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Measures against "Falls from Height," which account for approximately 1/4 of fatal accidents! New release of "Harness Alert" safety block compatible model that automatically detects unused safety belt hooks!

NQ Score 100/100

AI Summary (NQ-processed)

Yoshikawa Kogyo Co., Ltd. has launched a new safety block compatible model for its "Harness Alert" system, which automatically detects when safety belt hooks are not used during work at height. This model supports sites using safety blocks, such as bridge construction, roof work, ladder climbing, and truck loading/unloading, expanding safety measures for high-altitude work. Inquiries, demonstrations, and requests for materials will begin in April 2026, with sequential shipments scheduled from late May 2026.

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Frequently Asked Questions

Q: What is the name of the company that launched the new safety block compatible model of the Harness Alert system?
A: Yoshikawa Kogyo Co., Ltd., headquartered in Kitakyushu City, Fukuoka Prefecture, launched the new safety block compatible model of the Harness Alert system.
Q: What does the Harness Alert system automatically detect during work at height?
A: The Harness Alert system automatically detects when safety belt hooks are returned to the hook holder, indicating an unused state during work at height.
Q: When will Yoshikawa Kogyo begin shipping the new Harness Alert safety block compatible model?
A: Sequential shipments of the new Harness Alert safety block compatible model are scheduled to begin from late May 2026.
Q: What types of work sites are expected to use the new Harness Alert safety block compatible model?
A: The new model is designed for use in bridge construction, roof work, ladder climbing, and truck loading/unloading work sites.
Q: According to the Ministry of Health, Labour and Welfare, what proportion of fatal industrial accidents are caused by falls from height?
A: According to the Ministry of Health, Labour and Welfare's 'Status of Industrial Accidents,' approximately one in four fatal industrial accidents are due to falls from height.