简体中文

Halo Industries raises 580 million yuan to achieve significant breakthrough in SiC laser processing field

185
2024-07-18 15:13:25
查看翻译

Recently, Halo Industries, an innovative technology company based in California, announced that it has successfully raised $80 million in Series B venture capital, marking a significant breakthrough in its use of laser technology to revolutionize the production of silicon carbide (SiC) semiconductor wafer substrates.

This financing is led by the US Innovation Technology Fund (USIT) and involves heavyweight investment institutions such as 8VC and SAIC, aiming to accelerate the commercialization process of technology and establish a new "gold standard" for Halo in SiC substrate production.

This startup separated from a research laboratory at Stanford University in 2014 to develop tools and technologies for manufacturing thin and flexible silicon for solar and semiconductor applications. The company is located in Santa Clara and has challenged the industry status quo in recent years with its disruptive multi-step process, aiming to significantly reduce wafer costs and lay a solid foundation for SiC power electronic devices in the electric vehicle (EV) and renewable energy fields.

Halo Industries has significantly increased the production and quality of SiC wafers through its manufacturing innovation, accelerating growth opportunities for multiple downstream applications including electric vehicles (EVs), electric vehicle charging stations, solar/wind electronics, grid infrastructure, industrial motor drives, HVAC, power rail/transportation, and aerospace/defense.

Halo Industries emphasizes that its innovative laser cutting method demonstrates significant advantages over traditional sawing techniques in reducing wafer defects and lowering energy and water consumption. SiC materials are considered an ideal choice for high-efficiency power electronic devices due to their wider electronic bandgap characteristics, and Halo's technology is the key to unlocking this potential.

Through our laser slicing tool, Halo has not only increased the yield and quality of SiC, but also greatly reduced waste and production costs, injecting strong momentum into the rapid development of clean energy technology, "said Andrei Iancu, CEO of the company.

With the surge in demand for high-efficiency power electronics products in the market, Halo's laser manufacturing tools and SiC production strategy are seen as a major "weapon" to promote sustainable electrification.

Halo has demonstrated strong production capacity: currently producing 1000 wafers per month and plans to increase it to 24000 wafers by the end of this year, with growth potential perfectly aligned with industry demand.

According to analyst reports, the global SiC wafer production in 2019 was approximately 100 million pieces, indicating a huge growth potential for this market. Halo's technological innovation not only increases the output of each wafer, but also effectively avoids the wafer bending and warping problems in traditional methods, further consolidating its market leading position.

The success of the California Energy Commission project has validated the outstanding performance of Halo technology, its zero material loss potential, and efficient mass production, indicating a significant reduction in the cost of conductive SiC substrates, bringing unprecedented cost-effectiveness advantages to advanced power electronics products. Halo is actively expanding its production capacity to meet the growing market demand and continues to drive the semiconductor industry towards a cleaner and more efficient direction.

This financing not only lays a solid financial foundation for Halo's future development, but also provides unlimited possibilities for its technological innovation and market expansion.

Halo Industries is leading a new era in SiC wafer production with its unique laser technology and steadfast market vision, contributing significantly to the global clean energy revolution.

Source: OFweek

相关推荐
  • Xi'an Institute of Optics and Fine Mechanics: New progress in large field two-photon scattering microscopy imaging technology

    Adaptive optics is a technique that improves imaging quality by correcting wavefront distortion. Interference focus sensing (IFS), as a new method proposed in the field of adaptive optics in recent years, has been proven to have significant effects in correcting complex aberrations in deep tissue imaging. This technology is based on measuring a single location within the sample to determine the ca...

    04-15
    查看翻译
  • Dublin City University has successfully tested the laser components of the next generation space navigation atomic clock

    The team collaborated with Eblana Photonics and Enlightra to showcase for the first time a new caliber laser, which will enable atomic clocks to be more efficient and compact for future satellite missions.This innovation addresses the key needs identified by the European Space Agency, which is the leading organization for the next generation of space navigation systems. This work was recently publ...

    2023-09-22
    查看翻译
  • Outlook - Future of miniaturized lasers

    The disruptive miniaturization design of fiber lasers is feeding back into the handheld laser welding market. The handheld laser welding that enters the trunk is bathed in the luster of black technology, making traditional argon arc welding and electric welding tremble.In the early years, argon arc welding was the most commonly used thin plate welding method among our ancestors, but its drawbacks ...

    2023-12-19
    查看翻译
  • Nanchang University research progresses in acoustic resolution photoacoustic microimaging enhancement

    As a promising imaging modality that combines the high spatial resolution of optical imaging and the deep tissue penetration ability of ultrasound imaging, photoacoustic microscopy (PAM) has attracted a lot of attention in the field of biomedical research, and has a wide range of applications in many fields, such as tumor detection, dermatology, and vascular morphology assessment. Depending on the...

    2024-09-18
    查看翻译
  • A new type of electrically driven organic semiconductor laser can be used in the fields of spectroscopy, metrology, and sensing

    According to a report from Maims Consulting, scientists at the University of St. Andrews in the UK recently stated that they have made a "significant breakthrough" in the decades of challenges in developing compact organic semiconductor laser technology.Firstly, an OLED with a world record light output was manufactured, and then integrated with a polymer laser structure. This new type of las...

    2023-10-07
    查看翻译