Method and system for adjusting lighting parameters of mobile phone display screen

By reading and matching the model number and lighting detection parameter column of mobile phone display screen, combined with the method of decomposing the detection area, the problem of slow adjustment of lighting parameters and inaccurate detection in the existing technology is solved, and efficient and accurate lighting detection is achieved.

CN120028011AActive Publication Date: 2025-05-23JIANGXI JINLETONG TECH CO LTD
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Patent Information

Application Number
CN202510069592.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-05-23
Estimated Expiration
2045-01-16

AI Technical Summary

Technical Problem

In the prior art, the lighting parameters of mobile phone display screens are adjusted too slowly, resulting in low lighting testing efficiency and inability to detect in different regions, and the detection results are inaccurate.

Method used

By reading the model number of the mobile phone display, converting and matching the lighting detection parameter column, retrieving the corresponding pre-stored detection parameter column, and decomposing the detection area for lighting detection.

Benefits of technology

It improves the efficiency of lighting detection on mobile phone display screens, realizes sub-region detection, and improves the accuracy of the detection results.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a lighting parameter adjusting method and system for a mobile phone display screen, and the method comprises the steps: (1) data parameter adjustment, which comprises the following adjustment steps: S1, reading the model of a to-be-detected mobile phone display screen connected with an interface through a reading module; obtaining a corresponding lighting detection parameter column; and S2, transcoding according to the model lighting detection parameter column of the display screen of the mobile phone to be detected through a conversion module. The method has the beneficial effects that the corresponding lighting detection parameter column of the model of the mobile phone display screen can be quickly acquired and matched with the stored detection parameter column in the storage database, the pre-stored detection parameter column matched with the corresponding lighting detection data column of the mobile phone display screen can be quickly retrieved, and if the matching is not successful, the mobile phone display screen can be quickly retrieved. And then the lighting detection parameter column is input, so that the lighting detection parameter column does not need to be input before different models of mobile phone display screens to be detected are subjected to lighting detection, and the lighting detection efficiency of the mobile phone display screens can be improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of mobile phone display screen detection, and in particular to a method and system for adjusting lighting parameters of a mobile phone display screen. Background Art

[0002] Screen dot testing is required during the display development and testing and production stages. Lighting testing is an automated optical test performed when the mobile phone display is lit. It is used to detect defects such as light leakage, bad pixels, bright spots and dark spots in the mobile phone display.

[0003] For example, a display module lighting test system with application number CN109256072B and announcement date 2021.06.29 includes: a control circuit, which receives a selection instruction and obtains parameter information and refresh rate corresponding to the current display module type according to the selection instruction; a logic circuit is connected to the control circuit, receives a low-voltage differential signal as well as parameter information and the refresh rate to generate a lighting signal and a synchronization signal; a signal bridging circuit is connected to the logic circuit and the control circuit, receives parameter information and refresh rate, and converts the lighting signal and the synchronization signal into signals required by the display module to control the display module for lighting testing.

[0004] Due to the different models of mobile phone display screens, the corresponding lighting detection parameter columns are also different. In the above and existing technologies, it is usually necessary to input the parameters corresponding to the lighting detection parameter columns, which leads to slow adjustment of the lighting parameters, reducing the efficiency of the lighting test, and the lighting test of the mobile phone display screen cannot be performed in different areas. Usually, the overall test is performed, which is inefficient on the one hand and the test results are inaccurate on the other hand. Therefore, it is urgent to design a lighting parameter adjustment method and system for a mobile phone display screen to solve the above problems. Summary of the invention

[0005] The purpose of the present invention is to provide a method and system for adjusting lighting parameters of a mobile phone display screen to solve the above-mentioned deficiencies in the prior art.

