CN205039837U - A remote control ware that is used for order of network flow control and shows end - Google Patents
A remote control ware that is used for order of network flow control and shows end Download PDFInfo
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- CN205039837U CN205039837U CN201520699831.2U CN201520699831U CN205039837U CN 205039837 U CN205039837 U CN 205039837U CN 201520699831 U CN201520699831 U CN 201520699831U CN 205039837 U CN205039837 U CN 205039837U
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Abstract
The utility model relates to a remote control ware that is used for order of network flow control and shows end, which comprises a housin, be equipped with first side, second side and third side on the casing, second side and third side are all perpendicular and parallel mutually with first side, be equipped with the work pilot lamp on the first side, the fin of a plurality of parallels of each other, control and show interface and network interface, this a remote control ware that is used for order of network flow control and shows end monitors and controls through flow monitoring module and flow control pair of module network flow, the rethread is controlled control module and can be shown in real time and control, the function that has improved the controller is diversified, dispel the heat fast to the controller through the fin simultaneously, the reliability of controller has been improved, moreover, through adopting integrated circuit among the work power supply circuit, it is small to make work power supply circuit have, the wide just characteristics of dependable performance nature of working range, the reliability and the stability of controller have further been improved.
Description
Technical field
The utility model relates to a kind of remote controllers for control of network flow quantity order and display end.
Background technology
In modern society, along with the develop rapidly of network technology, people are also more and more stronger for the dependence of network.We are in network application, need to monitor in real time network traffics, thus prevent from causing unnecessary loss.Showing commercially, the equipment universal functionality for network flow monitoring is single, and general for the disposal ability of heat radiation, have impact on its practicality, moreover, the working power power consumption due to these equipment is too high and volume is excessive, strongly limit the popularization of equipment.
Utility model content
The technical problems to be solved in the utility model is: in order to overcome prior art function singleness and the too high and deficiency that volume is excessive of working power power consumption, provides a kind of functional diversities, working power volume low in energy consumption little and the good remote controllers for control of network flow quantity order and display end of heat-sinking capability.
The utility model solves the technical scheme that its technical problem adopts: a kind of remote controllers for control of network flow quantity order and display end, comprise housing, described housing is provided with the first side, the second side and the 3rd side, described second side and the 3rd side are all parallel to each other with the first lateral vertical, described first side is provided with relay indicating light, some fin parallel to each other, manipulation display interface and network interface, and described second side and the 3rd side are equipped with handle;
Central control unit is provided with in described housing, described central control unit comprises central control system, the manipulation control module be connected with central control system, communication module, working power module, flow monitoring module and flow-control module, described manipulation display interface is electrically connected with manipulation control module, and described network interface is electrically connected with communication module;
Described working power module comprises working power circuit, described working power circuit comprises integrated circuit, metal-oxide-semiconductor, diode, first electric capacity, second electric capacity, 3rd electric capacity, 4th electric capacity, 5th electric capacity, first resistance, second resistance, 3rd resistance, 4th resistance, 5th resistance and the 6th resistance, the model of described integrated circuit is UC3844, the compensation end of described integrated circuit is by the first capacity earth, the earth terminal ground connection of described integrated circuit, the pressure feedback port ground connection of described integrated circuit, the current sampling end of described integrated circuit is by the 4th capacity earth, the current sampling end of described integrated circuit passes through the series circuit ground connection of the 4th resistance and the 5th resistance composition, the frequency adjustment end of described integrated circuit is by the 3rd capacity earth, the reference output of described integrated circuit passes through the series circuit ground connection of the second resistance and the 3rd electric capacity composition, the reference output of described integrated circuit is by the second capacity earth, the output of described integrated circuit passes through the series circuit ground connection of the first resistance and the 3rd resistance composition, the output of described integrated circuit is connected with the grid of metal-oxide-semiconductor by the first resistance, the source electrode of described metal-oxide-semiconductor is by the 5th grounding through resistance, the drain electrode of described metal-oxide-semiconductor is connected with the anode of diode by the 5th electric capacity, the minus earth of described diode, described diode and the 6th resistor coupled in parallel.
As preferably, in order to improve the sustainable ability to work of controller, be provided with storage battery in described housing, described storage battery is electrically connected with working power module.
As preferably, described metal-oxide-semiconductor is n channel MOS tube.
As preferably, in order to improve the heat-sinking capability of controller, described housing is aluminum alloy casing.
As preferably, in order to improve practicality and the operability of controller, described manipulation display interface is touch display screen.
The beneficial effects of the utility model are, these remote controllers being used for control of network flow quantity order and display end carry out monitor and forecast by flow monitoring module and flow-control module to network traffics, can show by manipulation control module in real time and manipulate again, improve the functional diversities of controller, by fin, quick heat radiating is carried out to controller simultaneously, improve the reliability of controller, moreover, by adopting integrated circuit in working power circuit, working power circuit is made to have volume little, wide and the feature of performance reliability of working range, further increase the reliability and stability of controller.
Accompanying drawing explanation
Below in conjunction with drawings and Examples, the utility model is further illustrated.
