会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • Herbicidal Composition
    • 除草成分
    • US20070142228A1
    • 2007-06-21
    • US11687055
    • 2007-03-16
    • Ulrich Haas
    • Ulrich Haas
    • A01N43/64A01N43/40
    • A01N43/40A01N61/00A01N43/70A01N47/36A01N37/22A01N43/82A01N43/10A01N37/20A01N43/90A01N43/58A01N37/40A01N47/38A01N57/20A01N43/50A01N43/76A01N43/78A01N33/02A01N39/04A01N37/32A01N37/34A01N35/10A01N43/16A01N43/653A01N41/10A01N43/56A01N43/88A01N37/42A01N47/34A01N47/12A01N43/84A01N33/18A01N43/42A01N43/28A01N37/18A01N43/80A01N47/30A01N43/713A01N25/32A01N2300/00
    • A herbicidal composition, comprising a) a compound of formula I or an agronomically acceptable salt of that compound, and b) a synergistically effective amount of one or more compounds selected from atrazine, simazine, terbutryn, ametryn, foramsulfuron, trifloxysulfuron, metolachlor, S-metolachlor, alachlor, acetochlor, flufenacet, dimethenamid, S-dimethenamid, pethoxamid, flumetsulam, metosulam, pyridate, pyridafol, dicamba and salts thereof, procarbazone, glufosinate, fluthiacet, imazamox, imazethapyr, nicosulfuron, primisulfuron-methyl, rimsulfuron, halosulfuron, cloransulam, clomazone, diclosulam, 2,4-D, florasulam, flumiclorac, bromoxynil, sethoxydim, ioxynil, tepraloxydim, carfentrazone, clethodim, sulfentrazone, imazaquin, sulcotrione, imazapyr, mesotrione, thifensulfuron, isoxaflutole, prosulfuron, isoxachlortole, bentazone, iodosulfuron, prohexadione, diflufenzopyr, flurtamone, butylate, flumioxazin, fentrazamide, benzfendizone, isopropazole, fluazolate, aclonifen, tritosulfuron, cinidon-ethyl, glyphosate and the potassium, isopropylammonium, sodium, trimesium, ammonium and diammonium salts thereof, mesotrione+terbuthylazine, metolachlor+terbuthylazine, S-metolachlor+terbuthylazine, paraquat, ketospiradox, aminopyralid, amicarbazone and azafenidin. The compositions according to the invention may also comprise a safener.
    • 一种除草组合物,其包含a)式I化合物或该化合物的农艺学上可接受的盐,以及b)协同有效量的一种或多种选自莠去津,西马嗪,特丁苯醚,甲酰胺,甲磺隆,三氟磺隆,异丙甲草胺, 丙甲草胺,甲草胺,乙草胺,氟草胺,二甲酰胺,S-二甲酰胺,花生乙酰胺,氟美沙坦,麦芽糖,吡啶,吡哆酚,麦草畏及其盐,卡拉腙,草铵膦,氟醋酸,咪草酮,咪草烟,烟嘧磺隆,原嘧磺隆, 氯硝草酮,替洛沙仑,二氯硝草酮,二氯西泮,2,4-D,氟罗沙星,氟氯尼泮,氯苯腈,卡非那唑,烯草酮,磺扎唑,咪草酮,磺草酮,咪草烟,甲基磺草酮,噻吩磺隆, 孕酮,替氟苯吡啶,弗拉特曼,丁酸酯,氟马嗪,芬太嗪,苯芬芬替唑,异唑,氟唑酸,阿立立芬,三硫 甲基丙烯酸,草甘膦及其钾,异丙基铵,钠,三甲基铵,铵和二铵盐,甲基三酮+特丁津,异丙甲草胺+特丁津,异丙甲草胺+特丁津,百草枯,酮基吡唑,氨吡啶,氨基咔唑和阿沙芬特。 根据本发明的组合物还可以包含安全剂。
    • 4. 发明申请
    • HIGH-VOLTAGE FUSE
    • 高压保险丝
    • US20090021339A1
    • 2009-01-22
    • US11916476
    • 2006-06-07
    • Heinz-Ulrich HaasDirk WilhelmWerner-Gunter Schmehl
    • Heinz-Ulrich HaasDirk WilhelmWerner-Gunter Schmehl
    • H01H85/165
    • H01H85/003H01H85/042
    • The invention relates to a high-voltage fuse comprising a tubular ceramic insulating member that is provided with at least one fusible element, an inner auxiliary cap which is placed on the insulating member and at least partly covers the outer surface of the insulating member in the front area of the insulating member, and an outer top cap that is placed on the auxiliary cap and at least partly covers the outer surface of the auxiliary cap. The insulating member is provided with at least one depression. The auxiliary cap is molded against the insulating member such that a positive connection to the insulating member is created in the depression. The auxiliary cap and the top cap are molded in the area of said depression in such a way that a positive connection is created. In order to create a high-voltage fuse which ensures that the insulating member is covered so as to be tight towards the outside even at elevated temperatures, a sealing means is provided in the depression while the top cap and/or the auxiliary cap are molded against the sealing means in said depression.
