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Lithium Battery Charger ICs Market Share

ID: MRFR//5849-CR | 146 Pages | Author: Aarti Dhapte| February 2019


The Lithium Battery Charger ICs market is witnessing substantial growth owing to the rising demand for portable electronic devices, electric vehicles, and energy storage systems. In this competitive landscape, companies employ various market share positioning strategies to establish a strong foothold and drive growth. Lithium Battery Charger ICs, crucial components for charging lithium-ion batteries efficiently and safely, are essential in diverse applications ranging from smartphones and laptops to electric vehicles and renewable energy systems. In order to compete effectively and capture significant market share, companies in this sector deploy a range of strategic approaches.


One of the primary strategies employed by companies operating in the Lithium Battery Charger ICs market is innovation in product development. With the rapid evolution of battery technologies and increasing consumer expectations regarding charging speed, efficiency, and safety, companies invest heavily in research and development to introduce advanced charger ICs with enhanced features and performance. By leveraging technologies such as gallium nitride (GaN) and silicon carbide (SiC), companies can develop charger ICs that offer faster charging speeds, higher power density, and improved thermal management capabilities, thus meeting the growing demands of various applications.


Moreover, strategic partnerships and collaborations play a crucial role in market share positioning within the Lithium Battery Charger ICs market. Companies often form alliances with battery manufacturers, device OEMs, and other industry stakeholders to co-develop integrated solutions and expand their market reach. Collaborative efforts enable companies to leverage complementary expertise, access new distribution channels, and accelerate product adoption. By aligning with key players in the ecosystem, companies can strengthen their competitive position and offer comprehensive solutions that address the evolving needs of customers across different market segments.


Furthermore, effective marketing and branding strategies are essential for companies seeking to differentiate themselves and gain market share in the Lithium Battery Charger ICs market. Building a strong brand identity and communicating the value proposition effectively are critical for attracting customers and fostering brand loyalty. Companies invest in targeted marketing campaigns, digital advertising, and participation in industry events to raise awareness about their products and establish credibility in the market. By highlighting key features such as high efficiency, compact form factor, and advanced safety features, companies can position themselves as preferred suppliers of Lithium Battery Charger ICs.


In addition to product innovation and strategic partnerships, pricing strategies play a significant role in market share positioning within the Lithium Battery Charger ICs market. Price competitiveness is a key consideration for customers when evaluating charging solutions. Companies adopt various pricing strategies such as value-based pricing, competitive pricing, and volume-based discounts to attract customers and gain market share. While maintaining profitability is important, companies may offer flexible pricing options and customized solutions to meet the diverse needs of customers across different market segments.


Moreover, a strong focus on customer support and service is crucial for companies looking to enhance their market share in the Lithium Battery Charger ICs market. Providing timely technical assistance, product training, and responsive customer service can enhance customer satisfaction and build long-term relationships. Companies that prioritize customer-centricity differentiate themselves from competitors and gain a competitive edge in the market. By offering comprehensive support throughout the product lifecycle, companies can strengthen customer loyalty and drive repeat business.


Furthermore, geographical expansion and market diversification are key strategies employed by companies to increase their market share in the Lithium Battery Charger ICs market. By targeting new geographic regions and vertical markets, companies can tap into unexplored opportunities and reduce dependency on specific market segments. Expanding product portfolios to address emerging applications such as electric vehicles, renewable energy systems, and wearable devices also enables companies to broaden their customer base and capture a larger share of the market.


Covered Aspects:

Report Attribute/Metric Details
Base Year For Estimation 2019
Historical Data 2018
Forecast Period 2020-2030
Growth Rate 22.2% (2020-2030

Lithium Battery Charger ICs Market Overview


Global Lithium Battery Charger ICs Market is expected to touch a valuation of USD 36 Billion by 2030, registering a 22.2% CAGR over the forecast period (2022-2030).


Lithium battery charger ICs can support three times faster charging than other products available in the market while also delivering significantly longer battery life. The IC architecture can charge the battery cells with high accuracy and efficiency, regardless of whether the voltage from the charging cable or wireless charging pad is higher or lower than the final voltage of the battery. 


The IC chips also integrate the power path management that can handle more power than other battery chargers in a smaller package. The uses of ICs in battery management ensure boosted battery life and space-saving inside smartphones, consumer electronics, and other devices. Resultantly, lithium battery charger ICs are increasingly used in smart electronics devices.


COVID-19 Analysis


The COVID-19 outbreak has resulted in the closing down of several IC charger lithium battery manufacturing facilities across the globe, causing huge revenue losses in end-use industries like consumer electronics, energy & power, automotive, and others. The coronavirus-driven lockdown halted the production of several key raw materials in the global market, which resulted in spiking prices of lithium battery charger ICs.


However, the market is again gearing up with the lockdown limitations, getting relaxed with time. Innovative industry players actively started to look for increasing application areas of lithium battery charger ICs in monitoring and tracking devices developed for the COVID 19 treatment. The product demand in end-use sectors could pick up following the uplift of the lockdown in numerous countries.


