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发明专利:1285实用新型: 151外观设计: 101
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申请号:201810827359.4 公开号:CN110854977A 主分类号:H02J7/04
摘要:【中文】本申请实施例提供一种无线充电方法、存储介质、电子设备及充电装置,该方法包括:实时获取第一接收线圈和第二接收线圈的当前温度、以及电池的当前电量;当当前温度低于第一预设温度阈值,且当前电量低于预设电量阈值时,控制第一接收线圈和第二接收线圈同时接收电磁能;当当前温度大于第一预设温度阈值时,或当当前电量大于预设电量阈值时,设置多个充电时间段,每个充电时间段包括第一子充电时间段和第二子充电时间段;在第一子充电时间段内,控制第一接收线圈接收电磁能,并控制第二接收线圈处于空闲状态;在第二子充电时间段内,控制第二接收线圈接收电磁能,并控制第一接收线圈处于空闲状态。既能实现连续充电,又可以降低接收线圈的温度。 【EN】The embodiment of the application provides a wireless charging method, a storage medium, electronic equipment and a charging device, wherein the method comprises the following steps: acquiring the current temperature of the first receiving coil and the second receiving coil and the current electric quantity of the battery in real time; when the current temperature is lower than a first preset temperature threshold and the current electric quantity is lower than a preset electric quantity threshold, controlling the first receiving coil and the second receiving coil to simultaneously receive electromagnetic energy; when the current temperature is greater than a first preset temperature threshold value or when the current electric quantity is greater than a preset electric quantity threshold value, setting a plurality of charging time periods, wherein each charging time period comprises a first sub-charging time period and a second sub-charging time period; controlling the first receiving coil to receive electromagnetic energy and controlling the second receiving coil to be in an idle state in the first sub-charging time period; and controlling the second receiving coil to receive the electromagnetic energy and controlling the first receiving coil to be in an idle state in the second sub-charging time period. Not only can realize continuous charging, but also can reduce the temperature of the receiving coil.
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申请号:201810950699.6 公开号:CN110855460A 主分类号:H04L12/24
摘要:【中文】本申请实施例公开了一种场景恢复方法、云平台及计算机存储介质,上述场景恢复方法包括:当第一控制设备为故障状态时,接收身份标识和第二控制设备对应的第一设备类型;根据身份标识和第一设备类型获取场景配置参数;其中,场景配置参数为第一控制设备对应的物联网场景的配置信息;根据第二控制设备和场景配置参数,生成场景恢复信息;发送场景恢复信息,通过第二控制设备恢复物联网场景。 【EN】The embodiment of the application discloses a scene recovery method, a cloud platform and a computer storage medium, wherein the scene recovery method comprises the following steps: when the first control equipment is in a fault state, receiving the identity and a first equipment type corresponding to the second control equipment; acquiring scene configuration parameters according to the identity and the first equipment type; the scene configuration parameters are configuration information of an internet of things scene corresponding to the first control device; generating scene recovery information according to the second control equipment and the scene configuration parameters; and sending scene recovery information, and recovering the scene of the Internet of things through second control equipment.
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申请号:201910875159.0 公开号:CN110853124A 主分类号:G06T13/80
摘要:【中文】本申请公开了一种生成GIF动态图的方法、装置、电子设备及介质。其中,本申请中,当获取至少包含两个关键帧数据的目标视频数据之后,可以进一步的提取目标视频数据中的关键帧数据,并基于关键帧数据,生成目标GIF动态图。通过应用本申请的技术方案,可以自动从视频数据中提取对应的关键帧数据,并根据该关键帧数据生成GIF动态图。从而可以避免相关技术中存在的需要人工合成GIF动态图而导致的生成时间较长的问题。 【EN】The application discloses a method, a device, electronic equipment and a medium for generating a GIF dynamic graph. In the present application, after target video data including at least two pieces of key frame data is acquired, the key frame data in the target video data may be further extracted, and a target GIF dynamic graph is generated based on the key frame data. By applying the technical scheme of the application, the corresponding key frame data can be automatically extracted from the video data, and the GIF dynamic graph is generated according to the key frame data. Therefore, the problem of long generation time caused by the need of artificially synthesizing the GIF dynamic graph in the related art can be avoided.
