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1:
[发明]
【中文】一种TOF模组解析力的检测装置及方法 【EN】TOF module analytical force detection device and method
申请号:
201911172270.X
公开号:CN111122123A 主分类号:G01M11/02
申请人:
【中文】歌尔股份有限公司【EN】GOERTEK Inc.
申请日:2019.11.26 公开日:2020.05.08
发明人:
【中文】王非非
【EN】Wang Feifei
摘要:【中文】本发明涉及TOF模组解析力检测技术领域,提供了一种TOF模组解析力的检测方法,包括设置在光源板下方的TOF模组;所述TOF模组的感光单元与水平面呈预定倾角;所述TOF模组的感光单元一侧设置有倾斜角度可调的反射单元。借此,本发明通过在TOF模组的感光单元一侧设置倾斜角度可调的反射单元,使检测路径转化为x+y,根据三角形两边之和大于第三边的原理可知,x+y>dmax。在不更换检测装置的前提下,扩大了现有检测装置的检测范围,降低了检测成本。本发明还提供了一种采用该检测装置的TOF模组解析力的检测方法。 【EN】The invention relates to the technical field of TOF module analysis force detection, and provides a TOF module analysis force detection method, which comprises a TOF module arranged below a light source plate; a light sensing unit of the TOF module forms a preset inclination angle with the horizontal plane; and a reflection unit with an adjustable inclination angle is arranged on one side of the light sensing unit of the TOF module. Therefore, the invention enables the detection path to be converted into x + y by arranging the reflection unit with the adjustable inclination angle at one side of the light sensing unit of the TOF module, and the x + y is larger than dmax according to the principle that the sum of two sides of the triangle is larger than the third side. On the premise of not replacing the detection device, the detection range of the existing detection device is expanded, and the detection cost is reduced. The invention also provides a TOF module analysis force detection method adopting the detection device.
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2:
[发明]
【中文】一种确定补偿值以及确定光学模组平面度的方法 【EN】Method for determining compensation value and determining flatness of optical module
申请号:
201911168368.8
公开号:CN110864649A 主分类号:G01B11/30
申请人:
【中文】歌尔股份有限公司【EN】GOERTEK Inc.
申请日:2019.11.25 公开日:2020.03.06
发明人:
【中文】王非非
;
宋林东【EN】Wang Feifei
;
Song Lindong
摘要:【中文】本发明公开了一种确定补偿值的方法。所述方法包括步骤:提供待测光学模组和设置标定板;使位于所述放置区的待测光学模组正对中心标定点设置,使所述待测光学模组发射光线,光线射至所述中心标定点得到所述中心标定点与所述待测光学模组间的距离值,将所述中心标定点与所述待测光学模组间的距离值作为参照值;使所述光线射至多个边缘标定点得到多个所述边缘标定点与所述待测光学模组间的多个实际距离值;将所述中心标定点作为坐标原点,以及根据参照值,多个所述边缘标定点和多个实际距离值进行曲面拟合,得到拟合方程;所述拟合方程被配置为用于确定多个所述边缘标定点的补偿值。本发明采用拟合法确定补偿值,提高了光学模组中平面度的精准度。 【EN】The invention discloses a method for determining a compensation value. The method comprises the following steps: providing an optical module to be tested and setting a calibration plate; enabling the optical module to be measured positioned in the placement area to be arranged over against the central calibration point, enabling the optical module to be measured to emit light rays, enabling the light rays to be emitted to the central calibration point to obtain a distance value between the central calibration point and the optical module to be measured, and enabling the distance value between the central calibration point and the optical module to be measured to serve as a reference value; enabling the light rays to be emitted to a plurality of edge calibration points to obtain a plurality of actual distance values between the edge calibration points and the optical module to be tested; taking the center index point as a coordinate origin, and performing surface fitting on a plurality of edge index points and a plurality of actual distance values according to a reference value to obtain a fitting equation; the fitting equation is configured to determine compensation values for a plurality of the edge calibration points. The invention adopts a fitting method to determine the compensation value, and improves the accuracy of the flatness in the optical module.
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3:
[发明]
【中文】器件测试方法、装置及电子设备 【EN】Device testing method and device and electronic equipment
申请号:
201911167152.X
公开号:CN110907789A 主分类号:G01R31/26
申请人:
【中文】歌尔股份有限公司【EN】GOERTEK Inc.