Market Dynamics 


Market Drivers




  • Rising Uses of Lithium-ion Battery to Bolster Growth




Lithium-ion batteries are rechargeable and have a great life cycle with a high energy density, required to provide better performance and higher reliability. The lithium-ion battery serves as a great option for the new devices emerging in the market, which run on a portable power source. Resultantly, lithium-ion batteries are extensively used in various appliances and electronics required in energy & power, automotive, other sectors. The extensive demand from the consumer electronics and automotive sectors allows the lithium battery charger ICs market share to grow significantly. 


Market Opportunities




  • Rise in Consumer Electronics Sector to Present Robust Opportunities




The global market of lithium-ion batteries has experienced tremendous growth over the past decade. This trend, in turn, is projected to allow the lithium-ion battery charger ICs market to exponentially accrue further. The lithium battery charger ICs market size is also boosted by the expanding demand for smart devices and other consumer electronic products. Besides, the emergence of electric and hybrid electric vehicles induces the lithium battery charger ICs market demand. 


Market Restraints




  • Strict Environmental Regulations to Restrain Market Growth




 Lithium batteries use cathodes with nickel and cobalt, as well as solvent-based electrode processing, which has the highest environmental impacts. These include global warming, ecological toxicity, resource depletion, and human health impacts. The toxicity impacts of lithium cause adverse respiratory, pulmonary, and neurological effects in those exposed.


The introduction of strict environmental norms in several countries could restrain the ongoing market growth, affecting the sales and consumption of lithium battery charger ICs in the coming years. 


Market Challenges




  • Overheating and Thermal Stability Concerns to Challenge Players




Concerns about overheating and thermal stability of Li-ion batteries can pose a challenge to market growth. 


Cumulative Growth Analysis




  • Market Size to Expand at a Strong Rate 




The rising adoption of robots across the industrial sector is projected to favor the lithium battery charger ICs market. Also, the adoption of automated processes to expedite production in manufacturing and other sectors would propel the growth of the market. Moreover, the rise in disposable income among consumers is expected to positively impact the lithium battery charger ICs industry growth.


Market Segment Overview 




  • Switching Battery Chargers to Witness Significant Demand 




Lithium Battery Charger ICs Market is segmented into Four Dynamics; Charger Type, Appliance, End-User, and Region. 


By charger type, the switching battery chargers segment dominated the market share, accounting for a value of USD 3.37 billion in 2017. Switching battery chargers are well-known for their rapid charging capacity, offering a unique combination of switching frequency, circuit layout, and component selection that can reduce electrical noise. 


Resultantly, switching battery chargers are extensively used in multi-cell and high-power batteries designed for smartphones, notebooks, and tablets. The segment is projected to accrue USD 9,279.3 million for the market by 2023. On the other hand, the SMBus/I2C/SPI controlled battery chargers segment is expected to reach USD 3,168.7 million by 2023, growing at 25.66% CAGR over the forecast period.




  • Small Appliances segment takes the Lead




By appliances, the small appliances segment dominated the market with a valuation of USD 4.05 billion in 2017. The segment I anticipated to generate revenue close to USD 10,550.8 million by 2023, heading with the increasing use of battery chargers in mobile phones, power banks, and digital cameras. On the other hand, the gardening tools segment is forecasted to grow at 24.30% CAGR over the predicted period. Increasing uses of gardening tools for maintenance of lawns and gardens spurs the segment growth. 




  • Consumer Electronics is the Largest End-User Segment 




By end-user, the consumer electronics segment dominates the lithium battery charger ICs market. In 2017, the segment valued at USD 5.62 billion due to the rising use of charger ICs in the consumer electronics sector. The consumer electronics segment is estimated to create a value of USD 15,570.5 million by 2023, with a 19.93% CAGR heading with the increasing adoption of electronics products.


On the other hand, the automotive segment is likely to grow at 23.72% CAGR during the assessment period. Emergence of electric, hybrid, and plug-in hybrid vehicles facilitates segment growth.


Regional Analysis



  • North America to Maintain its Winning Streak 


North America has remained the market leader since 2017 and could continue to maintain its winning streak throughout the assessment period. Factors such as the augmenting demand for Li-ion batteries in smartphones and other consumer electronic devices increase the consumption and sales of lithium-ion battery charger ICs in the region. North American lithium battery charger ICs market size reached USD 4.10 billion in 2017, which is expected to increase to USD 12,225.9 million by 2023, registering a 21.32% CAGR over the forecast period.



  • Europe Holds Second Highest Share in Global Market 


Europe held the second biggest share in the global market, accounting for USD 1.79 billion revenues in 2017. The lithium battery charger ICs market growth in Europe is expected to exhibit a 17.89% CAGR during the assessment period. Factors such as the rising clean energy generation and focus on reducing the dependence on fossil fuels are likely to accelerate the lithium battery charger ICs market share in the region. 


