CN203786788U - Intelligent timing and counting system - Google Patents

Intelligent timing and counting system Download PDF

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Publication number
CN203786788U
CN203786788U CN201320691136.2U CN201320691136U CN203786788U CN 203786788 U CN203786788 U CN 203786788U CN 201320691136 U CN201320691136 U CN 201320691136U CN 203786788 U CN203786788 U CN 203786788U
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CN
China
Prior art keywords
module
circuit
output terminal
input end
electrically connected
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Expired - Fee Related
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CN201320691136.2U
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Chinese (zh)
Inventor
李俊
宦娟
曹中
张旭明
仲成成
曹元�
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JIANGSU DONN TECHNOLOGY Co Ltd
Nanjing University
Changzhou University
Original Assignee
JIANGSU DONN TECHNOLOGY Co Ltd
Nanjing University
Changzhou University
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Application filed by JIANGSU DONN TECHNOLOGY Co Ltd, Nanjing University, Changzhou University filed Critical JIANGSU DONN TECHNOLOGY Co Ltd
Priority to CN201320691136.2U priority Critical patent/CN203786788U/en
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Publication of CN203786788U publication Critical patent/CN203786788U/en
Anticipated expiration legal-status Critical
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Abstract

The utility model relates to an intelligent timing and counting system which comprises a timing counter, mobile equipment and a computer, wherein the timing counter and the mobile equipment are connected in a communication manner, and the timing counter and the computer are connected in a wired communication manner; the timing counter comprises a power supply management module, and a control processing module, a data storage module, a display module, an input detection module, a serial port communication module and a wireless transmission module which are powered by the power supply management module; an output end of the input detection module is electrically connected with an input end of the control processing module, an input end of the display module, an input end of the serial port communication module and an input end of the wireless transmission module are respectively electrically connected with a corresponding output end of the control processing module, and the control processing module and the data storage module are connected in a communication manner; the serial port communication module and the computer are connected in a wired communication manner, and the wireless transmission module and the mobile equipment are connected in a wireless communication manner. The intelligent timing and counting system not only is high in timing and counting accuracy, but also has time-saving and effort-saving effect, thus saving manpower.

