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    • 1. 发明授权
    • Method for controlling an induced draft fan for use with gas furnaces
    • 用于控制用于燃气炉的引风机的方法
    • US5806440A
    • 1998-09-15
    • US651009
    • 1996-05-20
    • Mitchell R. RowletteYoun H. TingWalter H. BaileyRonald E. Garnett
    • Mitchell R. RowletteYoun H. TingWalter H. BaileyRonald E. Garnett
    • F23N1/06F23N3/08F23N5/18G05D7/06
    • F23N3/082F23N1/06F23N1/062F23N2023/08F23N2025/04F23N2033/04F23N2033/10F23N5/18
    • A gas fired furnace system (10) has a controller (14) controlling the supply of gas through a gas valve (12) and air for combustion by means of an induced air draft fan (28), ignition of the gas by means of ignitor (22), the delivery of heated air from a heat exchanger (20) by means of an air blower (34) in response to signals from a thermostat (42). A selected constant flow of air for combustion is provided by controlling the speed of the motor driving the induced motor fan (28) despite changes which may occur in back pressure. Induced draft fan motor parameters proportional to motor torque and motor speed are read on an ongoing basis and inputted to controller (14) which computes a desired voltage and compares that with referenced data stored in the controller memory and makes corrections to the speed of the induced draft fan motor to maintain the constant air flow. The motor speed and motor torque are also monitored to ensure that they are within selected limits indicative of safe operation and responsive to this input energization of a relay (KM1) is controlled to deenergize the gas valve and ignition.
    • 一种燃气炉系统(10)具有控制器(14),其通过气阀(12)和通过引风通风扇(28)进行燃烧的空气的控制,通过点火器点燃气体 (22),响应于来自恒温器(42)的信号,借助于鼓风机(34)从热交换器(20)输送加热的空气。 通过控制驱动感应的电动机风扇(28)的电动机的速度来提供选择的用于燃烧的恒定气流,尽管在背压中可能发生变化。 与电动机转矩和电动机速度成比例的感应通风风扇电动机参数被持续读取并输入到计算期望电压的控制器(14),并将其与存储在控制器存储器中的参考数据进行比较,并对诱导的速度进行校正 风机电机保持恒定的气流。 还监控电机转速和电机转矩,以确保它们位于指定安全运行的选定范围内,并响应于继电器(KM1)的输入通电被控制以对燃气阀和点火进行灭弧。
    • 3. 发明授权
    • Induced draft fan control for use with gas furnaces
    • 引风机控制用于燃气炉
    • US5524556A
    • 1996-06-11
    • US489274
    • 1995-06-09
    • Mitchell R. RowletteYoun H. TingWalter H. BaileyRonald E. Garnett
    • Mitchell R. RowletteYoun H. TingWalter H. BaileyRonald E. Garnett
    • F23N1/06F23N3/08F23N5/18G05D7/06
    • F23N3/082F23N1/06F23N1/062F23N2023/08F23N2025/04F23N2033/04F23N2033/10F23N5/18
    • A gas fired furnace system (10) has a controller (14) controlling the supply of gas through a gas valve (12) and air for combustion by means of an induced air draft fan (28), ignition of the gas by means of ignitor (22), the delivery of heated air from a heat exchanger (20) by means of an air blower (34) in response to signals from a thermostat (42). A selected constant flow of air for combustion is provided by controlling the speed of the motor driving the induced motor fan (28) despite changes which may occur in back pressure. Induced draft fan motor parameters proportional to motor torque and motor speed are read on an ongoing basis and inputted to controller (14) which computes a desired voltage and compares that with referenced data stored in the controller memory and makes corrections to the speed of the induced draft fan motor to maintain the constant air flow. The motor speed and motor torque are also monitored to ensure that they are within selected limits indicative of safe operation and responsive to this input energization of a relay (KM1) is controlled to deenergize the gas valve and ignition.