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申请号:201911058313.1 公开号:CN110854540A 主分类号:H01Q15/08
摘要:【中文】本申请涉及一种介质透镜、透镜天线和电子设备,介质透镜,包括:第一导电板,第二导电板,与第一导电板平行设置;聚焦层,包括相背设置的第一侧面和第二侧面,第一侧面贴合于第一导电板,第二侧面贴合于第二导电板,且第一侧面包括朝第一导电板一侧凸起的第一曲面,聚焦层用于对沿第一方向传导的电磁波进行汇聚;校准层,在第一方向上与聚焦层连接,校准层包括相背设置的第三侧面和第四侧面,第三侧面贴合于第一导电板,第四侧面贴合于第二导电板,第三侧面包括第二曲面,第二曲面包括至少一个朝第一导电板一侧的凸面,其中,校准层用于对聚焦层提供的相位延迟进行补偿,可以有效提高了偏焦辐射性能,提高了透镜天线的扫描覆盖范围。 【EN】The present application relates to a dielectric lens, a lens antenna and an electronic device, the dielectric lens including: the first current-conducting plate and the second current-conducting plate are arranged in parallel with the first current-conducting plate; the focusing layer comprises a first side surface and a second side surface which are arranged in a back-to-back mode, the first side surface is attached to the first conducting plate, the second side surface is attached to the second conducting plate, the first side surface comprises a first curved surface protruding towards one side of the first conducting plate, and the focusing layer is used for converging electromagnetic waves conducted along a first direction; the calibration layer is connected with the focusing layer in the first direction, the calibration layer comprises a third side face and a fourth side face which are arranged in a back-to-back mode, the third side face is attached to the first conductive plate, the fourth side face is attached to the second conductive plate, the third side face comprises a second curved face, the second curved face comprises at least one convex face facing one side of the first conductive plate, the calibration layer is used for compensating phase delay provided by the focusing layer, the off-focus radiation performance can be effectively improved, and the scanning coverage range of the lens antenna is improved.
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申请号:201911058327.3 公开号:CN110854541A 主分类号:H01Q15/08
摘要:【中文】本申请涉及一种介质透镜、透镜天线和电子设备,介质透镜,包括:透镜层,包括相背设置的第一侧面和第二侧面,且所述第一侧面包括朝背离所述第二侧面的一侧凸起的第一曲面;校准层,包括一体成型的连接部和校准部,所述连接部与所述第二侧面贴合设置,所述校准部朝向所述透镜层的一侧包括第二曲面,所述第二曲面包括至少一个朝所述透镜层一侧的凸面,所述校准层用于对所述透镜层提供的相位分布进行补偿,该介质透镜集成校准层,有效提高了偏焦辐射性能,提高了透镜天线的扫描覆盖范围。 【EN】The present application relates to a dielectric lens, a lens antenna and an electronic device, the dielectric lens including: the lens layer comprises a first side surface and a second side surface which are arranged in a reverse manner, and the first side surface comprises a first curved surface which is convex towards one side departing from the second side surface; the calibration layer comprises an integrally formed connecting part and a calibration part, the connecting part is attached to the second side face, the calibration part faces towards one side of the lens layer and comprises a second curved surface, the second curved surface comprises at least one face towards a convex surface on one side of the lens layer, the calibration layer is used for compensating phase distribution provided by the lens layer, and the integrated calibration layer of the dielectric lens effectively improves the off-focus radiation performance and improves the scanning coverage range of the lens antenna.
