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    • 3. 发明授权
    • Off-road rolling film vision system
    • US09708154B2
    • 2017-07-18
    • US14543794
    • 2014-11-17
    • Mark Kulik
    • Mark Kulik
    • B65H75/14B65H18/00A61F9/02B65H18/10A42B3/26B65H16/06B65H18/02
    • B65H75/14A42B3/26A61F9/025B65H16/06B65H18/00B65H18/028B65H18/103B65H2301/4493B65H2557/11
    • Disclosed is an Off-Road Rolling Film Vision System comprising a Controller Module (200), a Takeup Module (300), and a Rollout Module (400). The Controller Module (200) comprises a Command Input (205), a Controller Process Module (210), a Command Transmitter (215), and a Power Supply (220). The Controller Module (200) is configured to remotely control a Motor (325) in the Takeup Module (300). The Command Input (205) comprises at least one Button configured to accept a knuckle bump for controlling a Motor (325) in the Takeup Module (300) when the Controller Module (200) is attached to a handlebar of an off-road vehicle. The at least one Button configured to accept a knuckle bump may be configured to be adjacent to a user's metacarpophalangeal index finger joint. The at least one Button configured to accept a knuckle bump may be configured to be adjacent to a user's metacarpophalangeal thumb joint. The Takeup Module (300) comprises a Motor Compartment (305), a Takeup Spool Compartment (310), a Takeup Spool Gear Compartment (315), a Takeup Film Window (320), a Motor (325), a Motor Gearbox (330), and at least one Takeup Spool Gear (340). The Takeup Module (300) may further comprise a Takeup Spool Window (350) configured to provide a view of a Takeup Spool (345) within the Takeup Module (300). Also disclosed is a Takeup Spool (500) comprising a Spool Alignment Tab Wheel (505), a Spool Ribbed Shaft (510), a Rib Quarter Section Cutout (515), a Spool Alignment Slot Wheel (525), a Spool Alignment Tab (530), a Spool Alignment Slot (535), a Plurality of Wheel Cutouts (540), and a Plurality of Wheel Slots (545). Also disclosed is a method for maintaining clear vision with goggles comprising receiving a command input via a knuckle bump, transmitting a designated signal to a module comprising a Motor and a Takeup Spool, activating the Motor to cause the Takeup Spool to rotate, and winding a Transparent Film a designated distance over goggles.
    • 5. 发明申请
    • ADHESIVE MOUNTABLE STACK OF REMOVABLE LAYERS
    • 胶带可拆卸层的可拆卸堆叠
    • US20150359675A1
    • 2015-12-17
    • US14307189
    • 2014-06-17
    • Bart E. Wilson
    • Bart E. Wilson
    • A61F9/02
    • A42B3/26A61F9/025
    • An eye protector includes a lens configured to protect the wearer from projectiles, and an optically clear stack attached to the lens. The stack can have one or more removable layers. The eye protector also includes an optically clear dry mount adhesive layer attaching the stack to the lens. The dry mount adhesive may be self-wetting to attach the stack to the lens so that air between the stack and the lens can be removed after the stack is attached and/or adhered to the lens, for example, by applying pressure across the surface of the stack. The refractive indices of the lens, the dry mount adhesive, and each removable layer are matched to within about 0.2.
    • 眼保护器包括被配置为保护佩戴者免于射弹的透镜以及附接到透镜的光学透明的叠层。 堆叠可以具有一个或多个可移除层。 眼保护器还包括将叠层附接到透镜的光学透明的干式安装粘合剂层。 干燥安装粘合剂可以是自润湿的,以将叠层附着到透镜上,使得在叠层被附接和/或粘附到透镜上之后,可以去除叠层和透镜之间的空气,例如通过在表面上施加压力 的堆栈。 透镜,干燥粘合剂和每个可移除层的折射率匹配在约0.2内。
    • 6. 发明申请
    • OFF-ROAD ROLLING FILM VISION SYSTEM
    • US20150067952A1
    • 2015-03-12
    • US14543794
    • 2014-11-17
    • Mark Kulik
    • Mark Kulik
    • A61F9/02B65H18/00B65H16/00
    • B65H75/14A42B3/26A61F9/025B65H16/06B65H18/00B65H18/028B65H18/103B65H2301/4493B65H2557/11
    • Disclosed is an Off-Road Rolling Film Vision System comprising a Controller Module (200), a Takeup Module (300), and a Rollout Module (400). The Controller Module (200) comprises a Command Input (205), a Controller Process Module (210), a Command Transmitter (215), and a Power Supply (220). The Controller Module (200) is configured to remotely control a Motor (325) in the Takeup Module (300). The Command Input (205) comprises at least one Button configured to accept a knuckle bump for controlling a Motor (325) in the Takeup Module (300) when the Controller Module (200) is attached to a handlebar of an off-road vehicle. The at least one Button configured to accept a knuckle bump may be configured to be adjacent to a user's metacarpophalangeal index finger joint. The at least one Button configured to accept a knuckle bump may be configured to be adjacent to a user's metacarpophalangeal thumb joint. The Takeup Module (300) comprises a Motor Compartment (305), a Takeup Spool Compartment (310), a Takeup Spool Gear Compartment (315), a Takeup Film Window (320), a Motor (325), a Motor Gearbox (330), and at least one Takeup Spool Gear (340). The Takeup Module (300) may further comprise a Takeup Spool Window (350) configured to provide a view of a Takeup Spool (345) within the Takeup Module (300). Also disclosed is a Takeup Spool (500) comprising a Spool Alignment Tab Wheel (505), a Spool Ribbed Shaft (510), a Rib Quarter Section Cutout (515), a Spool Alignment Slot Wheel (525), a Spool Alignment Tab (530), a Spool Alignment Slot (535), a Plurality of Wheel Cutouts (540), and a Plurality of Wheel Slots (545). Also disclosed is a method for maintaining clear vision with goggles comprising receiving a command input via a knuckle bump, transmitting a designated signal to a module comprising a Motor and a Takeup Spool, activating the Motor to cause the Takeup Spool to rotate, and winding a Transparent Film a designated distance over goggles.