CN101105889A - Far-end control system and method - Google Patents

Far-end control system and method Download PDF

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Publication number
CN101105889A
CN101105889A CNA2006101018900A CN200610101890A CN101105889A CN 101105889 A CN101105889 A CN 101105889A CN A2006101018900 A CNA2006101018900 A CN A2006101018900A CN 200610101890 A CN200610101890 A CN 200610101890A CN 101105889 A CN101105889 A CN 101105889A
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China
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test
data
transmission interface
optical measurement
data processing
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CNA2006101018900A
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CN100472573C (en
Inventor
洪孟佳
石新海
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Inventec Corp
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Inventec Corp
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Abstract

A remote control system and a method refer to the test of Unit under Test (UUT) by optical measuring equipment through data processing device and the reading of the testing data for subsequent operation. Firstly, through an electric connection unit, the data processing device is connected with the optical measuring equipment. Then, the data processing device generates a trigger signal at one end, which is transmitted to the optical measuring instrument through the electric connection unit to make the optical measuring instrument equipment to test the Unit under Test. At last, the data processing unit, through the electric connection unit, reads the test data from the test, and stores the test data after format conversion for subsequent operation. In such a way, the system can carry out test treatment and data reading operation in a way of remote control.

Description

Far-end control system and method
Technical field
The present invention relates to a kind of far-end control system and method, more detailed it, relate to a kind of far-end control system and method that is applied on the optical measurement equipment.
Background technology
Along with improving constantly of people's quality of the life, the product of various light sources such as the closely bound up for example display (CRT) of many and people's daily life, liquid crystal display screen (LCD), mobile phone backlight module and automobile instrument panel especially LCD product (is designated hereinafter simply as to-be-measured cell (Unit Under Test; The quality requirements of aspects such as brightness UUT)), colourity is also more and more high thereupon, therefore, before such product turnout, test operation at the brightness of this to-be-measured cell and colourity etc. just seems particularly important, correspondingly, in order to test brightness and colourity and can provide the chroma luminance measurer that operating work is imitated on the line promptly to arise at the historic moment thereupon, general chroma luminance measurer is to dispose liquid crystal display screen, to show current measured value, thereby the handled easily personnel read and write down this measured value, and are follow-up as operations such as data comparison and analyses to carry out.
But, carrying out testing on the line resulting data by above-mentioned chroma luminance measurer must be read and record with manual type by operating personnel, simultaneously operating personnel also must the time be engraved in XIAN and control, so, this kind carries out data read operation in artificial mode, is to cause artificial careless mistake because of misreading of operating personnel easily, so, not only can cause expending of test manpower, also the precision and the efficient of influence test; Moreover, the mode that this kind carries out testing on the line with the chroma luminance measurer is can't be applied on the long auto-measuring, its main cause is to have in the test on this kind line many tests to carry out in the environmental cabinet of for example Walk in chamber (carrying out durable test), operating personnel are not allowed to enter in the environmental cabinet test under this kind environment, even entering, operating personnel also can't treat in the environmental cabinet in environmental cabinet, to carry out to measure continuously for a long time, the mode that makes this kind carry out testing on the line with the chroma luminance measurer is the restriction that is subjected to the fc-specific test FC place, thereby has dwindled the range of application of this chroma luminance measurer significantly.
In sum, how to propose a kind of technology of avoiding various shortcoming of the prior art, and then reach the purpose that the saving manpower expends, improves testing efficiency and precision and expansion Test Application scope, real technical matters for solving at present.
Summary of the invention
Shortcoming in view of above-mentioned prior art, fundamental purpose of the present invention is to provide a kind of mode by far-end control to carry out the far-end control system and the method for test processes and data read operation, reducing expending and avoiding human negligence of manpower, and then promote testing efficiency and precision.
Another object of the present invention is to provide a kind of far-end control system and method, test operation is subjected to the restriction in fc-specific test FC place in the prior art to solve, can't reach operating personnel's operation on the spot for a long time, and then the drawback that causes the range of application of test operation to be limited to.
