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    • 1. 发明申请
    • MULTIREGION HEATED EYE SHIELD
    • 多重加热眼镜
    • US20140027436A1
    • 2014-01-30
    • US14040683
    • 2013-09-29
    • JACK CORNELIUS
    • JACK CORNELIUS
    • H05B1/00
    • H05B1/00A42B3/245A61F9/022A61F9/028A61F9/04B63C11/12B63C11/28G02C11/08
    • Eye shield device adapted for fog prevention for use in a ski goggle, dive mask, medical or testing face shield or the like, while preventing undesirable hot spots on the eye shield, comprising an optically-transparent substrate, a plurality of conductive regions defined on the substrate and connected to a powered circuit of one or more channels. The regions on the substrate are electrically isolated from each other in a first embodiment, and the regions on the substrate are not electrically isolated, or contiguous with adjacent regions on the substrate, in a second embodiment. The regions may be uniformly-sized or of varying sizes and shapes from one region to the next region, and resistivity per square of heating material applied to the regions may be selected based on formulation of the heating material and/or thickness of the heating material.
    • 适用于防雾用于防滑镜,潜水面罩,医疗或测试面罩等的防护眼装置,同时防止眼罩上的不希望的热点,包括光学透明基底,多个导电区域 基板并连接到一个或多个通道的供电电路。 在第二实施例中,衬底上的区域在第一实施例中彼此电隔离,并且衬底上的区域不是电隔离的,或者与衬底上的相邻区域邻接。 这些区域可以从一个区域到下一个区域的尺寸和形状均匀地变化,并且可以基于加热材料的配方和/或加热材料的厚度来选择施加到该区域的加热材料的每平方的每个电阻率 。
    • 4. 发明授权
    • Low rotational inertia shuttle system with a flattened sinusoidal carriage velocity
    • 低旋转惯性梭系统具有平坦的正弦运载速度
    • US06715947B1
    • 2004-04-06
    • US09877545
    • 2001-06-08
    • Craig Jack CorneliusJohn Wayne WhitingCharles Gordon Whitaker
    • Craig Jack CorneliusJohn Wayne WhitingCharles Gordon Whitaker
    • B41J2314
    • B41J25/006
    • A low rotational inertia shuttle system (24) for a dot matrix line printer (20) is disclosed. The low rotational inertia shuttle system (24) includes an elongate support structure (26), a carriage (22) and a counterbalance (62). The carriage and the counterbalance are reciprocally mounted on the support structure. The low rotational inertia shuttle system also includes a reciprocating assembly (60) disposed on the support structure for reciprocating the carriage and the counterbalance. The reciprocating assembly has an inertia that is purposely minimized with respect to the mass of the carriage and the counterbalance, such that the printer operates at a substantially constant level of kinetic energy to produce a substantially linear velocity profile for the carriage. The low rotational inertia shuttle system further includes a rotational mechanism (64) that is coupled to the reciprocating assembly for controlling energy applied to the reciprocating assembly in a way that maximizes the linearity of the carriage velocity profile.
    • 公开了一种用于点阵线打印机(20)的低旋转惯性穿梭系统(24)。 低旋转惯性穿梭系统(24)包括细长的支撑结构(26),滑架(22)和平衡(62)。 托架和平衡件相互安装在支撑结构上。 低旋转惯性穿梭系统还包括设置在支撑结构上的往复运动组件(60),用于使滑架和平衡板往复运动。 往复式组件具有相对于托架和平衡块的质量有意地最小化的惯性,使得打印机以基本上恒定的动能水平运行,以产生用于托架的基本线性的速度分布。 低旋转惯性梭系统还包括旋转机构(64),该旋转机构(64)联接到往复运动组件,用于以使滑架速度分布线性最大化的方式控制施加到往复运动组件的能量。
    • 5. 发明授权
    • Fan array control system
    • 风机阵列控制系统
    • US09188355B1
    • 2015-11-17
    • US13342902
    • 2012-01-03
    • Don AllenJay KamaniPhuong LeJack Cornelius
    • Don AllenJay KamaniPhuong LeJack Cornelius
    • F24F11/00
    • F24F11/77F24F11/0001F24F11/64
    • A system and method for intelligent management of an array of fans. The system uses mean-time-between-failure, fan usage and other data in add ventilation, subtract ventilation and recycle array routines to maximize the life of the fans and the array. The system comprises a primary embodiment making use of smart fans in the array, each smart fan including a fan and appropriate control electronics capable of processing commands received from a smart fan array controller. Fan control signals are multiplexed over a local operating network power line using carrier communication protocols, command messages and data values, all to accomplish a goal of the system to maximize fan life. In an alternate embodiment, fan and array control electronics are integrated onto the fan array controller itself and power is provided to conventional fans using a conventional wiring harness.
