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1:
[发明]
【中文】抗幽门螺旋杆菌活性的蒽醌类化合物及其应用 【EN】Anthraquinone compound with anti-helicobacter pylori activity and application thereof
申请号:
201911038374.1
公开号:CN110951619A 主分类号:C12N1/14
申请人:
【中文】中国科学院微生物研究所【EN】INSTITUTE OF MICROBIOLOGY, CHINESE ACADEMY OF SCIENCES
申请日:2019.10.29 公开日:2020.04.03
发明人:
【中文】刘玲
;
郭良栋
;
郭龙芳
;
贾佳【EN】Liu Ling
;
Guo Liangdong
;
Guo Longfang
;
Jia Jia
摘要:【中文】本发明公开了一株木贼镰刀菌(Fusarium equiseti)菌株Shsl21,它的保藏编号为CGMCC No.18550。本发明还提供了用菌株Shsl21制备的化合物,该化合物具有较好的抗幽门螺旋杆菌(H.pylori BHKS159)活性,适宜于抗幽门螺旋杆菌先导化合物研究或制备抗幽门螺旋杆菌药物。 【EN】The invention discloses a Fusarium equiseti (Fusarium equiseti) strain Shsl21 with the preservation number of CGMCC No. 18550. The invention also provides a compound prepared by the strain Shsl21, which has better anti-helicobacter pylori (H.pylori BHKS159) activity and is suitable for research of anti-helicobacter pylori lead compounds or preparation of anti-helicobacter pylori medicaments.
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2:
[发明]
【中文】一种小型高可靠线簧孔鱼眼压接型插孔 【EN】Small-size highly reliable wire spring hole flake crimping type jack
申请号:
201911131813.3
公开号:CN110890637A 主分类号:H01R4/2404
申请人:
【中文】中航光电科技股份有限公司【EN】AVIC JONHON OPTRONIC TECHNOLOGY Co.,Ltd.
申请日:2019.11.18 公开日:2020.03.17
发明人:
【中文】郭建设
;
童猛
;
李佳【EN】
Guo Jia
nshe
;
Tong Meng
;
Li Jia
摘要:【中文】一种小型高可靠线簧孔鱼眼压接型插孔,包括前套管、后套管、以及插孔管;所述插孔管外圆面的中间部位设有压接环槽,插孔管外圆面的一端与前套管的内管壁插接,另一端与后套管的内管壁插接;所述前套管、所述后套管位于压接环槽内的管口与压接环槽压接;所述后套管远离插孔管的一端设有鱼眼结构。本发明通过压接的方式,增大插孔的插拔拉脱力,并降低了插孔的加工尺寸精度要求,提高了良品率;通过在插孔管内设置线簧丝,增强了插孔与插针电性连接的可靠性,使插孔具备了振动等级高、插拔寿命长、插拔力柔、接触件可靠、接触电阻小的特点。本发明的结构紧凑、解决了插孔的高密度要求;采用鱼眼压接,解决了过孔处阻抗不匹配的问题。 【EN】A small-sized high-reliability fisheye pressing type jack with a wire spring hole comprises a front sleeve, a rear sleeve and a jack pipe; the middle part of the outer circular surface of the jack pipe is provided with a crimping ring groove, one end of the outer circular surface of the jack pipe is spliced with the inner pipe wall of the front sleeve pipe, and the other end of the outer circular surface of the jack pipe is spliced with the inner pipe wall of the rear sleeve pipe; the pipe orifices of the front sleeve and the rear sleeve, which are positioned in the crimping ring groove, are crimped with the crimping ring groove; and one end of the rear sleeve, which is far away from the jack pipe, is provided with a fisheye structure. According to the invention, through a compression joint mode, the plugging and pulling-out force of the jack is increased, the requirement on the machining size precision of the jack is reduced, and the yield is improved; through set up the line spring silk in the jack pipe, strengthened jack and contact pin electric connection's reliability, made the jack possess vibration level height, plug longe-lived, the gentle characteristics of plug power, contact reliable, contact resistance are little. The invention has compact structure and solves the high density requirement of the jacks; and the fisheye compression joint is adopted, so that the problem of impedance mismatching at the via hole is solved.
