CFBT Training with iFalconHM
CFBT Training with iFalconHM
iFalconHM is designed to support firefighters in the most challenging operational environments. For this reason, it is regularly tested and used during CFBT (Container Fire Behavior Training) sessions, where realistic fire and smoke conditions replicate real emergency scenarios.
During CFBT training carried out in dedicated fire containers, firefighters train using iFalconHM in live-fire exercises, experiencing the system in zero-visibility conditions, high temperatures, and complex confined spaces. These sessions allow users to evaluate the benefits of helmet-mounted thermal vision and real-time video sharing directly in operational contexts.
The containers shown on this page were used during joint training and testing activities and serve as realistic environments to demonstrate how iFalconHM enhances situational awareness, team coordination, and decision-making during interior firefighting operations.
iFalconHM 旨在支持消防员在最具挑战性的作战环境中执行任务。
因此,它会在集装箱火灾行为训练(CFBT)课程中定期进行测试和使用,通过逼真的火灾和烟雾环境再现真实的紧急情况。
在专用火灾集装箱中进行的CFBT训练中,消防员使用iFalconHM进行实火演练,体验零能见度,高温及复杂受限空间环境下的系统应用。这些训练让使用者能够在实际操作环境中直接评估头盔式热成像和实时视频共享的优势。
本页展示的集装箱用于联合训练和测试活动,作为真实环境示范iFalconHM在室内灭火作业中如何提升态势感知,团队协作和决策能力。


CFBT iFalconHM test in Romania
During CFBT training in Romania, iFalconHM was used in fire container exercises to observe its behavior in live-fire conditions. The tests highlighted system reliability and its role in supporting situational awareness during realistic training scenarios.

罗马尼亚CFBT iFalconHM测试
在罗马尼亚的CFBT训练中,iFalconHM在火灾集装箱演练中使用,以观察其在实火条件下的表现。测试结果凸显了系统的可靠性及其在真实训练场景中支持态势感知的作用。

CFBT iFalconHM test in Turkey
During CFBT exercises in Turkey, iFalconHM was tested in both fire containers and smoke rooms. The system was evaluated in realistic training conditions to assess performance and situational awareness support.


CFBT iFalconHM test in Warsaw
在消防大学的CFBT训练中,消防员在真实火灾和烟雾场景下测试了iFalconHM。评估重点包括系统性能,对态势感知的支持以及在实战训练条件下的信息共享能力。

华沙CFBT iFalconHM测试
在消防大学的CFBT训练中,消防员在真实火灾和烟雾场景下测试了iFalconHM。评估重点包括系统性能,对态势感知的支持以及在实战训练条件下的信息共享能力。


