Abstract:
A fan-out semiconductor package including a first redistribution layer; a first semiconductor chip on the first redistribution layer; an interconnector on the first redistribution layer and spaced apart from the first semiconductor chip; a molded layer covering the interconnector and side surfaces of the first semiconductor chip; and a second redistribution layer on the molded layer, wherein the interconnector includes a metal ball and is electrically connected to the first redistribution layer, the second redistribution layer includes a first line wiring, and a first via electrically connected to the first line wiring, the first via is connected to the interconnector, and a part of the first via is in the molded layer.
Abstract:
A semiconductor package includes a connection structure including a redistribution layer, a plurality of under bump metal layers electrically connected to the redistribution layer, a passivation layer which overlaps at least portions of side faces of the plurality of under bump metal layers, and includes a first trench disposed between under bump metal layers adjacent to each other, a surface mounting element which is on the under bump metal layers adjacent to each other, connected to the redistribution layer, and overlaps the first trench, and an underfill material layer that is between a portion of the passivation layer and the surface mounting element, and is in the first trench. The first trench extends in a first direction and includes a first sub-trench having a first width in a second direction, and a second sub-trench having a second width different from the first width in the second direction.
Abstract:
A test platform is provided for testing a detection module of a test apparatus to determine whether correction is needed or for quality control of the test apparatus. The test platform includes a body, and at least one reference material which is formed on the body and on which at least one color is printed.
Abstract:
A test device and a method for controlling the test device are disclosed. After a test is interrupted due to a malfunction of the test device, the test device continuously performs the interrupted testing. The test device for testing a biological material includes: a memory configured to store information which relates to progress of a test; and a controller which, if the test is interrupted due to a malfunction of the test device, is configured to continue performance of the test by using the information which relates to the test progress which is stored in the memory.
Abstract:
A blood testing apparatus includes an analyzer configured to analyze blood components of an animal that are included in a test medium; an output device configured to display analysis results of the blood components; and a controller configured to determine a species of the animal based on at least one from among types of the blood components and the analysis results of the blood components and control the output device to display the determined species of the animal.
Abstract:
A pet blood tester includes a reader configured to read identification information of a pet from a tag; an analyzer configured to analyze blood of the pet to acquire information on the blood; a storage; a controller configured to receive stored body information of the pet corresponding to the identification information from at least one of an external device and the storage if the stored body information of the pet corresponding to the identification information is stored in at least one of the external device and the storage; and an inputter configured to receive input body information of the pet from a user if the body information of the pet corresponding to the identification information is not stored in at least one of the external device and the storage, wherein the controller is further configured to provide a blood test result and diagnosis information for the pet, based on the information on the blood, and the stored body information of the pet or the input body information on the blood.
Abstract:
Provided are a test apparatus configured to detect a test item by using a reactor which includes a plurality of reaction units in order to detect a particular test item and a control method thereto. The test apparatus detects a detection result of one test item by using detection results obtained by two or more reaction units. The test apparatus includes a detection unit configured to detect reaction results of a plurality of reaction units provided in a reactor to detect the same test item, and a controller configured to calculate a test result which indicates the test item by using detection results obtained by at least two reaction units from among detection results of the detection unit.
Abstract:
A microfluidic system capable of determining at least one of the existence and the amount of a fluid by use of an optical sensor even if the fluid is transparent. The microfluidic system includes a platform including at least one chamber configured to accommodate a fluid, at least one channel connected to the at least one chamber, and at least one protrusion disposed on an inner surface of the at least one chamber and configured to show a difference in transmittance according to the existence of the fluid.