mmWave Wireless Connectivity Chip Series
DECO mmWave Wireless
Connection Solution
Product Display
mmWave Wireless Connection Chips
Solution Applications
mmWave Wireless Connection Solution
between devices
DECO provides a full range of chip solutions for high and low-speed data, high-definition audio, and uncompressed, zero-latency, interconnected video.
As the unit module resolution becomes higher and the amount of data to be transmitted increases, LED displays will fully enter the era of Mini/Micro LED. Currently,
The consumer electronics market is entering the era of ubiquitous connectivity, which has become the greatest driving force for DECO to gain opportunities.
In the demanding field of industrial electronic applications, DECO‘s mmWave Wireless Connection Solution, with its ability to provide …..
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On April 25, at the AI PowerDC Innovation Technology International Leaders Forum held in Shenzhen,DECO presented its world-first mmWave Wireless Isolation Technology in depth.
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2026/04
From April 22 to 24, FAIR plus 2026, a robotics industry event initiated by the Shenzhen Robotics Association, was held in Hall 9 of the Shenzhen Convention and Exhibition Center (Futian). DECO showcased its mmWave contactless interconnect chip solutions for robot joints.
09
2026/03
Shenzhen, China — March 5–7, 2026 — At ISLE 2026 (International Smart Display & Integrated System Exhibition), held at the Shenzhen World Exhibition & Convention Center (Bao’an), DECO Integration Technology Co., Ltd. (“DECO”) presented its self-developed mmWave wireless connectivity portfolio at Booth 8-F32. The showcase targeted modular LED cabinets, all-in-one displays, wireless three-in-one boards, and mmWave wireless slip rings—demonstrating wireless interconnect capabilities from static display structures to rotating operating conditions.
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2026/02
DECO has recently released an mmWave wireless EtherCAT module for embodied-robot rotary-joint scenarios—SDKT1020-P020-FETN. Using contactless mmWave rotary transmission, the module is designed to improve reliability and determinism in joint-internal interconnects.
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