Description

A kind of intelligent chronoscope number system
Technical field
A kind of intelligent chronoscope number system of the utility model, is specifically related to a kind of intelligent chronoscope number system for harbour, can monitor in real time the running status of commercial harbour facilities.
Background technology
Existing harbour various main equipments used often just need to safeguard after the operation regular hour, and these equipment are not at every moment to move.Although have a stem-winder on each machine, the diversity ratio of stem-winder is larger, accuracy is lower, can only do a reference, and in addition, stem-winder needs manual metering, and complicate statistics data, waste time and energy, and sometimes also can have the Lou phenomenon of the many meters of meter.Harbour device category used is various at present, and interface mode is also various.Therefore, be badly in need of a kind of intelligent chronoscope number system of exploitation, become harbour in the urgent need to a technology.
Summary of the invention
The purpose of this utility model is that the accuracy that provides a kind of not only timing to count is high, and time saving and energy saving, saves artificial intelligent chronoscope number system, does not need manual metering and statistics, has improved statistical accuracy, to overcome the deficiencies in the prior art.
In order to achieve the above object, the technical solution of the utility model is: a kind of intelligent chronoscope number system, is characterized in that:
A, comprise timing counter, mobile device and computing machine, described timing counter is connected with mobile device radio communication, and timing counter is connected with computing machine wire communication;
B, described timing counter comprise power management module, control processing module, data memory module, display module, input detection module, serial communication module and wireless transport module;
Described power management module is for controlling processing module, data memory module, display module, input detection module, serial communication module and wireless transport module power supply, and power management module is also electrically connected to the corresponding link of control processing module;
Described control processing module and data memory module communication connection, the output terminal of described input detection module is electrically connected to the input end of controlling processing module, and the input end of the input end of described display module, the input end of serial communication module and wireless transport module is electrically connected to the corresponding output terminal of control processing module respectively;
Described serial communication module is connected with computing machine wire communication, and wireless transport module is connected with mobile device radio communication.
In technique scheme, described control processing module comprises microprocessor and real time clock circuit, the input end of described microprocessor is electrically connected to the output terminal of real time clock circuit, the output terminal of input detection module is electrically connected to the corresponding input end of microprocessor, the input end of the input end of described display module, the input end of serial communication module and wireless transport module is electrically connected to the corresponding output terminal of microprocessor respectively, described microprocessor and data memory module communication connection.
In technique scheme, described display module comprises power supply control display circuit, condition indication circuit and demonstration selection circuit, the input end that described power supply is controlled display circuit is electrically connected to the corresponding output terminal of control processing module, power supply is controlled the output terminal of display circuit and the input end of condition indication circuit is electrically connected to, and the output terminal of condition indication circuit is electrically connected to showing the corresponding link of selection circuit.
In technique scheme, described input detection module comprises input detecting circuit and outside connecting circuit, the input end of input detecting circuit is electrically connected to the output terminal of outside connecting circuit, and the output terminal of input detecting circuit is electrically connected to the corresponding output terminal of control processing module.
In technique scheme, described serial communication module comprises serial expanded circuit, serial port insulating circuit and serial port level chance-over circuit, the input end of described serial expanded circuit is electrically connected to the corresponding output terminal of control processing module, the output terminal of serial expanded circuit is electrically connected to the input end of serial port insulating circuit, the output terminal of serial port insulating circuit is electrically connected to the input end of serial port level chance-over circuit, and the output terminal of serial port level chance-over circuit is connected with computing machine wire communication.
In technique scheme, described wireless transport module is connected with mobile device radio communication by GPRS.
In technique scheme, described mobile device is 433M mobile hand-held device, and wireless transport module is connected with mobile device radio communication by 433M wireless radio frequency mode.