申请日:2019.11.25 公开日:2020.03.24
发明人:
【中文】王非非
;
徐振宾【EN】Wang Feifei
;
Xu Zhenbin
摘要:【中文】本发明涉及器件测试方法、装置及电子设备。该方法包括:将所述测试电路通电,根据所述LED组件中发光的LED的电流规格,获得所述器件的测试结果。 【EN】The invention relates to a device testing method and device and electronic equipment. The method comprises the following steps: and electrifying the test circuit, and obtaining the test result of the device according to the current specification of the LED which emits light in the LED assembly.
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4:
[发明]
【中文】一种摄像模组解析力的测试方法及测试装置 【EN】Method and device for testing resolution of camera module
申请号:
202010006956.8
公开号:CN111220360A 主分类号:G01M11/02
申请人:
【中文】歌尔股份有限公司【EN】GOERTEK Inc.
申请日:2020.01.03 公开日:2020.06.02
发明人:
【中文】王非非
;
徐振宾【EN】Wang Feifei
;
Xu Zhenbin
摘要:【中文】本发明公开了一种摄像模组解析力的测试方法及测试装置,该方法包括:提供包括IR镜头及RGB镜头的摄像模组和包括第一子光源板及第二子光源板的光源板;IR镜头拍摄红外光形成的IR视场范围,RGB镜头拍摄可见光形成的RGB视场范围;将第一子光源板及第二子光源板的IR视场范围转换为虚拟水平光源板的IR视场范围,将第一子光源板及第二子光源板的RGB视场范围转换为虚拟水平光源板的RGB视场范围;IR镜头读取虚拟水平光源板的IR视场范围的亮度值,亮度值与标准亮度阈值比较得到IR镜头的解析力;RGB镜头读取虚拟水平光源板的RGB视场范围的亮度值,亮度值与标准亮度阈值比较得到RGB镜头的解析力。 【EN】The invention discloses a method and a device for testing the resolving power of a camera module, wherein the method comprises the following steps: providing a camera module comprising an IR lens and an RGB lens and a light source plate comprising a first sub light source plate and a second sub light source plate; the IR lens shoots an IR view field range formed by infrared light, and the RGB lens shoots an RGB view field range formed by visible light; converting the IR view field ranges of the first sub light source plate and the second sub light source plate into the IR view field range of the virtual horizontal light source plate, and converting the RGB view field ranges of the first sub light source plate and the second sub light source plate into the RGB view field range of the virtual horizontal light source plate; reading the brightness value of the IR field range of the virtual horizontal light source plate by the IR lens, and comparing the brightness value with a standard brightness threshold value to obtain the resolving power of the IR lens; the RGB lens reads the brightness value of the RGB field range of the virtual horizontal light source plate, and the brightness value is compared with a standard brightness threshold value to obtain the resolving power of the RGB lens.
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5:
[发明]
【中文】深度图像轮廓生成方法、装置、设备及存储介质 【EN】Depth image contour generation method, device, equipment and storage medium
申请号:
202010011864.9
公开号:CN111223111A 主分类号:G06T7/11
申请人:
【中文】歌尔股份有限公司【EN】GOERTEK Inc.
申请日:2020.01.03 公开日:2020.06.02
发明人:
【中文】王非非
;
宋林东【EN】Wang Feifei
;
Song Lindong
摘要:【中文】本发明属于深度图像测试技术领域,公开了一种深度图像轮廓生成方法、装置、设备及存储介质。该方法包括:在待测试图片中选取待测试物体所处的目标区域,对所述目标区域分别进行第一伪彩色标识,获得目标标识结果,然后根据所述目标标识结果确定待测试物体的特征位置,最后根据所述特征位置生成所述待测试物体的深度图像轮廓。通过上述方式,实现了精确获取深度图像轮廓,从而使得到的图像轮廓更细节化和直观化。 【EN】The invention belongs to the technical field of depth image testing, and discloses a depth image contour generation method, a depth image contour generation device, depth image contour generation equipment and a storage medium. The method comprises the following steps: selecting a target area where an object to be tested is located in a picture to be tested, respectively carrying out first pseudo-color identification on the target area to obtain a target identification result, then determining the characteristic position of the object to be tested according to the target identification result, and finally generating the depth image outline of the object to be tested according to the characteristic position. By the method, the depth image contour is accurately acquired, so that the acquired image contour is more detailed and visualized.