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申请号:201911059909.3 公开号:CN110855813A 主分类号:H04M1/02
摘要:【中文】本发明公开了一种移动终端的导电盖体、移动终端的壳体及移动终端,其中导电盖体具有相对的第一侧壁和第二侧壁且包括:第一缝隙带,第一缝隙带内设有绝缘间隔层,第一缝隙带包括依次连接的第一直线段、第一弧形段和第二直线段;第二缝隙带,第二缝隙带内设有绝缘间隔层,第一缝隙带和第二缝隙带将导电盖体分隔为第一盖体部、间隔部和第二盖体部,间隔部位于第一盖体部和第二盖体部之间,第一缝隙带位于第一盖体部和间隔部之间,第二缝隙带位于间隔部和第二盖体部之间。根据本发明的导电盖体,不但可以减小对移动终端天线信号的屏蔽作用,从而使导电盖体满足移动终端天线的设计需要,而且可以拓宽移动终端天线的带宽,提升天线的性能指标。 【EN】The invention discloses a conductive cover body of a mobile terminal, a shell of the mobile terminal and the mobile terminal, wherein the conductive cover body is provided with a first side wall and a second side wall which are opposite, and comprises: the first slit band is internally provided with an insulating spacing layer and comprises a first straight line section, a first arc-shaped section and a second straight line section which are sequentially connected; the second gap belt is internally provided with an insulating spacing layer, the first gap belt and the second gap belt divide the conductive cover body into a first cover body part, a spacing part and a second cover body part, the spacing part is positioned between the first cover body part and the second cover body part, the first gap belt is positioned between the first cover body part and the spacing part, and the second gap belt is positioned between the spacing part and the second cover body part. According to the conductive cover body disclosed by the invention, the shielding effect on the antenna signal of the mobile terminal can be reduced, so that the conductive cover body meets the design requirement of the mobile terminal antenna, the bandwidth of the mobile terminal antenna can be widened, and the performance index of the antenna is improved.
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申请号:201911061270.2 公开号:CN110854145A 主分类号:H01L27/146
摘要:【中文】本申请实施例公开了一种像素结构、图像传感器及终端,该像素结构包含至少两个子像素结构,子像素结构中包含堆叠放置的第一类偏振光电转换单元和第二类偏振光电转换单元,利用波长和穿透深度的对应关系,处于较浅位置(即离滤光片近的位置)的第一类偏振光电转换单元吸收第一种特定波段的偏振光信号,处于较深位置(即离滤光片远的位置)的第二类偏振光电转换单元吸收第二种特定波段的偏振光信号。如此,实现了单个像素结构吸收两种特定波段的偏振光信号,提高了偏振光信号的利用率;通过调整感光区域尺寸保证偏振光电转换单元具有较高的量子效率,提高了偏振光信号的吸收率。 【EN】The embodiment of the application discloses a pixel structure, an image sensor and a terminal, wherein the pixel structure comprises at least two sub-pixel structures, each sub-pixel structure comprises a first polarization photoelectric conversion unit and a second polarization photoelectric conversion unit which are stacked, the first polarization photoelectric conversion unit at a shallow position (namely, a position close to an optical filter) absorbs polarized light signals of a first specific waveband by utilizing the corresponding relation between the wavelength and the penetration depth, and the second polarization photoelectric conversion unit at a deep position (namely, a position far away from the optical filter) absorbs polarized light signals of a second specific waveband. Therefore, the single pixel structure can absorb the polarized light signals of two specific wave bands, and the utilization rate of the polarized light signals is improved; the polarized photoelectric conversion unit is ensured to have higher quantum efficiency by adjusting the size of the photosensitive area, and the absorption rate of polarized light signals is improved.
