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    • 1. 发明授权
    • Battery having a latching mechanism with torsion plates
    • 电池具有带扭转板的锁定机构
    • US5660945A
    • 1997-08-26
    • US655582
    • 1996-05-30
    • Timothy P. McCormickKenneth John Roback
    • Timothy P. McCormickKenneth John Roback
    • H01M2/10H04M1/02
    • H04M1/0262H01M2/1022
    • A battery (105) includes a battery housing (340) having a latching mechanism (301) for attaching to a radiotelephone body (102). The latching mechanism (301) includes a button portion (405), a first torsion plate (403), a second torsion plate (404), and a catch (401). The battery housing (340) further includes an inner surface (400), a first rib (630), and a second rib (632). The first and second ribs (630, 632) extend upwardly from the inner surface (400) and attach respectively to the first and second torsion plates (403, 404), thereby supporting the latching mechanism (301) at a distance above the inner surface (400). The first and second torsion plates (403, 404), while providing a torsional twisting movement for detaching the battery (105) from the radiotelephone body (102), provide a strong deflection resistance for the latching mechanism (301).
    • 电池(105)包括具有用于附接到无线电话机体(102)的闭锁机构(301)的电池壳体(340)。 锁定机构(301)包括按钮部分(405),第一扭转板(403),第二扭转板(404)和锁定件(401)。 电池壳体(340)还包括内表面(400),第一肋(630)和第二肋(632)。 第一和第二肋(630,632)从内表面(400)向上延伸并且分别附接到第一和第二扭转板(403,404),从而将闩锁机构(301)支撑在内表面 (400)。 第一和第二扭转板(403,404)在提供用于将电池(105)从无线电话机主体(102)分离的扭转扭转运动提供了用于锁定机构(301)的强偏转阻力。
    • 2. 发明授权
    • Battery pack retention apparatus
    • 电池组固定装置
    • US5308716A
    • 1994-05-03
    • US123815
    • 1993-09-20
    • Michael L. ShababyTimothy P. McCormick
    • Michael L. ShababyTimothy P. McCormick
    • H01M2/10H04B1/38H04M1/02H04Q7/32
    • H04M1/0262H01M2/1022
    • The battery pack retention apparatus, described herein, is an injection molded part. The injection molded part includes a rear housing (200) for a radiotelephone (100), two rails (201, 203) for a battery pack (101) to slide along and six guide bars (207, 209, 211, 213, 215, 217) for retaining the battery pack (101) on the radiotelephone (100). Four of the six guide bars are the compliance-type. The compliance-type guide bars (207, 211, 213, 217) have a U-shape and are coupled to the rails. A channel (401) is cored out from the rails under the compliance-type guide bars to allow for deflection of the guide bars. Deflection is caused by the bullets (409) of the battery pack (101) when the battery pack (101) is fully inserted. The deflection(y) of the guide bars provides a calculated force upon the battery pack (101). This calculated force ensures a high quality electrical connection between the contacts of the battery pack and the contacts of the radiotelephone.