In technique scheme, described power management module comprises voltage transformation module, voltage indicating module and voltage detection module, the input end of voltage transformation module is electrically connected to the input end of voltage detection module, the first output terminal of voltage transformation module is electrically connected to the corresponding link of voltage indicating module, the second output terminal of voltage transformation module is for controlling processing module, data memory module, display module, input detection module, serial communication module and wireless transport module power supply, the output terminal of voltage detection module is electrically connected to the corresponding link of control processing module.
The good effect that the utility model has is: intelligent chronoscope number system of the present utility model is applicable on the various device at harbour, during use, timing counter is arranged on the various device of using at harbour, the signal output interface of equipment is directly connected to the input port of the input detection module of timing counter, electric signal port being detected by control processing module carries out Treatment Analysis, after obtaining result, to show, understandable form is presented on display module, every running status for display device, described data memory module is stored preservation to current data, meanwhile, the serial communication module of timing counter and wireless transport module are regularly sent to the timing counting monitor system software of computing machine by the service data of collection by network, in order to using and analyzing, described computing machine can show latest data in real time, automatically generate daily sheet, weekly return, month form, data analysis, set Rule of judgment, the function that abnormal data high brightness is reminded.The utility model accuracy that not only timing is counted is high, and time saving and energy saving, saves manually, does not need manual metering and statistics, has improved statistical accuracy.
Accompanying drawing explanation
Fig. 1 is a kind of concrete structure block diagram of the utility model;
Fig. 2 is the structure block diagram of timing counter in Fig. 1;
Fig. 3 is the circuit theory diagrams of power management module in Fig. 2;
Fig. 4 is the circuit theory diagrams of controlling processing module in Fig. 2;
Fig. 5 is the circuit theory diagrams of data memory module and wireless transport module in Fig. 2;
Fig. 6 is the circuit theory diagrams of display module in Fig. 2;
Fig. 7 is the circuit theory diagrams of inputting detection module in Fig. 2;
Fig. 8 is the circuit theory diagrams of serial communication module in Fig. 2.
Embodiment
Below in conjunction with accompanying drawing and the embodiment that provides, the utility model is further described, but is not limited to this.
As shown in Fig. 1,2,3,4,5,6,7,8, a kind of intelligent chronoscope number system, is characterized in that:
A, comprise timing counter 1, mobile device 2 and computing machine 3, described timing counter 1 is connected with mobile device 2 radio communications, and timing counter 1 is connected with computing machine 3 wire communications;
B, described timing counter 1 comprise power management module 1-1, control processing module 1-2, data memory module 1-3, display module 1-4, input detection module 1-5, serial communication module 1-6 and wireless transport module 1-7;
Described power management module 1-1 is for controlling processing module 1-2, data memory module 1-3, display module 1-4, input detection module 1-5, serial communication module 1-6 and wireless transport module 1-7 power supply, and power management module is also electrically connected to the corresponding link of control processing module;
Described control processing module 1-2 and data memory module 1-3 communication connection, the output terminal of described input detection module 1-5 is electrically connected to the input end of controlling processing module 1-2, and the input end of the input end of described display module 1-4, serial communication module 1-6 and the input end of wireless transport module 1-7 are electrically connected to the corresponding output terminal of control processing module 1-2 respectively;
Described serial communication module 1-6 is connected with computing machine 3 wire communications, and wireless transport module 1-7 is connected with mobile device 2 radio communications.
As shown in Figure 4, described control processing module 1-2 comprises microprocessor 1-2-1 and real time clock circuit 1-2-2, the input end of described microprocessor 1-2-1 is electrically connected to the output terminal of real time clock circuit 1-2-2, the output terminal of input detection module 1-5 is electrically connected to the corresponding input end of microprocessor 1-2-1, the input end of the input end of the input end of described display module 1-4, serial communication module 1-6 and wireless transport module 1-7 is electrically connected to the corresponding output terminal of microprocessor 1-2-1 respectively, described microprocessor 1-2-1 and data memory module 1-3 communication connection.
