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    • 2. 发明授权
    • Low fuel indicator system
    • 低燃料指示器系统
    • US4513277A
    • 1985-04-23
    • US472712
    • 1983-03-07
    • John T. MoorePeter E. CorriganJames A. Gardner
    • John T. MoorePeter E. CorriganJames A. Gardner
    • B60K15/077F02M37/00G01F23/00G08B21/00
    • G01F23/0061
    • A low fuel indicator system 10 for a motor vehicle comprises a light-emitting indicator 12 which is energized or de-energized by an output signal derived from a voltage comparator 14 which receives a reference voltage from a reference voltage source 20 and a variable voltage signal from a time delay circuit 22, which variable voltage signal is derived from a voltage signal generated by a fuel level sensor in a fuel tank of the vehicle. The light-emitting indicator 12 is energized when the fuel level in the fuel tank falls below a predetermined low level, and time delay circuit 22 operates to isolate the voltage comparator 14 and light-emitting indicator 12 from temporary variations in fuel level produced by "fuel-slosh" in the fuel tank caused by variations in the motion or orientation of the motor vehicle. In a preferred embodiment of the invention, a time delay override circuit 24 is included which is operable upon switching on the ignition circuit of the vehicle to energize the light-emitting indicator 12 if the level of fuel in the fuel tank is above said predetermined low level but below a second predetermined level corresponding approximately to the fuel tank being a quarter full.
    • 用于机动车辆的低燃料指示器系统10包括发光指示器12,该发光指示器12通过从电压比较器14得到的输出信号被激励或去激励,该电压比较器14接收来自参考电压源20的参考电压和可变电压信号 来自时间延迟电路22,该可变电压信号是从车辆的燃料箱中的燃料液位传感器产生的电压信号导出的。 当燃料箱中的燃料液位低于预定的低电平时,发光指示器12通电,并且时间延迟电路22操作以将电压比较器14和发光指示器12与由“ 燃料箱内的燃料泄漏“是由于机动车辆的运动或方向的变化引起的。 在本发明的优选实施例中,包括延时超控电路24,其可以在接通车辆的点火电路时操作,以便在燃料箱中的燃料水平高于所述预定低电平时为发光指示器12通电 但低于第二预定水平,其大致对应于四分之一满的燃料箱。
    • 3. 发明授权
    • Torso exerciser
    • 托罗练习者
    • US4111417A
    • 1978-09-05
    • US768361
    • 1977-02-14
    • James A. Gardner
    • James A. Gardner
    • A63B21/05A63B23/035A63B23/12A63B21/04
    • A63B23/03533A63B21/05A63B2022/003A63B22/203A63B23/1236
    • The exerciser comprises an elongated frame which is supported parallel and close to a horizontal support surface. The frame includes a pair of spaced parallel longitudinal members, each of which is hollow and has an open slot in its top side. A pair of longitudinally spaced handles having depending legs at opposite ends thereof span the space between slots in the two longitudinal frame members. The legs of each of the handles extend through the open slots of the longitudinal members and are secured to a separate pair of slides which are slidably mounted in the hollow longitudinal members. Compression coil springs within the longitudinal members on opposite sides of the slides bias the handles to a neutral position where each handle is spaced on opposite sides of the longitudinal center of the frame by a distance approximately equal to one-half of the distance between the user's arms. The springs act as both shock absorbers and as a form of resistance to sliding motion of the handles which can be adjusted by the user. A chest pad is placed in the mid-section of the frame between the handles.
    • 5. 发明申请
    • Asymmetric Data Mirroring
    • 不对称数据镜像
    • US20110179243A1
    • 2011-07-21
    • US13077370
    • 2011-03-31
    • James A. GardnerDarrell G. Freeman
    • James A. GardnerDarrell G. Freeman
    • G06F12/16
    • H04L67/1097G06F11/1443G06F11/2064G06F11/2071H04L43/10H04L67/1095H04L67/2842H04L69/28
    • An asymmetric data mirroring method with a local storage device and a remote storage device being separated by large distances is disclosed. A server determines a predetermined time period associated with a round trip latency between the server and a remote storage device. The server submits a request to a local storage device, a remote storage device and a memory device disposed between the server and the remote storage device. The server submits additional requests to the local and remote storage devices during the predetermined time period. The server stores a copy of each request submitted by the server to the remote storage device in a memory disposed between the server and the remote storage device while the server waits for whether an acknowledgement associated with the request has been received from the remote storage device during the predetermined time period. The server resubmits the request and the additional requests to the remote storage device if the acknowledgement is not received. If an acknowledgement is received, the server continues submission of additional new requests to the local and remote storage devices.