    • 一种燃气炉系统(10)具有控制器(14),其通过气阀(12)和通过引风通风扇(28)进行燃烧的空气的控制,通过点火器点燃气体 (22),响应于来自恒温器(42)的信号,借助于鼓风机(34)从热交换器(20)输送加热的空气。 通过控制驱动感应的电动机风扇(28)的电动机的速度来提供选择的用于燃烧的恒定气流,尽管在背压中可能发生变化。 与电动机转矩和电动机速度成比例的感应通风风扇电动机参数被持续读取并输入到计算期望电压的控制器(14),并将其与存储在控制器存储器中的参考数据进行比较,并对诱导的速度进行校正 风机电机保持恒定的气流。 还监控电机转速和电机转矩,以确保它们位于指定安全运行的选定范围内,并响应于继电器(KM1)的输入通电被控制以对燃气阀和点火进行灭弧。
    • 4. 发明授权
    • Low pressure sensor
    • 低压传感器
    • US5034848A
    • 1991-07-23
    • US451326
    • 1989-12-19
    • Mitchell R. RowletteWerner StrasserYoun H. TingTim H. McMains
    • Mitchell R. RowletteWerner StrasserYoun H. TingTim H. McMains
    • G01L9/00
    • G01L9/0075
    • Differentially connected capacitive sensors are mechanically coupled with the flexible capacitor plate of one sensor coupled to the source of pressure to be measured, the flexible capacitor plate of the other sensor coupled to ambient pressure. In a second embodiment, inaccuracies due to forces on the flexible plate are minimized by providing a housing with a tapered inner wall, an O-ring and a support to apply a radial load to the sensor due to clamping action from the tapered housing against the O-ring to provide a seal for the pressure sensing chamber. In a further embodiment, the cost of fabrication of the pressure transducer is minimized by providing the housing as a one piece cup. The electronics are mounted on the exterior surface of the low pressure side of the ceramic capacitor pressure sensing element and sealed in thereat by potting with an epoxy. In addition, an electrical pin connector from the electronics and a vent to the low pressure surface of the movable plate are secured in the potting material and extend externally thereof. In a further embodiment, pressures applied to the movable diaphragm of the pressure sensing element by the gasket are eliminated by providing a ceramic capacitor having a movable diaphragm element having smaller length and width dimensions than the fixed capacitor substrate. The gasket is positioned around the movable diaphragm element and on the fixed capacitor plate with the housing being stepped to apply a force against the gasket but remain out of contact with the movable diaphragm element.
    • 差分连接的电容式传感器与耦合到要测量的压力源的一个传感器的柔性电容器板机械耦合,另一个传感器的柔性电容器板耦合到环境压力。 在第二实施例中,由于通过提供具有锥形内壁,O形环和支撑件的壳体,由于由锥形壳体抵抗着的弹性元件的夹紧作用而向柔性板施加径向载荷,使得柔性板上的力的不准确性被最小化 O形圈,为压力传感室提供密封。 在另一个实施例中,通过将壳体设置为一体式杯来最小化压力传感器的制造成本。 电子器件安装在陶瓷电容器压力感测元件的低压侧的外表面上,并通过用环氧树脂灌封将其密封在其中。 此外,从电子设备的电针连接器和可移动板的通气口到低压表面固定在灌封材料中并在其外部延伸。 在另一实施例中,通过提供具有比固定电容器基板更小的长度和宽度尺寸的可移动隔膜元件的陶瓷电容器来消除通过垫圈施加到压力感测元件的可移动隔膜的压力。 垫圈围绕可动隔膜元件和固定电容器板定位,其中壳体被阶梯状地施加抵靠垫圈的力,但是保持与可动隔膜元件不接触。
    • 6. 发明授权
    • DC brushless motor controller apparatus and method
    • 直流无刷电机控制装置及方法
    • US06222333B1
    • 2001-04-24
    • US09459205
    • 1999-12-10
    • Ronald E. GarnettMitchell R. Rowlette
    • Ronald E. GarnettMitchell R. Rowlette
    • H02P118
    • H02P6/08H02P6/20
    • A low cost, microprocessor (U1) based motor controller (10) for driving a half-wave, multiple speed, reversible, DC brushless motor (30) directly from standard AC 50/60 Hz power. A large number of different speed and rotation direction combinations may be chosen before or after the motor is installed using configuration resistors (Rcol1, Rrow1). SIDACs (TS2, TS3) each serially connected to a diode (D6, D5) are connected across respective coils (COIL—1, COIL—2) to clamp the flyback energy in the windings to a few volts when triggered and allow Vemf to float when not triggered. The control adjusts the relative phase timing of commutation during start-up and during running to enhance efficiency. Locked rotor protection is provided by limiting start-up time to a selected period which is followed by a selected cool-off time.
