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    • 3. 发明申请
    • TEMPERATURE STABILIZED CULTURE INCUBATOR
    • 温度稳定培养培养箱
    • WO2017155883A1
    • 2017-09-14
    • PCT/US2017/020951
    • 2017-03-06
    • TOKITAE LLC
    • CALDERON, RyanFRIEND, MichaelGHIONEA, Simon JeffreyMILLER, Andrew KuehlNORTON, Bryan
    • C12M1/00C12M1/02G01N29/07G01N29/34
    • Described embodiments include a culture incubator, method, and sensor circuit. A culture incubator includes an accessible incubation compartment configured to contain a culture item at a specified incubation temperature; a phase change material having a phase transition temperature over the specified incubation temperature; and a heat transfer element in thermal communication with the phase change material and configured to transfer heat to the phase change material. A sensor circuit is configured to acquire data indicative of a phase composition state of the phase change material. A manager circuit is configured to determine a difference between the phase composition state and a target phase composition state for the phase change material. A controller circuit is configured to transfer heat to the phase change material in an amount estimated to change the phase composition state of the phase change material to the target phase composition state.
    • 所描述的实施例包括培养培养箱,方法和传感器电路。 培养培养箱包括可接近的培养室,其被配置为在指定的培养温度下容纳培养物品; 相变温度超过规定温育温度的相变材料; 以及传热元件,其与相变材料热连通并被配置成将热传递至相变材料。 传感器电路被配置为获取指示相变材料的相组成状态的数据。 管理器电路被配置为确定相变材料的相组成状态与目标相组成状态之间的差异。 控制器电路被配置成以估计的量将热量传递至相变材料,以将相变材料的相组成状态改变为目标相组成状态。
    • 6. 发明申请
    • THERMAL EXPANSION ACTUATORS, MICROSCOPES INCLUDING THE SAME, AND RELATED METHODS
    • 热膨胀促动器,包括其的显微镜,以及相关方法
    • WO2017155560A1
    • 2017-09-14
    • PCT/US2016/036160
    • 2016-06-07
    • TOKITAE LLC
    • CALDERON, RyanGASPERINO, DavidMCGUIRE, Shawn KeithROECKER, James Andrew
    • G01N25/34G01N25/32
    • G02B21/26
    • Embodiments disclosed herein include thermal expansion actuators, systems using the same (e.g., microscopes), and methods of using the same. The thermal expansion actuators disclosed herein can include at least one beam coupled to and extending between a plurality of support portions. The thermal expansion actuators also include at least one heating element configured to heat at least a portion of the thermal expansion actuators, such as the at least one beam. The support portions are coupled to an structure (e.g., a component of a microscope) in a manner that at least partially restrains thermal expansion or contraction of the thermal expansion actuators in at least one direction when the thermal expansion actuators are heated or cooled, respectively. Restraining the thermal expansion actuators can controllably and selectively produce relative movement in the at least one beam (e.g., deflected). For example, the thermal expansion actuators can be heated or cooled to controllably and selectively deflect the beam in 1 µm displacements or less.
    • 这里公开的实施例包括热膨胀致动器,使用其的系统(例如,显微镜)以及使用该系统的方法。 本文公开的热膨胀致动器可以包括耦合到多个支撑部分并且在多个支撑部分之间延伸的至少一个梁。 热膨胀致动器还包括至少一个加热元件,其构造成加热至少一部分热膨胀致动器,例如至少一个梁。 支撑部分以这样的方式联接至结构(例如,显微镜的部件):当热膨胀致动器分别被加热或冷却时,至少部分地限制热膨胀致动器在至少一个方向上的热膨胀或收缩 。 限制热膨胀致动器可以可控地且有选择地在至少一个梁(例如,偏转)中产生相对运动。 例如,可以对热膨胀致动器进行加热或冷却,以可控制的方式选择性地偏转1微米或更小位移量的梁。