For reaching above-mentioned fundamental purpose and another purpose, the present invention provides a kind of in order to make the optical measurement equipment with second data transmission interface to to-be-measured cell (Unit Under Test by the data processing equipment with first data transmission interface; UUT) carrying out test processes also reads back the resulting test data of this test processes to carry out the far-end control system of post-treatment operations, wherein, this optical measurement equipment also has in order to store the storage element of this test data, and this far-end control system is to comprise at least: in order to electrically connect this first data transmission interface and this second data transmission interface to electrically connect the electric connection unit of this data processing equipment and this optical measurement equipment; Be arranged at the trigger module in this data processing equipment, and in order to produce a trigger pip and this trigger pip to be transferred to this optical measurement equipment by this first data transmission interface, this electric connection unit and this second data transmission interface, thereby make this optical measurement equipment carry out this test processes, and the test data of this test processes gained is stored in this storage element this to-be-measured cell; Be arranged at the read module in this data processing equipment, and the stored test data of storage element in order to read this optical measurement equipment by this first data transmission interface, this electric connection unit and this second data transmission interface; Be arranged at the modular converter in this data processing equipment, and be editable form in order to format conversion with the test data that this read module read; And be arranged at storage module in this data processing equipment, and in order to will storing through the test data after this modular converter conversion, thereby for carrying out post-treatment operations.
In a preferred embodiment of far-end control system of the present invention, this far-end control system also comprise use for set the required functional mode of this editable form and post-treatment operations with to parameter value that should functional mode and be arranged at setting module in this data processing equipment, wherein, this functional mode is to can be Presentation Function pattern, statistical function pattern or decision-making function pattern; This optical measurement equipment is the chroma luminance measurer; This electric connection unit is RS232 cable (cable).
For reaching above-mentioned identical purpose, it is a kind of in order to make the optical measurement equipment with second data transmission interface to to-be-measured cell (Unit Under Test by the data processing equipment with first data transmission interface that the present invention also provides; UUT) carrying out test processes also reads back the resulting test data of this test processes to carry out the far-end control method of post-treatment operations, wherein, this optical measurement equipment also has in order to store the storage element of this test data, this far-end control method is to comprise as the back step: at first, electrically connect this data processing equipment and this optical measurement equipment by electrically connecting this first data transmission interface and this second data transmission interface; Secondly, produce a trigger pip and this trigger pip is transferred to this optical measurement equipment in this data processing equipment end by this first data transmission interface, this electric connection unit and this second data transmission interface, thereby make this optical measurement equipment carry out this test processes, and the test data of this test processes gained is stored in this storage element this to-be-measured cell; Then, the stored test data of storage element that reads this optical measurement equipment by this first data transmission interface, this electric connection unit and this second data transmission interface in this data processing equipment end; Subsequently, the form of the test data that is read in the conversion of this data processing equipment end is editable form; At last, in the test data of this data processing equipment end storage after conversion, thereby for carrying out post-treatment operations.
In a preferred embodiment of far-end control method of the present invention, also being included in this data processing equipment end provides and sets required functional mode of this editable form and post-treatment operations and step to parameter value that should functional mode.Wherein, this functional mode is to can be Presentation Function pattern, statistical function pattern or decision-making function pattern; This optical measurement equipment is the chroma luminance measurer; This electric connection unit is for example to be the RS232 cable.