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3:
[发明]
【中文】用于儿童教育的人机交互方法及装置 【EN】Man-machine interaction method and device for children education
申请号:
201911030930.0
公开号:CN110874960A 主分类号:G09B5/06
申请人:
【中文】北京光年无限科技有限公司【EN】BEIJING LIGHTYEAR UNLIMITED TECHNOLOGY CO., LTD.
申请日:2019.10.28 公开日:2020.03.10
发明人:
【中文】俞志晨
;
郭家【EN】Yu Zhichen
;
Guo Jia
摘要:【中文】一种用于儿童教育的人机交互方法及装置,其中,该方法包括:步骤一、根据本轮待教学内容生成并输出相应的教学交互信息,并获取用户基于教学交互信息所输入的教学反馈信息;步骤二、对教学反馈信息和待教学内容进行匹配,如果匹配成功,则执行步骤三;步骤三、生成并输出预设奖励信息,以对用户进行奖励。该人机交互方法能够实现智能设备与儿童用户之间的人机交互,采用该方法,智能设备能够实现对儿童用户的教学,从而促进儿童用户的智力发展。 【EN】A man-machine interaction method and a device for children education are provided, wherein the method comprises the following steps: generating and outputting corresponding teaching interactive information according to the current to-be-taught content, and acquiring teaching feedback information input by a user based on the teaching interactive information; step two, matching the teaching feedback information with the content to be taught, and if the matching is successful, executing step three; and step three, generating and outputting preset reward information so as to reward the user. The man-machine interaction method can realize man-machine interaction between the intelligent device and the child user, and by adopting the method, the intelligent device can realize teaching of the child user, so that the intelligence development of the child user is promoted.
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4:
[发明]
【中文】图像传感器、电子设备以及光脉冲信号检测方法 【EN】Image sensor, electronic device, and optical pulse signal detection method
申请号:
201911108967.0
公开号:CN110913153A 主分类号:H04N5/369
申请人:
【中文】深圳市南北微电子技术有限公司【EN】Shenzhen Nanbei Microelectronics Technology Co., Ltd
申请日:2019.11.13 公开日:2020.03.24
发明人:
【中文】李志升
;
郭佳
;
许阳【EN】Li Zhisheng
;
Guo Jia
;
Xu Yang
摘要:【中文】本发明公开了一种图像传感器、电子设备以及光脉冲信号检测方法,图像传感器包括感应像素单元以及常规像素单元,感应像素单元以及常规像素单元呈行列排布,设置在同一行相邻的两个感应像素单元之间设置有至少一个预设的第一间隔距离;分别两行的相邻两个所述感应像素单元之间设置有预设的第二间隔距离;所述图像传感器还包括若干选通控制线;感应像素单元和常规像素单元分别接入选通控制线以控制选通。本发明通过在图像传感器中设置感应像素单元,可以快速检测光脉冲信号的起止和强度,并且不影响所有像素单元积累存储的光生电信号。同时,常规像素单元两个选通管设计确保了在其中一个选通管短路的情况下图像传感器仍能够正常工作。 【EN】The invention discloses an image sensor, electronic equipment and a light pulse signal detection method, wherein the image sensor comprises induction pixel units and conventional pixel units, the induction pixel units and the conventional pixel units are arranged in rows and columns, and at least one preset first spacing distance is arranged between two adjacent induction pixel units in the same row; a preset second interval distance is arranged between two adjacent induction pixel units in two rows respectively; the image sensor also comprises a plurality of gating control lines; the sensing pixel unit and the conventional pixel unit are respectively connected to the gating control line to control gating. The sensing pixel units are arranged in the image sensor, so that the start and stop and the intensity of the optical pulse signals can be detected quickly, and the accumulated and stored photo-generated electric signals of all the pixel units are not influenced. Meanwhile, the two gate tubes of the conventional pixel unit are designed to ensure that the image sensor can still work normally under the condition that one gate tube is short-circuited.
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5:
[发明]
【中文】一种免验证登录方法、装置及电子设备 【EN】Authentication-free login method and device and electronic equipment
申请号:
201911322467.7
公开号:CN111030900A 主分类号:H04L12/28
申请人:
【中文】苏州思必驰信息科技有限公司【EN】AI SPEECH Ltd.
