1. A power output discharge circuit, comprising:
an output filter module configured to receive and filter an input voltage and to output the filtered output voltage to a load;
an output charge module configured to charge the output filter module when a power source module is plugged into a system cabinet; and
an output discharge module configured to cooperate with the output charge module to discharge the output filter module when the power source module is pulled out of the system cabinet.
2. The power output discharge circuit according to claim 1, wherein the output filter module comprises a first capacitor, a second capacitor, a first inductor and a second inductor, and wherein the first capacitor has the anode connected with an input voltage, and the cathode grounded, the second capacitor has the anode connected with an output anode, and the cathode connected with an output cathode, the anode of the first capacitor is connected with the anode of the second capacitor through the first inductor, and the cathode of the first capacitor is connected with the cathode of the second capacitor through the second inductor.
3. The power output discharge circuit according to claim 2, wherein the output charge module comprises a first resistor, and wherein the first resistor is connected between a hot plugging port and a positive output port of the output filter module, or the first resistor is connected between the hot plugging port and a negative output port of the output filter module.
4. The power output discharge circuit according to claim 3, wherein the output charge module further comprises a second resistor and a first diode, and wherein the first diode has the anode connected with the hot plugging port, and the cathode connected with the positive output port of the output filter module through the first resistor and the second resistor; or the first diode has the cathode connected with the hot plugging port, and the anode connected with the negative output port of the output filter module through the first resistor and the second resistor.
5. The power output discharge circuit according to claim 4, wherein when the power source module is pulled out of the system cabinet, the output discharge module is configured to constitute a discharge loop together with the first resistor and the second resistor of the output charge module to discharge the first capacitor and the second capacitor in the output filter module.
6. The power output discharge circuit according to claim 1, wherein the output discharge module comprises:
a discharge switch unit configured to be turned on and to constitute a discharge loop together with the output charge module to discharge the output filter module when the power source module is pulled out of the system cabinet; and
a discharge protection unit configured to protect the discharge switch unit when the discharge switch unit is turned on.
7. The power output discharge circuit according to claim 6, wherein the discharge switch unit comprises a third resistor, a fifth resistor and a first switch tube, and wherein the first switch tube has a first terminal connected with a first input port of the discharge switch unit through the third resistor, a second terminal grounded, and a third terminal connected with a second input port of the discharge switch unit through the fifth resistor; and
the first switch tube is a triode, a transistor or a metal oxide semiconductor tube; and when the first switch tube is a triode, the first terminal of the first switch tube is an emitter of the triode, the second terminal of the first switch tube is the collector of the triode, and the third terminal of the first switch tube is the base of the triode; and when the first switch tube is a transistor or a metal oxide semiconductor tube, the first terminal of the first switch tube is the drain of the transistor or the metal oxide semiconductor tube, the second terminal of the first switch tube is the source of the transistor or the metal oxide semiconductor tube, and the third terminal of the first switch tube is the gate of the transistor or the metal oxide semiconductor tube.
8. The power output discharge circuit according to claim 7, wherein the first input port is connected with a conducting port of the output charge module, the second input port is connected with the positive output port of the output filter module, the discharge protection unit comprises a fourth resistor, a sixth resistor, a second diode, a third capacitor and a second switch tube, the second switch tube has a second terminal connected with the third terminal of the first switch tube, a first terminal grounded, and the third terminal connected with the anode of the third capacitor, the cathode of the third capacitor is grounded, the fourth resistor and the sixth resistor are connected in series between a hot plugging port and the ground, the third terminal of the second switch tube is connected with the point where the fourth resistor and the sixth resistor are connected, and the second diode has the anode grounded, and the cathode connected with the second terminal of the second switch tube; and
the second switch tube is a triode, a transistor or a metal oxide semiconductor tube; and when the second switch tube is a triode, the first terminal of the second switch tube is an emitter of the triode, the second terminal of the second switch tube is the collector of the triode, and the third terminal of the second switch tube is the base of the triode; and when the second switch tube is a transistor or a metal oxide semiconductor tube, the first terminal of the second switch tube is the drain of the transistor or the metal oxide semiconductor tube, the second terminal of the second switch tube is the source of the transistor or the metal oxide semiconductor tube, and the third terminal of the second switch tube is the gate of the transistor or the metal oxide semiconductor tube.