Than prior art, far-end control system of the present invention and method mainly are to electrically connect this data processing equipment and optical measurement equipment by this electric connection unit, then the trigger pip that is produced by this data processing equipment end is touched this optical measurement equipment so that this optical measurement equipment carries out test processes to to-be-measured cell, and the test data of this test processes gained is stored in this storage element, the stored test data of storage element that reads this optical measurement equipment by this data processing equipment end at last, thereby the format conversion of the test data that read is editable form and stores, carry out post-treatment operations in the data processing equipment end by this editable test data for follow-up.
Can avoid thus need causing manpower to expend and cause the facts of artificial careless mistake taking place by operating personnel with online controlling of the manual type moment in the prior art because of misreading of operating personnel, and then the drawback of the efficiency and precision of influence test; Simultaneously, because the present invention exports to the data processing equipment end with test data and is converted to editable data for carrying out post-treatment operations, so, operating personnel need not manipulation operation on the line, can avoid that test operation is subjected to for example restriction in the fc-specific test FC place of Walk in chamber in the prior art, and then the shortcoming that causes the range of application of test operation to be limited to.
Description of drawings
Fig. 1 is the embodiment basic framework block schematic diagram that shows far-end control system of the present invention; And
Fig. 2 is the embodiment operating process synoptic diagram that shows far-end control method of the present invention.
The main element symbol description
1 far-end control system
11 setting modules
12 electrically connect the unit
13 trigger modules
14 read modules
15 modular converters
16 storage modules
100 data processing equipments
101 first data transmission interfaces
200 optical measurement equipment
201 second data transmission interfaces
202 storage elements
300 to-be-measured cells
The a-quadrant
S10~S15 step
Embodiment
Below be that those skilled in the art can understand other advantages of the present invention and effect easily by the content that this instructions disclosed by specific instantiation explanation embodiments of the present invention.The present invention also can be implemented or be used by other different instantiations, and the every details in this instructions also can be based on different viewpoints and application, carries out various modifications and change under the spirit of the present invention not deviating from.
See also Fig. 1, be the embodiment basic framework block schematic diagram of far-end control system of the present invention.As shown in the figure, far-end control system 1 of the present invention is in order to make 200 pairs of to-be-measured cells 300 of optical measurement equipment (Unit Under Test by data processing equipment 100; UUT) carrying out test processes also reads back the resulting test data of this test processes to carry out post-treatment operations, wherein, this data processing equipment 100 is to have first data transmission interface 101, and this optical measurement equipment 200 is to have second data transmission interface 201 and the storage element 202 in order to store this test data.In present embodiment, this data processing equipment 100 is to be embodied as PC, notebook computer or desktop computer etc., this optical measurement equipment 200 is to be embodied as the chroma luminance measurer, and this storage element 202 is to be embodied as random access memory (Random-accessmemory; RAM) etc.
As shown in Figure 1, far-end control system 1 of the present invention is to comprise setting module 11, electric connection unit 12, trigger module 13, read module 14, modular converter 15 and storage module 16, wherein, this setting module 11, trigger module 13, read module 14, modular converter 15 and storage module 16 are to be arranged in this data processing equipment 100.Below promptly to before this far-end control system 1 each parts being elaborated.
This setting module 11 be use for set the required functional mode of editable form and post-treatment operations with to parameter value that should functional mode.In present embodiment, this functional mode is for example to be Presentation Function pattern, statistical function pattern or decision-making function pattern, but not as limit.More detailed it, the parameter value to should the Presentation Function pattern that this setting module 11 sets is a display format, to parameter value that should the statistical function pattern interval time and time length overall for test, to parameter value that should the decision-making function pattern is the test stone of this to-be-measured cell 300, wherein, this display format is to can be document format or figure shelves form, preferably, the document form is setting person according to operating personnel's actual needs, be for example to be Excel, document format such as Minitab or Origin, and this figure shelves form is marked on a map for for example special seat of XYZ chromaticity diagram and the coordinate transform rule to should special seat marking on a map.
This electric connection unit 12 is in order to electrically connect this first data transmission interface 101 and this second data transmission interface 201, to electrically connect this data processing equipment 100 and this optical measurement equipment 200.In present embodiment, this electric connection unit 12 is to can be RS232 cable (cable), but not as limit, such as can realize the data line of the electrical connection between this data processing equipment 100 and this optical measurement equipment 200 by first data transmission interface 101 and this second data transmission interface 201, but all belong to practical range of the present invention.
