1. Field of the Invention
The invention relates to a PDA (power distribution apparatus) having capability for color management, and more particularly to a PDU (power distribution unit) can be provided with a displayer, the screen color of the displayer can display different color according to the management item, thereby executing the visualize management of the PDA.
2. Description of Related Art
A prior-art is disclosed in U.S. Pat. No. 8,639,459, the prior-art disclosed a PDU power monitoring module can be used to control and store an address of each PDU, each rack system may have only one rack PDU, or more than two rack PDUs. The prior-art can monitor each PDU by way of a network, but the wiring arrangement of rack room is complicated. In the rack room, the maintenance staff can not easy to identify the electric power source of each PDU, the load type of each PDU and the network of the load. If the rack room needs to execute an expansion, a repair or a check, the maintenance staff can not easy to find out a correct location of the PDU and a correct location of the load. Thus, the prior-art can be improved by the visualize management of the rack room. Moreover, if the rack room uses the shell color of the PDU to achieve the visualize management, then the color of the PDU is fixed, the PDU color can not adjust to adapt to the apparatus function, or the PDU color can not change to adapt to the wiring arrangement.
It is therefore a first object of the invention to provide a PDA (power distribution apparatus) having capability for color management, the PDA comprises a first PDU (power distribution unit) and a second PDU, the first PDU can electrically connect an external first power source, the second PDU can electrically connect an external second power source; wherein the first PDU can be provided with a first displayer, the screen color of the first displayer can be set as a first color, the second PDU can be provided with a second displayer, the screen color of the second displayer can be set as a second color, thereby identifying and managing the electric power source of the PDA.
It is therefore second object of the invention to provide a PDA having capability for color management, the PDA comprises a first PDU and a second PDU, the first PDU can be provided with a first communication interface, the second PDU can be provided with a second communication interface; wherein the first communication interface and the second communication interface can be a Master-Slave communication frame. When the first communication interface is communicatively connected to the second communication interface, the first communication interface and the second communication interface can form a Daisy-Chain, the first PDU can serve as a Master PDU, the screen color of the first PDU can be displayed as a first color, the second PDU can serve as a Slave PDU, the screen color of the second PDU can be displayed as a second color, thereby identifying the Master-Slave relationship of the first PDU and the second PDU.
It is therefore third object of the invention to provide a PDA having capability for color management, the PDA comprises a first PDU and a second PDU, the first PDU can supply power to a first load, the second PDU can supply power to a second load; wherein the first PDU can be provided with a first displayer, the screen color of the first displayer can be set as a first color, and the second PDU can be provided with a second displayer, the screen color of the second displayer can be set as a second color, thereby identifying and managing the loads of the PDA.
It is therefore fourth object of the invention to provide a PDA having capability for color management, the PDA comprises a PDU, the PDU can be provided with an AST (Auto Transfer Switch), the PDU can electrically connect an external first power source and an external second power source; wherein the PDU can be provided with a displayer, when the AST is switched to connect the first power source to supply power, the screen color of the displayer can be displayed as a first color; when the AST is switched to connect the second power source to supply power, the screen color of the displayer can be displayed as a second color, thereby identifying and managing the source of electrical power of the PDA.
First advantages of the invention is, the PDA has the capability for intuitive color management, the PDA has a plurality of PDUs (power distribution units), a user can identify the electric power source of the PDUs by the screen color of the PDUs. Because the color display of the PDUs have more large area, the PDUs can particularly be suitable for a server room or a place having complicated cable.
Second advantages of the invention is, the PDUs can use an ALS (Ambient Light Sensor) to automatically detect environment to adjust the brightness of the screen color, or the PDUs can manually adjust the brightness of the screen color.
Third advantages of the invention is, the PDA has the capability for Master-Slave color management, the PDA has a plurality of PDUs. Because the color display of the PDUs will be in accordance with a Master-Slave communication frame of the PDA, a user can use the screen color of the PDUs to identify the Master-Slave relationship of the PDUs.
Fourth advantages of the invention is, the PDA has the capability for load color management, the PDA has a plurality of PDUs. Because the color display of the PDUs will be in accordance with the load type or the network domain belonging to the load, a user can use the screen color of the PDUs to identify the load type or the network domain belonging to the load.
Fifth advantages of the invention is, the PDA has a PDU, the PDU has an AST (Auto Transfer Switch), a user can use the screen color of the PDU to identify the electrical power source of the AST.