[0006] In order to achieve the above object, the present invention provides the following technical solutions:

[0007] A method for adjusting lighting parameters of a mobile phone display screen, comprising:

[0008] (1) Data parameter adjustment

[0009] The adjustment steps include the following:

[0010] S1: Read the model of the mobile phone display screen to be detected connected to the interface through the reading module; obtain the corresponding lighting detection parameter column;

[0011] S2: The conversion module transcodes the lighting detection parameter column of the model of the mobile phone display screen to be detected, and obtains the lighting detection actual parameter column matching the lighting detection parameter format;

[0012] S3: The matching module retrieves the stored detection parameter column in the storage database from the parameter storage module according to the actual parameter column of the lighting detection converted by the conversion module to obtain a pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the mobile phone display screen;

[0013] S4: Retrieving a pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the mobile phone display screen model from the storage database through a retrieving module and waiting for use, thereby completing the data parameter adjustment;

[0014] S5: If there is no matching pre-stored detection parameter in the storage database, the lighting detection data column corresponding to the mobile phone display screen to be detected is input into the lighting detection device through the input module, and the lighting detection actual parameter column is generated and stored in the storage database;

[0015] S6: Then, through the retrieval module, the pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the above mobile phone display model is retrieved from the storage database for use, and the data parameter adjustment is completed;

[0016] (2) Detection parameter adjustment

[0017] The adjustment steps include the following:

[0018] S1: Pick up the model of the mobile phone display screen connected to the interface through the picking module, and pick up the size of the mobile phone display screen of the model;

[0019] S2: Decomposing the mobile phone display screen detection area into a number of detection sub-areas according to the size of the mobile phone display screen to be detected by the decomposition module;

[0020] S3: adjusting the number of detection modules of the detection device according to the number of detection sub-areas through the adjustment module to complete the size parameter adjustment.

[0021] Furthermore, the lighting detection actual parameter column and the storage detection parameter column both include light leakage detection data, bad pixel detection data, bright pixel detection data and dark pixel detection data.

[0022] Furthermore, in the step S3 of adjusting the data parameters, the order and number of items of the actual lighting detection parameter column and the pre-stored detection parameter column in the storage database are the same.

[0023] Furthermore, in the step S3 of adjusting the data parameters, the pre-stored detection parameter column stored in the storage database is input and stored through an input module.

[0024] Furthermore, in the step S3 of adjusting the data parameters, the matching method of the actual parameter column of the mobile phone display lighting detection and the pre-stored detection parameter column is the elimination method.

[0025] The specific method is:

[0026] Match the first parameter from the actual parameter column of the mobile phone display lighting test. Assume that the actual parameter column of the lighting test is: the light leakage detection data parameter is a, the bad pixel detection data is b, the bright spot detection data is c, and the dark spot detection data is d.

[0027] When the light leakage detection data parameter a of the actual parameter column of the lighting test does not match the light leakage detection data parameter a of the pre-stored detection parameter column, the matching of the bad pixel detection data b, the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will not be continued; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the pre-stored detection parameter column, the matching of the bad pixel detection data b, the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will be carried out until a, b, c and d are all matched;

[0028] When the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, and the bad pixel detection data b of the actual parameter column of the lighting test does not match the bad pixel detection data b of the pre-stored detection parameter column, the matching of the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will not be continued; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, and the bad pixel detection data b of the actual parameter column of the lighting test matches the bad pixel detection data b of the pre-stored detection parameter column, the matching of the bright pixel detection data c and the dark pixel detection data d will be continued until a, b, c and d are all matched;

[0029] When the bright spot detection data c of the actual parameter column of the lighting test does not match the bright spot detection data c of the pre-stored detection parameter column, the dark spot detection data d is not matched with the row dark spot detection data d of the pre-stored detection parameter column; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, the bad spot detection data b of the actual parameter column of the lighting test matches the bad spot detection data b of the pre-stored detection parameter column, and the bright spot detection data c of the actual parameter column of the lighting test matches the bright spot detection data c of the pre-stored detection parameter column, the dark spot detection data d of the actual parameter column of the lighting test is matched with the dark spot detection data d of the pre-stored detection parameter column until all the matches of a, b, c and d are completed;

[0030] When the dark spot detection data d of the actual parameter column of the lighting test does not match the dark spot detection data d of the pre-stored detection parameter column, the parameter matching between the actual parameter column of the lighting test and the pre-stored detection parameter column fails. When the dark spot detection data d of the actual parameter column of the lighting test matches the dark spot detection data d of the pre-stored detection parameter column, the parameter matching between the actual parameter column of the lighting test and the pre-stored detection parameter column succeeds.

