会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Turkey Fryer With Complete Splatter Protection
    • 土耳其炸锅具有完全的飞溅保护
    • US20140020569A1
    • 2014-01-23
    • US13552732
    • 2012-07-19
    • James Webb
    • James Webb
    • A47J37/12
    • A47J37/1204
    • A fryer for deep frying a turkey has an outer cooking pot for containing hot oil. A splatter sleeve is telescopically slidable into the pot, the sleeve having a surrounding side wall, an open top surrounded by a top sleeve rim and an open bottom surrounded by a bottom sleeve rim. A lid is sealingly seatable upon the top sleeve rim and has a lid hole. A lid latch latches the lid to the top sleeve rim. A turkey support has a turkey support base, extends upwardly from the base to a handle top end and is insertable through the hole in the lid. When these components and a turkey are assembled, suspended from the handle and lowered into hot cooking oil, the sleeve is sufficiently long that it enters the oil before the turkey thereby assuring a complete splatter barrier.
    • 用于炸土火鸡的油炸锅有一个用于容纳热油的外锅。 喷雾套筒可伸缩地滑入锅中,套筒具有周围的侧壁,由顶部套筒边缘包围的开放顶部和由底部套筒边缘包围的开放底部。 盖子可以密封地位于顶部套筒边缘上并且具有盖孔。 盖子闩锁将盖子锁定到顶部套筒边缘。 火鸡支架有一个火鸡支撑底座,从基座向上延伸到手柄顶端,并可通过盖子上的孔插入。 当这些组件和火鸡组装起来,从手柄悬挂下来并放入热烹饪油中时,套筒足够长,使其在火鸡之前进入油中,从而确保完全的飞溅屏障。
    • 4. 发明授权
    • Wastewater treatment system
    • 污水处理系统
    • US07172687B2
    • 2007-02-06
    • US10791685
    • 2004-03-02
    • James Webb
    • James Webb
    • C02F1/70
    • C02F1/008C02F1/687C02F2209/06C02F2209/29C02F2209/40C02F2303/18C02F2303/185
    • A water treatment system for treating water. The water treatment system includes a primary water treatment station and a solid-based sulfurous generator downstream from the primary water treatment station for producing aqueous sulfurous acid for further treatment of the water. In one embodiment, the solid-based sulfurous generator includes a hydraulic air inlet shut off valve safety system for automatically reducing the combustion air to the sulfurous generator when water is not delivered to the solid-based sulfurous generator. Also, in one embodiment, the water treatment system includes a control system that monitors the pH of the treated water to control the water flow rate through the solid-based sulfurous generator to achieve the desired concentration of sulfurous acid in the water being treated.
    • 一种处理水的水处理系统。 水处理系统包括一次水处理站和一次水处理站下游的固体亚硫酸盐发生器,用于生产含水亚硫酸以进一步处理水。 在一个实施方案中,固体基硫发生器包括液压进气截止阀安全系统,用于当水不输送到固体基硫发生器时,自动减少向亚硫酸发生器的燃烧空气。 此外,在一个实施方案中,水处理系统包括控制系统,其监测经处理的水的pH以控制通过固体基硫发生器的水流速,以在待处理的水中达到所需浓度的亚硫酸。
    • 6. 发明申请
    • Wastewater treatment system
    • 污水处理系统
    • US20050011820A1
    • 2005-01-20
    • US10791685
    • 2004-03-02
    • James Webb
    • James Webb
    • C02F1/00C02F1/68C02F1/76
    • C02F1/008C02F1/687C02F2209/06C02F2209/29C02F2209/40C02F2303/18C02F2303/185
    • A water treatment system for treating water. The water treatment system includes a primary water treatment station and a solid-based sulfurous generator downstream from the primary water treatment station for producing aqueous sulfurous acid for further treatment of the water. In one embodiment, the solid-based sulfurous generator includes a hydraulic air inlet shut off valve safety system for automatically reducing the combustion air to the sulfurous generator when water is not delivered to the solid-based sulfurous generator. Also, in one embodiment, the water treatment system includes a control system that monitors the pH of the treated water to control the water flow rate through the solid-based sulfurous generator to achieve the desired concentration of sulfurous acid in the water being treated.
    • 一种处理水的水处理系统。 水处理系统包括一次水处理站和一次水处理站下游的固体亚硫酸盐发生器,用于生产含水亚硫酸以进一步处理水。 在一个实施方案中,固体基硫发生器包括液压进气截止阀安全系统,用于当水不输送到固体基硫发生器时,自动减少向亚硫酸发生器的燃烧空气。 此外,在一个实施方案中,水处理系统包括控制系统,其监测经处理的水的pH以控制通过固体基硫发生器的水流速,以在待处理的水中达到所需浓度的亚硫酸。
    • 7. 发明授权
    • Special encoding of known bad data
    • 已知不良数据的特殊编码
    • US06662319B1
    • 2003-12-09
    • US09652314
    • 2000-08-31
    • David Arthur James Webb, Jr.Richard E. KesslerSteve Lang
    • David Arthur James Webb, Jr.Richard E. KesslerSteve Lang
    • G06F1110
    • G06F11/0763G06F11/0724
    • A multi-processor system in which each processor receives a message from another processor in the system. The message may contain corrupted data that was corrupted during transmission from the preceding processor. Upon receiving the message, the processor detects that a portion of the message contains corrupted data. The processor then replaces the corrupted portion with a predetermined bit pattern known or otherwise programmed into all other processors in the system. The predetermined bit pattern indicates that the associated portion of data was corrupted. The processor that detects the error in the message preferably alerts the system that an error has been detected. The message now containing the predetermined bit pattern in place of the corrupted data is retransmitted to another processor. The predetermined bit pattern will indicate that an error in the message was detected by the previous processor. In response, the processor detecting the predetermined bit pattern preferably will not alert the system of the existence of an error. The same message with the predetermined bit pattern can be retransmitted to other processors which also will detect the presence of the predetermined bit pattern and in response not alert the system of the presence of an error. As such, because only the first processor to detect an error alerts the system of the error and because messages containing uncorrectable errors still are transmitted through the system, fault isolation is improved and the system is less likely to fall into a deadlock condition.
    • 一种多处理器系统,其中每个处理器从系统中的另一处理器接收消息。 消息可能包含在从前一个处理器传输过程中损坏的损坏的数据。 处理器收到消息后,检测到消息的一部分包含损坏的数据。 然后,处理器以已知或以其他方式编程到系统中的所有其他处理器的预定位模式来替换被破坏的部分。 预定位模式指示相关联的数据部分已损坏。 检测消息中的错误的处理器最好提醒系统检测到错误。 现在包含预定位模式以代替已损坏数据的消息被重新发送到另一个处理器。 预定的位模式将指示消息中的错误被先前的处理器检测到。 作为响应,优选地,检测预定位模式的处理器不会警告系统存在错误。 具有预定位模式的相同消息可以被重新发送到其他处理器,其也将检测预定位模式的存在,并且在响应时不向系统警告存在错误。 因此,由于只有第一个处理器检测错误才会使系统发生错误,并且由于包含不可校正错误的消息仍然通过系统传输,所以故障隔离得到改善,系统不太可能陷入死锁状态。