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6:
[发明]
【中文】基于边缘计算的超大规模DPI数据的处理系统 【EN】Ultra-large-scale DPI data processing system based on edge calculation
申请号:
201810952746.0
公开号:CN110855512A 主分类号:H04L12/26
申请人:
【中文】苏州迈科网络安全技术股份有限公司【EN】Suzhou Maike Network Safety Technology Co., Ltd.
申请日:2018.08.21 公开日:2020.02.28
发明人:
【中文】王克非【EN】Wang Kefei
摘要:【中文】本发明提供一种基于边缘计算的超大规模DPI数据的处理系统,包括:网关,具有DPI插件,进行DPI数据采集和边缘计算;云端服务器,对DPI数据进行存储并对边缘计算无法处理的信息进行处理;数据传输,连接网关和云端服务器,以对数据进行传输。本发明基于边缘计算的超大规模DPI数据的处理系统,网关进行数据采集、数据清洗、特别识别、上报信息提取等边缘计算,云端服务器对边缘计算无法处理的信息进行处理,充分发挥了网关边缘计算的算力,而且减少数据的上传量,减少了带宽的占用,提高了云端服务器的运算效率,从而提高了整体数据处理的效率,同时还减少了数据被窃取的风险,尤其是用户隐私数据,提高了安全性。 【EN】The invention provides a system for processing ultra-large-scale DPI data based on edge calculation, which comprises: the gateway is provided with a DPI plug-in unit and is used for carrying out DPI data acquisition and edge calculation; the cloud server is used for storing the DPI data and processing information which cannot be processed by edge calculation; and data transmission, namely connecting the gateway and the cloud server to transmit data. According to the processing system of the ultra-large-scale DPI data based on the edge calculation, the gateway carries out the edge calculation such as data acquisition, data cleaning, special recognition and reported information extraction, the cloud server processes the information which cannot be processed by the edge calculation, the calculation power of the edge calculation of the gateway is fully exerted, the uploading amount of the data is reduced, the occupation of bandwidth is reduced, and the calculation efficiency of the cloud server is improved, so that the efficiency of overall data processing is improved, meanwhile, the risk of data stealing is reduced, especially the private data of a user is improved, and the safety is improved.
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7:
[发明]
【中文】TOF模组的距离补偿方法、装置及设备 【EN】Distance compensation method, device and equipment of TOF module
申请号:
201911185548.7
公开号:CN110896474A 主分类号:H04N17/00
申请人:
【中文】歌尔股份有限公司【EN】GOERTEK Inc.
申请日:2019.11.27 公开日:2020.03.20
发明人:
【中文】王非非
;
宋林东
;
李敬【EN】Wang Feifei
;
Song Lindong
;
Li Jing
摘要:【中文】本发明公开了一种TOF模组的距离补偿方法、装置及设备。其中,该方法包括:获取TOF模组的距离测量值及对应的测量温度;所述距离测量值为利用所述TOF模组测量得到的所述TOF模组与测量对象之间的距离值;根据所述测量温度,确定对应的距离补偿值;利用所述距离补偿值和所述距离测量值,获得所述TOF模组与所述测量对象之间的实际距离值。 【EN】The invention discloses a distance compensation method, a distance compensation device and distance compensation equipment of a TOF module. Wherein, the method comprises the following steps: obtaining a distance measurement value and a corresponding measurement temperature of the TOF module; the distance measurement value is a distance value between the TOF module and a measurement object measured by the TOF module; determining a corresponding distance compensation value according to the measured temperature; and obtaining an actual distance value between the TOF module and the measuring object by using the distance compensation value and the distance measurement value.
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8:
[发明]
【中文】一种金属抗氧化剂 【EN】Metal antioxidant
申请号:
201811413488.5
公开号:CN111218680A 主分类号:C23C22/48
申请人:
【中文】湖北新冶金属表面处理科技有限公司【EN】HUBEI XINYE METAL SURFACE PROCESSING TECHNOLOGY Co.,Ltd.
