Abstract:
A coating method for liquid crystal alignment film of TFT-LCD, at least two different sized nozzles are used to perform N nested hollow rectangular coatings, the N nested hollow rectangles are ordered based on 1, 2 to N measurements sequentially from the smallest to the biggest, and a smaller sized nozzle is employed for the Nth nested hollow rectangular coating on an edge.
Abstract:
Compounds of Formula (I) or (II), processes for their production, their use as pharmaceuticals and pharmaceutical compositions comprising them.
Abstract:
A method for detecting branch fibers is provided, which includes: sending test signals to a plurality of branch fibers, where the test signals are added at ports of the optical splitting module with identification information for identifying branch fibers connected to the ports and receiving a reflection signal added with the identification information of a detected branch fiber, identifying the detected branch fiber corresponding to the reflection signal through detecting the identification information added to the reflection information, and obtaining channel characteristics of the detected branch fiber according to the reflection signal. Further, a system and an apparatus for detecting branch fibers are provided.
Abstract:
Techniques for utilizing APs and messaging service for delivering personalized message to individual mobile devices connected to internet through APs. In one example embodiment, for any particular wireless AP, a set of messages are identified based at least in part on attributes of the service subscriber associated with the particular wireless AP; and the set of messages are distributed to the particular wireless AP for further distribution to wireless devices in the vicinity of the particular wireless AP.
Abstract:
A time synchronization method and a time synchronization device in a passive optical network (PON), and a PON are provided. The method includes receiving a synchronization packet sent after time synchronization of an optical line terminal (OLT) with a master clock (MC) is achieved, wherein the synchronization packet carries a timestamp TMt1i determined after the time synchronization of the OLT is achieved, adjusting a local clock according to the timestamp to achieve time synchronization of an optical network unit/optical network terminal (ONU/ONT) with the OLT, and after the time synchronization of the OLT is achieved, instructing an slave clock (SC) to perform time synchronization. A time synchronization device and a time synchronization system for implementing the method in a PON are further provided.
Abstract:
The present invention relates to PDEI inhibitory compounds of Formula I as described herein, processes for their production, their use as pharmaceuticals and pharmaceutical compositions comprising them.
Abstract:
A heat dissipation device is provided in the present disclosure, where the heat dissipation device includes a hollow heat-sink base and a set of fluid tube. The fluid tube is inserted in the heat-sink base, and a cooling medium circulates in the fluid tube. The heat-sink base includes a heat absorption area configured to absorb heat. A cooling fluid, received in the heat-sink base, may be vaporized at the heat absorption area to absorb the heat taken by the heat absorption area, and condensed at a position that is inside the heat-sink base and away from the heat absorption area and on the fluid tube to release the absorbed heat.
Abstract:
The present invention discloses a method, device and system for managing information of an optical node in an optical distribution network, relates to management of information of an optical node in an optical distribution network, is capable of solving the problem of manual entry of information of an optical node being cumbersome, and is not limited by installation locations of the optical node. The method for managing information of an optical node in an optical distribution network includes: obtaining an identity code of an optical node; querying a pre-established optical node information table according to the identity code of the optical node, wherein the optical node information table comprises the identity code of the optical node and the installation location information of the optical node. The present invention is suitable for management of information of an optical node in an optical distribution network.
Abstract:
Embodiments of the present disclosure disclose an optical cable and an optical cable system, where the optical cable includes an SZ-shaped optical cable skeleton and a plurality of optical fiber units. Skeleton slots is recessed in a periphery of the optical cable skeleton, and the plurality of optical fiber units is grouped and respectively disposed in the corresponding skeleton slots, thereby having the advantages of being easy to strip and draw, high reliability, and long lifetime. Moreover, the optical fiber does not need to be connected when being diverged on floors during installation, thereby reducing the fusion splicing/termination connection time, simplifying the optical cable wiring, greatly reducing deployment cost of an Optical Distribution Network (ODN), and speeding up the scale deployment of the FTTX ODN; in addition, interference among the optical fibers is avoided when the optical fibers are drawn, thereby increasing reliability of the optical fibers after installation.
Abstract:
A method for load balancing based on Transparent Interconnection of Lots of Links (TRILL) is provided. Said method comprises: acquiring, by a routing bridge (RB), all current medium access control (MAC) addresses within each virtual local area network (VLAN) on a link where the RB is located. And if said RB is selected as a designated routing bridge (DRB), said RB distributes all the current MAC addresses acquired within each VLAN between said RB and other RBs on the same link according to a preset distribution rule, and notifies said other RBs to be responsible for forwarding of messages having a specified MAC address and VLAN, wherein said MAC addresses are the MAC addresses of the host devices on the link where said RB is located. If said RB is a common RB, said RB receives a notification sent by a DRB and learns that it is responsible for forwarding of messages having a MAC address and VLAN specified in said notification; and upon receiving a message sent by a host device, said RB determines whether said message is a message it is responsible for forwarding according to the VLAN and the MAC address of the host device carried by the message; if yes, said RB forwards said message; and if no, said RB discards said message.