As shown in Figure 6, described display module 1-4 comprises that power supply is controlled display circuit 1-4-1, condition indication circuit 1-4-2 and circuit 1-4-3 is selected in demonstration, the input end that described power supply is controlled display circuit 1-4-1 is electrically connected to the corresponding output terminal of control processing module 1-2, the output terminal that power supply is controlled display circuit 1-4-1 is electrically connected to the input end of condition indication circuit 1-4-2, and the output terminal of condition indication circuit 1-4-2 is electrically connected to showing the corresponding link of selection circuit 1-4-3.
As shown in Figure 7, described input detection module 1-5 comprises input detecting circuit 1-5-1 and outside connecting circuit 1-5-2, the input end of input detecting circuit 1-5-1 is electrically connected to the output terminal of outside connecting circuit 1-5-2, and the output terminal of input detecting circuit 1-5-1 is electrically connected to the corresponding output terminal of control processing module 1-2.
As shown in Figure 8, described serial communication module 1-6 comprises serial expanded circuit 1-6-1, serial port insulating circuit 1-6-2 and serial port level chance-over circuit 1-6-3, the input end of described serial expanded circuit 1-6-1 is electrically connected to the corresponding output terminal of control processing module 1-2, the output terminal of serial expanded circuit 1-6-1 is electrically connected to the input end of serial port insulating circuit 1-6-2, the output terminal of serial port insulating circuit 1-6-2 is electrically connected to the input end of serial port level chance-over circuit 1-6-3, and the output terminal of serial port level chance-over circuit 1-6-3 is connected with computing machine 3 wire communications.
As shown in Figure 3, described power management module 1-1 comprises voltage transformation module 1-1-1, voltage indicating module 1-1-2 and voltage detection module 1-1-3, the input end of voltage transformation module 1-1-1 is electrically connected to the input end of voltage detection module 1-1-3, the first output terminal of voltage transformation module 1-1-1 is electrically connected to the corresponding link of voltage indicating module 1-1-2, the second output terminal of voltage transformation module 1-1-1 is for controlling processing module 1-2, data memory module 1-3, display module 1-4, input detection module 1-5, serial communication module 1-6 and wireless transport module 1-7 power supply, the output terminal of voltage detection module 1-1-3 is electrically connected to the corresponding link of control processing module 1-2.
Wireless transport module 1-7 described in the utility model is connected with mobile device 2 radio communications by GPRS.
Mobile device 2 described in the utility model is 433M mobile hand-held devices, and wireless transport module 1-7 is connected with mobile device 2 radio communications by 433M wireless radio frequency mode.433M mobile hand-held device is a kind of standby redundancy to described cable network and described GPRS network, can guarantee that all timing counters 1 can submit to computing machine timing count information.
The utility model modules integrated chip used is commercially available product.
Principle of work of the present utility model, during use, timing counter 1 is arranged on the various device of using at harbour, the signal output interface of equipment is directly connected to the input port of the input detection module 1-5 of timing counter 1, electric signal port being detected by control processing module 1-2 carries out Treatment Analysis, after obtaining result, to show, understandable form is presented on display module 1-4, every running status for display device, described data memory module 1-3 stores preservation to current data, meanwhile, the serial communication module 1-6 of timing counter 1 and wireless transport module 1-7 regularly send to the timing counting monitor system software of computing machine 3 by the service data of collection by network, in order to using and analyzing, described computing machine 3 can show latest data in real time, automatically generate daily sheet, weekly return, month form, data analysis, set Rule of judgment, the function that abnormal data high brightness is reminded.The utility model accuracy that not only timing is counted is high, and time saving and energy saving, saves manually, does not need manual metering and statistics, has improved statistical accuracy.
The various device that harbour described in the utility model is used comprises the equipment such as transfer gantry, shore tackle, stream machine, when the said equipment is installed after the utility model, can record the working time of each parts, performance box amount, the form by various transmission passes to computing machine by data automatically, and computing machine is processed storage data and is also formed form, the data of storing by staff's supervisory control comuter, can know the operation conditions of the various device at harbour, can be according to the different operation conditionss of each equipment, then safeguard.
The utility model of now take is arranged on transfer gantry as example, when transfer gantry is started shooting, described timing counter 1 is also unlocked simultaneously, and the pre-set data message of bulk registration, the first-selected mode by cable LAN sends timing count results to computing machine 3, when network sends data failure, timing counter 1 is submitted to computing machine 3 by GPRS network timing count results, when cable network and GPRS network lost efficacy simultaneously, timing counter 1, by 433M wireless radio frequency mode, is read the timing count results of timing counter 1 by 433M mobile hand-held device 2.