    • 公开了一种具有本地存储设备和远距离分离的远程存储设备的非对称数据镜像方法。 服务器确定与服务器和远程存储设备之间的往返等待时间相关联的预定时间段。 服务器向服务器和远程存储设备之间的本地存储设备,远程存储设备和存储设备提交请求。 服务器在预定时间段内向本地和远程存储设备提交附加请求。 服务器将服务器提交的每个请求的副本存储在设置在服务器和远程存储设备之间的存储器中的远程存储设备中,同时服务器等待在远程存储设备期间是否已经从远程存储设备接收到与该请求相关联的确认 预定时间段。 如果未收到确认,则服务器将请求和附加请求重新提交给远程存储设备。 如果接收到确认,服务器将继续向本地和远程存储设备提交其他新请求。
    • 6. 发明授权
    • Asymmetric data mirroring
    • 不对称数据镜像
    • US06976186B1
    • 2005-12-13
    • US10228776
    • 2002-08-27
    • James A. Gardner
    • James A. Gardner
    • G06F11/00
    • G06F11/1443G06F11/2071
    • An asymmetric data mirroring method with a local storage device and a remote storage device being separated by large distances is disclosed. A server determines a predetermined time period associated with a round trip latency between the server and a remote storage device. The server submits a request to a local storage device and to the remote storage device. The server submits additional requests to the local and remote storage devices during the predetermined time period. The server determines whether an acknowledgement associated with the request has been received from the remote storage device during the predetermined time period. The server resubmits the request and the additional requests to the remote storage device if the acknowledgement is not received. If an acknowledgement is received, the server continues submission of additional new requests to the local and remote storage devices.
    • 公开了一种具有本地存储设备和远距离分离的远程存储设备的非对称数据镜像方法。 服务器确定与服务器和远程存储设备之间的往返等待时间相关联的预定时间段。 服务器向本地存储设备和远程存储设备提交请求。 服务器在预定时间段内向本地和远程存储设备提交附加请求。 服务器确定在预定时间段期间是否已经从远程存储设备接收到与请求相关联的确认。 如果未收到确认,则服务器将请求和附加请求重新提交给远程存储设备。 如果接收到确认,服务器将继续向本地和远程存储设备提交其他新请求。
    • 7. 发明授权
    • Asymmetric data mirroring
    • 不对称数据镜像
    • US08443229B2
    • 2013-05-14
    • US13077370
    • 2011-03-31
    • James A. GardnerDarrell G. Freeman
    • James A. GardnerDarrell G. Freeman
    • G06F11/00
    • H04L67/1097G06F11/1443G06F11/2064G06F11/2071H04L43/10H04L67/1095H04L67/2842H04L69/28
    • An asymmetric data mirroring method with a local storage device and a remote storage device being separated by large distances is disclosed. A server determines a predetermined time period associated with a round trip latency between the server and a remote storage device. The server submits a request to a local storage device, a remote storage device and a memory device disposed between the server and the remote storage device. The server submits additional requests to the local and remote storage devices during the predetermined time period. The server stores a copy of each request submitted by the server to the remote storage device in a memory disposed between the server and the remote storage device while the server waits for whether an acknowledgement associated with the request has been received from the remote storage device during the predetermined time period. The server resubmits the request and the additional requests to the remote storage device if the acknowledgement is not received. If an acknowledgement is received, the server continues submission of additional new requests to the local and remote storage devices.
    • 公开了一种具有本地存储设备和远距离分离的远程存储设备的非对称数据镜像方法。 服务器确定与服务器和远程存储设备之间的往返等待时间相关联的预定时间段。 服务器向服务器和远程存储设备之间的本地存储设备,远程存储设备和存储设备提交请求。 服务器在预定时间段内向本地和远程存储设备提交附加请求。 服务器将服务器提交的每个请求的副本存储在设置在服务器和远程存储设备之间的存储器中的远程存储设备中,同时服务器等待在远程存储设备期间是否已经从远程存储设备接收到与该请求相关联的确认 预定时间段。 如果未收到确认,则服务器将请求和附加请求重新提交给远程存储设备。 如果接收到确认,服务器将继续向本地和远程存储设备提交其他新请求。
    • 9. 发明授权
    • Asymmetric data mirroring
    • 不对称数据镜像
    • US07941694B1
    • 2011-05-10
    • US12231937
    • 2008-09-08
    • James A. GardnerDarrell G. Freeman
    • James A. GardnerDarrell G. Freeman
    • G06F11/00
    • H04L67/1097G06F11/1443G06F11/2064G06F11/2071H04L43/10H04L67/1095H04L67/2842H04L69/28
    • An asymmetric data mirroring method with a local storage device and a remote storage device being separated by large distances is disclosed. A server determines a predetermined time period associated with a round trip latency between the server and a remote storage device. The server submits a request to a local storage device, a remote storage device and a memory device disposed between the server and the remote storage device. The server submits additional requests to the local and remote storage devices during the predetermined time period. The server stores a copy of each request submitted by the server to the remote storage device in a memory disposed between the server and the remote storage device while the server waits for whether an acknowledgement associated with the request has been received from the remote storage device during the predetermined time period. The server resubmits the request and the additional requests to the remote storage device if the acknowledgement is not received. If an acknowledgement is received, the server continues submission of additional new requests to the local and remote storage devices.
