logo
transparent transparent

Szczegóły wiadomości

Do domu > Aktualności >

Aktualności Firmowe O China Achieves Breakthrough in Integrated Fiber–Wireless Communication for Next-Generation 6G Networks

Wydarzenia
Skontaktuj się z nami
Mrs. Alice
00-86-13534063703
WeChat 0086 13534063703
Skontaktuj się teraz

China Achieves Breakthrough in Integrated Fiber–Wireless Communication for Next-Generation 6G Networks

2026-02-23
China Achieves Breakthrough in Integrated Fiber–Wireless Communication for Next-Generation 6G Networks

According to Xinhua News Agency, Chinese scientists have recently achieved a major breakthrough in optical communications and 6G technologies. For the first time internationally, researchers have realized cross-network integration between fiber-optic communication and wireless communication systems. The independently developed Fiber–Wireless Integrated Communication System has set a new record in data transmission speed. The research results were published online in Nature on February 19.

As AI-driven data centers continue to scale computing capacity and next-generation 6G wireless networks advance rapidly, there is an increasing demand for ultra-high-speed, low-latency signal transmission across diverse application scenarios. However, a significant “bandwidth gap” has long existed between fiber-optic and wireless communications due to differences in signal architectures and hardware constraints.

To address this challenge, a joint research team from Peking University, Peng Cheng Laboratory, ShanghaiTech University, and the National Innovation Center for Advanced Photonics introduced the concept of Fiber–Wireless Integrated Communication. By leveraging advanced integrated photonics technology, the team successfully developed ultra-wideband integrated photonic devices exceeding 250 GHz bandwidth.

Based on these innovations, the newly developed system achieves:

  • 512 Gbps single-channel transmission in fiber-optic communication

  • 400 Gbps single-channel transmission in wireless communication

This achievement represents a significant step toward bridging the bandwidth divide between optical and wireless networks, paving the way for future 6G infrastructure and next-generation AI data center interconnects.

najnowsze wiadomości o firmie China Achieves Breakthrough in Integrated Fiber–Wireless Communication for Next-Generation 6G Networks  0

transparent
Szczegóły wiadomości
Do domu > Aktualności >

Aktualności Firmowe O-China Achieves Breakthrough in Integrated Fiber–Wireless Communication for Next-Generation 6G Networks

China Achieves Breakthrough in Integrated Fiber–Wireless Communication for Next-Generation 6G Networks

2026-02-23
China Achieves Breakthrough in Integrated Fiber–Wireless Communication for Next-Generation 6G Networks

According to Xinhua News Agency, Chinese scientists have recently achieved a major breakthrough in optical communications and 6G technologies. For the first time internationally, researchers have realized cross-network integration between fiber-optic communication and wireless communication systems. The independently developed Fiber–Wireless Integrated Communication System has set a new record in data transmission speed. The research results were published online in Nature on February 19.

As AI-driven data centers continue to scale computing capacity and next-generation 6G wireless networks advance rapidly, there is an increasing demand for ultra-high-speed, low-latency signal transmission across diverse application scenarios. However, a significant “bandwidth gap” has long existed between fiber-optic and wireless communications due to differences in signal architectures and hardware constraints.

To address this challenge, a joint research team from Peking University, Peng Cheng Laboratory, ShanghaiTech University, and the National Innovation Center for Advanced Photonics introduced the concept of Fiber–Wireless Integrated Communication. By leveraging advanced integrated photonics technology, the team successfully developed ultra-wideband integrated photonic devices exceeding 250 GHz bandwidth.

Based on these innovations, the newly developed system achieves:

  • 512 Gbps single-channel transmission in fiber-optic communication

  • 400 Gbps single-channel transmission in wireless communication

This achievement represents a significant step toward bridging the bandwidth divide between optical and wireless networks, paving the way for future 6G infrastructure and next-generation AI data center interconnects.

najnowsze wiadomości o firmie China Achieves Breakthrough in Integrated Fiber–Wireless Communication for Next-Generation 6G Networks  0