This trigger module 13 is in order to produce a trigger pip and by this first data transmission interface 101, this electric connection unit 12 and this second data transmission interface 201 this trigger pip to be transferred to this optical measurement equipment 200, thereby make 200 pairs of these to-be-measured cells 300 of this optical measurement equipment carry out this test processes, and the test data of this test processes gained is stored in this storage element 202.In present embodiment, thereby this trigger module 13 is to be available for users on demand with this trigger pip of the corresponding generation of manual control, or can be automatically in this data processing equipment 100 and this optical measurement equipment 200 electrically connect finish after, in a schedule time, produce this trigger pip.
This read module 14 is in order to the stored test data of the storage element 202 that reads this optical measurement equipment 200 by this first data transmission interface 101, this electric connection unit 12 and this second data transmission interface 201.In present embodiment, this read module 14 is the stored test datas of storage element 202 that can read this optical measurement equipment 200 in real time, or can read once the stored test data of storage element 202 of this optical measurement equipment 200 in each interval.
This modular converter 15 is to be these setting module 11 default editable forms in order to the format conversion with the test data that this read module 14 read.In present embodiment, the form of the test data that obtains via these optical measurement equipment 200 test processes is the word string form, should default editable form be to be set at the numeric type form, but not as limit, the form of this test data can be set according to the needs that the follow-up processing that this test data is carried out is operated.
This storage module 16 is in order to will storing through the test data after 15 conversions of this modular converter, thereby for follow-up in data processing equipment 100 ends, can handle operation by this editable test data.
From the above, by above-mentioned setting module 11, electric connection unit 12, trigger module 13, read module 14, modular converter 15 and storage module 16, can be implemented in far-end (i.e. these data processing equipment 100 ends) and carry out test processes by 200 pairs of these to-be-measured cells 300 of this optical measurement equipment, and the test data of this test processes gained carried out post-treatment operations, to avoid in the prior art, test and all can only carry out at regional A as shown in Figure 1 operating the various shortcoming of being brought on the line on the spot.
What need describe is that in post-treatment operations, operating personnel can select one according to the functional mode that this setting module 11 sets and carry out corresponding process operations herein.For example, when this functional mode is when being set at the Presentation Function pattern, then show this editable test data with default display format such as document or figure shelves; And when this functional mode be when being set at the statistical function pattern, the test data of extracting corresponding time point according to default interval time and time length overall then, and produce the time dependent trend map of this test data, thereby draw the colourity of this to-be-measured cell 300 and the variation characteristic of brightness for statistics; Again when this functional mode be when being set at the decision-making function pattern, then this editable test data is compared with default test stone, to judge whether this to-be-measured cell 300 meets this default test stone, thereby, know immediately in order to operating personnel thus whether parameters such as the colourity of current this to-be-measured cell 300 and brightness meet test stone for output corresponding result of determination (for example being acceptance or rejection).
Please together consult Fig. 2, be the embodiment operating process synoptic diagram of far-end control method of the present invention.Far-end control method of the present invention is in order to make the optical measurement equipment with second data transmission interface to to-be-measured cell (UnitUnder Test by the data processing equipment with first data transmission interface; UUT) carrying out test processes also reads back the test data of this test processes gained to carry out post-treatment operations, wherein, this optical measurement equipment also has in order to store the storage element of this test data, in present embodiment, this data processing equipment is to be embodied as PC, notebook computer or desktop computer etc., this optical measurement equipment is to be embodied as the chroma luminance measurer, and this storage element is to be embodied as random access memory (Random-access memory; RAM) etc.
Far-end control method of the present invention, at first execution in step S10 sets editable form, and the required functional mode of post-treatment operations with to parameter value that should functional mode.In present embodiment, this functional mode is for example to be Presentation Function pattern, statistical function pattern or decision-making function pattern, but not as limit.Then carry out step S11.