    • 一种低成本微处理器(U1)的电机控制器(10),用于直接从标准AC 50/60 Hz功率驱动半波,多速,可逆的直流无刷电机(30)。 可以在使用配置电阻(Rcol1,Rrow1)安装电机之前或之后选择大量不同的速度和旋转方向组合。 每个串联连接到二极管(D6,D5)的SIDAC(TS2,TS3)连接在相应的线圈(COIL-1,COIL-2)上,以在触发时将绕组中的回扫能量钳位到几伏,并允许Vemf浮起 何时未触发。 该控制调节启动期间和运行期间换相的相位相位时序,以提高效率。 锁定转子保护通过将启动时间限制到选定的时间段,然后是选定的冷却时间来提供。
    • 8. 发明授权
    • Temperature sensor
    • 温度感应器
    • US5372427A
    • 1994-12-13
    • US812232
    • 1991-12-19
    • Francois A. PadovaniTim H. McMainsMitchell R. Rowlette
    • Francois A. PadovaniTim H. McMainsMitchell R. Rowlette
    • G01K7/22G01K1/16
    • G01K1/16
    • A low-cost, highly-responsive temperature sensor has a thermistor element surface-mounted in a circuit defined by an electrically-conducting layer of a three-layer circuit substrate to be in close thermal coupling to a metal base layer on an opposite side of the substrate. The base layer is adapted to be disposed in heat-collecting relation to a surface whose temperature is to be monitored. An intermediate layer of the substrate has a binder electrically insulating the thermistor from the metal base layer and has thermally-conducting particles dispersed in the binder to improve thermal coupling of the thermistor to the heat-collecting substrate base layer. The circuit defines terminal pads surface-mounting the thermistor element at one end of the substrate and defines interconnected terminal pads at an opposite end of the substrate which are connected to device lead wires in substantial thermal isolation from the thermistor element.
    • 低成本,高响应的温度传感器具有表面安装在由三层电路基板的导电层限定的电路中的热敏电阻元件,以与第三层电路基板的相反侧上的金属基底层紧密地热耦合 底物。 基层适于与要监测温度的表面进行热收集关系。 基板的中间层具有将热敏电阻与金属基层电绝缘的粘合剂,并且具有分散在粘合剂中的导热颗粒以改善热敏电阻与集热基板基底层的热耦合。 该电路定义了在基板的一端表面安装热敏电阻元件的端子焊盘,并且在基板的相对端限定了互连的端子焊盘,其连接到与热敏电阻元件相当热隔离的器件引线。
    • 9. 发明授权
    • Electronic relative humidity/temperature measuring system
    • 电子相对湿度/温度测量系统
    • US5040417A
    • 1991-08-20
    • US434288
    • 1989-11-13
    • Mitchell R. Rowlette
    • Mitchell R. Rowlette
    • G01K7/24G01N27/12
    • G01N27/122G01K7/24
    • The disclosure relates to a system for measuring relative humidity and temperature wherein there are provided three controlled switching matrices, a first of the matrices determining whether a current for determining temperature or relative humidity is to be fed via a diode to a system voltage output from when the voltage output will be converted to an appropriate temperature or relative humidity reading. The remaining two matrices are each controlled by an oscillating voltage which alternates the output or input terminal thereof depending upon whether the oscillating voltage is positive or negative. This causes current to be passed through a humidity responsive resistor in opposite directions during each half cycle of the oscillating voltage. In the case of humidity sensing, the diode used for measuring temperature also acts as a temperature compensating device for the humidity sensor, thereby having a dual function in the system.
