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    • 4. 发明授权
    • Microwave browning wares and method for the manufacture thereof
    • 微波烧制品及其制造方法
    • US4542271A
    • 1985-09-17
    • US691442
    • 1985-01-14
    • David R. TanonisAlexander L. Darbut
    • David R. TanonisAlexander L. Darbut
    • H05B6/64
    • H05B6/6494Y10S99/15
    • A microwave browning ware (10) comprises a body (11) formed of a member transparent to microwave energy having a base (16) and a sidewall (18), the sidewall carrying an inwardly directed shelf (22); a metallic pan (12) having an upper cooking surface (39) and a lower surface (42) and having an edge (23) adapted to be supported by the shelf and maintain a clearance (28) from the sidewall. A heating matrix (13) absorbent to microwave energy is cured to the lower surface of the metallic pan, a binder material (14) is located between the edge of the pan and the shelf capable of withstanding the heat from the metallic pan without melting or degrading, resulting from the absorption of microwave energy by the heating matrix and, a cavity (36) is formed between the metallic pan and the base which houses the heating matrix therein. A method for the manufacture of such browning ware is also provided. The heating matrix comprises 100 parts by weight of a plastic matrix and from about 100 to about 500 parts per 100 parts of plastic matrix of magnetite particles dispersed evenly throughout the plastic matrix.
    • 微波煮熟器具(10)包括由具有基部(16)和侧壁(18)的微波能量透明的构件形成的本体(11),所述侧壁承载向内指向的搁架(22); 具有上烹饪表面(39)和下表面(42)的金属盘(12),并且具有适于由搁板支撑并且保持与侧壁间隙(28)的边缘(23)。 吸收到微波能量的加热基质(13)固化到金属盘的下表面,粘合剂材料(14)位于锅的边缘和能够耐受来自金属盘的热而不熔化的搁板之间, 由加热基体吸收微波能量导致的降解,并且在金属盘和容纳其中的加热基体的基底之间形成空腔(36)。 还提供了一种制造这种褐变制品的方法。 加热基质包含100重量份的塑料基质和约100至约500份/ 100份均匀分散在整个塑料基质中的磁铁矿颗粒的塑料基质。
    • 8. 发明授权
    • Undersea wet-mateable fiber optic connector
    • 海底可湿式光纤连接器
    • US4887883A
    • 1989-12-19
    • US208939
    • 1988-06-20
    • Alexander L. DarbutVernon C. Ralph
    • Alexander L. DarbutVernon C. Ralph
    • G02B6/38
    • G02B6/3882G02B6/3816G02B6/3821G02B6/3835G02B6/3843G02B6/3877G02B6/3893
    • A wet-mateable fiber optic connector includes mateable and demateable plug and receptacle parts having opposite end housings. The housings mount inner sleeves which interfit with one another when the connector parts are assembled together. Guide and latch fingers attached to the receptacle part facilitate interfitting of the sleeves together and latching and retaining the connector parts in mated condition. A pair of elongated wand structures mounted at outer ends to the end housings receive and hold end portions of respective optical fibers. The wand structures are mounted at inner ends to centering and sealing members in the respective inner sleeves. When the parts are mated together, one of the centering and sealing members mounts in axially aligned and a butting relation respective inner ends of the wand structures and positions in axially aligned and optically coupled relation the respective ends of the optical fiber end portions extending through the wand structures. Pressure compensating bladders in the respective inner sleeves contain an index matching fluid about inner end portions of the wand structures and inner ends of the optical fibers for equalizing the pressure of the index matching fluid therein with that of a fluid of the environment in which the mated connector will be submerged.
    • 可湿式光纤连接器包括具有相对端部外壳的可配对和可分离的插头和插座部件。 当连接器部件组装在一起时,壳体安装彼此配合的内部套筒。 连接到插座部分的引导和闩锁手柄有助于将套管相互连接在一起,并将连接器部件锁定并保持在配合状态。 安装在端部壳体的外端的一对细长的杆结构容纳并保持各个光纤的端部。 该杆结构安装在内端,并将其固定在相应内套筒中的定中心和密封件上。 当这些部件配合在一起时,定心和密封件中的一个轴向地对准和对接关系,其中棒状结构的各个内端和位置轴向对准和光学耦合,使光纤端部的相应末端延伸穿过 魔杖结构。 相应的内套筒中的压力补偿气囊包括围绕杆结构的内端部分和光纤内端的折射率匹配流体,用于使其中的折射率匹配流体的压力与其中配合的环境的流体的压力相等 连接器将被淹没。
    • 9. 发明授权
    • Earset microphone
    • 耳塞麦克风
    • US07436952B2
    • 2008-10-14
    • US11274770
    • 2005-11-15
    • Alexander L. Darbut
    • Alexander L. Darbut
    • H04M1/00H04M9/00H04R25/00
    • H04R1/08H04R1/1033H04R1/105
    • An earset microphone includes an earpiece having a wedge portion wherein the wedge portion is positioned between a back side of the ear and a scalp to secure the earpiece in a selected position. A mounting bracket is positioned within the wedge portion. A boom is secured to the mounting bracket and extends from the earpiece such that the boom positions from below an ear lobe towards a mouth of the speaker. A microphone is positioned at the distal end of the boom proximate the speaker's mouth such that the microphone converts the speaker's voice into an electronic signal. An end of a cable is secured to the mounting bracket such that the cable remains secured to the mounting bracket during use and wherein the cable transfers the signal from the microphone to an external component.
    • 耳机麦克风包括具有楔形部分的耳机,其中楔形部分位于耳朵的后侧和头皮之间,以将耳机固定在选定位置。 安装支架位于楔形部分内。 吊杆固定到安装支架上并从耳机延伸,使得吊杆从耳垂下方朝向扬声器的嘴部定位。 麦克风定位在靠近扬声器嘴的动臂的远端处,使得麦克风将扬声器的声音转换成电子信号。 电缆的一端被固定到安装支架上,使得电缆在使用期间保持固定到安装支架上,并且其中电缆将信号从麦克风传送到外部部件。
    • 10. 发明申请
    • In-Ear Auditory Device and Methods of Using Same
    • 入耳式听觉装置及使用方法
    • US20080205679A1
    • 2008-08-28
    • US11996138
    • 2006-07-18
    • Alexander L. DarbutThomas Bruce Odegard
    • Alexander L. DarbutThomas Bruce Odegard
    • H04R25/00
    • H04R25/554H04R2460/13
    • An in-ear auditory device and methods of using same. The in-ear auditory device has a receiver sized to fit within an ear canal of a user, a transducer and an isolator disposed to substantially acoustically isolate the transducer from the receiver. The in-ear auditory device may include a bone vibration sensor acoustically or mechanically coupled to the transducer to detect the user's speech. The in-ear auditory device can further include a physiologic sensor to sense physiologic signals of the user. In use, the in-ear auditory device is coupled to an auxiliary device having circuitry to process signals to and from the in-ear auditory device. The auxiliary device may include wireless communication circuitry to communicate signals to and from remote communication or monitoring devices.
    • 入耳式听觉装置及其使用方法。 入耳式听觉装置具有接收器,其尺寸适于安装在使用者的耳道内,换能器和隔离器,其设置成将换能器与接收器基本上声学隔离。 入耳式听觉装置可以包括声学或机械耦合到换能器的骨骼振动传感器以检测用户的语音。 入耳式听觉装置还可包括用于感测使用者生理信号的生理传感器。 在使用中,入耳式听觉装置耦合到具有用于处理来自入耳式听觉装置的信号的电路的辅助装置。 辅助设备可以包括用于向远程通信或监视设备传送信号的无线通信电路。