Disclosure of Invention
The invention aims to provide a laboratory high-end instrument management system to solve the problems of low speed and low efficiency of the existing manual record management instrument.
The second objective of the present invention is to provide a method for managing high-end instruments in a laboratory, so as to solve the problem of low speed and low efficiency of the existing manual recording management instrument.
One of the objects of the invention is achieved by:
the utility model provides a high-end instrument management system in laboratory, is including being used for the orientation module of being connected with high-end instrument and setting up in the inside a plurality of interfaces of reserving of laboratory, orientation module include storage module and with storage module electric connection's joint, the laboratory is outside to be provided with information processing module and information display module, reserve the interface all with information processing module electric connection, information processing module with information display module electric connection.
The connector and the reserved interface are a USB connector and a USB interface respectively.
One of the objects of the invention can also be achieved by:
the utility model provides a high-end instrument management system in laboratory, is including being used for the orientation module of being connected with high-end instrument and setting up in the inside a plurality of interfaces of reserving of laboratory, orientation module include storage module and with storage module electric connection's joint, the laboratory outside is provided with information processing module, reserve the interface all with information processing module electric connection.
The connector and the reserved interface are a USB connector and a USB interface respectively.
The system comprises a laboratory staff list storage and a mobile terminal, wherein the information processing module is electrically connected with the laboratory staff list storage, and the information processing module is connected with the mobile terminal through a wireless technology.
The second purpose of the invention is realized by the following steps:
a management method for high-end instruments in a laboratory comprises the following steps:
a. coding each reserved interface;
b. various information of the high-end instrument is recorded into a storage module;
c. fixedly connecting the storage module recorded with the information of the corresponding high-end instrument with the high-end instrument;
d. after the high-end instrument is moved, the corresponding connector of the storage module connected to the high-end instrument is inserted into the reserved interface of the laboratory, the information processing module reads the information of the high-end instrument in the storage module through the reserved interface connected with the information processing module, the serial number of the reserved interface and the information of the high-end instrument are processed, the information display module is transmitted in a form of a table, and the experimenter can conveniently find the position of the required high-end instrument.
In step a, the code is in the form of (x, y), where x represents the laboratory number and y represents the number of the reserved interface.
In step b, the method for inputting information into the storage module comprises the following steps:
the storage module is connected with a desktop computer, and various information of a high-end instrument is manually recorded into the storage module.
In the step c, the storage module is fixedly connected with the high-end instrument in a bolt connection mode, so that the storage module is convenient to disassemble, and can be disassembled for repeated use when the high-end instrument is replaced due to service life or other reasons.
The second object of the present invention can be achieved by:
an APP management method for a laboratory high-end instrument comprises the following steps:
s01, logging in a mobile terminal APP by a user for registration, completing real-name authentication, and uploading to the information processing module;
s02, the information processing module receives real-name authentication from a mobile terminal APP, traverses the information in the laboratory staff list memory 10, and compares the information with each other;
and S03, if the real-name authentication information does not exist in the laboratory staff list, the mobile terminal APP displays that the personnel information does not accord with each other, and if the real-name authentication information exists in the laboratory staff list, the mobile terminal APP displays the position information of the high-end instrument in a tabular form.
The invention has the beneficial effects that:
the invention automatically reads the serial number of the reserved interface and the information stored by the storage module connected with the reserved interface through the information processing module, visually and quickly displays the position of the high-end instrument, updates the position information after the high-end instrument moves, and can normally operate even without a manager laboratory.
Detailed Description
The invention is further illustrated by the following examples, which are given by way of illustration only and are not intended to limit the scope of the invention in any way.
The first embodiment is as follows:
as shown in fig. 1, a laboratory high-end instrument management system includes a positioning module 2, an information processing module 6, an information display module 7, and a plurality of reserved interfaces 5, where the reserved interfaces 5 are disposed in a laboratory, the information processing module 6 and the information display module 7 are disposed outside the laboratory, in this embodiment, a first laboratory 1 and a second laboratory 8 are disposed, each laboratory is provided with four reserved interfaces 5, all the reserved interfaces 5 are electrically connected to the information processing module 6, the information processing module 6 is electrically connected to the information display module 7, the positioning module 2 is disposed on a high-end instrument, the positioning module 2 includes a storage module 3 for storing information of the corresponding high-end instrument, a connector 4 is disposed on the storage module 3 by way of electrical connection, the connector 4 corresponds to the reserved interfaces 5, for example, the connector 4 and the reserved interfaces 5 respectively adopt a USB connector 4 and a USB interface, in the embodiment, the information processing module 6 adopts an ATR VM112B signal processing module, the information display module 7 adopts a Mikroe MIKROE-2278 display module mikromedia HMI 4.3, and the storage module 3 adopts a MICRON/MEIGHT MT16KTF1G64HZ-1G9P1 memory module.