In step S11, electrically connect this first data transmission interface 101 and this second data transmission interface 201 to electrically connect this data processing equipment 100 and this optical measurement equipment 200.In present embodiment, this electric connection step is to realize by above-mentioned electric connection unit 12, this electric connection unit 12 is to can be the RS232 cable, but not as limit, such as can utilize this first data transmission interface 101 and this second data transmission interface 201 to realize the data line of the electrical connection between this data processing equipment 100 and this optical measurement equipment 200, but all belong to practical range of the present invention.Then carry out step S12.
In step S12, produce a trigger pip and this trigger pip is transferred to this optical measurement equipment 200 in these data processing equipment 100 ends by this first data transmission interface 101, this electric connection unit 12 and this second data transmission interface 201, thereby make 200 pairs of these to-be-measured cells 300 of this optical measurement equipment carry out this test processes, and the test data of this test processes gained is stored in this storage element 202.In present embodiment, this step is to be carried out by aforesaid trigger module 13, and thereby this trigger module 13 is to be available for users on demand with this trigger pip of the corresponding generation of manual control, or can be automatically in this data processing equipment 100 and this optical measurement equipment 200 electrically connect finish after, in a schedule time, produce this trigger pip.Then carry out step S13.
In step S13, read the stored test data of storage element 202 of this optical measurement equipment 200 by this first data transmission interface 101, this electric connection unit 12 and this second data transmission interface 201 in these data processing equipment 100 ends.In present embodiment, this step is to be carried out by aforesaid read module 14, this read module 14 is the stored test datas of storage element 202 that can read this optical measurement equipment 200 in real time, or can read once the stored test data of storage element 202 of this optical measurement equipment 200 in each interval.Then carry out step S14.
In step S14, the form of the test data that is read in the conversion of this data processing equipment 100 ends is editable form.In present embodiment, the form of the test data that obtains via these optical measurement equipment 200 test processes is the word string form, should default editable form be to be set at the numeric type form, but not as limit, the form of this test data can be set according to the needs that the follow-up processing that this test data is carried out is operated.Then carry out step S15.
In step S15,, thereby handle operation in data processing equipment 100 ends by this editable test data for follow-up in the test data of this data processing equipment 100 ends storage after conversion.
In sum, far-end control system of the present invention and method mainly are to electrically connect data processing equipment and optical measurement equipment by electrically connecting the unit, and the trigger module by the data processing equipment end after above-mentioned electrical connection is finished triggers this optical measurement equipment so that this optical measurement equipment carries out test processes to to-be-measured cell, and the test data of this test processes gained is stored in this storage element, read the stored test data of storage element of this optical measurement equipment for the read module of data processing equipment end, thereby the modular converter of confession data processing equipment end is editable form with the format conversion of the test data that this read module read, storage module by the data processing equipment end will store through the test data after the above-mentioned conversion at last, thereby can be further processed operation for follow-up by this editable test data in the data processing equipment end.
Correspondingly, needing in the prior art can avoid by operating personnel with online controlling of the manual type moment by far-end control system of the present invention and method, cause manpower to expend and cause the facts of human negligence taking place because of misreading of operating personnel, and then the drawback of the efficiency and precision of influence test; Simultaneously, because the present invention exports to the data processing equipment end with test data and is converted to editable data for carrying out post-treatment operations, so, operating personnel need not manipulation operation on the line, can avoid that test operation is subjected to for example restriction in the fc-specific test FC place of Walk in chamber in the prior art, and then the shortcoming that causes the range of application of test operation to be limited to.
The foregoing description is illustrative principle of the present invention and effect thereof only, but not is used to limit the present invention.Any those skilled in the art all can be under spirit of the present invention and category, and the foregoing description is modified and changed.Therefore, the scope of the present invention should be listed as claim.

