Patent classifications
G05D23/2754
Wireless thermostat with dual stage failsafe circuits
A multi-mode thermostat includes a sensor of ambient temperature and control circuits coupled to the sensor, wherein the control circuits are responsive to signals from the sensor to maintain a predetermined regional temperature. First electrically actuated backup circuits are responsive to a firt sensed operational power level to alter a status signal transmission rate by the control circuits. Second electrically actuated backup circuits are responsive to a lower sensed operational power level to provide a backup, lower regional temperature electromechanically.
Variable displacement lubricant pump
A variable displacement lubricant pump for providing a pressurized lubricant for an internal combustion engine includes a shiftable control ring, a hydraulic control chamber which directly actuates the control ring, a pump rotor comprising a plurality of slidable vanes which rotate in the control ring, a control chamber wall, a temperature control opening arranged in the control chamber wall, and a temperature control valve which connects or disconnects the temperature control opening to an atmospheric pressure. The temperature control valve comprises a valve plunger which is axially shiftable so as to block or leave open a lubricant passage, and a first bimetal actuator sheet which directly actuates the valve plunger. The first bimetal actuator sheet comprises a first switching temperature. The valve plunger is in an open position if a lubricant temperature exceeds the first switching temperature.
PRESSURE CAP FOR COOLING SYSTEM HAVING VARIABLE OPENING PRESSURE
A pressure cap structure for a cooling system having variable opening pressure, which is applied to a cooling system for circulating cooling water to radiate heat generated by an engine of a vehicle, and maintains the inside pressure of the cooling system in a predetermined range, the pressure cap may include a positive pressure spring mounted in a valve body, and operated to connect the cooling system to the outside when the pressure of the cooling system rises, and a shape memory member restored to the initial shape when reaching a predetermined temperature, and mounted between the positive pressure spring and a spring guard supporting the positive pressure spring.
MOVABLE BARRIER OPERATOR EMPLOYING MEMS-BASED INERTIAL MEASURING UNIT FOR GATHERING BARRIER PARAMETER DATA
The invention relates to a movable barrier operator with a microelectromechanical positioning sensor, or a movable barrier operator that employs an inertial measuring unit to receive a signal associated with a barrier position, and communicate that signal to one or more devices. A device in communication with the movable barrier operator may be enabled for receiving information pertaining to the barrier and for providing commands that actuate the barrier at precise barrier parameters. In an exemplary embodiment, a movable barrier such as a swing-arm gate may be accurately controlled without requiring manual positioning mechanisms, or otherwise require physical components to set the gate's open and closed limits. Additionally, accurate information may be communicated to a user device, for monitoring and providing maintenance to the movable barrier system.
TEMPERATURE CONTROLLER
A temperature controller is disclosed, including: a mounting body provided with a first electrical connecting terminal and a second electrical connecting terminal, where a contact conductive mechanism and a heating element are arranged in parallel between the first electrical connecting terminal and the second electrical connecting terminal, the contact conductive mechanism includes a static contact assembly arranged at the first electrical connecting terminal and a movable contact assembly arranged at the second electrical connecting terminal, a bimetallic sheet is arranged on the mounting body, and the bimetallic sheet, when being deformed by heat, is capable of driving the movable contact assembly away from the static contact assembly to enable conduction of the heating element.
Movable barrier operator employing MEMS-based inertial measuring unit for gathering barrier parameter data
The invention relates to a movable barrier operator with a microelectromechanical positioning sensor, or a movable barrier operator that employs an inertial measuring unit to receive a signal associated with a barrier position, and communicate that signal to one or more devices. A device in communication with the movable barrier operator may be enabled for receiving information pertaining to the barrier and for providing commands that actuate the barrier at precise barrier parameters. In an exemplary embodiment, a movable barrier such as a swing-arm gate may be accurately controlled without requiring manual positioning mechanisms, or otherwise require physical components to set the gate's open and closed limits. Additionally, accurate information may be communicated to a user device, for monitoring and providing maintenance to the movable barrier system.
Bi-metal strip-seal
An improved seal assembly for use with a combustion liner assembly is employed with a gas turbine engine so as to control fluid flow. The seal assembly has a bi-metal sealing member that is affixed to a first surface that is proximal to a second perpendicular surface that is not in contact with the first surface, thus providing a potential fluid flow path. Upon heating, the bi-metal sealing member uncoils contacting the second perpendicular surface, thus blocking the flowpath between the two surfaces. Various metals may be provided to provide predetermined sealing characteristics.