Abstract:
The present invention is related to a portable electronic assay device, a portable assay device and a kit thereof. The portable electronic assay device is used for determining a result of an assay performed using a test strip comprises a casing, an optical module, a light detector, and a processor. The casing comprises a transmissive part. The optical module emits a detecting light signal and display light signal. The detecting light signal is illuminated to the test strip and the display light signal is illuminated to the transmissive part. The light detector detects light from the test strip so as to obtain a detecting signal. The processor receives the detecting signal compared with a default value so as to obtain an assay result. The assay result is displayed on the transmissive part. Therefore, it provides simple structure of the assay device for displaying the assay result rapidly and correctly.
Abstract:
The present invention related to an electronic assay apparatus and a testing method thereof. The electronic assay apparatus for determining a result of an assay performed using a test strip comprises three light sources, only one detector and a microprocessor. The three light sources respectively illuminate light incident upon three different zones of the test strip. The detector detects light from the three zones alternately and the distances between the only one detector and the three light sources respectively are almost the same. Further, multiple openings corresponding to the three light sources respectively have the same size and/or shape. The microprocessor compares a calculating result value to only one threshold for showing a result.
Abstract:
The present invention related to a reaction vessel and an assay device. A reaction vessel for analysis a sample containing an analyte to be determined, which includes a casing, a first reagent and at least one independent individual element. The casing includes an opening and a detection zone. The opening may be formed on the edge of the casing and used to introduce the sample. The detection zone is disposed at a corner of the casing and used to detect the analyte. The reagent is interacted with the sample. The independent individual element is individually separating from the casing and providing a space and a flow channel for mixing the sample and the first reagent. The sample and the reagent are mixed in the independent individual element so as to determine the analyte in the detection zone, and thereby increasing accuracy of analyte detection.
Abstract:
The present invention related to a reaction vessel, an assay device and a measuring method. A reaction vessel includes a casing, a reagent and at least one individual element. The casing includes an opening and a detection zone. The opening may be formed on the edge of the casing and used to introduce a sample included an analyte. The detection zone is used to detect the analyte in the sample. The reagent is interacted with the sample. The individual element provides space and flow channel for mixing the sample and the reagent. The sample and the reagent are mixed in the individual element so as to determine the analyte in the detection zone, and thereby increasing accuracy of analyte detection.
Abstract:
The present invention related to a test strip and a method for humidity detection. The test strip comprises two humidity detecting materials for detecting humidity change and one of the humidity detecting materials is exposed to outer environment. Detect the two humidity changes to obtain a ratio that is used for comparing with a value and then it can prevent from exceeding a predetermined humidity value, and whereby the test strip and the method could achieve the goal of simple humidity detection.
Abstract:
The present invention related to an electronic assay apparatus and a testing method thereof. The electronic assay apparatus for determining a result of an assay performed using a test strip comprises three light sources, only one detector and a microprocessor. The three light sources respectively illuminate light incident upon three different zones of the test strip. The detector detects light from the three zones alternately and the distances between the only one detector and the three light sources respectively are almost the same. Further, multiple openings corresponding to the three light sources respectively have the same size and/or shape. The microprocessor compares a calculating result value to only one threshold for showing a result.
Abstract:
The present invention is related to a portable electronic assay device, a portable assay device and a kit thereof. The portable electronic assay device is used for determining a result of an assay performed using a test strip comprises a casing, an optical module, a light detector, and a processor. The casing comprises a transmissive part. The optical module emits a detecting light signal and display light signal. The detecting light signal is illuminated to the test strip and the display light signal is illuminated to the transmissive part. The light detector detects light from the test strip so as to obtain a detecting signal. The processor receives the detecting signal compared with a default value so as to obtain an assay result. The assay result is displayed on the transmissive part. Therefore, it provides simple structure of the assay device for displaying the assay result rapidly and correctly.
Abstract:
The present invention related to a test strip and a method for humidity detection. The test strip comprises two humidity detecting materials for detecting humidity change and one of the humidity detecting materials is exposed to outer environment. Detect the two humidity changes to obtain a ratio that is used for comparing with a value and then it can prevent from exceeding a predetermined humidity value, and whereby the test strip and the method could achieve the goal of simple humidity detection.
Abstract:
The present invention related to an electronic assay apparatus and a testing method thereof. The electronic assay apparatus for determining a result of an assay performed using a test strip comprises three light sources, only one detector and a microprocessor. The three light sources respectively illuminate light incident upon three different zones of the test strip. The detector detects light from the three zones alternately and the distances between the only one detector and the three light sources respectively are almost the same. Further, multiple openings corresponding to the three light sources respectively have the same size and/or shape. The microprocessor compares a calculating result value to only one threshold for showing a result.