Claims (8)

1. an intelligent chronoscope number system, is characterized in that:
A, comprise timing counter (1), mobile device (2) and computing machine (3), described timing counter (1) is connected with mobile device (2) radio communication, and timing counter (1) is connected with computing machine (3) wire communication;
B, described timing counter (1) comprise power management module (1-1), control processing module (1-2), data memory module (1-3), display module (1-4), input detection module (1-5), serial communication module (1-6) and wireless transport module (1-7);
Described power management module (1-1) is for controlling processing module (1-2), data memory module (1-3), display module (1-4), input detection module (1-5), serial communication module (1-6) and wireless transport module (1-7) power supply, and power management module (1-1) is also electrically connected to the corresponding link of control processing module (1-2);
Described control processing module (1-2) and data memory module (1-3) communication connection, the output terminal of described input detection module (1-5) is electrically connected to the input end of controlling processing module (1-2), and the input end of the input end of described display module (1-4), serial communication module (1-6) and the input end of wireless transport module (1-7) are electrically connected to the corresponding output terminal of control processing module (1-2) respectively;
Described serial communication module (1-6) is connected with computing machine (3) wire communication, and wireless transport module (1-7) is connected with mobile device (2) radio communication.
2. intelligent chronoscope number system according to claim 1, it is characterized in that: described control processing module (1-2) comprises microprocessor (1-2-1) and real time clock circuit (1-2-2), the input end of described microprocessor (1-2-1) is electrically connected to the output terminal of real time clock circuit (1-2-2), the output terminal of input detection module (1-5) is electrically connected to the corresponding input end of microprocessor (1-2-1), the input end of described display module (1-4), the input end of the input end of serial communication module (1-6) and wireless transport module (1-7) is electrically connected to the corresponding output terminal of microprocessor (1-2-1) respectively, described microprocessor (1-2-1) and data memory module (1-3) communication connection.
3. intelligent chronoscope number system according to claim 1, it is characterized in that: described display module (1-4) comprises power supply control display circuit (1-4-1), circuit (1-4-3) is selected in condition indication circuit (1-4-2) and demonstration, the input end that described power supply is controlled display circuit (1-4-1) is electrically connected to the corresponding output terminal of control processing module (1-2), the output terminal that power supply is controlled display circuit (1-4-1) is electrically connected to the input end of condition indication circuit (1-4-2), the output terminal of condition indication circuit (1-4-2) is electrically connected to showing the corresponding link of selection circuit (1-4-3).
4. intelligent chronoscope number system according to claim 1, it is characterized in that: described input detection module (1-5) comprises input detecting circuit (1-5-1) and outside connecting circuit (1-5-2), the input end of input detecting circuit (1-5-1) is electrically connected to the output terminal of outside connecting circuit (1-5-2), and the output terminal of input detecting circuit (1-5-1) is electrically connected to the corresponding output terminal of control processing module (1-2).
5. intelligent chronoscope number system according to claim 1, it is characterized in that: described serial communication module (1-6) comprises serial expanded circuit (1-6-1), serial port insulating circuit (1-6-2) and serial port level chance-over circuit (1-6-3), the input end of described serial expanded circuit (1-6-1) is electrically connected to the corresponding output terminal of control processing module (1-2), the output terminal of serial expanded circuit (1-6-1) is electrically connected to the input end of serial port insulating circuit (1-6-2), the output terminal of serial port insulating circuit (1-6-2) is electrically connected to the input end of serial port level chance-over circuit (1-6-3), the output terminal of serial port level chance-over circuit (1-6-3) is connected with computing machine (3) wire communication.
6. intelligent chronoscope number system according to claim 1, is characterized in that: described wireless transport module (1-7) is connected with mobile device (2) radio communication by GPRS.
7. intelligent chronoscope number system according to claim 1, is characterized in that: described mobile device (2) is 433M mobile hand-held device, and wireless transport module (1-7) is connected with mobile device (2) radio communication by 433M wireless radio frequency mode.
8. intelligent chronoscope number system according to claim 1, it is characterized in that: described power management module (1-1) comprises voltage transformation module (1-1-1), voltage indicating module (1-1-2) and voltage detection module (1-1-3), the input end of voltage transformation module (1-1-1) is electrically connected to the input end of voltage detection module (1-1-3), the first output terminal of voltage transformation module (1-1-1) is electrically connected to the corresponding link of voltage indicating module (1-1-2), the second output terminal of voltage transformation module (1-1-1) is for controlling processing module (1-2), data memory module (1-3), display module (1-4), input detection module (1-5), serial communication module (1-6) and wireless transport module (1-7) power supply, the output terminal of voltage detection module (1-1-3) is electrically connected to the corresponding link of control processing module (1-2).
CN201320691136.2U 2013-11-05 2013-11-05 Intelligent timing and counting system Expired - Fee Related CN203786788U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103578155A (en) * 2013-11-05 2014-02-12 南京大学 Intelligent timing and counting system
CN105894605A (en) * 2016-04-08 2016-08-24 安庆市星博特电子科技有限公司 Cleaning and replacing reminding module for full-automatic rewinder grinding roller

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103578155A (en) * 2013-11-05 2014-02-12 南京大学 Intelligent timing and counting system
CN103578155B (en) * 2013-11-05 2016-01-06 南京大学 Intelligent chronoscope number system
CN105894605A (en) * 2016-04-08 2016-08-24 安庆市星博特电子科技有限公司 Cleaning and replacing reminding module for full-automatic rewinder grinding roller

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140820

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