[0031] Furthermore, in the step S1 of adjusting the detection parameters, the size of the mobile phone display screen includes the length a and the width b of the mobile phone display screen.

[0032] Wherein, S=a×b, and S is obtained, where S is the lighting detection area of ​​the mobile phone display screen.

[0033] Furthermore, in the step S2 of adjusting the detection parameters, the lighting detection area S is decomposed into several detection sub-areas S1, S2, S3...Sn according to the lighting detection area S of the mobile phone display screen, and the areas of S1, S2, S3...Sn are all the same, and S=S1+S2+S3+...Sn.

[0034] Furthermore, in the step S2 of adjusting the detection parameters, a plurality of detection sub-areas S1, S2, S3, ... Sn are simultaneously lighted for detection.

[0035] Furthermore, in the step S3 of adjusting the detection parameters, the number of detection sub-areas is the same as the number of detection modules of the detection device.

[0036] In addition, a lighting parameter adjustment system for a mobile phone display screen is provided, comprising a reading module, a conversion module, a matching module, a retrieval module, a picking module, a decomposition module and an adjustment module;

[0037] The reading module is used to read the model of the mobile phone display screen connected to the interface;

[0038] The conversion module is used to transcode the corresponding lighting detection parameters of the mobile phone display screen to be detected;

[0039] The matching module is used to match the actual parameter column of the lighting test of the mobile phone display screen to be tested after transcoding with the stored detection parameter column in the database;

[0040] The retrieval module is used to extract the pre-stored detection parameter column matching the display screen of the mobile phone to be tested from the database;

[0041] The picking module is used to pick up the size of the mobile phone display screen model connected to the interface;

[0042] The decomposition module is used to decompose the detection area of ​​the mobile phone display screen;

[0043] The adjustment module is used to adjust the number of detection modules of the detection device according to the number of detection units.

[0044] In the above technical solution, the present invention provides a method and system for adjusting lighting parameters of a mobile phone display screen.

[0045] (1) Through the set reading module, conversion module, matching module and retrieval module, the corresponding lighting detection parameter column of the model of the mobile phone display screen can be quickly obtained and matched with the stored detection parameter column in the storage database, and the pre-stored detection parameter column matching the corresponding lighting detection data column of the mobile phone display screen can be quickly retrieved. If the match is unsuccessful, the lighting detection parameter column is input again. It is not necessary to input the lighting detection parameter column before the lighting detection of the mobile phone display screens of different models to be detected, which can improve the efficiency of the lighting detection of the mobile phone display screen and is more convenient;

[0046] (2) By setting up the picking module, decomposition module and adjustment module, the decomposition module can decompose the collected display screen into several detection sub-areas, and can simultaneously perform lighting detection on several detection sub-areas through several detection modules of the lighting detection equipment. On the one hand, it can speed up the efficiency of lighting detection of the mobile phone display screen, and on the other hand, it can achieve accurate detection, making the result of lighting detection of the mobile phone display screen more accurate. BRIEF DESCRIPTION OF THE DRAWINGS

[0047] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.

[0048] Figure 1 A schematic structural diagram of a lighting parameter adjustment method provided in an embodiment of a lighting parameter adjustment method and system for a mobile phone display screen of the present invention.

[0049] Figure 2 The present invention provides a method and system for adjusting lighting parameters of a mobile phone display screen according to a process structure diagram of a data parameter adjustment method.