    • 本发明涉及一种高压保险丝,其包括设置有至少一个可熔元件的管状陶瓷绝缘构件,内辅助帽,其设置在绝缘构件上,并且至少部分地覆盖绝缘构件的外表面 绝缘构件的前部区域和设置在辅助盖上并且至少部分地覆盖辅助盖的外表面的外顶盖。 绝缘构件设置有至少一个凹部。 辅助盖被压靠在绝缘构件上,使得在凹陷中产生与绝缘构件的正连接。 辅助盖和顶盖在所述凹陷的区域中模制成使得产生正向连接。 为了产生高压保险丝,确保绝缘构件被覆盖以便即使在升高的温度下也向外部紧固,在顶盖和/或辅助帽被模制时,在凹陷中设置密封装置 抵靠所述凹陷中的密封装置。
    • 6. 发明申请
    • Method of labelling soya varieties
    • 大豆品种标记方法
    • US20050246800A1
    • 2005-11-03
    • US11116562
    • 2005-04-28
    • Cheryl DunneUlrich HaasMichael JohnsonWilly Ruegg
    • Cheryl DunneUlrich HaasMichael JohnsonWilly Ruegg
    • A01H5/00A01H5/10A01N43/56
    • A01H5/10
    • The present invention relates to a method of labelling soya varieties as to their suitability as a subsequent crop to maize when weed control in that maize crop has been carried out using HPPD inhibitor herbicides, wherein: a) in a first step, a reference soya variety is selected which, when grown as a subsequent crop to maize wherein weed control has been carried out using HPPD inhibitor herbicides, exhibits a visually determinable phytotoxicity with respect to those HPPD inhibitor herbicides; b) in a second step, the phytotoxicity of soya varieties when grown as a subsequent crop to maize wherein weed control has been carried out using HPPD inhibitor herbicides is determined in relation to that reference soya variety in the form of a factor; and c) in a third step, said soya varieties are labelled with said factor.
    • 本发明涉及一种使用HPPD抑制剂除草剂在大豆作物中进行杂草控制时将大豆品种标记为随后的作物玉米适合性的方法,其中:a)在第一步中,参考大豆品种 当使用HPPD抑制剂除草剂进行杂草控制时,当作为后续作物生长为玉米时,对于那些HPPD抑制剂除草剂显示视觉上可确定的植物毒性; b)在第二步中,大豆品种当作为后续作物生长至玉米时的植物毒性,其中使用HPPD抑制剂除草剂进行杂草控制的方法是以因子形式的该参考大豆品种来确定的; 和c)在第三步中,所述大豆品种用所述因子标记。
    • 7. 发明授权
    • Method for determining the required load capacity for a number of communication connections which can be statistically multiplexed
    • 用于确定可以进行统计复用的多个通信连接所需的负载能力的方法
    • US06307838B1
    • 2001-10-23
    • US09655282
    • 2000-09-05
    • Ulrich Haas
    • Ulrich Haas
    • G01R3108
    • H04L47/822H04J2203/0064H04L47/10H04L47/15H04L47/16H04L47/70H04L2012/5632H04Q11/0478
    • A method for controlling an acceptance or refusal of a new connection on an ATM communication device with a maximum capacity Rmax and is already handling M connections which can be statistically multiplexed. The new connection has a peak cell rate PCR and an average sustainable cell rate SCR. The method determines a sum PM+1=&Sgr;PCRi of the peak cell rates PCR and a sum SM+1=&Sgr;SCRi of the average sustainable cell rates SCR of the existing connections M and the new connection. A variance V of the cell rates of the M+1 connections is determined and a required capacity loadM+1 for the M connections is determined in dependence on PM, SM and V, and the new connection is accepted if load M+1 is less than or equal to Rmax. The connection acceptance control can be carried out faster, more effectively and independently of the sequence of accepted connections by the exact calculation of the required capacity of the communication connections.
    • 一种用于控制在具有最大容量Rmax的ATM通信设备上的新连接的接受或拒绝的方法,并且已经处理可以进行统计复用的M个连接。 新的连接具有峰值信元速率PCR和平均可持续信元速率SCR。 该方法确定峰值信元速率PCR的和PM + 1 = SIGMAPCRi和现有连接M和新连接的平均可持续信元速率SCR的和SM + 1 = SIGMASCRi。 确定M + 1连接的单元速率的方差V,并且根据PM,SM和V确定M个连接的所需容量负载M + 1,并且如果负载M + 1较小则接受新的连接 大于或等于Rmax。 通过精确计算通信连接的所需容量,可以更快,更有效和独立于所接受连接的顺序执行连接接受控制。