9. The power output discharge circuit according to claim 8, wherein the discharge protection unit further comprises a third diode and a short-circuit connector, and wherein the third diode has the anode connected with the cathode of the second diode and the third terminal of the first switch tube, and the cathode connected with a short-circuit port, and the short-circuit connector has a first terminal connected with the short-circuit port, and a second terminal grounded.
10. The power output discharge circuit according to claim 7, wherein the first input port is connected with a conducting port of the output charge module, the second input port is connected with the positive output port of the output filter module, the discharge protection unit comprises a second diode, a third diode and a short-circuit connector, and wherein the second diode has the anode grounded, and the cathode connected with the third terminal of the first switch tube and the anode of the third diode, the cathode of the third diode is connected with a short-circuit port, and the short-circuit connector has a first terminal connected with the short-circuit port, and a second terminal grounded.
11. The power output discharge circuit according to claim 7, wherein both the first input port and the second input port of the discharge switch unit are connected with the positive output port of the output filter module, the discharge protection unit comprises a sixth resistor, a fourth resistor, a second diode, a third diode, a third capacitor and a second switch tube, the second switch tube has a second terminal connected with the third terminal of the first switch tube, a first terminal grounded, and a third terminal connected with the anode of the third capacitor, the cathode of the third capacitor is grounded, the sixth resistor and the fourth resistor are connected in series between the positive output port of the output filter module and the ground, the third terminal of the second switch tube is connected with the point where the sixth resistor and the fourth resistor are connected, the second diode has the anode grounded, and the cathode connected with the third terminal of the first switch tube and the anode of the third diode, and the cathode of the third diode is connected with the a short-circuit port.
12. The power output discharge circuit according to claim 2, wherein the output discharge module comprises:
a discharge switch unit configured to be turned on and to constitute a discharge loop together with the output charge module to discharge the output filter module when the power source module is pulled out of the system cabinet; and
a discharge protection unit configured to protect the discharge switch unit when the discharge switch unit is turned on.
13. The power output discharge circuit according to claim 3, wherein the output discharge module comprises:
a discharge switch unit configured to be turned on and to constitute a discharge loop together with the output charge module to discharge the output filter module when the power source module is pulled out of the system cabinet; and
a discharge protection unit configured to protect the discharge switch unit when the discharge switch unit is turned on.
14. The power output discharge circuit according to claim 4, wherein the output discharge module comprises:
a discharge switch unit configured to be turned on and to constitute a discharge loop together with the output charge module to discharge the output filter module when the power source module is pulled out of the system cabinet; and
a discharge protection unit configured to protect the discharge switch unit when the discharge switch unit is turned on.
15. The power output discharge circuit according to claim 5, wherein the output discharge module comprises:
a discharge switch unit configured to be turned on and to constitute a discharge loop together with the output charge module to discharge the output filter module when the power source module is pulled out of the system cabinet; and
a discharge protection unit configured to protect the discharge switch unit when the discharge switch unit is turned on.
16. The power output discharge circuit according to claim 12, wherein the discharge switch unit comprises a third resistor, a fifth resistor and a first switch tube, and wherein the first switch tube has a first terminal connected with a first input port of the discharge switch unit through the third resistor, a second terminal grounded, and a third terminal connected with a second input port of the discharge switch unit through the fifth resistor; and
the first switch tube is a triode, a transistor or a metal oxide semiconductor tube; and when the first switch tube is a triode, the first terminal of the first switch tube is an emitter of the triode, the second terminal of the first switch tube is the collector of the triode, and the third terminal of the first switch tube is the base of the triode; and when the first switch tube is a transistor or a metal oxide semiconductor tube, the first terminal of the first switch tube is the drain of the transistor or the metal oxide semiconductor tube, the second terminal of the first switch tube is the source of the transistor or the metal oxide semiconductor tube, and the third terminal of the first switch tube is the gate of the transistor or the metal oxide semiconductor tube.
