Patent classifications
G01D11/24
TRANSPORTABLE TESTING ARRANGEMENT
A transportable testing arrangement comprising a testing area configured to receive an electric component to be tested, a removable hood configured to cover the testing area, testing equipment for testing the electric component, a base on which the testing area, the removable hood and at least part of the testing equipment are mounted and a frame on which the base is mounted. The base is mounted on the frame by one or more suspension elements configured to enable movement of the base in relation to the frame, and wherein the base is further configured to be locked in relation to the frame by one or more locking elements to prevent movement of the base in relation to the frame.
TRANSPORTABLE TESTING ARRANGEMENT
A transportable testing arrangement comprising a testing area configured to receive an electric component to be tested, a removable hood configured to cover the testing area, testing equipment for testing the electric component, a base on which the testing area, the removable hood and at least part of the testing equipment are mounted and a frame on which the base is mounted. The base is mounted on the frame by one or more suspension elements configured to enable movement of the base in relation to the frame, and wherein the base is further configured to be locked in relation to the frame by one or more locking elements to prevent movement of the base in relation to the frame.
Sensor assemblies and methods for emulating interaction of entities within water systems
Sensor assemblies are provided for use in modeling water systems. These sensor assemblies can be used as sensor fish. These assemblies can include a circuit board supporting processing circuitry components on either or both opposing component support surfaces of the circuit board and a housing above the circuit board and the components, with the housing being circular about the circuit board in at least one cross section, and wherein the supporting surfaces of the circuit board are substantially parallel with the plane of the housing in the one cross section. Methods for emulating interaction of entities within water systems are provided. The methods can include introducing a sensor assembly into a water system. The sensor assembly can include: a circuit board supporting processing circuitry components on either or both of opposing component support surfaces of the circuit board; a housing about the circuit board and the components, the housing being circular about the circuit board in at least one cross section; and wherein the support surfaces of the circuit board are substantially parallel with the plane of the housing in the one cross section.
EXPLOSION MANAGEMENT DISPLAY AND METHODS THEREOF
Devices, systems, and methods for explosion resistance include an explosion-resistant enclosure and a lid assembly. The lid assembly includes a lid for enclosing an opening of the explosion-resistant enclosure, and a graphical display assembly for presenting visual information regarding the analysis equipment.
EXPLOSION MANAGEMENT DISPLAY AND METHODS THEREOF
Devices, systems, and methods for explosion resistance include an explosion-resistant enclosure and a lid assembly. The lid assembly includes a lid for enclosing an opening of the explosion-resistant enclosure, and a graphical display assembly for presenting visual information regarding the analysis equipment.
EXPLOSION MANAGEMENT AND METHODS THEREOF
Devices, systems, and methods for explosion resistance include an analysis compartment isolated from a control compartment. A feed-through extends between the analysis compartment and the control compartment for extension of cabling therethrough, the feed-through hermetically sealed to block against flow of fluids between the analysis and control compartments.
EXPLOSION MANAGEMENT AND METHODS THEREOF
Devices, systems, and methods for explosion resistance include an analysis compartment isolated from a control compartment. A feed-through extends between the analysis compartment and the control compartment for extension of cabling therethrough, the feed-through hermetically sealed to block against flow of fluids between the analysis and control compartments.
Protection shield positioning assembly and positioning device therefore and method of use
A method and assembly for protecting a device connected to a wiring harness is disclosed. The assembly includes a protective tubular shield and a positioning device, with the protective tubular shield having a bore for receiving the device at least partially therein. An elongated wiring harness extends from the device being protected and through the bore of the protective tubular shield. The positioning device is formed having a band and at least one flexible, resilient finger extending radially inwardly from the band. At least one of the fingers forcibly engages the wiring harness to releasably maintain the positioning device and the protective tubular shield in a protection position along the wiring harness at least partially surrounding the device being protected.
Electronic control module and method for producing an electronic control module
An electronic control module, particularly for a transmission, includes a first circuit board element and a sensor unit carrier fastened to the first circuit board element. The sensor unit carrier has a sensor unit receptacle configured to receive a sensor unit. The sensor unit has a sensor element fastened and electrically connected to a second circuit board element so as to detect at least one measured value. The sensor unit is fastened in the sensor unit receptacle. The second circuit board element has a flexible region that separates a first sub-region of the second circuit board element from a second sub-region of the second circuit board element. The first sub-region has a predetermined angle to the second sub-region. The sensor element is electrically connected to the first circuit board element by the second sub-region of the second circuit board element.
Multi-sensor component for bioprocess control
A multi-sensor component for the installation of at least two sensors at an individual port of a container for culturing biological material is provided. The multi-sensor component has a housing that can be introduced by a front housing segment into an uptake opening extending through the port of the container so that the front housing segment is facing the inside of the container. The multi-sensor component has a first sensor unit or a mount for a first sensor unit arranged on the front housing segment and has a second sensor unit or a mount for a second sensor unit arranged on the front housing segment.