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    • 1. 发明申请
    • HAND-HELD TEST METER WITH UNPOWERED USB CONNECTION DETECTION CIRCUIT
    • 手持式测试仪,带有无连接的USB连接检测电路
    • WO2013003329A1
    • 2013-01-03
    • PCT/US2012/044165
    • 2012-06-26
    • LIFESCAN, INC.KRAFT, UlrichEBNER, Manfred
    • KRAFT, UlrichEBNER, Manfred
    • A61B5/145G01N27/327
    • A61B5/1451A61B5/14532A61B5/1477A61B5/7203A61B2560/0266A61B2562/0295A61B2562/18A61B2562/227G01N27/3272G01N27/3273
    • A hand-held test meter for use with an analytical test strip in the determination of an analyte (such as glucose) in a bodily fluid sample (for example, a whole blood sample) includes a housing, a test meter control circuit block, and a Universal Serial Bus (USB) connector block that includes an unpowered USB connection detection circuit block. The unpowered USB connection detection circuit block is configured to provide a shielding signal of a first potential (for example, a high-level signal) to the test meter circuit control block when a USB connection to an external device has been made to the USB connector block and a shielding signal of a second potential (such as a low-level signal representative of ground) to the test meter control circuit block when a USB connection to a an device has been made to the USB connector block. In addition, the test meter control circuit block is configured to interrupt operation of the hand-held test meter when the shielding signal of the second potential is received from the USB connector block.
    • 在测定体液样品(例如全血样品)中的分析物(例如葡萄糖)时,与分析测试条一起使用的手持式测试仪包括壳体,测试仪表控制电路块和 通用串行总线(USB)连接器块,其包括未供电的USB连接检测电路块。 未供电的USB连接检测电路块被配置为当向USB连接器发送到外部设备的USB连接时,向测试仪电路控制块提供第一电位(例如高电平信号)的屏蔽信号 当与USB连接器块进行USB连接时,将第二电位(例如代表接地的低电平信号)的屏蔽信号传送到测试仪表控制电路块。 此外,当从USB连接器块接收到第二电位的屏蔽信号时,测试仪控制电路块被配置为中断手持测试仪的操作。
    • 3. 发明申请
    • AMINOPLASTHARZ FÜR DIE HERSTELLUNG VON BINDEMITTELN
    • 氨基塑料粘合剂用生产
    • WO2005113625A1
    • 2005-12-01
    • PCT/EP2005/005391
    • 2005-05-18
    • BASF AKTIENGESELLSCHAFTWEINKÖTZ, StephanEBNER, ManfredRECKER, JanoschKNUTH, BernhardDÄUMER, Bernd
    • WEINKÖTZ, StephanEBNER, ManfredRECKER, JanoschKNUTH, BernhardDÄUMER, Bernd
    • C08G12/38
    • C08G12/38
    • Aminoplastharz, erhältlich durch Umsetzung von (a) 1 mol Melamin mit (b) wässriger Formaldehyd-Lösung, wässriger Formaldehyd-Harnstoff-Lösung und/oder wässriger Formaldehyd-Harnstoff-Vorkondensat-Lösung mit einem pH-Wert von 3 bis 6, wobei die Komponente (b) 2,5 bis 17 mol Formaldehyd enthält, und (c) 0 bis 0,5 mol einer aromatischen oder teilaromatischen Hydroxykomponente und (d) 0 bis 0,1 mol einer weiteren aminoplastbildenden Komponente, in einem wässrigen Medium bei pH-Werten von 6 bis 9 und Temperaturen von 50 bis 100°C bis die Viskosität des resultierenden Aminoplastharzes einen Wert von 10 bis 2000 mPas erreicht hat. Ferner betrifft die Erfindung ein Verfahren zur Herstellung solcher Aminoplastharze, sowie eine Mischung aus den Aminoplastharzen mit Harnstoff und gegebenenfalls Harnstoff-Formaldehyd-Kondensationsprodukten, die Herstellung der Mischung und die Verwendung dieser Mischung als Bindemittel, sowie lignocellulosehaltige Formkörper, die dieses Bindemittel enthalten.
    • 氨基塑料树脂,其可通过与(b)中的甲醛的水溶液,含水的甲醛 - 尿素溶液和/或甲醛水溶液 - 脲预缩合溶液的pH值为3至6,其中,所述(a)中1摩尔蜜胺的反应 组分(b)从2.5到17包括甲醛的摩尔数,和(c)0至0.5的芳族或部分芳族羟基组分的摩尔和(d)0至0.1在pH的水性介质中的进一步的氨基塑料形成组分的摩尔 6〜9值和温度从50到100℃,直到得到的氨基树脂的粘度达到10〜2000毫帕·秒的值。 此外,本发明涉及用于制备这样的氨基树脂的方法,并用尿素和任选的脲 - 甲醛缩合产物,制备该混合物,并使用该混合物作为粘合剂,以及含有该粘合剂含木素纤维素的模制品的氨基塑料树脂的混合物。
    • 4. 发明申请
    • A DATA MANAGEMENT SYSTEM AND METHOD
    • 数据管理系统和方法
    • WO2009026946A1
    • 2009-03-05
    • PCT/EP2007/007558
    • 2007-08-29
    • LIFESCAN SCOTLAND LIMITEDBINZ, JoachimEBNER, ManfredESSER, MarioMÜLLER-PATHLE, StephanJETTER, Thomas
    • BINZ, JoachimEBNER, ManfredESSER, MarioMÜLLER-PATHLE, StephanJETTER, Thomas
    • G06F12/02
    • G06F12/0246G06F17/30988G06F2212/1044G06F2212/7202G16H40/63
    • The present invention relates to a data management system and method for storing a plurality of data records (10) including data records of at least two different category types in a non-volatile memory section (12) divided into a plurality of sequentially arranged memory locations. By means of a storage controller (228), the data records (10), each comprising an indication (20) of its category type and a time stamp (21), are sequentially stored one by one in the order of receipt into memory locations indicated by a cyclic write pointer (26) that is incremented following storage of each data record (10) such that each memory location storing a data record stores exactly one data, record (10). For each data record (10) its category type is determined based on its category type indication (20), and a new node (34) associated with the data record (10) is added to a linked list that is stored in a volatile memory section (32) for the determined category type of the data record (10), such that upon storing all received data records (10) there is a separate linked list stored in the volatile memory section (32) for each category type included in the plurality of data records (10), wherein for each such linked list the nodes (34) are only associated with data records (10) of the same category type and the sequence of the nodes (34) is such that the associated data records (10) are temporally sorted according to their time stamp.