Fig. 1 is the structural representation of the remote controllers for control of network flow quantity order and display end of the present utility model;
Fig. 2 is the systematic schematic diagram of the remote controllers for control of network flow quantity order and display end of the present utility model;
Fig. 3 is the circuit theory diagrams of the working power circuit of the remote controllers for control of network flow quantity order and display end of the present utility model;
In figure: 1. housing, 2. relay indicating light, 3. fin, 4. handle, 5. manipulates display interface, 6. network interface, 7. central control system, 8. manipulates control module, 9. communication module, 10. working power module, 11. flow monitoring modules, 12. flow-control modules, U1. integrated circuit, U2.MOS manages, D1. diode, C1. the first electric capacity, C2. second electric capacity, C3. the 3rd electric capacity, C4. the 4th electric capacity, C5. the 5th electric capacity, R1. first resistance, R2. second resistance, R3. the 3rd resistance, R4. the 4th resistance, R5. the 5th resistance, R6. the 6th resistance.
Embodiment
By reference to the accompanying drawings the utility model is described in further detail now.These accompanying drawings are the schematic diagram of simplification, only basic structure of the present utility model are described in a schematic way, and therefore it only shows the formation relevant with the utility model.
As shown in Figure 1-Figure 3, a kind of remote controllers for control of network flow quantity order and display end, comprise housing 1, described housing 1 is provided with the first side, the second side and the 3rd side, described second side and the 3rd side are all parallel to each other with the first lateral vertical, described first side is provided with relay indicating light 2, some fin 3 parallel to each other, manipulation display interface 5 and network interface 6, and described second side and the 3rd side are equipped with handle 4;
Central control unit is provided with in described housing 1, described central control unit comprises central control system 7, the manipulation control module 8 be connected with central control system 7, communication module 9, working power module 10, flow monitoring module 11 and flow-control module 12, described manipulation display interface 5 is electrically connected with manipulation control module 8, and described network interface 6 is electrically connected with communication module 9;
Described working power module 10 comprises working power circuit, described working power circuit comprises integrated circuit U1, metal-oxide-semiconductor U2, diode D1, first electric capacity C1, second electric capacity C2, 3rd electric capacity C3, 4th electric capacity C4, 5th electric capacity C5, first resistance R1, second resistance R2, 3rd resistance R3, 4th resistance R4, 5th resistance R5 and the 6th resistance R6, the model of described integrated circuit U1 is UC3844, the compensation end of described integrated circuit U1 is by the first electric capacity C1 ground connection, the earth terminal ground connection of described integrated circuit U1, the pressure feedback port ground connection of described integrated circuit U1, the current sampling end of described integrated circuit U1 is by the 4th electric capacity C4 ground connection, the current sampling end of described integrated circuit U1 passes through the series circuit ground connection of the 4th resistance R4 and the 5th resistance R5 composition, the frequency adjustment end of described integrated circuit U1 is by the 3rd electric capacity C3 ground connection, the reference output of described integrated circuit U1 passes through the series circuit ground connection of the second resistance R2 and the 3rd electric capacity C3 composition, the reference output of described integrated circuit U1 is by the second electric capacity C2 ground connection, the output of described integrated circuit U1 passes through the series circuit ground connection of the first resistance R1 and the 3rd resistance R3 composition, the output of described integrated circuit U1 is connected with the grid of metal-oxide-semiconductor U2 by the first resistance R1, the source electrode of described metal-oxide-semiconductor U2 is by the 5th resistance R5 ground connection, the drain electrode of described metal-oxide-semiconductor U2 is connected with the anode of diode D1 by the 5th electric capacity C5, the minus earth of described diode D1, described diode D1 is in parallel with the 6th resistance R6.
As preferably, in order to improve the sustainable ability to work of controller, be provided with storage battery in described housing 1, described storage battery is electrically connected with working power module 10.
As preferably, described metal-oxide-semiconductor U2 is n channel MOS tube.
As preferably, in order to improve the heat-sinking capability of controller, described housing 1 is aluminum alloy casing.
As preferably, in order to improve practicality and the operability of controller, described manipulation display interface 5 is touch display screen.
This is used for the remote controllers of control of network flow quantity order and display end, communication is carried out by network interface 6 and the Internet, monitor and forecast is carried out subsequently by flow monitoring module 11 and flow-control module 12 pairs of network traffics, on manipulation display interface 5, relevant information is shown again by manipulation control module 8, also carry out simple operations control by manipulation display interface 5 simultaneously, further increase the practicality of controller; Relay indicating light 2, for indicating the operating state controlled, is convenient to staff and is carried out site inspection to control; Its middle controller carries out quick heat radiating by fin 3, improves the radiating efficiency of controller, further increases the reliability of controller.
This is used for the working power circuit in the remote controllers of control of network flow quantity order and display end; the model of the integrated circuit U1 adopted is UC3844; it has, and peripheral circuit is simple, voltage regulation good, good frequency response, amplitude of stablizing are large, have the advantages such as overcurrent restriction, overvoltage protection and under-voltage locking; so this working power circuit has, volume is little, working range wide and the feature of performance reliability, further increases the reliability and stability of controller.