申请日:2019.12.20 公开日:2020.04.17
发明人:
【中文】王国
;
江峰
;
邹佳【EN】Wang Guo
;
Jiang Feng
;
Zou Jia
摘要:【中文】本发明公开了一种免验证登录方法、装置及电子设备。该方法的一实施例应用于智能家居控制客户端,所述方法包括:发送绑定请求,以请求智能家居设备对应的操作权限;接收智能家居设备对应的操作权限;将与操作权限对应的设备信息与智能家居控制客户端的账号建立映射关系。本发明实施例的免验证登录方法由于智能家居控制客户端和智能家居服务端采用了同一个SDK接口以进行账号授权打通,从而智能家居控制客户端根据操作权限控制与设备信息对应的智能家居设备,进而能够实现只需要登录一次就能把第三方智能家居技能添加到智能家居控制客户端;不仅避免了二次登录,而且安全快捷,提高了用户的体验性。 【EN】The invention discloses an authentication-free login method, an authentication-free login device and electronic equipment. An embodiment of the method is applied to an intelligent home control client, and the method comprises the following steps: sending a binding request to request an operation authority corresponding to the intelligent household equipment; receiving an operation authority corresponding to the intelligent home equipment; and establishing a mapping relation between the equipment information corresponding to the operation authority and an account of the intelligent home control client. According to the verification-free login method, the intelligent home control client and the intelligent home server adopt the same SDK interface to carry out account authorization and communication, so that the intelligent home control client controls the intelligent home equipment corresponding to the equipment information according to the operation authority, and the third-party intelligent home skill can be added to the intelligent home control client only by logging in once; not only secondary login is avoided, but also safety and rapidness are realized, and the user experience is improved.
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6:
[发明]
【中文】一种紫菀多糖和紫菀多肽的提取方法 【EN】Method for extracting aster polysaccharide and aster polypeptide
申请号:
201911392161.9
公开号:CN110964767A 主分类号:C12P21/06
申请人:
【中文】河北中科同创科技发展有限公司【EN】HEBEI ZHONGKE TONGCHUANG TECHNOLOGY DEVELOPMENT Co.,Ltd.
申请日:2019.12.30 公开日:2020.04.07
发明人:
【中文】郭强
;
贺佩
;
贾志军【EN】Guo Qiang
;
He Pei
;
Jia Zhijun
摘要:【中文】本发明提供了一种紫菀多糖和紫菀多肽的提取方法,属于植物提取技术领域,所述方法包括以下步骤:1)将紫菀与水混合打浆、超声处理获得紫菀浆液;2)将所述紫菀浆液和纤维素酶混合,进行第一酶解;3)将第一酶解液置于30~50℃处理30~50min后进行固液分离;4)调节所述第一清液的pH值为4~7后,将所述第一清液与硫酸盐混合物混合,盐析分层获得上层第二清液和下层沉淀液;5)将所述下层沉淀液与碱性蛋白酶混合进行第二酶解获得第二酶解液,将所述第二酶解液经过超滤、纳滤、干燥获得紫菀多肽;6)将步骤4)中所述的上层第二清液干燥获得紫菀多糖。所述方法能够实现紫菀多糖和紫菀多肽的同时提取,得率高。 【EN】The invention provides a method for extracting aster polysaccharide and aster polypeptide, belonging to the technical field of plant extraction, and the method comprises the following steps: 1) mixing radix Asteris with water, pulping, and ultrasonically treating to obtain radix Asteris slurry; 2) mixing the aster slurry and cellulase for first enzymolysis; 3) treating the first enzymolysis liquid at 30-50 ℃ for 30-50 min, and then carrying out solid-liquid separation; 4) adjusting the pH value of the first clear liquid to 4-7, mixing the first clear liquid with a sulfate mixture, and salting out and layering to obtain an upper-layer second clear liquid and a lower-layer precipitation liquid; 5) mixing the lower-layer precipitation solution with alkaline protease to perform second enzymolysis to obtain a second enzymolysis solution, and performing ultrafiltration, nanofiltration and drying on the second enzymolysis solution to obtain the aster polypeptide; 6) drying the second supernatant in the step 4) to obtain the aster polysaccharide. The method can realize simultaneous extraction of the aster polysaccharide and the aster polypeptide, and has high yield.
