중국의 승용차용 휴대전화 무선 충전 시장(2024년)
China Passenger Car Mobile Phone Wireless Charging Research Report, 2024
상품코드 : 1567946
리서치사 : ResearchInChina
발행일 : 2024년 08월
페이지 정보 : 영문 230 Pages
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한글목차

2024년 6월 승용차 휴대전화 무선 충전의 표준 탑재율은 44%에 달했습니다.

자동차용 휴대전화 무선 충전의 이용 시나리오가 있는가, 휴대전화 무선 충전 모듈을 표준 탑재할 필요가 있는지 등의 논의가 여전히 많은 가운데, OEM나 공급업체는 조용한 반응을 나타내고 있습니다.

2020-2024년에 걸쳐 자동차용 휴대전화 무선 충전 모듈의 신차에 대한 표준 탑재율은 2020년 1월의 6.9%에서 2024년 6월에 44.1%로 상승했습니다.

옵션 모델과 무선 충전 모듈 뒷받침 휴대폰 홀더를 고려하면 자동차 휴대폰 무선 충전 모듈의 실제 탑재율은 50%를 초과했습니다.

2024년에는 1,000만 세트를 초과하고 2027년에는 1,800만 세트를 초과할 것으로 추정됩니다.

탑재 모델별로는 2024년에 자동차용 휴대전화 무선 충전 모듈을 탑재한 모델의 상위 3개는 Tesla Model Y, BYD Yuan Plus, AITO M7이며, 모두 표준 탑재율은 100%였습니다. 휴대전화 무선 충전 모듈의 탑재율 상위 15개 모델 중 7개 모델이 표준 탑재율 100%를 달성했으며, 다른 8개 모델의 평균 표준 탑재율은 70.5%였습니다.

승용차용 휴대전화 무선 충전 모듈공급업체는 중국 기업이 주체로, Foryou Multimedia, InvisPower, Luxshare Precision, Zhejiang Teme 등이 그 대표입니다. 기존 컴포넌트 분야에서는 NXP 마스터 칩, TI 전압 조정기 칩, AOS MOS 튜브 등 국제 공급업체 솔루션이 여전히 주로 채용되고 있지만, ConvenientPower Semiconductor, NuVolta, Maxic, Southchip 등 중국 기업 솔루션도 자동차 휴대폰 무선 충전 모듈에 채택되는 경우가 점점 늘어나고 있습니다.

2024년 80% 이상의 자동차 휴대폰 무선 충전 모듈이 Qi 2.0 인증을 받았습니다.

시장에는 다양한 가격과 디자인의 Qi 인증 무선 충전 제품이 있으며 사용자의 다양한 요구를 충족하기에 충분합니다. 그러나 OEM 및 Tier1 기업의 경우 통합된 Qi 표준은 보다 이상적인 자동차 무접점 충전 솔루션을 생성할 수 있습니다. Qi 2.0은 통합된 휴대폰 무선 충전 프로토콜의 기능, 특히 Apple의 MagSafe 자기 충전 기술을 기반으로 MPP(Magnetic Power Profile)를 도입하기 위해 노력하고 있습니다. 자기장 분포 최적화와 소프트웨어 보정을 통해 MPP는 충전 효율을 향상시키고 무선 충전 중 장비의 안정성과 신뢰성을 높일 수 있습니다. Qi 2.0의 MPP 기술은 무선 충전의 사용자 경험을 크게 향상 시켰습니다.

Qi 2.0의 시험 표준은 2023년 10월에 발표되었으며, 2023년 10월 30일에 소프트 인증이 시작되었으며, 2023년 12월 7일에 인증이 전면적으로 시작되었습니다. 2024년 7월 현재 78개 자동차 무접점 충전 제품이 Qi 인증을 통과했습니다(2023년 연중 54개 제품). 2024년에 130-150개의 자동차 제품이 Qi 인증을 취득할 것으로 예측됩니다.

Qi 1.2.4는 가장 많은 자동차 제품을 인증하는 버전으로 85% 가까이를 차지하고 있지만, 2024년 이후 공급업체는 완전히 Qi 2.0으로 이행하고 있습니다.

2024년 Qi 인증에 합격한 78개 제품 중 63개 제품이 Qi 2.0 인증을 받았으며, 전체의 80% 이상을 차지하고 있습니다.

Qi 2.0은 확실히 중·고출력 무선 충전에 대한 소비자 수요를 충족하기 위해 탄생했습니다. 360kHz 주파수에서 작동하며 Qi 1.3을 기반으로 55개의 데이터 패킷이 추가됩니다. 송전 전의 이물 검지에 대응해, 역충전에도 대응합니다. Qi 2.0의 기술과 표준은 앞으로 더 높은 출력 방향으로 향할 것으로 보입니다. 2025년에 25W 무선 급속 충전 규격이 2026년에 폭넓은 호환성과 강력한 적용성을 가진 50W 무선 급속 충전 규격이 발표될 것으로 예측되고 있습니다.