    • 用于智能管理风扇阵列的系统和方法。 该系统使用平均故障间隔时间,风扇使用率和其他数据进行增加通风,减去通风和循环阵列程序,以最大限度地延长风扇和阵列的使用寿命。 该系统包括使用阵列中的智能风扇的主要实施例,每个智能风扇包括风扇和能够处理从智能风扇阵列控制器接收的命令的适当的控制电子装置。 风扇控制信号通过使用载波通信协议,命令消息和数据值的本地操作网络电力线进行复用,以实现系统的目标,以最大限度地提高风扇寿命。 在替代实施例中,风扇和阵列控制电子器件集成到风扇阵列控制器本身上,并且使用传统的线束将功率提供给常规风扇。
    • 6. 发明申请
    • BATTERY COMPENSATION SYSTEM USING PWM
    • 使用PWM的电池补偿系统
    • US20140033409A1
    • 2014-02-06
    • US14046969
    • 2013-10-06
    • Vincent O'MalleyJack Cornelius
    • Vincent O'MalleyJack Cornelius
    • H02M3/156G02B27/00A61F9/02
    • G02B27/0006A42B3/245A61F9/022A61F9/025A61F9/028A61F9/04B63C11/12B63C11/28G02C11/08H02M3/1563Y10T307/422
    • Compensation system adapted for use with a battery-powered, PWM-driven portable electronic device to enable consistent power to the device load despite battery voltage drop resulting from battery depletion, comprising: a voltage divider circuit for proportionally adjusting the voltage to a measurable range; an analog-to-digital converter for receiving the output from the voltage divider and converting it into a digital voltage value; and a microprocessing unit for running software code steps for receiving digital voltage input and user-determined power setting input for determining a compensating duty cycle for application by the software to the PWM to drive the load consistently at the user-determined power setting despite decrease in battery voltage resulting from battery depletion.
    • 补偿系统适用于与电池供电的PWM驱动的便携式电子设备一起使用,以使得由于电池耗尽而导致的电池电压下降,能够使器件负载的一致的功率,包括:分压器电路,用于将电压成比例地调节到可测量的范围; 模数转换器,用于接收分压器的输出并将其转换成数字电压值; 以及微处理单元,用于运行用于接收数字电压输入和用户确定的功率设置输入的软件代码步骤,用于确定用于软件向PWM施加的补偿占空比,以便以用户确定的功率设置始终如一地驱动负载, 由电池耗尽造成的电池电压。
    • 7. 发明申请
    • PWM HEATING SYSTEM FOR EYE SHIELD
    • 用于眼睛护理的PWM加热系统
    • US20130212765A1
    • 2013-08-22
    • US13397691
    • 2012-02-16
    • JACK CORNELIUS
    • JACK CORNELIUS
    • A61F9/00
    • A42B3/245A61F9/022A61F9/028B63C11/12B63C11/28G02C11/08H05B1/023H05B3/84H05B2203/013
    • Eye-shield condensation preventing system comprising an eye shield adapted for protecting a user's eyes and adapted for defining at least a partially enclosed space between the user's eyes and the eye shield, a power source, a pulse-width modulator preferably comprised of a microcomputer, switching means, preferably comprised of a MOSFET device, that is responsive to the pulse-width modulator, a preferably indium-tin-oxide (ITO) heating element on the eye shield, and a circuit interconnecting the power source, the pulse-width modulator, the switching means and the heating element for controlling heating of the eye shield. In one embodiment the eye shield is divided into a plurality of heating regions. A current adjustment means, sensors, and optionally user-selectable profiles are employed to allow heating adjustment or automated anti-fog capability and variable condition adaptability of the invention.
    • 防护眼罩结露防止系统,包括适于保护使用者的眼睛并适于限定使用者眼睛与眼罩之间的至少一部分封闭空间的眼罩,电源,优选由微计算机构成的脉宽调制器, 优选地包括MOSFET器件的开关装置,其响应脉冲宽度调制器,优选在护罩上的铟锡氧化物(ITO)加热元件,以及将电源互连的电路,脉冲宽度调制器 ,切换装置和用于控制眼罩加热的加热元件。 在一个实施例中,眼罩被分成多个加热区域。 使用电流调节装置,传感器和可选的用户可选择的轮廓以允许本发明的加热调节或自动防雾能力和可变状态适应性。
    • 8. 发明授权
    • Multiregion heated eye shield
    • 多重加热眼罩
    • US09210737B2
    • 2015-12-08
    • US14040683
    • 2013-09-29
    • Jack Cornelius
    • Jack Cornelius
    • H05B1/00A61F9/04A42B3/24B63C11/12G02C11/08A61F9/02B63C11/28
    • H05B1/00A42B3/245A61F9/022A61F9/028A61F9/04B63C11/12B63C11/28G02C11/08
    • Eye shield device adapted for fog prevention for use in a ski goggle, dive mask, medical or testing face shield or the like, while preventing undesirable hot spots on the eye shield, comprising an optically-transparent substrate, a plurality of conductive regions defined on the substrate and connected to a powered circuit of one or more channels. The regions on the substrate are electrically isolated from each other in a first embodiment, and the regions on the substrate are not electrically isolated, or contiguous with adjacent regions on the substrate, in a second embodiment. The regions may be uniformly-sized or of varying sizes and shapes from one region to the next region, and resistivity per square of heating material applied to the regions may be selected based on formulation of the heating material and/or thickness of the heating material.
    • 适用于防雾用于防滑镜,潜水面罩,医疗或测试面罩等的防护眼装置,同时防止眼罩上的不希望的热点,包括光学透明基底,多个导电区域 基板并连接到一个或多个通道的供电电路。 在第二实施例中,衬底上的区域在第一实施例中彼此电隔离,并且衬底上的区域不是电隔离的,或者与衬底上的相邻区域邻接。 这些区域可以从一个区域到下一个区域的尺寸和形状均匀地变化,并且可以基于加热材料的配方和/或加热材料的厚度来选择施加到该区域的加热材料的每平方的每个电阻率 。