[0050] Figure 3 A schematic diagram of the flow structure of a detection parameter adjustment method provided in an embodiment of a method and system for adjusting lighting parameters of a mobile phone display screen of the present invention.

[0051] Figure 4 A schematic diagram of the system structure provided for a method and system embodiment of adjusting lighting parameters of a mobile phone display screen according to the present invention. DETAILED DESCRIPTION

[0052] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.

[0053] like Figure 1-4 As shown, a method for adjusting lighting parameters of a mobile phone display screen provided by an embodiment of the present invention includes:

[0054] (1) Data parameter adjustment

[0055] The adjustment steps include the following:

[0056] S1: Read the model of the mobile phone display screen to be detected connected to the interface through the reading module; obtain the corresponding lighting detection parameter column;

[0057] S2: The conversion module transcodes the lighting detection parameter column of the model of the mobile phone display screen to be detected, and obtains the lighting detection actual parameter column matching the lighting detection parameter format;

[0058] S3: The matching module retrieves the stored detection parameter column in the storage database from the parameter storage module according to the actual parameter column of the lighting detection converted by the conversion module to obtain a pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the mobile phone display screen;

[0059] S4: Retrieving a pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the mobile phone display screen model from the storage database through a retrieving module and waiting for use, thereby completing the data parameter adjustment;

[0060] S5: If there is no matching pre-stored detection parameter in the storage database, the lighting detection data column corresponding to the mobile phone display screen to be detected is input into the lighting detection device through the input module, and the lighting detection actual parameter column is generated and stored in the storage database;

[0061] S6: Then, through the retrieval module, the pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the above mobile phone display model is retrieved from the storage database for use, and the data parameter adjustment is completed;

[0062] (2) Detection parameter adjustment

[0063] The adjustment steps include the following:

[0064] S1: Pick up the model of the mobile phone display screen connected to the interface through the picking module, and pick up the size of the mobile phone display screen of the model;

[0065] S2: Decomposing the mobile phone display screen detection area into a number of detection sub-areas according to the size of the mobile phone display screen to be detected by the decomposition module;

[0066] S3: adjusting the number of detection modules of the detection device according to the number of detection sub-areas through the adjustment module to complete the size parameter adjustment.

[0067] The present invention provides a method for adjusting lighting parameters of a mobile phone display screen, comprising:

[0068] (1) Data parameter adjustment

[0069] The adjustment steps include the following:

[0070] S1: Read the model of the mobile phone display screen to be detected connected to the interface through the reading module; obtain the corresponding lighting detection parameter column;

[0071] S2: The conversion module transcodes the lighting detection parameter column of the model of the mobile phone display screen to be detected, and obtains the lighting detection actual parameter column matching the lighting detection parameter format;

[0072] S3: The matching module retrieves the stored detection parameter column in the storage database from the parameter storage module according to the actual lighting detection parameter column converted by the conversion module to match the stored detection parameter column, so as to obtain the pre-stored detection parameter column that matches the actual lighting detection parameter column of the mobile phone display screen. The actual lighting detection parameter column and the stored detection parameter column both include light leakage detection data, bad pixel detection data, bright pixel detection data and dark pixel detection data. The actual lighting detection parameter column and the pre-stored detection parameter column in the storage database have the same order and number of items. The pre-stored detection parameter column stored in the storage database is input and stored through the input module.

[0073] The matching method between the actual parameter column of the mobile phone display lighting detection and the pre-stored detection parameter column is the elimination method.

[0074] The specific method is:

[0075] Match the first parameter from the actual parameter column of the mobile phone display lighting test. Assume that the actual parameter column of the lighting test: the light leakage detection data parameter is a, the bad pixel detection data is b, the bright spot detection data is c, and the dark spot detection data is d.

