
智慧城市的興起為窄頻物聯網(NB-IoT)晶片組市場帶來了巨大機會。 NB-IoT 技術可實現城市環境中各種設備的高效且經濟高效的連接,從而實現更智慧的基礎設施和服務。 NB-IoT 晶片組的低功耗和廣泛的覆蓋範圍使其非常適合在整個城市部署感測器和致動器,以實現智慧照明、廢棄物管理和交通控制等應用。隨著城市尋求提高效率和永續性,對 NB-IoT 晶片組的需求正在推動該領域的創新和投資。
低速資料傳輸應用的限制
在低速資料傳輸應用中,窄頻物聯網(NB-IoT)晶片組市場主要因其頻寬窄而面臨限制。低頻寬限制了一次可以發送的資料量,導致資料傳輸速度比寬頻技術慢。因此,需要高資料吞吐量的任務,例如多媒體串流和大檔案傳輸,不適合 NB-IoT。此外,由於 NB-IoT 是窄頻,因此在無線電活動較高的環境中容易受到干擾和訊號劣化,從而影響資料可靠性。
COVID-19 的爆發對窄頻物聯網 (NB-IoT) 晶片組市場產業產生了重大影響。最初,全球供應鏈中斷導致原料和零件短缺,導致晶片組生產延遲。此外,封鎖措施和行動限制阻礙了製造和分銷流程,加劇了供應鏈挑戰。然而,隨著疫情的發展,醫療保健、物流、智慧城市等各個領域對遠端監控解決方案的需求導致對NB-IoT晶片組的需求激增。
預計硬體產業在預測期內將是最大的
由於各行業擴大採用 NB-IoT 技術,窄頻物聯網 (NB-IoT) 晶片組市場的硬體部分正在穩步成長。這一成長是由於物聯網 (IoT) 應用對低功耗廣域 (LPWA) 連接解決方案的需求不斷成長而推動的。由於 NB-IoT 具有增加覆蓋範圍、降低功耗和成本效率等優勢,企業正在增加對 NB-IoT 晶片組硬體的投資,以實現高效的物聯網部署。此外,晶片組設計的進步,例如提高電源效率和提高性能,正在進一步推動市場成長。
預計智慧農業領域在預測期內複合年成長率最高
窄頻物聯網 (NB-IoT) 晶片組市場中智慧農業領域的成長受到多種因素的推動。 NB-IoT 技術提供了一種經濟高效、低功耗的連接解決方案,非常適合精密農業、牲畜監測和作物管理等農業應用。 NB-IoT 的遠距功能和深度滲透使農民能夠有效地遠端監控和管理其資產,從而提高生產力並降低營運成本。此外,窄頻物聯網驅動的感測器和物聯網設備的整合可以實現即時資料收集和分析,使農民能夠做出資料主導的決策,以實現最佳的資源利用和作物產量。
北美窄頻物聯網 (NB-IoT) 晶片組的成長主要由多個因素推動。物聯網設備在智慧城市、醫療保健和農業等各行業的日益普及正在推動對 NB-IoT 技術的需求。通訊基礎設施的進步和5G網路的部署為NB-IoT的實施提供了合適的環境。此外,支援物聯網部署和創新應用程式出現的監管措施進一步推動了市場成長。
由於製造業、農業和智慧城市等各行業擴大採用物聯網設備,亞太地區窄頻物聯網 (NB-IoT) 晶片組市場正在顯著成長。此外,政府推動智慧基礎設施發展和物聯網解決方案部署的措施也進一步加速了市場成長。該地區人口的快速成長和快速都市化也促進了 NB-IoT 應用的擴展,特別是在智慧電錶和資產追蹤等領域。此外,亞太地區是主要晶片製造商和通訊公司的所在地,刺激了市場的創新和競爭。
According to Stratistics MRC, the Global Narrowband IoT (NB-IoT) Chipset Market is accounted for $1696.79 million in 2024 and is expected to reach $11719.31 million by 2030 growing at a CAGR of 38.0% during the forecast period. A narrowband IoT (NB-IoT) chipset is a specialized hardware component designed for low-power, wide-area (LPWA) communication in Internet of Things (IoT) devices. It operates on narrow bandwidths, enabling efficient and cost-effective connectivity for various IoT applications. NB-IoT chipsets offer extended coverage, allowing devices to communicate in challenging environments like deep indoors or underground. They prioritize power efficiency, enabling devices to operate for years on a single battery charge.
According to the latest data, there are approximately 14.4 billion connected IoT devices. This figure is expected to grow by 25.44 billion total IoT devices by 2031.
Rising demand for wearable devices for health monitoring
The rising demand for wearable health monitoring devices is a key driver in the adoption of narrowband IoT (NB-IoT) chipsets market. These chipsets offer low-power consumption, extended coverage, and cost-effectiveness, making them ideal for connecting wearable devices to cellular networks. With an increasing focus on preventive healthcare and the desire for continuous monitoring of vital signs, such as heart rate and blood pressure, NB-IoT chipsets enable seamless connectivity and data transmission from wearables to healthcare providers or users' smartphones. This technology facilitates real-time monitoring, timely intervention, and personalized healthcare services, thereby fueling the demand for NB-IoT chipsets in the wearable health monitoring market.