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7:
[发明]
【中文】一种四分段式背电极背电场网版 【EN】Four-segment back electrode back electric field screen printing plate
申请号:
201910990009.4
公开号:CN111009585A 主分类号:H01L31/0224
申请人:
【中文】晋能清洁能源科技股份公司【EN】JINNENG CLEAN ENERGY TECHNOLOGY Ltd.
申请日:2019.10.17 公开日:2020.04.14
发明人:
【中文】郭海志
;
贾慧君【EN】Guo Haizhi
;
Jia Huijun
摘要:【中文】本发明公开了一种四分段式背电极背电场网版,包括:五主栅四分段结构的背电极和五主栅四分段结构的背电场,背电场对应套印覆盖于所述背电极上;其中,背电极与正面主栅位置对应,且被电极分为四段,每段长度为11±3mm。通过降低背电极长度,增加背电极宽度,增加背电极与背电场重叠面积,在不增加背银耗量的基础上,增加交接区额的银铝重叠面积,更好的改善背电极导电性能,大幅改善背银背铝的欧姆接触,从而大幅降低Rs,针对组件串焊机起焊位置的短板,背电极增加纵向露硅设计,可改善组件对应的组件虚焊,改善组件拉力与碎片率。 【EN】The invention discloses a four-segment back electrode back electric field screen printing plate, which comprises: the back electrode of the five-main-grid four-section structure and the back electric field of the five-main-grid four-section structure are correspondingly overprinted and covered on the back electrode; the back electrode corresponds to the front main grid in position and is divided into four sections by the electrode, and the length of each section is 11 +/-3 mm. Through reducing back electrode length, increase back electrode width, increase back electrode and back of the body electric field overlap area, on the basis that does not increase back of the body silver consumption, increase the silver-aluminum overlap area of cross-connection district amount, better improvement back electrode electric conductivity, improve the ohmic contact of back of the body silver back of the body aluminium by a wide margin to reduce Rs by a wide margin, to the short slab of subassembly stringer start welding position, the back electrode increases vertical dew silicon design, can improve the subassembly rosin joint that the subassembly corresponds, improve subassembly pulling force and debris rate.
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8:
[发明]
【中文】一种改善组件虚焊的四分段背电极背电场网版及其应用 【EN】Four-segment back electrode back electric field screen printing plate for improving assembly cold welding and application thereof
申请号:
201911071964.4
公开号:CN111002701A 主分类号:B41F15/36
申请人:
【中文】晋能清洁能源科技股份公司【EN】JINNENG CLEAN ENERGY TECHNOLOGY Ltd.
申请日:2019.11.05 公开日:2020.04.14
发明人:
【中文】郭海志
;
贾慧君【EN】Guo Haizhi
;
Jia Huijun
摘要:【中文】本发明公开了一种改善组件虚焊的四分段背电极背电场网版,与正面电极对应设置,包括正面电极,包括:背电极面板和背电场面板,背电极面板和背电场面板均为五主栅结构,背电极面板包括设置在主栅线上的背电极,背电场面板包括设置在主栅线上的背电场,且背电极和背电场均分为四段;背电极位置与正面电极位置相对应,背电场对应套印覆盖于背电极上;每段背电场的两端均设置有端部镂空。本发明通过使用该镂空的背面图形设计,可降低背银背铝纵向局部区域的背铝湿重,减小由于背银背铝纵向叠加,造成的背银背铝高度差,从而有效改善由于背银背铝高度差造成焊带难以与背银良好接触导致组件虚焊的情况。 【EN】The invention discloses a quarter-segment back electrode back electric field screen printing plate for improving assembly cold joint, which is arranged corresponding to a front electrode, comprises the front electrode and comprises: the back electrode panel and the back electric field panel are both of a five-main-grid structure, the back electrode panel comprises back electrodes arranged on main grid lines, the back electric field panel comprises back electric fields arranged on the main grid lines, and the back electrodes and the back electric fields are equally divided into four sections; the position of the back electrode corresponds to the position of the front electrode, and the back electric field correspondingly overlaps and covers the back electrode; both ends of each section of back electric field are provided with end parts hollowed out. According to the invention, through the hollow back pattern design, the back aluminum wet weight of the back silver back aluminum longitudinal local area can be reduced, and the back silver back aluminum height difference caused by back silver back aluminum longitudinal superposition can be reduced, so that the condition of assembly false soldering caused by the fact that a solder strip is difficult to contact with the back silver well due to the back silver back aluminum height difference can be effectively improved.