[0076] When the light leakage detection data parameter a of the actual parameter column of the lighting test does not match the light leakage detection data parameter a of the pre-stored detection parameter column, the matching of the bad pixel detection data b, the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will not be continued; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the pre-stored detection parameter column, the matching of the bad pixel detection data b, the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will be carried out until a, b, c and d are all matched;

[0077] When the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, and the bad pixel detection data b of the actual parameter column of the lighting test does not match the bad pixel detection data b of the pre-stored detection parameter column, the matching of the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will not be continued; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, and the bad pixel detection data b of the actual parameter column of the lighting test matches the bad pixel detection data b of the pre-stored detection parameter column, the matching of the bright pixel detection data c and the dark pixel detection data d will be continued until a, b, c and d are all matched;

[0078] When the bright spot detection data c of the actual parameter column of the lighting test does not match the bright spot detection data c of the pre-stored detection parameter column, the dark spot detection data d is not matched with the row dark spot detection data d of the pre-stored detection parameter column; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, the bad spot detection data b of the actual parameter column of the lighting test matches the bad spot detection data b of the pre-stored detection parameter column, and the bright spot detection data c of the actual parameter column of the lighting test matches the bright spot detection data c of the pre-stored detection parameter column, the dark spot detection data d of the actual parameter column of the lighting test is matched with the dark spot detection data d of the pre-stored detection parameter column until all the matches of a, b, c and d are completed;

[0079] When the dark spot detection data d of the actual parameter column of the lighting test does not match the dark spot detection data d of the pre-stored detection parameter column, the parameter matching between the actual parameter column of the lighting test and the pre-stored detection parameter column fails; when the dark spot detection data d of the actual parameter column of the lighting test matches the dark spot detection data d of the pre-stored detection parameter column, the parameter matching between the actual parameter column of the lighting test and the pre-stored detection parameter column succeeds;

[0080] S4: Retrieving a pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the mobile phone display screen model from the storage database through a retrieving module and waiting for use, thereby completing the data parameter adjustment;

[0081] S5: If there is no matching pre-stored detection parameter in the storage database, the lighting detection data column corresponding to the mobile phone display screen to be detected is input into the lighting detection device through the input module, and the lighting detection actual parameter column is generated and stored in the storage database;

[0082] S6: Then, through the retrieval module, the pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the above mobile phone display model is retrieved from the storage database for use, and the data parameter adjustment is completed;

[0083] The pre-stored detection parameter column can be quickly matched with the corresponding lighting detection data column of the mobile phone display screen. If the match is unsuccessful, the lighting detection parameter column is input again, making the lighting detection of the mobile phone display screen more efficient.

[0084] (2) Detection parameter adjustment

[0085] The adjustment steps include the following:

[0086] S1: Pick up the model of the mobile phone display screen connected to the interface through the picking module, and pick up the size of the mobile phone display screen of this model. The size of the mobile phone display screen includes the length a and width b of the mobile phone display screen, where S=a×b, and S is obtained, where S is the lighting detection area of ​​the mobile phone display screen;

[0087] S2: Decompose the mobile phone display screen detection area into several detection sub-areas according to the size of the mobile phone display screen to be detected through the decomposition module; decompose the lighting detection area S into several detection sub-areas S1, S2, S3...Sn according to the lighting detection area S of the mobile phone display screen, the areas of S1, S2, S3...Sn are the same, and S=S1+S2+S3+...Sn, and several detection sub-areas S1, S2, S3...Sn perform lighting detection at the same time

[0088] S3: adjusting the number of detection modules of the detection device according to the number of detection sub-regions through the adjustment module, completing the size parameter adjustment, and the number of detection sub-regions is the same as the number of detection modules of the detection device;

[0089] The lighting detection area of ​​the mobile phone display screen can be divided into regions for lighting detection, which can speed up the efficiency of the mobile phone display screen lighting detection and realize accurate detection, making the result of the mobile phone display screen lighting detection more accurate.

