Abstract:
A computing device may be joined to a cluster by discovering the device, determining whether the device is eligible to join the cluster, configuring the device, and assigning the device a cluster role. A device may be assigned to act as a cluster master, backup master, active device, standby device, or another role. The cluster master may be configured to assign tasks, such as network flow processing to the cluster devices. The cluster master and backup master may maintain global, run-time synchronization data pertaining to each of the network flows, shared resources, cluster configuration, and the like. The devices within the cluster may monitor one another. Monitoring may include transmitting status messages comprising indicators of device health to the other devices in the cluster. In the event a device satisfies failover conditions, a failover operation to replace the device with another standby device, may be performed.
Abstract:
A computing device may be joined to a cluster by discovering the device, determining whether the device is eligible to join the cluster, configuring the device, and assigning the device a cluster role. A device may be assigned to act as a cluster master, backup master, active device, standby device, or another role. The cluster master may be configured to assign tasks, such as network flow processing to the cluster devices. The cluster master and backup master may maintain global, run-time synchronization data pertaining to each of the network flows, shared resources, cluster configuration, and the like. The devices within the cluster may monitor one another. Monitoring may include transmitting status messages comprising indicators of device health to the other devices in the cluster. In the event a device satisfies failover conditions, a failover operation to replace the device with another standby device, may be performed.
Abstract:
The present invention discloses an ear thermometer with a simple-structure and easy-operation probe-cover detaching mechanism, which comprises a body having a probe and a detaching element installed to the bottom of the probe. The detaching element can be directly operated by a finger. After measurement, the user can use the detaching element to exert an outward force on a probe cover sleeving the probe and reject the probe cover from the probe. Further, the detaching element may be made of a metallic material, and magnetic elements are arranged at the corresponding positions of the probe bottom; thereby, the detaching element can be automatically restored to its original position by the attractive force of the magnetic elements. Therefore, the present invention provides an ear thermometer, which can easily reject a probe cover from the probe and has the advantages of simple structure and easy operation.
Abstract:
A surgical instrument that has an articulatable end effector. Various types of passive articulation joints are disclosed for interconnecting a proximal frame portion to the end effector to facilitate pivotal travel of the end effector relative to the proximal frame portion of the instrument.
Abstract:
A portfolio with foldable handles comprises a body; a receiving portion in the body; the receiving portion having an opened receiving space; a plurality of spacers being placed into the receiving space; the receiving space being divided into a plurality of sub-spaces; two handles; a fastener unit having one fastener sheet and two fastener plates, the fastener sheet being positioned at an inner side of one handle; one fastener plate being positioned at an inner side of the receiving portion and being at the same side having the first buckle; another fastener plate being fixed to one inner side of another handle. In an open state, the fastener sheet is fixed to the fastener plate at the same side, and in a close state, the fastener sheet is fixed to the fastener plate at another side.
Abstract:
The present invention discloses a method for calibrating an infrared thermometer, which can obtain a sensitivity of a radiation sensor of an infrared thermometer and a reference resistance of an ambient-temperature sensor of the infrared thermometer. The method of the present invention uses an infrared thermometer to detect two test objects respectively placed in two environments having different ambient temperatures to obtain output signals of the radiation sensor and resistances of the ambient-temperature sensor from the two test objects. Then, the method of the present invention uses the output signals of the radiation sensor and the resistances of the ambient-temperature sensor to work out the sensitivity of the radiation sensor and the reference resistance of the ambient-temperature sensor.
Abstract:
A system and method of dynamic routing is provided. When a connection cannot be built, execute the follows. (a) A sending-host transports messages to destination-host. If connection built, the method ends, otherwise go to step (b). (b) Find a series of routers, and put IP-addresses of routers into a list. (c) Judge whether list includes at least one IP-address; if yes, go to step (d), otherwise step (i). (d) A pointer points to the last. (e) Find a domain of IP-address pointed. (f) If a message-routing-in-charge host is found, go to step (g), otherwise step (h). (g) The sending-host transports messages to message-routing-in-charge host, and go to step (a). (h) If IP-address pointed is the first one, go to step (i), otherwise step (j). (i) The sending-host keeps messages for a period, and go to step (a). (j) Move pointer to point to the previous, and go to step (e).
Abstract:
A polytetrafluoroethylene (PTFE) fiber includes a filament obtained by partially slitting an oriented PTFE film in a lengthwise direction of the film. Emboss processing is conducted linearly along the lengthwise direction of the film and like a zigzag shape or a convexo-concave shape in a width direction of the film, followed by slitting, whereby the filament includes a network structure in which single fibrils that are opened partially are arranged regularly. A PTFE short fiber is obtained by cutting the above filament and includes a branch structure. Thereby, a PTFE fiber with a small average fineness of single fibrils, a uniform fineness and a single-peak distribution with the peak at a center of fineness and with a high production yield and uniform and stable branch structure can be provided and a method for manufacturing the PTFE fiber can be provided.