본 보고서에서는 중국의 승용차용 휴대전화 무선 충전 시장에 대해 조사 분석하여 원리, 규격, 매출량, 표준 탑재 모델 데이터, 경쟁 구도, 벤더 정보 등을 제공합니다.

목차

제1장 자동차용 휴대전화 무선 충전의 개요

제2장 자동차용 휴대전화 무선 충전 시장

제3장 자동차용 휴대전화 무선 충전 벤더

제4장 OEM 자동차 휴대폰 무선 충전 사례

JHS
영문 목차

영문목차

China Passenger Car Mobile Phone Wireless Charging Research Report, 2024 highlights the following:

Passenger car wireless charging (principle, standards, and Qi2.0 protocol);

Passenger car mobile phone wireless charging module (sales volume and standard-configured vehicle model data, industry chain, and competitive landscape);

Product solutions of core components suppliers such as NXP, MPS, and Southchip; module solutions and composition of module suppliers such as Foryou Multimedia, InvisPower, and Laird Novero; automotive mobile phone wireless charging cases of OEMs such as Tesla, AITO, and BYD.

In June 2024, the standard installation rate of passenger car mobile phone wireless charging reached 44%.

When many people still discuss whether there are application scenarios for automotive mobile phone wireless charging and whether it is necessary to install mobile phone wireless charging modules as standard, OEMs and suppliers have made a quiet response.

Between 2020 and 2024, the standard installation rate of automotive mobile phone wireless charging modules in new cars increased from 6.9% in January 2020 to 44.1% in June 2024.

If optional models and post-installed mobile phone holders with wireless charging modules are considered, the actual installation rate of automotive mobile phone wireless charging modules exceeded 50%.

It is estimated that the installation is expected to exceed 10 million sets in 2024 and exceed 18 million sets in 2027.

In terms of installed models, Tesla Model Y, BYD Yuan Plus, and AITO M7 were the top three models with automotive mobile phone wireless charging modules in H1 2024, all with a standard configuration rate of 100%. Among the top 15 models by installation of mobile phone wireless charging modules, 7 models boasted the standard installation rate of 100%; the average standard configuration rate of the other 8 models was 70.5%.

Passenger car mobile phone wireless charging module suppliers are led by Chinese companies, and bellwethers include Foryou Multimedia, InvisPower, Luxshare Precision and Zhejiang Teme. In the field of traditional components, although solutions of international suppliers are still mainly adopted, such as NXP's master chip, TI's voltage regulator chip, and AOS' MOS tube, ever more solutions of Chinese companies such as ConvenientPower Semiconductor, NuVolta, Maxic and Southchip also find application in automotive mobile phone wireless charging modules.

In 2024, over 80% of automotive mobile phone wireless charging modules have obtained Qi 2.0 certification

There are Qi-certified wireless charging products of varying prices and designs on the market, enough to meet diverse requirements of users. But for OEMs and Tier1s, a unified Qi standard can create more ideal automotive wireless charging solutions. Qi 2.0 undertakes the functions of a unified mobile phone wireless charging protocol, especially the introduction of MPP (Magnetic Power Profile) based on Apple's MagSafe magnetic charging technology. By optimizing magnetic field distribution and software correction, MPP can improve charging efficiency, making devices more stable and reliable during wireless charging. Qi2.0's MPP technology has greatly improved user experience of wireless charging.

The test standard of Qi2.0 was released in October 2023, and the soft certification started on October 30, 2023, and the certification was fully opened on December 7, 2023. As of July 2024, 78 automotive wireless charging products have passed Qi certification, compared with 54 in the full year of 2023. It is expected that 130-150 automotive products will be Qi-certified in 2024.

Qi 1.2.4 is the version certifying the most automotive products, sweeping nearly 85%, but since 2024, suppliers have fully turned to Qi 2.0.

Of the 78 products that passed Qi certification in 2024, 63 are Qi 2.0 certified, or more than 80% of the total.

Undoubtedly Qi 2.0 is born to meet consumers' demand for medium- and high-power wireless charging. It operates at a frequency of 360kHz and adds 55 data packets based on Qi 1.3. It can support foreign object detection before power transmission, and also additionally supports reverse charging. Qi 2.0 technology and standards will head in the direction of higher power in the future. It is expected that a 25W wireless fast charging standard will be launched in 2025, and a 50W wireless fast charging standard with wide compatibility and strong applicability will be launched in 2026.