    • 数据管理系统和方法技术领域本发明涉及一种数据管理系统和方法,用于存储多个数据记录(10),该多个数据记录(10)包括被划分成多个顺序排列的存储位置的非易失性存储器部分 。 通过存储控制器(228),每个包括其类别类型的指示(20)和时间戳(21)的数据记录(10)按照接收顺序依次存储到存储器位置 由循环写指针(26)指示,其在存储每个数据记录(10)之后递增,使得存储数据记录的每个存储器位置恰好存储一个数据记录(10)。 对于每个数据记录(10),其类别类型基于其类别类型指示(20)来确定,并且与数据记录(10)相关联的新节点(34)被添加到存储在易失性存储器 部分(32),用于确定的数据记录(10)的类别类型,使得在存储所有接收的数据记录(10)时,存在存储在易失性存储器部分(32)中的每个类别类型的单独的链表,包括在 多个数据记录(10),其中对于每个这样的链接列表,节点(34)仅与相同类别类型的数据记录(10)相关联,并且节点(34)的序列使得相关联的数据记录 10)根据时间戳进行时间分类。
    • 5. 发明申请
    • METHOD FOR TRANSMITTING DATA IN A BLOOD GLUCOSE SYSTEM AND CORRESPONDING BLOOD GLUCOSE SYSTEM
    • 用于在血液葡萄糖系统中发送数据的方法和相应的血液葡萄糖系统
    • WO2007121763A1
    • 2007-11-01
    • PCT/EP2006/003650
    • 2006-04-20
    • LIFESCAN, INC.EBNER, ManfredKRAFT, Ulrich
    • EBNER, ManfredKRAFT, Ulrich
    • H04L12/56A61M5/142
    • A61M5/1723A61B5/0002A61B5/14532A61B5/4839A61B2560/0209A61M5/14244A61M2205/3569A61M2230/201H04B7/24H04W52/0216H04W52/0225Y02D70/00
    • The present invention relates to a method for wireless transmission of data between components of a blood glucose system (1, I1) including a master controller (2, 2') having a receiver (10) and a transmitter (9), and at least one slave device (3) having a receiver (19) and a transmitter (18), and to a corresponding blood glucose system (1, I1) • The slave device (3) is normally operated in a power saving mode in which its receiver (19) is only activated intermittently at a receiver activation frequency for a predetermined listening period. The controller (2, 21) transmits a communication initiation data frame to the slave device (3) by means of a signal comprising a preamble signal transmitted for a preamble period. Upon receipt of the communication initiation data frame, the slave device (3) is switched to a communication mode in which it transmits a response to the controller (2, 21), and the slave device (3) is switched from the communication mode to the power saving mode. Initially the receiver activation frequency is set to a first frequency value upon switching from communication mode to power saving mode, and then to a second frequency value smaller than the first frequency value if no communication initiation data frame is received for a predetermined power saving timeout period. The communication initiation data frame is transmitted such that the preamble period exceeds the length of the cycle duration corresponding to the first frequency value, and, in case no response is received by the controller during the response period, the communication initiation data frame is adapted and retransmitted such that the preamble period is increased and exceeds the length of the cycle duration corresponding to the second frequency value.
    • 本发明涉及一种用于在包括具有接收机(10)和发射器(9)的主控制器(2,2')的血糖系统(1,I1)的组件之间无线传输数据的方法,并且至少 一个具有接收器(19)和发射器(18)的从设备(3)和相应的血糖系统(1,I1)。从设备(3)通常以节电模式操作,其中接收机 19)仅在接收机激活频率上间歇地激活预定的收听期间。 控制器(2,21)通过包括在前同步码周期发送的前导信号的信号向通信启动数据帧发送到从设备(3)。 在接收到通信启动数据帧时,从设备(3)被切换到其中向控制器(2,21)发送响应的通信模式,并且从设备(3)从通信模式切换到 省电模式。 最初,如果在预定的省电超时周期内没有接收到通信发起数据帧,则从通信模式切换到省电模式,然后再接收到比第一频率值小的第二频率值,将接收机激活频率设置为第一频率值 。 发送通信发起数据帧,使得前导码周期超过对应于第一频率值的周期持续时间的长度,并且在响应周期期间控制器没有接收到响应的情况下,适配通信发起数据帧, 重发,使得前导码周期增加并超过对应于第二频率值的周期持续时间长度。