    • 公开了一种具有本地存储设备和远距离分离的远程存储设备的非对称数据镜像方法。 服务器确定与服务器和远程存储设备之间的往返等待时间相关联的预定时间段。 服务器向服务器和远程存储设备之间的本地存储设备,远程存储设备和存储设备提交请求。 服务器在预定时间段内向本地和远程存储设备提交附加请求。 服务器将服务器提交的每个请求的副本存储在设置在服务器和远程存储设备之间的存储器中的远程存储设备中,同时服务器等待在远程存储设备期间是否已经从远程存储设备接收到与该请求相关联的确认 预定时间段。 如果未收到确认,则服务器将请求和附加请求重新提交给远程存储设备。 如果接收到确认,服务器将继续向本地和远程存储设备提交其他新请求。
    • 10. 发明授权
    • Asymmetric data mirroring
    • 不对称数据镜像
    • US07549080B1
    • 2009-06-16
    • US11203420
    • 2005-08-12
    • James A. GardnerDarrell G. Freeman
    • James A. GardnerDarrell G. Freeman
    • G06F11/00
    • H04L67/1097G06F11/1443G06F11/2064G06F11/2071H04L43/10H04L67/1095H04L67/2842H04L69/28
    • An asymmetric data mirroring method with a local storage device and a remote storage device being separated by large distances is disclosed. A server determines a predetermined time period associated with a round trip latency between the server and a remote storage device. The server submits a request to a local storage device, a remote storage device and a memory device disposed between the server and the remote storage device. The server submits additional requests to the local and remote storage devices during the predetermined time period. The server stores a copy of each request submitted by the server to the remote storage device in a memory disposed between the server and the remote storage device while the server waits for whether an acknowledgement associated with the request has been received from the remote storage device during the predetermined time period. The server resubmits the request and the additional requests to the remote storage device if the acknowledgement is not received. If an acknowledgement is received, the server continues submission of additional new requests to the local and remote storage devices. An acknowledgement is received by the server from the memory disposed between the server and the remote storage device for each request from the server. The contents of the memory are written to the remote storage device if the acknowledgments from the memory are not received by the server. If the memory disposed between the server and the remote storage device fails to acknowledge the server, the contents of a memory associated with the server are written to the remote storage device. When either memory has been successfully written to the remote storage device, normal I/O operations continue. If neither memory has successfully written to the remote storage device, an error state is triggered.
    • 公开了一种具有本地存储设备和远距离分离的远程存储设备的非对称数据镜像方法。 服务器确定与服务器和远程存储设备之间的往返等待时间相关联的预定时间段。 服务器向服务器和远程存储设备之间的本地存储设备,远程存储设备和存储设备提交请求。 服务器在预定时间段内向本地和远程存储设备提交附加请求。 服务器将服务器提交的每个请求的副本存储在设置在服务器和远程存储设备之间的存储器中的远程存储设备中,同时服务器等待在远程存储设备期间是否已经从远程存储设备接收到与该请求相关联的确认 预定时间段。 如果未收到确认,则服务器将请求和附加请求重新提交给远程存储设备。 如果接收到确认,服务器将继续向本地和远程存储设备提交其他新请求。 服务器从服务器和远程存储设备之间的存储器接收来自服务器的每个请求的确认。 如果服务器没有接收到来自存储器的确认,则存储器的内容被写入远程存储设备。 如果配置在服务器和远程存储设备之间的内存无法确认服务器,则将与服务器相关联的内存的内容写入远程存储设备。 当任何一个存储器已成功写入远程存储设备时,正常的I / O操作将继续。 如果内存都没有成功写入远程存储设备,则会触发错误状态。