Photonic Edge Inc.
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Flexible Development with Millimeter-Wave and SDR

We have a strong track record in developing millimeter and terahertz-wave measurement systems and high-frequency devices up to 330GHz. By integrating FPGA-based SDR technology, we now offer custom solutions for millimeter-wave applications. This enables diverse sensing and wireless communication possibilities. We provide comprehensive support, from PoC development to full-scale project contracts.

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PoC support for diverse millimeter-wave wireless communication and sensing applications

By combining FPGA-based SDR with millimeter-wave frequency extension equipment, we can cost-effectively realize development PoCs for sensing and communication in any desired millimeter-wave frequency band. In addition to our software implementation technology for FPGA signal processing, our ability to manufacture millimeter-wave modules at low cost enables us to minimize initial development investment and provide an environment for rapid PoC iterations. We offer flexible, custom solutions tailored to your specific development needs and challenges.

Development outsourcing for various millimeter-wave sensing and communication applications

We offer contract development support for customers seeking to build (develop) technology for millimeter-wave sensing and wireless communication. We are especially well-suited for customers facing challenges in early development stages or lacking in-house expertise in millimeter-wave high-frequency technology.
Building a millimeter-wave development environment from scratch requires significant investment. This initial hurdle can be overcome by outsourcing to us.
Examples of development challenges and technology building include:

Communicating □□ with △△ modulation at 〇〇GHz.
Sensing □□ at 〇〇GHz.

Development evaluation support using millimeter-wave and terahertz-wave electric field visualization technology

Our unique optical vector signal analysis and EO sensor probe technologies enable the visualization of invisible electromagnetic waves near antennas through low-invasive sensing. Key features include high-frequency support up to 330GHz and the ability to capture not only amplitude but also phase distribution. This is an ideal tool for evaluating complex electromagnetic fields (transmitted, reflected, and scattered fields) in situations where modeling is difficult with simulations, such as with metasurfaces.

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Development evaluation support using millimeter-wave and terahertz-wave electric field visualization technology Application examples of electric field visualization technology in the millimeter-wave and terahertz-wave bands