The above and other objects, features and advantages of the invention will become apparent from the following detailed description taken with the accompanying drawings.
Referring to
Examples of an executing manner of PDA and external power source, the power source 30 can be a main power source, the first PDU 1 can use the first color to identify as the main power source, and the second power source 40 can be a redundancy power source, the second PDU 2 can use the second color to identify as the redundancy power source.
Examples of an executing manner of PDA supplying power to load, at least one of the first outlets 11 can supply power to a first load 70 (for example but not limit to a server), and at least one of the second outlets 21 can supply power to the first load 70, the first displayer 15 can display a first power information of the first PDU 1, the second displayer 25 can display a second power information of the second PDU 2, the first power information and the second power information can select from voltage, electric current, power consumption, or power factor, as shown in
Examples of an executing manner of the first displayer 15 and the second displayer 25, wherein the first displayer 15 and the second displayer 25 can select from LED (light emitting diode) displayer or OLED (organic light emitting diode) displayer. The first displayer 15 can use an ALS (Ambient Light Sensor) 17 to automatically detect environment to adjust the brightness, or the first displayer 15 can use the first button assembly 16 to manually adjust the brightness. Moreover, the second displayer 25 can use an ALS 27 to automatically detect environment to adjust the brightness, or the second displayer 25 can use the second button assembly 26 to manually adjust the brightness.
Referring to
Examples of a first setting manner of Master-Slave color, the first processor 12 and the second processor 22 can preset a setting value of Master-Slave color; wherein the setting value of Master-Slave color can define the screen color of the Master PDU as the first color, and the setting value of Master-Slave color can define the screen color of the Slave PDU as the second color.
Examples of a second setting manner of Master-Slave color, the first processor 12 can provide a third setting menu 14a, the third setting menu 14a can be displayed on the first displayer 15, the first PDU 1 has the first button assembly 16 to set up the Master-Slave color setting value of the third setting menu 14a; the second processor 22 can provide a fourth setting menu 24a, the fourth setting menu 24a can be displayed on the second displayer 25, the second PDU 2 has the second button assembly 26 to set up the Master-Slave color setting value of the fourth setting menu 24a; wherein the setting value of Master-Slave color can define the screen color of the Master PDU as the first color, and the setting value of Master-Slave color can define the screen color of the Slave PDU as the second color.
Examples of a connection manner of plural Slave PDUs, the second communication interface 23 further has a third connector 233 to use to communicatively connect another second PDU 2a, the third connector 233 can be communicatively connected to a fourth connector 234 of the second PDU 2a, therefore the Daisy-Chain can communicatively connect with a plurality of Slave PDUs, the screen color of the first PDU 1 and the second PDU 2, 2a is showed in
Referring to
Examples of a first setting manner of load color, the first processor 12 can provide a fifth setting menu 14b, the fifth setting menu 14b can be displayed on the first displayer 15, the first PDU 1 has the first button assembly 16 to set up the load color setting value of the fifth setting menu 14b; the second processor 22 can provide a sixth setting menu 24b, the sixth setting menu 24b can be displayed on the second displayer 25, the second PDU 2 has the second button assembly 26 to set up the load color setting value of the sixth setting menu 24b; wherein the setting value of load color can define the screen color according to the load type or the network domain belonging to the load, a user can use the screen color of the first PDU 1 and the second PDU 2 to identify the load type or the network domain belonging to the load, as shown in
Examples of a second setting manner of load color, the first processor 12 and the second processor 22 can preset a setting value of load status; wherein the setting value of load status can define the screen color of normal status as a third color, the setting value of load status can define the screen color of warning status as a fourth color, and the setting value of load status can define the screen color of overload status as a fifth color. For example, when the load of the first PDU 1 is in the normal status, the screen color of the first PDU 1 can be the third color; when the load of the second PDU 2 is in the warning status, the screen color of the second PDU 2 can be the fourth color; when the load of another second PDU 2a is in the overload status, the screen color of the second PDU 2a can be the fifth color, as shown in
Referring to
Examples of an executing manner of the displayer 95, wherein the displayer 95 can display a power information, the power information can select from voltage, electric current, power consumption, or power factor, as shown in
Number | Date | Country | Kind |
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104133167 | Oct 2015 | TW | national |