High competition from LPWA technologies
The high competition from LPWA (Low Power Wide Area) technologies poses a significant restraint on Narrowband IoT (NB-IoT) chipsets market. LPWA technologies such as LoRa and Sigfox offer alternative solutions for low-power, wide-area connectivity, directly competing with NB-IoT. This competition can lead to pricing pressure and challenges in market adoption for NB-IoT chipsets. Additionally, the diversity of LPWA options may confuse consumers and delay decision-making processes, further hindering the uptake of NB-IoT chipsets.
Increase in trend of smart cities
The increase in the trend toward smart cities presents a significant opportunity for Narrowband IoT (NB-IoT) chipsets market. NB-IoT technology allows for efficient and cost-effective connectivity of various devices within urban environments, enabling smarter infrastructure and services. With their low power consumption and wide coverage, NB-IoT chipsets are ideal for deploying sensors and actuators across cities for applications like smart lighting, waste management, and traffic control. As cities seek to enhance efficiency and sustainability, the demand for NB-IoT chipsets raises driving innovations and investments in this sector.
Limitation in low-speed data transmission applications
In low-speed data transmission applications, narrowband IoT (NB-IoT) chipsets market face limitations primarily due to their narrow bandwidth. This narrow bandwidth restricts the amount of data that can be transmitted at once, leading to slower data rates compared to broadband technologies. Consequently, tasks requiring high data throughput, such as streaming multimedia or large file transfers, are not suitable for NB-IoT. Additionally, the narrowband nature makes NB-IoT susceptible to interference and signal degradation in environments with high radio frequency activity, potentially compromising data reliability.
The COVID-19 pandemic significantly impacted the narrowband IoT (NB-IoT) chipset market industry. Initially, disruptions in the global supply chain led to shortages of raw materials and components, causing delays in chipset production. Furthermore, lockdown measures and restrictions on movement hindered manufacturing and distribution processes, exacerbating the supply chain challenges. However, as the pandemic progressed, the demand for NB-IoT chipsets surged, driven by the need for remote monitoring and control solutions in various sectors such as healthcare, logistics, and smart cities.
The Hardware segment is expected to be the largest during the forecast period
The hardware segment in the narrowband IoT (NB-IoT) chipset market has experienced robust growth due to the increasing adoption of NB-IoT technology across various industries. This growth can be attributed to the rising demand for low-power, wide-area (LPWA) connectivity solutions for Internet of Things (IoT) applications. As NB-IoT offers advantages such as extended coverage, low power consumption, and cost-effectiveness, businesses are increasingly investing in NB-IoT chipset hardware to enable efficient IoT deployments. Additionally, advancements in chipset design, such as improved power efficiency and enhanced performance, have further fueled market growth.
The smart agriculture segment is expected to have the highest CAGR during the forecast period
The Smart Agriculture segment's growth in the Narrowband IoT (NB-IoT) chipset market is propelled by several factors. NB-IoT technology offers cost-effective, low-power connectivity solutions, ideal for agricultural applications such as precision farming, livestock monitoring, and crop management. With NB-IoT's long-range capabilities and deep penetration, farmers can efficiently monitor and manage their assets remotely, leading to increased productivity and reduced operational costs. Moreover, the integration of sensors and IoT devices powered by NB-IoT enables real-time data collection and analysis, empowering farmers to make data-driven decisions for optimal resource utilization and crop yields.
The growth of narrowband IoT (NB-IoT) chipsets in North America is primarily driven by several factors. The increasing adoption of IoT devices across various industries, including smart cities, healthcare, and agriculture, fuels the demand for NB-IoT technology. Advancements in communication infrastructure and the deployment of 5G networks provide a conducive environment for NB-IoT implementation. Additionally, regulatory initiatives supporting IoT deployments and the emergence of innovative applications further propel market growth.
The Asia-Pacific region has witnessed significant growth in the Narrowband IoT (NB-IoT) chipset market due to the increasing adoption of IoT devices across various industries, such as manufacturing, agriculture, and smart cities. Additionally, government initiatives promoting smart infrastructure development and the deployment of IoT solutions have further accelerated market growth. The region's burgeoning population and rapid urbanization have also contributed to the expansion of NB-IoT applications, particularly in areas like smart metering and asset tracking. Furthermore, the presence of leading chip manufacturers and telecommunications companies in Asia-Pacific has stimulated innovation and competition in the market.
Key players in the market
Some of the key players in Narrowband IoT (NB-IoT) Chipset market include Deutsche Telekom AG, Ericsson, Huawei, MediaTek, Nordic Semiconductor, Qualcomm, Samsung, Sequans Communications, Sierra Wireless, SIMCom, u-blox and Vodafone Group PLC.
In June 2024, Huawei has launched a new budget tablet, the MatePad SE 11, globally. The device focuses on affordability while offering features like a large display, long battery life, and stylus support. The MatePad SE 11 features a thin and lightweight metal body for a premium look. It comes in two colors, Crystal Blue and Nebula Gray, and measures 252.3 x 163.8 x 6.9mm, weighing 475 grams.
In June 2024, Qualcomm has recently introduced Snapdragon 6s Gen 3 chipset for mobile platforms. The Qualcomm Snapdragon 6s Gen 3 chipset is something that powers mid-range smartphones. Well, for those who are unknown, the 's' in the chipset series of Snapdragon is something of a tone-down chipset. This is understandable as Snapdragon has introduced it very silently.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.