申请日:2018.11.26 公开日:2020.06.02
发明人:
【中文】盛文胜
;
王克非【EN】Sheng Wensheng
;
Wang Kefei
摘要:【中文】本发明公开了一种金属抗氧化剂,包括以下重量比原料:丁二酸5‑10;二丁基羟基甲苯12‑18;没食子酸丙酯10‑15;叔丁基对苯二酚10‑15;基羟基茴香醚15‑20;单硬脂酸甘油酯10‑15;硫代二丙酸二月桂酯20‑25;本发明原料易得,成本低,有效防止金属被氧化腐蚀,避免资源浪费和环境污染。 【EN】The invention discloses a metal antioxidant which comprises the following raw materials in parts by weight: 5-10 parts of succinic acid; 12-18 parts of dibutyl hydroxy toluene; 10-15 parts of propyl gallate; 10-15 parts of tert-butyl hydroquinone; 15-20 parts of hydroxyanisole; 10-15 parts of glyceryl monostearate; 20-25 parts of dilauryl thiodipropionate; the invention has the advantages of easily available raw materials and low cost, effectively prevents metal from being oxidized and corroded, and avoids resource waste and environmental pollution.
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9:
[发明]
【中文】一种磨辊堆焊方法 【EN】Grinding roller surfacing method
申请号:
201811413489.X
公开号:CN111215725A 主分类号:B23K9/04
申请人:
【中文】湖北新冶金属表面处理科技有限公司【EN】HUBEI XINYE METAL SURFACE PROCESSING TECHNOLOGY Co.,Ltd.
申请日:2018.11.26 公开日:2020.06.02
发明人:
【中文】盛文胜
;
王克非【EN】Sheng Wensheng
;
Wang Kefei
摘要:【中文】本发明公开了一种磨辊堆焊方法,包括以下步骤:(1)安装:将要修复的磨辊安装在夹持驱动装置的转盘上;(2)调整:调整支撑柱的位置固定住磨辊;(3)堆焊:焊枪对准辊面进行堆焊;(4)调整:堆焊完后,调整焊枪位置对辊面进行其它部位修复;(5)拆卸:堆焊完成后将磨辊从夹持装置上卸下,保持转盘与地面处于水平状态;本发明操作简单,焊接质量高,焊枪调整好位置即可自动焊接,安装和拆卸方便。 【EN】The invention discloses a grinding roller surfacing method, which comprises the following steps: (1) installation: a grinding roller to be repaired is arranged on a turntable of the clamping driving device; (2) adjusting: adjusting the position of the support column to fix the grinding roller; (3) surfacing: the welding gun is aligned with the roller surface for surfacing; (4) adjusting: after surfacing, adjusting the position of a welding gun to repair other parts of the roller surface; (5) disassembling: after surfacing is completed, the grinding roller is dismounted from the clamping device, and the turntable and the ground are kept in a horizontal state; the invention has simple operation, high welding quality, automatic welding by adjusting the position of the welding gun and convenient installation and disassembly.
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10:
[发明]
【中文】一种助焊剂配方 【EN】Soldering flux formula
申请号:
201811413496.X
公开号:CN111215789A 主分类号:B23K35/363
申请人:
【中文】湖北新冶金属表面处理科技有限公司【EN】HUBEI XINYE METAL SURFACE PROCESSING TECHNOLOGY Co.,Ltd.
申请日:2018.11.26 公开日:2020.06.02
发明人:
【中文】盛文胜
;
王克非【EN】Sheng Wensheng
;
Wang Kefei
摘要:【中文】本发明公开了一种助焊剂配方,包括以下重量比原料:丁二醇15‑20;松油醇12‑18;苯磺酸钠20‑30;成膜剂10‑15;酒石酸10‑16;二乙醇胺15‑20;本发明原料易得,成本低,提供焊接质量,有效防止焊接时表面的再次氧化,具有非常好的焊接辅助性能。 【EN】The invention discloses a soldering flux formula, which comprises the following raw materials in parts by weight: 15-20 parts of butanediol; 12-18 parts of terpineol; 20-30 parts of sodium benzenesulfonate; 10-15 parts of a film forming agent; 10-16 parts of tartaric acid; 15-20 parts of diethanolamine; the invention has the advantages of easily obtained raw materials, low cost, welding quality improvement, effective prevention of surface reoxidation during welding and very good welding auxiliary performance.
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