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9:
[发明]
【中文】一种应用程序APP的界面设置方法、装置、设备及介质 【EN】Interface setting method, device, equipment and medium for application program APP
申请号:
201911349405.5
公开号:CN111008062A 主分类号:G06F9/451
申请人:
【中文】苏州思必驰信息科技有限公司【EN】AI SPEECH Ltd.
申请日:2019.12.24 公开日:2020.04.14
发明人:
【中文】邹佳
;
甘津瑞
;
王国【EN】Zou Jia
;
Gan Jinrui
;
Wang Guo
摘要:【中文】本发明公开了一种应用程序APP的界面设置方法、装置、设备及介质,该方法包括:响应于APP管理后台发送的与目标APP对应的界面再配置请求;在界面再配置请求中,提取与目标智能设备匹配的界面再配置参数;根据界面再配置参数,生成与目标智能设备匹配的界面再配置文件。本发明实施例实现了支持绑定多个智能设备的APP界面的自定义设置,避免了开发者设置APP界面时手动修改代码导致的工作量变大的问题,降低了企业针对此类APP的开发成本。 【EN】The invention discloses a method, a device, equipment and a medium for setting an interface of an application program APP, wherein the method comprises the following steps: responding to an interface reconfiguration request which is sent by an APP management background and corresponds to a target APP; extracting interface reconfiguration parameters matched with the target intelligent equipment in the interface reconfiguration request; and generating an interface reconfiguration file matched with the target intelligent equipment according to the interface reconfiguration parameters. The embodiment of the invention realizes the user-defined setting of the APP interface for binding a plurality of intelligent devices, avoids the problem of large workload caused by manually modifying codes when a developer sets the APP interface, and reduces the development cost of enterprises for the APP.
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10:
[发明]
【中文】基于低深度基因组测序进行基因分型的方法、装置及其用途 【EN】Method and device for genotyping based on low-depth genome sequencing and application of method and device
申请号:
201780093812.7
公开号:CN110997936A 主分类号:C12Q1/6858
申请人:
【中文】深圳华大生命科学研究院【EN】BGI SHENZHEN
申请日:2017.09.08 公开日:2020.04.10
发明人:
【中文】郭瑞东
;
贾超【EN】Guo Ruidong
;
Jia Chao
摘要:【中文】提供了一种基于低深度基因组测序进行基因分型的方法。其中,该方法包括:(a)对待测样本全基因组进行低深度基因组测序,以便获得由多个测序数据构成的测序结果;(b)针对至少一个已知变异位点,构建所述已知变异位点的参考序列集,所述参考序列集含有所述已知变异位点的变异类型以及所述变异位点的上下游序列;(c)将步骤(a)中所得到的所述测序结果与所述参考序列集进行比对,以便确定各已知变异位点的比对结果,所述比对结果包括测序结果的匹配变异类型以及所述匹配变异类型的匹配次数;以及(d)基于所述比对结果,确定所述已知变异位点的高概率变异类型。 【EN】A method for genotyping based on low-depth genomic sequencing is provided. Wherein, the method comprises the following steps: (a) performing low-depth genome sequencing on the whole genome of a sample to be tested so as to obtain a sequencing result consisting of a plurality of sequencing data; (b) constructing a reference sequence set of the known variation sites aiming at least one known variation site, wherein the reference sequence set contains variation types of the known variation sites and sequences upstream and downstream of the variation sites; (c) comparing the sequencing result obtained in step (a) with the reference sequence set so as to determine a comparison result of each known variant locus, wherein the comparison result comprises a matching variant type of the sequencing result and the matching times of the matching variant type; and (d) determining a high probability mutation type of the known mutation site based on the alignment result.
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