17. The power output discharge circuit according to claim 13, wherein the discharge switch unit comprises a third resistor, a fifth resistor and a first switch tube, and wherein the first switch tube has a first terminal connected with a first input port of the discharge switch unit through the third resistor, a second terminal grounded, and a third terminal connected with a second input port of the discharge switch unit through the fifth resistor; and
the first switch tube is a triode, a transistor or a metal oxide semiconductor tube; and when the first switch tube is a triode, the first terminal of the first switch tube is an emitter of the triode, the second terminal of the first switch tube is the collector of the triode, and the third terminal of the first switch tube is the base of the triode; and when the first switch tube is a transistor or a metal oxide semiconductor tube, the first terminal of the first switch tube is the drain of the transistor or the metal oxide semiconductor tube, the second terminal of the first switch tube is the source of the transistor or the metal oxide semiconductor tube, and the third terminal of the first switch tube is the gate of the transistor or the metal oxide semiconductor tube.
18. The power output discharge circuit according to claim 14, wherein the discharge switch unit comprises a third resistor, a fifth resistor and a first switch tube, and wherein the first switch tube has a first terminal connected with a first input port of the discharge switch unit through the third resistor, a second terminal grounded, and a third terminal connected with a second input port of the discharge switch unit through the fifth resistor; and
the first switch tube is a triode, a transistor or a metal oxide semiconductor tube; and when the first switch tube is a triode, the first terminal of the first switch tube is an emitter of the triode, the second terminal of the first switch tube is the collector of the triode, and the third terminal of the first switch tube is the base of the triode; and when the first switch tube is a transistor or a metal oxide semiconductor tube, the first terminal of the first switch tube is the drain of the transistor or the metal oxide semiconductor tube, the second terminal of the first switch tube is the source of the transistor or the metal oxide semiconductor tube, and the third terminal of the first switch tube is the gate of the transistor or the metal oxide semiconductor tube.
19. The power output discharge circuit according to claim 15, wherein the discharge switch unit comprises a third resistor, a fifth resistor and a first switch tube, and wherein the first switch tube has a first terminal connected with a first input port of the discharge switch unit through the third resistor, a second terminal grounded, and a third terminal connected with a second input port of the discharge switch unit through the fifth resistor; and
the first switch tube is a triode, a transistor or a metal oxide semiconductor tube; and when the first switch tube is a triode, the first terminal of the first switch tube is an emitter of the triode, the second terminal of the first switch tube is the collector of the triode, and the third terminal of the first switch tube is the base of the triode; and when the first switch tube is a transistor or a metal oxide semiconductor tube, the first terminal of the first switch tube is the drain of the transistor or the metal oxide semiconductor tube, the second terminal of the first switch tube is the source of the transistor or the metal oxide semiconductor tube, and the third terminal of the first switch tube is the gate of the transistor or the metal oxide semiconductor tube.