[0090] In addition, a lighting parameter adjustment system for a mobile phone display screen is provided, comprising a reading module, a conversion module, a matching module, a retrieval module, a picking module, a decomposition module and an adjustment module;

[0091] The reading module is used to read the model of the mobile phone display screen connected to the interface;

[0092] The conversion module is used to transcode the corresponding lighting detection parameters of the mobile phone display screen to be detected;

[0093] The matching module is used to match the actual parameter column of the lighting test of the mobile phone display screen to be tested after transcoding with the stored detection parameter column in the database;

[0094] The retrieval module is used to extract the pre-stored detection parameter column matching the display screen of the mobile phone to be tested from the database;

[0095] The picking module is used to pick up the size of the mobile phone display screen model connected to the interface;

[0096] The decomposition module is used to decompose the detection area of ​​the mobile phone display screen;

[0097] The adjustment module is used to adjust the number of detection modules of the detection device according to the number of detection units.

[0098] The above description is only by way of illustration of certain exemplary embodiments of the present invention. It is undoubted that those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A method for adjusting lighting parameters of a mobile phone display screen, characterized in that: include (1) Data parameter adjustment The adjustment steps include the following: S1: Read the model of the mobile phone display screen to be detected connected to the interface through the reading module; obtain the corresponding lighting detection parameter column; S2: The conversion module transcodes the lighting detection parameter column of the model of the mobile phone display screen to be detected, and obtains the lighting detection actual parameter column matching the lighting detection parameter format; S3: The matching module retrieves the stored detection parameter column in the storage database from the parameter storage module according to the actual parameter column of the lighting detection converted by the conversion module to obtain a pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the mobile phone display screen; S4: Retrieving a pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the mobile phone display screen model from the storage database through a retrieving module and waiting for use, thereby completing the data parameter adjustment; S5: If there is no matching pre-stored detection parameter in the storage database, the lighting detection data column corresponding to the mobile phone display screen to be detected is input into the lighting detection device through the input module, and the lighting detection actual parameter column is generated and stored in the storage database; S6: Then, through the retrieval module, the pre-stored detection parameter column that matches the actual parameter column of the lighting detection of the above mobile phone display model is retrieved from the storage database for use, and the data parameter adjustment is completed; (2) Detection parameter adjustment The adjustment steps include the following: S1: Pick up the model of the mobile phone display screen connected to the interface through the picking module, and pick up the size of the mobile phone display screen of the model; S2: Decomposing the mobile phone display screen detection area into a number of detection sub-areas according to the size of the mobile phone display screen to be detected by the decomposition module; S3: adjusting the number of detection modules of the detection device according to the number of detection sub-areas through the adjustment module to complete the size parameter adjustment.

2. A method for adjusting lighting parameters of a mobile phone display screen according to claim 1, characterized in that: The lighting detection actual parameter column and the storage detection parameter column both include light leakage detection data, bad pixel detection data, bright pixel detection data and dark pixel detection data.

3. The method for adjusting lighting parameters of a mobile phone display screen according to claim 1, characterized in that: In the step S3 of adjusting the data parameters, the order and number of items of the actual lighting detection parameter column and the pre-stored detection parameter column in the storage database are the same.

4. The method for adjusting lighting parameters of a mobile phone display screen according to claim 1, characterized in that: In the step S3 of adjusting the data parameters, the pre-stored detection parameter column stored in the storage database is input and stored through an input module.