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申请号:201911061864.3 公开号:CN110856385A 主分类号:H05K5/02
摘要:【中文】本申请提供了壳体组件及其制备方法和电子设备,该壳体组件包括:玻璃基体,所述玻璃基体具有相对的第一表面和第二表面,所述第一表面具有微米级第一立体纹理,所述第二表面上具有微米级第二立体纹理,所述第一立体纹理在垂直方向上的正投影和所述第二立体纹理在所述垂直方向上的正投影不完全重叠,以使得第一立体纹理和第二立体纹理的反射光发生干涉。该壳体组件中,直接在玻璃两个相对的表面形成双层立体纹理,提高了制作良率,不易变形,很好地解决了装饰可靠性及制作良率的问题,并通过双层纹理的光学干涉可以使得壳体组件形成特殊的摩尔纹外观,呈现出更炫更立体的外观装饰效果,可以极大地提高产品的外观吸引力和竞争力。 【EN】The application provides a housing assembly, a preparation method thereof and an electronic device, wherein the housing assembly comprises: the glass substrate is provided with a first surface and a second surface which are opposite, the first surface is provided with a micron-scale first three-dimensional texture, the second surface is provided with a micron-scale second three-dimensional texture, and the orthographic projection of the first three-dimensional texture in the vertical direction and the orthographic projection of the second three-dimensional texture in the vertical direction are not completely overlapped, so that the reflected light of the first three-dimensional texture and the reflected light of the second three-dimensional texture are interfered. In the shell assembly, double-layer three-dimensional textures are directly formed on two opposite surfaces of the glass, the manufacturing yield is improved, the deformation is not easy, the problems of the decoration reliability and the manufacturing yield are well solved, the shell assembly can form a special Moire pattern appearance through the optical interference of the double-layer textures, a more three-dimensional appearance decoration effect is shown, and the appearance attractiveness and the competitiveness of products can be greatly improved.
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申请号:201911075481.1 公开号:CN110855997A 主分类号:H04N19/44
摘要:【中文】本发明实施例公开了一种图像处理方法及装置、存储介质,包括:在对目标物体进行图像预览或图像拍摄时,获取目标物体对应的结构光信息和二维图像;对结构光信息和二维图像进行合并或独立编码,得到编码信息,编码信息包括合并编码信息或独立编码信息;当对编码信息进行解码后,利用结构光信息对二维图像进行处理,得到二维图像对应的目标图像。 【EN】The embodiment of the invention discloses an image processing method and device and a storage medium, wherein the image processing method comprises the following steps: when image preview or image shooting is carried out on a target object, structured light information and a two-dimensional image corresponding to the target object are acquired; merging or independently coding the structured light information and the two-dimensional image to obtain coded information, wherein the coded information comprises merged coded information or independent coded information; and after the coded information is decoded, the two-dimensional image is processed by using the structured light information to obtain a target image corresponding to the two-dimensional image.
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申请号:201911084088.9 公开号:CN110852251A 主分类号:G06K9/00
摘要:【中文】本申请实施例提供一种电子设备,包括显示屏、第一透镜模组、指纹传感器和第一驱动机构,所述显示屏具有相背的显示面和非显示面,所述第一透镜模组、所述指纹传感器和所述第一驱动机构设置在所述非显示面一侧,所述第一透镜模组与所述第一驱动机构连接,所述指纹传感器用于接收透过所述非显示面和所述第一透镜模组的光信号以采集指纹信息,所述第一驱动机构用于驱动所述第一透镜模组移动,使得所述指纹传感器的指纹信息采集区域改变。本申请实施例可以改变指纹传感器的指纹信息采集区域,进而增加指纹信息采集的自由度。 【EN】The embodiment of the application provides an electronic equipment, including display screen, first lens module, fingerprint sensor and first actuating mechanism, the display screen has display surface and the non-display surface that carries on the back mutually, first lens module fingerprint sensor with first actuating mechanism sets up non-display surface one side, first lens module with first actuating mechanism connects, fingerprint sensor is used for receiving to see through non-display surface with the light signal of first lens module is in order to gather fingerprint information, first actuating mechanism is used for the drive first lens module removes, makes fingerprint sensor's fingerprint information collection region changes. The fingerprint information acquisition area of the fingerprint sensor can be changed, and the degree of freedom of fingerprint information acquisition is further increased.
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