Claims (10)

1. far-end control system, be in order to make optical measurement equipment that to-be-measured cell is carried out test processes by data processing equipment and the test data of this test processes gained is read back to carry out post-treatment operations with second data transmission interface with first data transmission interface, wherein, this optical measurement equipment also has in order to store the storage element of this test data, and this far-end control system is to comprise at least:
Electrically connecting the unit, is in order to electrically connect this first data transmission interface and this second data transmission interface to electrically connect this data processing equipment and this optical measurement equipment;
Trigger module, be to be arranged in this data processing equipment, in order to produce a trigger pip and this trigger pip to be transferred to this optical measurement equipment by this first data transmission interface, this electric connection unit and this second data transmission interface, thereby make this optical measurement equipment carry out this test processes, and the test data of this test processes gained is stored in this storage element this to-be-measured cell;
Read module is to be arranged in this data processing equipment, in order to the stored test data of storage element that reads this optical measurement equipment by this first data transmission interface, this electric connection unit and this second data transmission interface;
Modular converter is to be arranged in this data processing equipment, is editable form in order to the format conversion with the test data that this read module read; And
Storage module is to be arranged in this data processing equipment, in order to will storing through the test data after the conversion of this modular converter, thereby for carrying out post-treatment operations.
2. far-end control system according to claim 1 also comprises the setting module that is arranged in this data processing equipment, be use for set the required functional mode of this editable form and post-treatment operations with to parameter value that should functional mode.
3. far-end control system according to claim 2, wherein, this functional mode is one of them of Presentation Function pattern, statistical function pattern and decision-making function pattern.
4. far-end control system according to claim 1, wherein, this optical measurement equipment is the chroma luminance measurer.
5. far-end control system according to claim 1, wherein, this electric connection unit is the RS232 cable.
6. far-end control method, be in order to make optical measurement equipment that to-be-measured cell is carried out test processes by data processing equipment and the test data of this test processes gained is read back to carry out post-treatment operations with second data transmission interface with first data transmission interface, wherein, this optical measurement equipment also has in order to store the storage element of this test data, and this far-end control method is may further comprise the steps:
Electrically connect this first data transmission interface and this second data transmission interface to electrically connect this data processing equipment and this optical measurement equipment;
Produce a trigger pip and this trigger pip is transferred to this optical measurement equipment in this data processing equipment end by this first data transmission interface, this electric connection unit and this second data transmission interface, thereby make this optical measurement equipment carry out this test processes, and the test data of this test processes gained is stored in this storage element this to-be-measured cell;
The stored test data of storage element that reads this optical measurement equipment by this first data transmission interface, this electric connection unit and this second data transmission interface in this data processing equipment end;
The form of the test data that is read in the conversion of this data processing equipment end is editable form; And
In the test data of this data processing equipment end storage after conversion, thereby for carrying out post-treatment operations.
7. far-end control method according to claim 6, also being included in this data processing equipment end provides and sets required functional mode of this editable form and post-treatment operations and step to parameter value that should functional mode.
8. far-end control method according to claim 7, wherein, this functional mode is one of them of Presentation Function pattern, statistical function pattern and decision-making function pattern.
9. far-end control method according to claim 6, wherein, this optical measurement equipment is the chroma luminance measurer.
10. far-end control method according to claim 6, wherein, this electric connection unit is the RS232 cable.
CNB2006101018900A 2006-07-12 2006-07-12 Far-end control system and method Expired - Fee Related CN100472573C (en)

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CNB2006101018900A CN100472573C (en) 2006-07-12 2006-07-12 Far-end control system and method

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Application Number Priority Date Filing Date Title
CNB2006101018900A CN100472573C (en) 2006-07-12 2006-07-12 Far-end control system and method

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CN101105889A true CN101105889A (en) 2008-01-16
CN100472573C CN100472573C (en) 2009-03-25

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105278339A (en) * 2015-10-30 2016-01-27 青岛海尔智能家电科技有限公司 Composite electrical appliance subset description information generation method and device, and composite electrical appliance control method and device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105278339A (en) * 2015-10-30 2016-01-27 青岛海尔智能家电科技有限公司 Composite electrical appliance subset description information generation method and device, and composite electrical appliance control method and device

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