Patent classifications
G01G1/00
DISPLACEMENT SENSOR UTILIZING RONCHI GRATING INTERFERENCE
A load cell to measure displacements transferred by a fifth wheel to the load cell includes an elongated mounting base portion configured to attach to a support structure of a tractor, a coupling portion configured to pivotally support a fifth wheel, a middle portion disposed above the elongated mounting base portion and below the coupling portion, the middle portion including a hollow interior section with an opening into the hollow interior section, and a post extending from the elongated mounting base portion and protruding into the hollow interior section of the middle portion.
INTEGRAL FLUID MEASUREMENT SYSTEM
An integral fluid measurement system includes a first sensor configured to communicate using a first communication technology, a second sensor configured to communicate using a second communication technology, and a hybrid interface unit including a first interface configured to communicate with a first sensor using a first communication technology and a second interface configured to communicate with a second sensor using a second communication technology, where the first and second communication technologies are different from each other and may include electrical, fiber optic, radio frequency, optical pulse, and sonic pulse. The hybrid interface unit may also include a digital signal processor, data bus, and power supply, and may be capable of being disposed on a fluid tank wall.
Investigation assist device, investigation assist method and investigation assist system
An investigation assist device is connected to cameras installed at a plurality of intersections respectively so as to communicate with the cameras. The investigation assist device includes a processor and a storage that records road map information including the plurality of intersections and captured video of each of the cameras in association with camera information and intersection information. The processor retrieves a vehicle using the captured video of each of the cameras installed at one or more intersections within a predetermined distance range from the intersection where the event has occurred, based on input information including date and time information when the event has occurred, the intersection information where the event has occurred, and the feature information of the vehicle having caused the event, the captured videos corresponding to the date and time information. The processor updates the detection date and time information of the vehicle from reception date and time information on a report indicating an occurrence of the event to detection date and time information of the vehicle, updates detection point information of the vehicle from the intersection information on the intersection where the event has occurred to intersection information on another intersection where the vehicle is detected, and stores the updated information in the storage.
Two-way merchandise fixture
Exemplary embodiments are directed to a fixture and method for a fixture (referred to as a Two Way Fixture) displaying and holding objects for sale at a retail store. The two way fixture is includes a free-standing frame which is formed by a I-shaped base portion and a U-shaped upright portion. A pair of tempered hardboards are inserted in the middle of the U-shaped upright portion. The two way fixture has shelves and wire racks mounted to the sides of the U-Shaped upright portion. The shelves, I-shaped base portion, and wire racks create a volume allows for the two way fixture to hide or obscure the a cash box storing components of a point-of-sale (POS) station while keeping the electronic components live and updated. The two way fixture can surround the pole and the cash box without having to remove the pole or lift the bin over the cash box.
Measuring instrument for Thermogravimetrically determining the moisture content of a material
A measuring instrument for thermogravimetrically determining the moisture content of a material, which includes a base (12), configured as a balance, with a base surface (22), and a hood (14) pivotably connected to the base. The hood has a weighing chamber lid (50), weighing chamber walls (52-56) and a heating element (44). The hood consists of an electronics module (36) that includes the heating element and an electronic power unit, and of a mechanical module (48) that includes the weighing chamber lid and all of the weighing chamber walls. The mechanical module (48) is rigidly and reversibly coupled to the electronics module so that the heating element, protrudes from a main body (42) of the electronics module and rises through a corresponding opening (58) in the rearward weighing chamber wall (56), with the main body being pivotably connected to the base and surrounding the electronic power unit.
Measuring instrument for Thermogravimetrically determining the moisture content of a material
A measuring instrument for thermogravimetrically determining the moisture content of a material, which includes a base (12), configured as a balance, with a base surface (22), and a hood (14) pivotably connected to the base. The hood has a weighing chamber lid (50), weighing chamber walls (52-56) and a heating element (44). The hood consists of an electronics module (36) that includes the heating element and an electronic power unit, and of a mechanical module (48) that includes the weighing chamber lid and all of the weighing chamber walls. The mechanical module (48) is rigidly and reversibly coupled to the electronics module so that the heating element, protrudes from a main body (42) of the electronics module and rises through a corresponding opening (58) in the rearward weighing chamber wall (56), with the main body being pivotably connected to the base and surrounding the electronic power unit.
Weight activated animal marking scale
A mechanical scale has a weighing basket with a platform having entrance and exit ends. A hanging assembly for supporting the weighing basket includes a break-over beam. A counterweight assembly is connected to the break-over beam and is adjustable to select a threshold scale weight required to trigger a scale-operated feature, such as a spray marking mechanism. The counterweight assembly has a weight selection device bracket pivotally mounted to the frame assembly about a pivot point, and a freely moveable counterweight mass supported by the bracket. The freely moveable counterweight mass is moveable from a first position to a second position when the threshold scale weight is exceeded in the weighing basket, thereby causing an abrupt triggering of the scale-operated feature when the threshold scale weight is exceeded in the weighing basket. The freely moveable counterweight mass is a rolling spherical member enclosed within a hollow chamber inside the bracket.
LOAD STATUS OF TRANSPORT CHASSIS
In some examples, a system receives sensor data from a sensor of a transport chassis configured to carry a cargo transportation unit (CTU), and determines, based on the sensor data and a profile learned based on past data, whether the transport chassis is loaded with a CTU or cargo.
MOUSE DEVICE
The present invention provides a mouse device, including a body, a circuit board, and a plurality of weight sensing units. The weight sensing units are configured to measure weights of counterweight blocks accommodated in the plurality of accommodating parts of the body. A processing unit of the circuit board is connected to the weight sensing units and is configured to generate and output a weight sensing signal according to the measurement result of the weight sensing units.
METHOD FOR AUTOMATIC THERMOGRAVIMETRIC VOLATILE ANALYSIS OF COAL AND COKE
An automatic method for thermogravimetric analysis of multiple samples of coal or coke for volatile matter in a thermogravimetric analyzer of the type including an auto-loading delivery system, a furnace, a movable platform within said furnace, an external balance and an internal balance for measuring the weights of sample holders, lids and samples before and after treatment in the furnace. Coal or coke samples are placed in the sample holders and weighed in the external balance and are auto-loaded into the furnace at 950 C. All sample holders are weighed sequentially on the internal balance at exactly 7 minutes from introduction time with space time 14-20 seconds in between them and the weight of the sample holder prior to being placed in the furnace is compared with the weight of the sample holder after it has been treated in the furnace to determine the amount of volatile material.