The increasing development of electric and hybrid vehicles in the region drives the lithium battery charger ICs market demand. Germany is expected to be the biggest market for IC charger lithium batteries in the region. The European lithium battery charger ICs market can accrue close to USD 978.87 million by 2023, heading with the presence of various automotive behemoths.



  • APAC Accounts for a Considerable Market Share


The APAC region also holds a considerable share in the global market. Factors such as the inclination towards the development of renewable energy projects and the presence of noteworthy players accelerate the lithium battery charger ICs market growth in the region. Additionally, investments by semiconductor companies to enhance the charging capacities of Li-ion batteries increase the size of the regional market. The APAC lithium battery charger ICs market is projected to grow at 23.11% CAGR.


Competitive Landscape




  • Players Focus on Product Development & Expansion Plans




The worldwide lithium battery charger ICs market appears extremely fragmented, considering the presence of well-established manufacturers and distributors. They seek opportunities to integrate across the extensive value chain while focusing on R&D investments, production facility expansion, and M&A activities to gain impetus. New ICs manufacturers enter the market with aggressive pricing to undercut the established providers and gain footholds in international markets. 


STMicroelectronics NV is a well-reputed company in the lithium battery charger ICs industry. STM designs, develops, manufactures, and markets semiconductor integrated circuits and discrete devices used in the telecommunications, consumer electronics, automotive, computer, and industrial sectors. The company has a geographical presence in North America, Europe, and the Asia Pacific region.


List of Key Companies 



  • STMicroelectronics NV (Switzerland)

  • Vishay Intertechnology Inc. (US)

  • Microchip Technology Inc (US)

  • TOREX Semiconductor Ltd. (Japan)

  • ROHM Company Ltd (Japan)

  • Future Technology Devices International (FTDI) Chip (UK)

  • ON Semiconductor Corporation (US)

  • Diodes Incorporated (US)

  • Intersil Corporation (US)

  • Active-Semi Inc. (US)

  • Monolithic Power Systems Inc (US)

  • Shanghai Nanxin Semiconductor Technology Co. Ltd. (China)

  • Texas Instruments Inc. (US)

  • Richtek Technology Corporation (Taiwan)

  • Analog Devices Inc. (US)

  • Integrated Device Technologies Inc. (US)

  • NXP Semiconductors NV (The Netherlands)

  • Toshiba Corporation (Japan)

  • Maxim Integrated (US)

  • New Japan Radio Co. Ltd. (Japan)

  • Silergy Corporation (China)

  • Holtek Semiconductors Inc. (China) 


Recent Developments



  • November 18, 2020 – Maxim Integrated Products, Inc., launched Industry's First Li+ Fuel Gauge IC - MAX17320 featuring continuous internal self-discharge monitoring and protection. MAX17320 extends run-time on multi-cell battery-powered products while also monitoring against self-discharge hazards. MAX17320 2 to 4 series cell Li-ion fuel gauge IC is the industry's first to monitor self-discharge during operation while extending battery life with the highest accuracy and lowest quiescent current

  • March 02, 2020 – ON Semiconductor introduced an adaptive charging controller for USB PD 3.0. The FAN6390MPX incorporates an autonomous USB PD state machine to comply with the USB PD 3.0 specification. The new Programmable Power Supply (PPS) controllers allow for control of currents and voltages ranging from 1 A to 3 A and 3.3 V to 21 V. These devices would enable OEMs to meet a wide range of applications and power levels.


Report Overview 


The report features unique and relevant factors expected to significantly impact the lithium battery charger ICs market during the forecast period. The detailed and considerable amount of information in the report would help industry players understanding the market better. The MRFR report elaborates on the historical and current trends boosting the lithium battery charger ICs market growth. 


Besides, the analysis of COVID-19 impact on the lithium battery charger ICs industry is also included in the report. Regional assessment explained in this report unlocks a plethora of untapped opportunities in regional and domestic market places. Detailed company profiling in the region enables users to evaluate company shares analysis, emerging product lines, the scope of the product in new markets, pricing strategies, innovation possibilities, and much more.


Market Segmentation Table


Lithium Battery Charger ICs Charger Type Outlook



  • Switching Battery Chargers

  • Linear Battery Chargers

  • µModule Battery Chargers

  • Pulse Battery Chargers

  • SMBus/I2C/SPI Controlled Battery Chargers

  • Buck/Boost Battery Chargers


Lithium Battery Charger ICs Appliance Outlook



  • Power Tools

  • Vacuum Cleaners

  • Small Appliances

  • Gardening Tools

  • Others


Lithium Battery Charger ICs End-user Outlook



  • Consumer Electronics

  • Energy & Power

  • Automotive

  • Others


Lithium Battery Charger ICs Region Outlook



  • North America

  • Europe

  • Asia Pacific

  • Rest of the World (RoW)

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