    • 本公开涉及一种用于测量相对湿度和温度的系统,其中提供了三个受控切换矩阵,第一矩阵确定用于确定温度或相对湿度的电流是否将通过二极管馈送到从当前的系统电压输出 电压输出将转换为适当的温度或相对湿度读数。 剩余的两个矩阵各自由振荡电压控制,该振荡电压根据振荡电压是正还是负来交替输出或输入端。 这使得电流在振荡电压的每个半周期期间以相反方向通过湿度响应电阻器。 在湿度感测的情况下,用于测量温度的二极管也用作湿度传感器的温度补偿装置,从而在系统中具有双重功能。
    • 10. 发明授权
    • Method and apparatus for enhancing relay life
    • 增强继电器使用寿命的方法和装置
    • US5530615A
    • 1996-06-25
    • US163782
    • 1993-12-06
    • Mark E. MillerMark A. EiflerAlan R. SawyersMitchell R. RowletteCraig M. Nold
    • Mark E. MillerMark A. EiflerAlan R. SawyersMitchell R. RowletteCraig M. Nold
    • H01H9/56H01H47/00H02H3/033
    • H01H9/56H01H2009/566Y10T307/951
    • An electronic control for gas furnaces controls a two speed main blower fan and an induction draft fan based on 24 volt input signals from a room thermostat, a high limit and an ignition control including a gas valve. The input signals are coupled to input ports of a microprocessor through current limiting resistors and to AC ground through pull down resistors. AC ground is also connected to the IRQ port of the microprocessor. Output ports of the microprocessor are connected to a relay driver which in turn is connected to relays for energizing and de-energizing the fans. The control calibrates itself on a continuing periodic basis to read the AC inputs synchronously at the peak of their wave and can switch the relays asynchronously based on the Real Time Clock of the microprocessor or can be switched synchronously by providing a selected delay so that contact engagement and disengagement occurs at or near the zero crossing of the AC line voltage wave form. When used with resistive loads the relays are switch in response to a signal from the microprocessor which is delayed based on the mechanical switching time constant of the relays to provide contact closure and opening at the selected point on the AC line voltage wave form. An alternate embodiment shows a feedback network used to calibrate the specific delay period for each relay upon initialization. When used with inductive loads contact closing can be effected synchronously and contact opening asynchronously.
    • 燃气炉的电子控制器基于来自室温恒温器,上限和包括气阀的点火控制器的24伏输入信号来控制双速主鼓风机和引风机。 输入信号通过限流电阻耦合到微处理器的输入端口,并通过下拉电阻耦合到交流电源。 交流接地也连接到微处理器的IRQ端口。 微处理器的输出端口连接到继电器驱动器,继电器驱动器又连接到继电器,以使风扇通电和断电。 控制器在持续的周期性基础上自行校准,以在其波峰值同步读取AC输入,并且可以基于微处理器的实时时钟异步地切换继电器,或者可以通过提供所选择的延迟来同步地切换继电器,使得接触接合 并且在AC线电压波形的过零点处或附近发生分离。 当与电阻性负载一起使用时,继电器响应于来自微处理器的信号而被切换,该信号基于继电器的机械开关时间常数被延迟,以在交流线路电压波形上的选定点处提供触点闭合和断开。 替代实施例示出了用于在初始化时校准每个继电器的特定延迟周期的反馈网络。 当与感性负载一起使用时,触点闭合可以同步进行并且异步接触。