Seen from current products on the market, the 15W Qi 2.0 has fallen behind 50W private protocols. As the demand for charging mobile phones in the cockpit increases, higher-power charging solutions are needed. For example, Luxeed M7 supports charging 9 devices simultaneously, including 2 50W private protocol wireless fast charging and 2 66W wired super charging devices. The Qi 2.x fast charging protocol needs to be accelerated.

Precision, efficiency, and heat dissipation: Solutions to three major enduring problems in automotive mobile phone wireless charging

Problem 1: Precision: use magnetic attraction to ensure device alignment

Wireless charging relies on electromagnetic coils. In the charger, one or more induction coils create a magnetic field and transfer energy, and smaller coils in mobile phone or other devices collect the energy. The coils must be aligned to transfer energy between them.

The biggest upgrade of Qi 2.0 is adding the same magnetic function as Apple MagSafe. As the chairman member of WPC, Apple has contributed its MagSafe technology to WPC, which has over 370 members. The magnetic solution of Qi 2.0 guarantees perfect alignment, thereby reducing energy loss and ensuring charging efficiency.

The automotive mobile phone wireless charging module is mainly installed in central storage box or armrest box. Its position is fixed according to the space shape. The pattern and material increase its friction and can also improve localization accuracy of devices. However considering that devices may shift when the vehicle encounters complex road conditions such as bumps and turns during driving, magnetic attraction can better improve device stability. If bracket-type wireless charging devices in the aftermarket are taken into account, the role of magnetic attraction becomes even more important.

Problem 2: Efficiency: private protocols and new policies accelerate the launch of fast charging devices

The Qi standard initially featured charging power of 5W, which was later increased to 7.5W and 10W, while Qi 2.0 increases charging power to 15W. During 2025-2026, 25W and 50W versions with faster charging efficiency are scheduled to be released.

Yet currently many vehicle models already offer 50W wireless charging mainly through private protocols. For example, private protocols of Android phones such as Huawei, Xiaomi, and OPPO can enable automotive wireless charging power to reach 40-50W. For Apple phones, these models can only provide 15W charging solutions that support the MagSafe protocol.

In 2021, AITO M5 increased the power of automotive wireless charging to 40W for the first time. At that time, the Qi protocol could no longer meet this standard, so private protocols were also adopted for automotive wireless charging. New models in 2024, such as IM L6, Lynk & Co 07, New AITO M5, Xiaomi SU7, Zeekr 001, Luxeed S7 and Li L6, have generally supported 50W mobile phone wireless charging, but private protocols of each company are also easy to connect. At present, most 50W automotive wireless charging private protocol solutions can already support mainstream Android mobile phone brands.

The Interim Provisions on Administration of Radio of Wireless Charging (Power Transmission) Devices" the Ministry of Industry and Information Technology will begin to implement on September 1, 2024, indicates that mobile and portable wireless charging devices shall operate in the frequency ranges of 100-148.5kHz, 6765-6795kHz, and 13553-13567kHz, and the rated transmission power shall not exceed 80W. Earlier in February 2021, the Interim Provisions on Administration of Radio of Wireless Charging (Power Transmission) Devices (Draft for Comments) drafted by the Radio Administration Bureau of the Ministry of Industry and Information Technology emphasized that the rated transmission power of wireless charging shall not exceed 50W, which is why the maximum power of current wireless charging products does not exceed 50W, in spite of relevant suppliers pushing up the technology to more than 100W. Perhaps after September 2024, 80W private protocol wireless charging products will be available on market soon.

Problem 3: Heat dissipation: it is a long-lasting problem, and physical cooling is still the mainstream strategy

Most automotive mobile phone wireless charging solutions use a full-bridge SOC solution with built-in MCU and built-in power tube. This solution will easily cause heating problems.

Thermally conductive silicone sheets, thermally conductive gels, heat dissipation holes, and air cooling devices are currently major heat dissipation strategies for automotive wireless charging modules. The wireless charging compartment of AITO series is set in the concave space of the center console (one/both sides), with heat dissipation holes to actively cool the mobile phone and wireless charging module. The wireless charging board (50W) for Li Auto's 2024 models has more metal materials inside and uses an electric cooling fan for better heat dissipation.

Some suppliers are also trying to use new materials to deal with heat dissipation. Zhongke B Plus's research shows that in the same wireless charging working conditions, the temperature rise of nanocrystals is 7~8°C lower than that of ferrites. Of course, the nanocrystalline material is also a major wave-absorbing material. As a major supplier of nanocrystalline materials in China, Yunlu AMT provides nanocrystalline materials for the receiving terminals of some wireless charging products of Apple, Xiaomi and Huawei.

Table of Contents

1 Overview of Automotive Mobile Phone Wireless Charging

2 Automotive Mobile Phone Wireless Charging Market

3 Automotive Mobile Phone Wireless Charging Vendors

4 Automotive Mobile Phone Wireless Charging Cases of OEMs

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