Example two:
a method for managing a high-end instrument in a laboratory, as shown in fig. 2, using the high-end instrument management system in the first embodiment, comprising the following steps:
a. each reservation interface 5 is coded, for example: (x, y), wherein x represents the number of the laboratory and y represents the number of the reserved interface 5;
b. inputting various information of a high-end instrument into a storage module 3, namely connecting the storage module 3 with any equipment with an editing function, and manually inputting various information of the high-end instrument into the storage module 3, wherein in the embodiment, a desktop computer or a compiler is connected with the storage module 3 through a connector 4;
c. the positioning module 2 corresponding to the storage module 3 recording the information of the corresponding high-end instrument is fixedly connected with the high-end instrument, the storage module 3 is fixedly connected with the high-end instrument in a bolt connection mode, the disassembly is convenient, and the storage module 3 can be disassembled for reuse when the high-end instrument is replaced due to the service life or other reasons;
d. after removing high-end instrument, insert the reservation interface 5 in the laboratory with the corresponding joint 4 of storage module 3 of connecting on the high-end instrument, information processing module 6 reads the information of the high-end instrument in storage module 3 through reservation interface 5 that links to each other with it, and will reserve interface 5's serial number and the information of high-end instrument and handle, give information display module 7 with the form transmission of table, make things convenient for the experimenter to seek the position of required high-end instrument, the information of high-end instrument includes the name of high-end instrument and the model of high-end instrument.
The table is as follows:
| reserved interface 5 numbering
|
Name of high-end instrument
|
Model of high-end instrument
|
| (1,1)
|
|
|
| (1,2)
|
|
|
| (1,3)
|
|
|
| (1,4)
|
|
|
| (2,1)
|
|
|
| (2,2)
|
|
|
| (2,3)
|
|
|
| (2,4)
|
|
|
Example three:
as shown in fig. 3, a laboratory high-end instrument management system includes a positioning module 2, an information processing module 6, a laboratory staff list memory 10 and a plurality of reserved interfaces 5, the reserved interfaces 5 are disposed in a laboratory, the information processing module 6 and the laboratory staff list memory 10 are disposed outside the laboratory, in this embodiment, there are a first laboratory 1 and a second laboratory 8, each laboratory is provided with four reserved interfaces 5, all the reserved interfaces 5 are electrically connected with the information processing module 6, the information processing module 6 is electrically connected with the laboratory staff list memory 10, the positioning module 2 is disposed on a high-end instrument, the positioning module 2 includes a storage module 3 for storing information of the corresponding high-end instrument, the storage module 3 is provided with a connector 4 by electrical connection, the connector 4 corresponds to the reserved interfaces 5, for example, the connector 4 and the reserved interface 5 respectively adopt a USB connector 4 and a USB interface, the information processing module 6 in this embodiment adopts an ATR VM112B signal processing module, the storage module 3 and the laboratory staff list memory 10 adopt a micro/american light MT16KTF1G64HZ-1G9P1 memory module, the information processing module 6 is electrically connected with the mobile terminal 9 through a wireless technology, and the mobile terminal 9 may be a mobile phone, a tablet computer, or the like.
Example four:
a method for managing a laboratory high-end instrument APP as shown in fig. 4, using the laboratory high-end instrument management system in the third embodiment, includes the following steps:
s01, the user logs in the mobile terminal 9APP for registration, the real-name authentication is completed, and the real-name authentication is uploaded to the information processing module 6;
the mobile terminal 9 can be a mobile phone, a tablet, a notebook computer and the like, a user logs in a terminal APP for registration, and the APP is only used for displaying the position of a high-end instrument;
s02, the information processing module 6 receives real-name authentication from the mobile terminal 9APP, traverses the information in the laboratory staff list memory 10, and compares the information respectively;
the laboratory staff list memory 10 stores list information of all the staff in the laboratory, including identification numbers and names.
S03, if the real name authentication information does not exist in the laboratory staff list, displaying that the personnel information does not accord, and if the real name authentication information exists in the laboratory staff list, displaying the position information of the high-end instrument in a tabular form;
in this step, the table is formed as follows:
a. each reservation interface 5 is coded, for example: (x, y), wherein x represents the number of the laboratory and y represents the number of the reserved interface 5;
b. inputting various information of a high-end instrument into a storage module 3, namely connecting the storage module 3 with any equipment with an editing function, and manually inputting various information of the high-end instrument into the storage module 3, wherein in the embodiment, a desktop computer or a compiler is connected with the storage module 3 through a connector 4;
c. the positioning module 2 corresponding to the storage module 3 which records the information of the corresponding high-end instrument is fixedly connected with the high-end instrument, the storage module 3 can be fixedly connected with the high-end instrument in a bolt connection mode, the disassembly is convenient, and when the high-end instrument is replaced due to service life or other reasons, the storage module 3 can be disassembled and the information of the high-end instrument can be recorded again for reuse;
d. after removing high-end instrument, insert the reservation interface 5 in the laboratory with the corresponding joint 4 of storage module 3 in the orientation module 2 of connecting on the high-end instrument, information processing module 6 reads the information of the high-end instrument in storage module 3 through the reservation interface 5 that links to each other with it to the serial number that will reserve interface 5 is handled with the information of high-end instrument, and the information of high-end instrument includes the name of high-end instrument and the model of high-end instrument.
The table is as follows:
| reserved interface 5 numbering
|
Name of high-end instrument
|
Model of high-end instrument
|
| (1,1)
|
|
|
| (1,2)
|
|
|
| (1,3)
|
|
|
| (1,4)
|
|
|
| (2,1)
|
|
|
| (2,2)
|
|
|
| (2,3)
|
|
|
| (2,4)
|
|
|
Laboratory staff can seek the position of high-end instrument through mobile terminal long-range, and anytime and anywhere seeks fast, saves time, raises the efficiency.
The above description of the present invention is intended to be illustrative. Various modifications, additions and substitutions for the specific embodiments described may be made by those skilled in the art without departing from the scope of the invention as defined in the accompanying claims.