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    • 72. 发明专利
    • Floating conductor housing
    • GB201807864D0
    • 2018-06-27
    • GB201807864
    • 2018-05-15
    • SENSATA TECHNOLOGIES INC
    • A sensor assembly comprising a sensing element with at least one electrical lead extending therefrom. A tube encloses the sensing element and material surrounds the at least one electrical lead and defines a space around the at least one electrical lead so that when temperature gradients create push and pull, the at least one electrical lead moves within the space. The sensor assembly may further comprise a sleeve connected to the tube and surrounding the material. The sleeve may have an intermediate bent portion that the at least one electrical lead passes through, with a braided supply line connected to the leads, the braided supply line being arranged and configured within the bent portion to absorb movement of the two leads from temperature gradients. The lead can also extend through the sleeve forming a sinusoidal shape within the sleeve for absorbing movement resulting from temperature gradients.
    • 77. 发明专利
    • DE69737054T2
    • 2007-09-20
    • DE69737054
    • 1997-10-01
    • SENSATA TECHNOLOGIES INC
    • VERRAS GEORGEMORIN DANIEL
    • H01H35/26H01H35/34
    • A fluid pressure responsive electric switch (100) is shown in which first and second discrete electrical switches are controlled. A first movable support ring (122) mounts first and second snap acting discs (120a, 124a) on opposite sides thereof, the discs each having the normally concave surface facing the support ring. The first disc receives a force through a pressure to force converter (134) which is transferred through the second disc to a second movable support (126) and a third snap acting disc (128a) having a normally concave surface facing a related movable contact arm. When the system pressures exceeds a first minimum level the third disc (128a) snaps allowing a motion transfer pin to transfer a force to the movable contact arm (118a) of a compressor actuation switch (118) to energize the compressor. When system pressure increases to a second higher level the first disc (120c) snaps and transfers motion via a motion transfer pin (120c) to the movable arm (116a) of a fan actuation switch to energize the fan. If the system pressure increases to a third still higher level, the second disc (124a) snaps thereby allowing the spring bias of the movable arm (118a) of the compressor actuation switch to separate from the mating stationary contact to thereby de-energize the compressor. According to a second embodiment the switch (200) includes only the fan actuation and compressor high pressure cut-out functions by eliminating the third disc and by making the second support (130c') stationary.
    • 80. 发明专利
    • Dual mode sensing joystick assembly
    • GB202005161D0
    • 2020-05-20
    • GB202005161
    • 2020-04-07
    • SENSATA TECHNOLOGIES INC
    • A joystick assembly includes a joystick and pre-load centering springs coupled to the joystick for biasing the joystick to a neutral position. The joystick has a central free-play zone, a transitional zone surrounding the central free-play zone in which the pre-load centering springs begin to act upon the joystick, and a load zone surrounding the transitional zone in which the pre-load centering springs exert a relatively flat spring rate upon the joystick. An angular position sensor system generates a first signal indicative of a travel angle of the joystick. A force sensor system generates a second signal indicative of a force applied to the joystick. A controller receives the first and second signals and sets start/stop points for control by the joystick approximately synchronously with the joystick moving from the transitional zone to the load zone based upon the second signal.