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    • 14. 发明授权
    • Line driver system
    • US4024501A
    • 1977-05-17
    • US609942
    • 1975-09-03
    • William M. HerringJames P. JohnsonDennis B. Walling
    • William M. HerringJames P. JohnsonDennis B. Walling
    • H04L12/40H04L25/26H04Q1/00
    • H04L12/40032H04L25/26
    • A line driver system for digital communication, using logic-level voltages, between an electronic transmitter-receiver device and an electronic receiver device, such as between a computer and a typewriter, a line printer or a cathode ray tube, has the transmitter-receiver device at a location remote from the receiver device. An output of the transmitter-receiver device is electronically coupled to an input of the receiver device using one line of a communications bus. This output of the transmitter-receiver device is coupled to that line of the bus through an optical isolator and then through a power booster. The receiver device has an output that provides a voltage signal when the receiver device is switched on-line. This voltage signal is provided at that output of the receiver device when the receiver device is capable of transforming digital information, that is provided at its input, to a readable form that is printed or displayed by the receiver device. This output of the receiver device is coupled through another optical isolator and through another power booster to a second line of the bus so that this second line of the bus receives a voltage signal when the receiver device is in the on-line condition. This second line of the bus is electronically coupled to an input of the transmitter-receiver device that senses the presence of this signal at that input prior to initiating a transmittal of digital information as logic-level voltages to the first line of the bus to provide logic-level voltages at the input of the receiver device. Each power booster has a high current gain amplifier with unity voltage gain. When the receiver device is also a transmitter device another output of the receiver device is electronically coupled through an optical isolator and a further power booster to a third line of the bus that is electronically coupled to another input of the transmitter-receiver device so that digital information as logic-level voltages are received from the receiver device by the transmitter-receiver device.
    • 18. 发明申请
    • Automatic Climate Control for a Vehicle
    • 汽车自动气候控制
    • US20100019050A1
    • 2010-01-28
    • US12179608
    • 2008-07-25
    • Taeyoung HanJames P. Johnson
    • Taeyoung HanJames P. Johnson
    • B60H1/00F24F11/00
    • B60H1/00642B60H1/00742B60H1/00807B60H2001/00733
    • A system and method of operating an automatic climate control system for a vehicle is disclosed. The method may include determining a breath level air temperature in a passenger compartment of the vehicle; determining a mean radiant temperature in the passenger compartment; determining an average air velocity in the passenger compartment; determining a clothing level factor, and calculating an equivalent homogeneous temperature based on the breath level air temperature, the mean radiant temperature, the average air velocity and the clothing level factor; comparing the calculated equivalent homogeneous temperature to a desired equivalent homogeneous temperature; and adjusting an output of the automatic climate control system based on the comparison of the calculated equivalent homogeneous temperature to the desired equivalent homogeneous temperature.
    • 公开了一种操作车辆自动气候控制系统的系统和方法。 该方法可以包括确定车辆的乘客舱中的呼吸水平的空气温度; 确定乘客舱内的平均辐射温度; 确定乘客舱中的平均空气速度; 确定服装水平因子,并根据呼吸水平的空气温度,平均辐射温度,平均空气速度和服装水平因子计算等效均匀温度; 将所计算的当量均匀温度与期望的等效均匀温度进行比较; 并且基于所计算的等效均匀温度与期望的等效均匀温度的比较来调整自动气候控制系统的输出。
    • 19. 发明授权
    • Accumulation conveyor assembly
    • 累积输送机总成
    • US06763930B2
    • 2004-07-20
    • US10116558
    • 2002-04-04
    • James P. JohnsonGerald A. Brouwer
    • James P. JohnsonGerald A. Brouwer
    • B65G4726
    • B65G47/8823B65G47/266B65G2205/04
    • An accumulation conveyor of the present invention includes a frame, which comprises spaced apart side frame members, and a plurality of rollers that are rotatably supported between the side frame members. The conveyor includes a stop member and an actuator that selectively moves the stop member between an extended position wherein at least a portion of the stop member is extended above the conveying surface for stopping one or more articles conveyed on the conveying surface and a retracted position wherein the stop member is below said conveying surface. The actuator and the stop member are supported and positioned between said side frame members when the stop member is moved between its retracted position whereby the stop member and the actuator comprise a low-profile stop assembly.
    • 本发明的堆积式输送机包括:框架,其包括间隔开的侧框架构件,以及可旋转地支撑在侧框架构件之间的多个辊。 输送机包括止动构件和致动器,该止动构件和致动器选择性地将止动构件移动在延伸位置之间,其中止动构件的至少一部分在输送表面之上延伸以阻止在输送表面上运送的一个或多个物品和缩回位置, 止动件在所述输送表面下方。 当止动构件在其缩回位置之间移动时,致动器和止动构件被支撑并定位在所述侧框架构件之间,由此止动构件和致动器包括低轮廓止动组件。