Compared with prior art, these remote controllers being used for control of network flow quantity order and display end carry out monitor and forecast by flow monitoring module 11 and flow-control module 12 pairs of network traffics, can show by manipulation control module 8 in real time and manipulate again, improve the functional diversities of controller, carry out quick heat radiating by fin 3 pairs of controllers simultaneously, improve the reliability of controller, moreover, by adopting integrated circuit U1 in working power circuit, working power circuit is made to have volume little, wide and the feature of performance reliability of working range, further increase the reliability and stability of controller.
With above-mentioned according to desirable embodiment of the present utility model for enlightenment, by above-mentioned description, relevant staff in the scope not departing from this utility model technological thought, can carry out various change and amendment completely.The technical scope of this utility model is not limited to the content on specification, must determine its technical scope according to right.
Claims (5)
1. the remote controllers for control of network flow quantity order and display end, it is characterized in that, comprise housing (1), described housing (1) is provided with the first side, the second side and the 3rd side, described second side and the 3rd side are all parallel to each other with the first lateral vertical, described first side is provided with relay indicating light (2), some fin parallel to each other (3), manipulation display interface (5) and network interface (6), and described second side and the 3rd side are equipped with handle (4);
Described housing is provided with central control unit in (1), described central control unit comprises central control system (7), the manipulation control module (8) be connected with central control system (7), communication module (9), working power module (10), flow monitoring module (11) and flow-control module (12), described manipulation display interface (5) is electrically connected with manipulation control module (8), and described network interface (6) is electrically connected with communication module (9);
Described working power module (10) comprises working power circuit, described working power circuit comprises integrated circuit (U1), metal-oxide-semiconductor (U2), diode (D1), first electric capacity (C1), second electric capacity (C2), 3rd electric capacity (C3), 4th electric capacity (C4), 5th electric capacity (C5), first resistance (R1), second resistance (R2), 3rd resistance (R3), 4th resistance (R4), 5th resistance (R5) and the 6th resistance (R6), the model of described integrated circuit (U1) is UC3844, the compensation end of described integrated circuit (U1) is by the first electric capacity (C1) ground connection, the earth terminal ground connection of described integrated circuit (U1), the pressure feedback port ground connection of described integrated circuit (U1), the current sampling end of described integrated circuit (U1) is by the 4th electric capacity (C4) ground connection, the series circuit ground connection that the current sampling end of described integrated circuit (U1) consists of the 4th resistance (R4) and the 5th resistance (R5), the frequency adjustment end of described integrated circuit (U1) is by the 3rd electric capacity (C3) ground connection, the series circuit ground connection that the reference output of described integrated circuit (U1) consists of the second resistance (R2) and the 3rd electric capacity (C3), the reference output of described integrated circuit (U1) is by the second electric capacity (C2) ground connection, the series circuit ground connection that the output of described integrated circuit (U1) consists of the first resistance (R1) and the 3rd resistance (R3), the output of described integrated circuit (U1) is connected with the grid of metal-oxide-semiconductor (U2) by the first resistance (R1), the source electrode of described metal-oxide-semiconductor (U2) is by the 5th resistance (R5) ground connection, the drain electrode of described metal-oxide-semiconductor (U2) is connected with the anode of diode (D1) by the 5th electric capacity (C5), the minus earth of described diode (D1), described diode (D1) is in parallel with the 6th resistance (R6).
2., as claimed in claim 1 for the remote controllers of control of network flow quantity order and display end, it is characterized in that, described housing is provided with storage battery in (1), and described storage battery is electrically connected with working power module (10).
3., as claimed in claim 1 for the remote controllers of control of network flow quantity order and display end, it is characterized in that, described metal-oxide-semiconductor (U2) is n channel MOS tube.
4., as claimed in claim 1 for the remote controllers of control of network flow quantity order and display end, it is characterized in that, described housing (1) is aluminum alloy casing.
5., as claimed in claim 1 for the remote controllers of control of network flow quantity order and display end, it is characterized in that, described manipulation display interface (5) is touch display screen.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520699831.2U CN205039837U (en) | 2015-09-10 | 2015-09-10 | A remote control ware that is used for order of network flow control and shows end |
Applications Claiming Priority (1)
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CN201520699831.2U CN205039837U (en) | 2015-09-10 | 2015-09-10 | A remote control ware that is used for order of network flow control and shows end |
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CN205039837U true CN205039837U (en) | 2016-02-17 |
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CN201520699831.2U Expired - Fee Related CN205039837U (en) | 2015-09-10 | 2015-09-10 | A remote control ware that is used for order of network flow control and shows end |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105899057A (en) * | 2016-06-23 | 2016-08-24 | 李玉盛 | Novel control terminal for smart home |
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2015
- 2015-09-10 CN CN201520699831.2U patent/CN205039837U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105899057A (en) * | 2016-06-23 | 2016-08-24 | 李玉盛 | Novel control terminal for smart home |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160217 Termination date: 20160910 |