5. The method for adjusting lighting parameters of a mobile phone display screen according to claim 1, characterized in that: In the step S3 of adjusting the data parameters, the matching method of the actual parameter column of the mobile phone display lighting detection and the pre-stored detection parameter column is the elimination method. The specific method is: Match the first parameter from the actual parameter column of the mobile phone display lighting test. Assume that the actual parameter column of the lighting test: the light leakage detection data parameter is a, the bad pixel detection data is b, the bright spot detection data is c, and the dark spot detection data is d. When the light leakage detection data parameter a of the actual parameter column of the lighting test does not match the light leakage detection data parameter a of the pre-stored detection parameter column, the matching of the bad pixel detection data b, the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will not be continued; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the pre-stored detection parameter column, the matching of the bad pixel detection data b, the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will be carried out until a, b, c and d are all matched; When the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, and the bad pixel detection data b of the actual parameter column of the lighting test does not match the bad pixel detection data b of the pre-stored detection parameter column, the matching of the bright pixel detection data c and the dark pixel detection data d of the actual parameter column of the lighting test will not be continued; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, and the bad pixel detection data b of the actual parameter column of the lighting test matches the bad pixel detection data b of the pre-stored detection parameter column, the matching of the bright pixel detection data c and the dark pixel detection data d will be continued until a, b, c and d are all matched; When the bright spot detection data c of the actual parameter column of the lighting test does not match the bright spot detection data c of the pre-stored detection parameter column, the dark spot detection data d is not matched with the row dark spot detection data d of the pre-stored detection parameter column; when the light leakage detection data parameter a of the actual parameter column of the lighting test matches the light leakage detection data parameter a of the pre-stored detection parameter column, the bad spot detection data b of the actual parameter column of the lighting test matches the bad spot detection data b of the pre-stored detection parameter column, and the bright spot detection data c of the actual parameter column of the lighting test matches the bright spot detection data c of the pre-stored detection parameter column, the dark spot detection data d of the actual parameter column of the lighting test is matched with the dark spot detection data d of the pre-stored detection parameter column until all the matches of a, b, c and d are completed; When the dark spot detection data d of the actual parameter column of the lighting test does not match the dark spot detection data d of the pre-stored detection parameter column, the parameter matching between the actual parameter column of the lighting test and the pre-stored detection parameter column fails. When the dark spot detection data d of the actual parameter column of the lighting test matches the dark spot detection data d of the pre-stored detection parameter column, the parameter matching between the actual parameter column of the lighting test and the pre-stored detection parameter column succeeds.

6. The method for adjusting lighting parameters of a mobile phone display screen according to claim 1, characterized in that: In the step S1 of adjusting the detection parameters, the size of the mobile phone display screen includes the length a and the width b of the mobile phone display screen. Wherein, S=a×b, and S is obtained, where S is the lighting detection area of ​​the mobile phone display screen.

7. The method for adjusting lighting parameters of a mobile phone display screen according to claim 1, characterized in that: In the step S2 of adjusting the detection parameters, the lighting detection area S of the mobile phone display screen is decomposed into a number of detection sub-areas S1, S2, S3...Sn, the areas of S1, S2, S3...Sn are all the same, and S=S1+S2+S3+...Sn.

8. The method for adjusting lighting parameters of a mobile phone display screen according to claim 1, characterized in that: In the step S2 of adjusting the detection parameters, a plurality of detection sub-areas S1, S2, S3, ... Sn are simultaneously subjected to lighting detection.

9. The method for adjusting lighting parameters of a mobile phone display screen according to claim 1, characterized in that: In the step S3 of adjusting the detection parameters, the number of detection sub-areas is the same as the number of detection modules of the detection device.

10. A lighting parameter adjustment system for a mobile phone display screen, characterized in that: It includes a reading module, a conversion module, a matching module, a retrieval module, a picking module, a decomposition module and an adjustment module; The reading module is used to read the model of the mobile phone display screen connected to the interface; The conversion module is used to transcode the corresponding lighting detection parameters of the mobile phone display screen to be detected; The matching module is used to match the actual parameter column of the lighting test of the mobile phone display screen to be tested after transcoding with the stored detection parameter column in the database; The retrieval module is used to extract the pre-stored detection parameter column matching the display screen of the mobile phone to be tested from the database; The picking module is used to pick up the size of the mobile phone display screen model connected to the interface; The decomposition module is used to decompose the detection area of ​​the mobile phone display screen; The adjustment module is used to adjust the number of detection modules of the detection device according to the number of detection units.

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