Ελληνικά

Sivers Semiconductors, an optoelectronic semiconductor company, splits off its photonics business and goes public independently

772
2024-08-26 11:15:43
Δείτε τη μετάφραση

Recently, Sivers Semiconductors, a leading supplier of integrated chips and photonics modules for communication and sensing solutions, announced a significant strategic initiative:

It will divest its subsidiary Sivers Photonics Ltd, which has signed a non binding letter of intent (LOI) with byNordic Acquisition Corporation and plans to achieve independent listing through a merger.

 



This move aims to create an independent, publicly traded photonics company and lay a solid financial foundation for the merged company after divesting the SPAC structure, ensuring sufficient cash flow.

Sivers Semiconductors consists of two wholly-owned subsidiaries, each specializing in the wireless and photonics markets. Among them, Sivers Photonics, as a leader in the field of semiconductor photonic devices, focuses on the research and development of indium phosphide (InP) laser source technology, providing customized laser solutions for high growth fields such as data centers, consumer health care, and automotive LiDAR, empowering artificial intelligence infrastructure and advanced sensing applications.

Based on over 25 years of research and development experience, Sivers Photonics has built a unique technological system, with a team of 80 elites including 12 PhDs. The company holds multiple patents worldwide and collaborates with leading companies in the field of silicon photonics (SiPh) such as Ayar Labs to explore innovative paths for high-performance lasers. At the same time, the company has also engaged in in-depth exchanges with multiple artificial intelligence giants and supercomputing companies to seek future development.

After the implementation of this spin off and merger plan, Sivers Semiconductors' wireless business unit will focus on the research and sales of millimeter wave beamforming front-end integrated circuits, RF transceivers, repeaters, and satellite and 5G infrastructure software algorithms. This sector achieved a significant increase in net income in 2023, reaching approximately $15 million, demonstrating strong market competitiveness and growth potential.

Sivers Photonics holds a leading position in the field of direct chip integration of tunable multi wavelength lasers. With the surge in demand for GPUs in generative artificial intelligence, it is expected that the inter chip connectivity market will experience explosive growth.

According to industry predictions, the total size of related markets is expected to reach billions of dollars by 2027. Faced with this vast prospect, Sivers Photonics is actively laying out silicon photonics solutions for data centers with its technological advantages, aiming to improve data transmission efficiency and significantly reduce energy consumption through optical transmission technology.

In addition, Sivers Photonics has also made achievements in the field of consumer grade biometric sensors, and its photon laser technology is driving innovation and development in wearable health products. The company has signed development contracts worth over 18 million US dollars with important clients to jointly promote the optimization and upgrading of biometric sensors. Although the market is still in its infancy, Sivers Photonics has built a unique competitive advantage in this field with its strong research and development capabilities.

Bami Bastani, Chairman of Sivers Semiconductor, said, "We firmly believe in the unlimited potential of the artificial intelligence photonics field, but this potential is often overshadowed by equally outstanding wireless businesses. Given the enormous potential of silicon photonics in artificial intelligence infrastructure and the emerging demand for photonics biometric sensors, we believe it is time to separate the photonics business in order to better enter the US capital market and create more value for shareholders. At the same time, we will continue to leverage the advantages of wireless business in satellite and 5G fields to drive the overall development of the company.

After the completion of this transaction, Sivers Photonics, as an independent listed entity in the United States, will be closer to the core of the American artificial intelligence ecosystem to attract the attention of investors, customers and partners. Given that approximately 80% of Sivers Photonics' net revenue currently comes from the US market, this strategic adjustment will undoubtedly inject strong momentum into its future development.

According to the non binding terms of the letter of intent, byNordic and Sivers intend to reach a final agreement to acquire Sivers Photonics. The completion of the business merger depends on the completion of due diligence, negotiation and signing of final documents, and satisfaction of the conditions contained therein, including (i) ensuring certain simultaneous financing, (ii) completing any necessary stock exchange and regulatory reviews, and (ii) obtaining approval from the boards and shareholders of byNordic and Sivers Photonics.

The terms of the proposed transaction stipulate that Sivers Photonics will be spun off and merged with byNordic, and the merged listed company will be held by the original shareholders of Sivers Photonics and byNordic. Sivers will have a majority stake in the merged listed company. Once the merger is completed, the company plans to establish its headquarters in Silicon Valley, California, while manufacturing operations will continue to remain in the UK.

Sivers management will update this announcement when these issues are further clarified. During this period, given the sensitivity of the negotiations, Sivers management will not provide further comments beyond those described in the press release. Setterwalls and Pillsbury Winthrop Shaw Pittman LLP are serving as legal advisors to Sivers Semiconductor Company. Loeb&Loeb LLP is serving as legal counsel for byNordic Acquisition Corporation.

Source: OFweek

Σχετικές προτάσεις
  • MIT researchers have demonstrated a novel chip based resin 3D printer

    Researchers from the Massachusetts Institute of Technology and the University of Texas at Austin showcased the first chip based resin 3D printer. Their concept verification tool consists of a millimeter sized photon chip that emits a programmable beam of light into resin holes, which solidify into a solid structure when exposed to light.The prototype processor does not have mobile components, but ...

    2024-06-17
    Δείτε τη μετάφραση
  • Polyart Launches New Generation Polyart Laser Synthetic Paper

    Polyart has launched a new generation of Polyart laser printers, designed specifically for dry toner printing technology, with a completely improved coating formula and many exciting new advantages. These include reducing nationalism, moisture resistance, and better paper touch.Say hello to the good paper jogging on the printer output. More importantly, our new formula provides better scratch resi...

    2023-11-16
    Δείτε τη μετάφραση
  • Ruisheng Clyde Aerospace Company Commercializes TNO's Satellite Communication Laser Terminal

    AAC Clyde Space, a small satellite technology multinational company headquartered in Uppsala, Sweden, has obtained the right to manufacture and distribute laser satellite communication terminals using the optical technology of the Dutch research institution TNO.TNO's technology helps to transmit satellite generated data to Earth through lasers, with the potential to achieve high speed and security...

    2024-05-24
    Δείτε τη μετάφραση
  • Lameditech of South Korea was listed on the KOSDAQ exchange on the 17th

    On June 11, 2024, Korean laser medical equipment manufacturer Lameditech successfully completed its initial public offering and was listed on the KOSDAQ exchange on the 17th.Last month, its public offering price was fixed at 16000 Korean won. In this public offering, Lameditech issued a total of 1298000 shares, raising approximately 20.8 billion Korean won. Since Lameditech's debut on KOSDAQ, as o...

    2024-06-26
    Δείτε τη μετάφραση
  • Research on LiDAR at the University of Electronic Science and Technology of China, published in Nature

    The team from the School of Information and Communication Engineering at the University of Electronic Science and Technology of China has proposed for the first time a laser radar instrument based on the dispersion Fourier transform method, forming a new demodulation mechanism. This instrument breaks through the cross limitations of measurement speed, accuracy, and distance, and has unique advanta...

    2024-06-22
    Δείτε τη μετάφραση