20. The power output discharge circuit according to claim 16, wherein the first input port is connected with a conducting port of the output charge module, the second input port is connected with the positive output port of the output filter module, the discharge protection unit comprises a fourth resistor, a sixth resistor, a second diode, a third capacitor and a second switch tube, the second switch tube has a second terminal connected with the third terminal of the first switch tube, a first terminal grounded, and the third terminal connected with the anode of the third capacitor, the cathode of the third capacitor is grounded, the fourth resistor and the sixth resistor are connected in series between a hot plugging port and the ground, the third terminal of the second switch tube is connected with the point where the fourth resistor and the sixth resistor are connected, and the second diode has the anode grounded, and the cathode connected with the second terminal of the second switch tube; and
the second switch tube is a triode, a transistor or a metal oxide semiconductor tube; and when the second switch tube is a triode, the first terminal of the second switch tube is an emitter of the triode, the second terminal of the second switch tube is the collector of the triode, and the third terminal of the second switch tube is the base of the triode; and when the second switch tube is a transistor or a metal oxide semiconductor tube, the first terminal of the second switch tube is the drain of the transistor or the metal oxide semiconductor tube, the second terminal of the second switch tube is the source of the transistor or the metal oxide semiconductor tube, and the third terminal of the second switch tube is the gate of the transistor or the metal oxide semiconductor tube.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A computer-implemented system for facilitating collaborative structure design efforts, and for coordinating implementation of a resulting design, comprising:
a design workspace in which a structure design is capable of being rendered during a design process;
a design engine which receives various inputs, and produces a structure design for display in said design workspace;
a first interface, coupled to said design engine, permitting a first user to view and manipulate aspects of said design rendered in said design workspace;
a second interface, coupled to said design engine, permitting a second user to view and manipulate aspects of said design rendered in said design workspace;
a library of design elements and editing tools, coupled to said first and second interfaces and said design engine such that said first user, said second user or both said first and second users may select an element therefrom and place said element in said design, or otherwise edit said design, for rendering by said design engine in said design workspace;
an attributes engine which quantifies measures of various attributes of a structure based on said structure design during the process of designing said structure and updates quantification of said measures when manipulation of aspects of said design result in modification of said design;
a dashboard coupled to said attributes engine for displaying said measures of various attributes of said structure, said dashboard viewable by said first user and said second user;
a first customizable attributes quantification interface associated with said first user;
a second customizable attributes quantification interface associated with said second user;
each of said first and second customizable attributes quantification interfaces permitting said first and second users, respectively, to specify values for selected structure attributes, said specified values forming an input to said design engine;
an attributes toolbox which presents to said first user and said second user a plurality of user-selectable attributes quantification tools;
such that based upon selection of an attributes quantification tool by either said first user, said second user or both said first user and said second user, said selected tool is added to said first customizable attributes quantification interface, said second customizable attributes quantification interface, or both said first and second customizable attributes quantification interfaces, respectively;
each of said first and second customizable attributes quantification interfaces further comprising a direction mechanism permitting said corresponding first or second user, respectively, to direct said system to weight optimization of one attribute greater than other attributes; and
wherein said first customizable attributes quantification interface is provided with a mechanism permitting viewing of said second user’s direction to said system to weight optimization of one attribute greater than other attributes.
2. A computer-implemented method of facilitating collaborative structure design efforts, and for coordinating implementation of a resulting design, comprising:
providing a design workspace in which a structure design is capable of being rendered during a design process;
providing a design engine which receives various inputs, and produces a structure design for display in said design workspace;
providing a first interface, coupled to said design engine, permitting a first user to view and manipulate aspects of said design rendered in said design workspace;
providing a second interface, coupled to said design engine, permitting a second user to view and manipulate aspects of said design rendered in said design workspace;
providing a library of design elements and editing tools, coupled to said first and second interfaces and said design engine such that said first user, said second user or both said first and second users may select an element therefrom and place said element in said design, or otherwise edits said design, for rendering by said design engine in said design workspace;
providing an attributes engine which quantifies measures of various attributes of a structure based on said structure design during the process of designing said structure and updates quantification of said measures when manipulation of aspects of said design result in modification of said design;
providing a dashboard coupled to said attributes engine for displaying said measures of various attributes of said structure, said dashboard viewable by said first user and said second user;
providing a first customizable attributes quantification interface associated with said first user;
providing a second customizable attributes quantification interface associated with said second user;
each of said first and second customizable attributes quantification interfaces permitting said first and second users, respectively, to specify values for selected structure attributes, said specified values forming an input to said design engine;
providing an attributes toolbox which presents to said first user and said second user a plurality of user-selectable attributes quantification tools;
such that based upon selection of an attributes quantification tool by either said first user, said second user or both said first user and said second user, said selected tool is added to said first customizable attributes quantification interface, said second customizable attributes quantification interface, or both said first and second customizable attributes quantification interfaces, respectively;
providing, for each of said first and second customizable attributes quantification interfaces, a direction mechanism permitting said corresponding first or second user, respectively, to direct said system to weight optimization of one attribute greater than other attributes; and
wherein said first customizable attributes quantification interface is provided with a mechanism permitting viewing of said second user’s direction to said system to weight optimization of one attribute greater than other attributes.