    • 本文所述的电池组保持装置是注塑部件。 注塑部件包括用于无线电话(100)的后壳体(200),用于电池组(101)沿着滑动的两个导轨(201,203)和六个导杆(207,209,211,213,215, 217),用于将电池组(101)保持在无线电话(100)上。 六个导杆中有四个是合规型。 顺应性导向杆(207,211,213,217)具有U形并且联接到轨道。 通道(401)从柔性型引导杆下方的导轨中芯出,以允许导杆的偏转。 当电池组(101)完全插入时,由电池组(101)的子弹(409)引起偏转。 导杆的偏转(y)提供计算出的对电池组(101)的力。 该计算的力确保电池组的触点与无线电话的触点之间的高质量的电连接。
    • 3. 发明申请
    • METHOD TO LIMIT LEAK COMPENSATION BASED ON A BREATHING CIRCUIT LEAK ALARM
    • 基于呼吸电路泄漏报警限制泄漏补偿的方法
    • US20080295837A1
    • 2008-12-04
    • US11754408
    • 2007-05-29
    • Timothy P. McCormickRonald L. Tobia
    • Timothy P. McCormickRonald L. Tobia
    • A61M16/00A61B5/08
    • A61M16/12A61M16/0051A61M16/024A61M16/16A61M2016/0039A61M2016/0042A61M2202/0208A61M2205/502
    • A method and system for ventilating a patient that compensates for leaks occurring within the patient breathing circuit while limiting the volume of breathing gas delivered to the patient. During the operation of a ventilator to supply breathing gases to a patient, the ventilator monitors for leak volumes occurring during the inspiratory phase and expiratory phase of the breathing cycle. Based upon the leak volumes sensed, the volume of breathing gas delivered by the ventilator is increased such that the tidal volume delivered to the patient is the desired tidal volume set by a clinician. The ventilator operates to generate a leak alarm when the leak volume exceeds an alarm threshold. If the leak alarm is generated, the tidal volume delivered to the patient is limited to the tidal volume being delivered prior to generation of the leak alarm. During compensation of the breathing gases delivered to the patient, the system and method determines whether the compensated tidal volume exceeds a maximum tidal volume threshold and limits the compensated tidal volume to the maximum tidal volume threshold.
    • 一种用于通气患者的方法和系统,其补偿在患者呼吸回路内发生的泄漏,同时限制输送到患者的呼吸气体的体积。 在呼吸机操作期间向呼吸者供应呼吸气体时,呼吸机监测在呼吸周期的吸气阶段和呼气阶段期间发生的泄漏体积。 基于感测到的泄漏量,由呼吸机输送的呼吸气体的体积增加,使得递送给患者的潮气量是由临床医生设定的期望的潮气量。 当泄漏量超过报警阈值时,呼吸机可以产生泄漏报警。 如果产生泄漏报警,则传送到患者的潮气量限于在产生泄漏报警之前传送的潮气量。 在补偿输送到患者的呼吸气体期间,系统和方法确定补偿的潮气量是否超过最大潮气量阈值,并将补偿的潮气量限制到最大潮气量阈值。
    • 5. 发明授权
    • Battery pack retention system and apparatus therefor
    • 电池组保持系统及其设备
    • US5366826A
    • 1994-11-22
    • US123653
    • 1993-09-20
    • Timothy P. McCormickBrian J. Hassemer
    • Timothy P. McCormickBrian J. Hassemer
    • H01M2/10H02J7/00
    • H01M2/1022H02J7/0042
    • The system includes a battery charger (300) and a battery pack (100). Upon insertion of the battery pack (100) into a retention area (303) of the battery charger (300), a battery pack channel (101) and a corresponding battery charger rail (305) align the battery pack electrical contacts (201) with the electrical contacts (309) of the battery charger. In order to ensure that a reliable electrical connection is made between the two sets of contacts (201, 309), a compliance rib (501) is disposed within the channel (101) of the battery pack (100). The compliance rib (501) creates an interference between the rail (305) and the channel (101), consequently, creating a force against the rail. The interference is calculated to create a sufficient force in combination with the force created by the weight of the battery pack (100) such that the force of the battery pack meets or exceeds the force created by the set of electrical contacts in the battery charger.
    • 该系统包括电池充电器(300)和电池组(100)。 在电池组(100)插入电池充电器(300)的保持区域(303)中时,电池组通道(101)和相应的电池充电器导轨(305)将电池组电触点(201)与 电池充电器的电触点(309)。 为了确保在两组触头(201,309)之间进行可靠的电连接,在电池组(100)的通道(101)内设置有柔性肋(501)。 柔性肋(501)在轨道(305)和通道(101)之间产生干涉,从而产生抵靠轨道的力。 计算干涉以产生与由电池组(100)的重量产生的力结合的足够的力,使得电池组的力达到或超过由电池充电器中的一组电触点产生的力。