Abstract:
A bespoke protective sports helmet to be worn by a player engaged in a sporting activity is provided. The bespoke helmet includes i) systems and methods for acquiring, storing and processing a player's unique data, namely the player's anatomical features, where that player is to wear a protective sports helmet, (ii) for systems and methods of using the player's unique data to manufacture a protective sports helmet with a custom formed internal padding assembly that substantially corresponds to the player's unique data, and (iii) a protective sports helmet designed using the acquired and processed unique player's data and including the custom formed internal padding assembly that provides improved fit and comfort for the player. The system and method allows for the design and manufacture of a bespoke protective sports helmet that is purposely designed and manufactured to match the player's anatomical specifications.
Abstract:
A garment with electrical components is described. The garment comprises a garment body, a power management unit, at least one battery operatively connected to the power management unit, at least one electrical element operatively connected to the power management unit, the electrical element being connected to the at least one battery via the power management unit, and an electrical connection operatively connected to the power management unit for connecting the power management unit to a power supply external to the garment, the power management unit being operable to select between a distribution of power from at least the at least one electrical connection to at least one of the at least one electrical element and the at least one battery, and the at least one battery to the electrical element. A vehicle and garment system and a method for distributing power in a garment are also disclosed.
Abstract:
Disclosed herein are sports helmets having modular components. A modular component includes an eyewear adapter that is releasably attachable to the helmet and configured to interface with corresponding eyewear in an orientation that permits a wearer of the helmet to see through the eyewear. The eyewear adapter is configured such that, in use, the eyewear adapter enhances the fit or function of the eyewear relative to the use of the helmet and the eyewear without the eyewear adapter. A modular component includes electronics modules that can be mechanically and electrically coupled to the helmet. A modular component includes other functional modules that affect the aerodynamics of the helmet, the air flow of the helmet, the fit of the helmet, or the look of the helmet.
Abstract:
Die Erfindung geht aus von einem Aufbewahrungssystem, insbesondere von einem Arbeitskleidungsaufbewahrungssystem, mit zumindest einer Aufbewahrungsvorrichtung (12a; 12b; 12c) zumindest zu einer Aufbewahrung von Arbeitskleidung (14a; 14b; 14c), mit zumindest einer kabelgebundenen und/oder kabellosen Ladevorrichtung (16a; 16b; 16c), die dazu vorgesehen ist, zumindest elektrische Energie an zumindest eine Energiespeichereinheit (18a, 20a, 22a, 24a, 26a; 18b, 20b, 22b, 24b, 26b; 18c, 20c, 22c, 24c, 26c) der Arbeitskleidung (14a; 14b; 14c) zu übertragen, und mit zumindest einer Sensorvorrichtung (28a; 28b; 28c) zumindest zu einer Erfassung von zumindest einer Kenngröße der Arbeitskleidung (14a; 14b; 14c). Es wird vorgeschlagen, dass die Ladevorrichtung (16a; 16b; 16c) dazu vorgesehen ist, verschiedene Arbeitskleidungsteile (30a, 32a, 34a, 36a, 38a; 30b, 32b, 34b, 36b, 38b; 30c, 32c, 34c, 36c, 38c; 30c) der Arbeitskleidung (14a; 14b; 14c), die an der Aufbewahrungsvorrichtung (12a; 12b; 12c) anordenbar sind, zu laden.
Abstract:
A pencil support for construction helmet, the construction helmet being of the type having a slot in the bottom of its lateral side, the slot having an elongated shape. The pencil support comprises a support portion with a back plate and a tongue forming concurrently a receptacle to accommodate a writing instrument. An anchoring portion has a pair of legs projecting downwardly from a bottom of the support portion. One or both at of the legs has a projecting foot at a bottom, and a wedge projecting in an opposite direction above a level of the foot, and a space between the legs being entirely free.
Abstract:
재난시 대피에 필요한 시간동안 착용자에게 신선한 공기를 공급하며, 착용자의 얼굴, 목, 어깨의 피부를 보호할 수 있는 헬멧형의 개인용 재난구제기가 개시된다. 이를 위해, 본 발명에 따른 헬멧형의 개인용 재난구제기는 외피와, 외피 내에 구성되는 내피와, 외피와 내피 사이에 구성되어 압축공기를 저장할 수 있는 공기 저장 공간을 형성하여 구비하는 헬멧 본체; 공기 저장 공간에 공기를 주입하기 위해 외피에 형성되는 공기 주입구에 구비되는 유입 개폐기; 헬멧 본체 내측 공간에 형성되어 착용자가 호흡하는 호흡 공간으로, 공기 저장 공간에 저장된 압축 공기를 배출하기 위한 공기 배출구를 개폐하는 배출 개폐기; 배출 개폐기를 조작하기 위해 외피에 설치되는 배출 조작기; 외피의 정면에 형성되는 투명창을 포함한다.
Abstract:
The invention relates to protective helmet that comprises a shell (1) and an interior trimming that can be adapted to the head shape of the wearer, as well as a helmet peak (2) formed integrally with the shell (1). Said helmet peak (2) is transparent and may consist of a tinted, impact-resistant material.
Abstract:
The invention provides for a safety hat (10) of the type used on construction sites and in underground mines for protecting the top of a wearer's head from impacts. The safety hat (10) includes a protective covering (12) which is designed to cover the top of a wearer's head and a brim (14) which extends from the protective covering. The brim (14) includes a transparent section (16) adjacent an operatively front portion (18) of the protective covering (12) which allows the wearer to view objects through the front of the brim (14).
Abstract:
The proposed protective helmet comprises a stable helmet shell made up of several connected segments (10, 20, 30, 40). Each segment (10, 20, 30, 40) consists substantially of a plastic foam core (12, 22, 42) which provides the requisite strength and an additional covering layer (11, 21, 41). In order to create a protective helmet which combines a particularly attractive appearance, a high degree of comfort and lightness, while also fulfilling all the safety requirements relating to the particular purposes for which it is used, and which can be manufactured simply and on an industrial scale, it is proposed that the covering layer (11, 21, 41) should be made of leather or a similar material, and that the synthetic core (12, 22, 42) should be produced and foamed in situ on the leather layer (11, 21, 41) which has been placed in a mould (100). Securing means (60) are embedded in the synthetic core (12, 22, 42) to allow the subsequent permanent, non-dissoluble assembly of the segments (10, 20, 30, 40).
Abstract:
Shockproof helmet (100) for remote assistance consisting of at least: A) one power button (115); B) one remote technical unit (200) connected to said helmet (100); C) one audio device (120), for transmitting to the user the audio coming from the remote technical unit (200); D) one microphone (130) arranged on a flexible rod (131), to receive the voice of the user; provided with one ambient microphone (133) to detect ambient noises; E) one video camera (140) on a support (141), arranged at the front of the user, to receive the video of the viewpoint of the user; F) one rechargeable battery (160) for power-supplying all the electronic devices simultaneously switched on for at least 2 hours; G) one call button (125) for establishing a connection with the remote technical unit (200); H) one memory card (150) for saving the audio and video in a virtual archive and for sending said data to the remote technical unit (200) at a later time; I) one CPU unit (170) for managing data traffic; J) one intermediate space between the external (102) and internal (101) surface, containing a memory card (150), a battery (160), a CPU unit (170) and connection cables between the battery (160) and the electronic devices, for protecting them against shocks and liquids; K) adjustable supports (250) for placing said helmet (100) on any surface.