Abstract:
An analysis device obtains hash lists from databases of a server cluster. The analysis device determines repetitive hash values and repetitive data blocks. The analysis device deletes the repetitive data blocks from servers of the server cluster.
Abstract:
In a production accuracy verification method to verify a production program installed in a computer numerical control (CNC) machine, wherein the production program is used to produce a product, coordinates of points on an ideal processing path of the production program are obtained to fit a first curve. A CAD model of the product is obtained, and outlines of the product are extracted in the CAD model. A normal vector of each of the outlines is computed and to be adjusted, making the normal vectors of the outlines pointing to a same direction. First distances between points in the first curve and corresponding points in the second curve are computed, and whether the production program is accurate can be determined by comparing whether each of the first distances is within a first predetermined tolerance.
Abstract:
Method for detecting a surface flaw of an object using an electronic device includes requesting a detection device to control a camera unit to capture a current image of a test object placed on the detection device. The current image includes a sidewall image and a reflected image. The method obtains the current image, and detects whether the sidewall image has a surface flaw. When the sidewall image has a surface flaw, a rotation angle of the test object is determined based on the reflected image. The method obtains a standard sidewall image of a standard object stored in a storage device of the electronic device, based on the rotation angle, compares the sidewall image with the standard sidewall image, and determines and displays a position of the surface flaw on a sidewall of the test object based on the comparison.
Abstract:
A signal detection system includes a motherboard and a signal detection card. The signal detection card includes a connecting plate, a first interface, and a detection module. The first interface is mounted in the connecting plate. The connecting plate includes a first signal detection terminal. The first interface is coupled to the first signal detection terminal of the connecting plate. The first interface is coupled to the motherboard to receive a signal from the motherboard. The detection module is configured to couple to the first signal detection terminal of the connecting plate and detect the signal via the first interface. A signal detection card is also provided.
Abstract:
A method for displaying a graphical user interface on a display of an electronic device includes obtaining a total number “n” of image layers to be displayed on the display, and determining whether the total number of image layers is greater than two, determining a processing method of a number of processing methods for processing each image layer for displaying each image layer, processing each image layer according to the determined processing method, and displaying the graphical user interface on the display after all of the image layers have been processed. The number of processing methods include size adjustment, obfuscation adjustment, saturation adjustment, and transparency adjustment.
Abstract:
A test system for testing electrostatic testers, is used to test at least one electrostatic tester each including a voltage test terminal and a connection test terminal. The test system includes at least one optical coupler circuit and a chip. Each optical coupler circuit is coupled the voltage test terminal and the connection test terminal of one corresponding electrostatic tester, and each optical coupler circuit converts voltages of the voltage test terminal and the connection test terminal respectively to a voltage test signal and a connection test signal. The chip is couple to the at least one optical coupler circuit, and receives the connection test signal and the voltage test signal produced by the at least one optical coupler circuit, and determines whether the corresponding electrostatic tester connected to each optical coupler circuit is worked normally according to the connection test signal and the voltage test signal.
Abstract:
An autonomous mobile device includes a map interpretation module, an image collection module, an image collection module, an artificial marker identification module, a personal guidance module, a voice input module and a control module. The image collection module collects an image in front of the autonomous mobile device and form an image signal. The artificial marker identification module receives the image signal and identifies the artificial marker in the image to achieve a positioning of the autonomous mobile device. The personal guidance module activates a personal guidance mode of the autonomous mobile device, and stores a location of a guidance point and an actual movement information of the autonomous mobile device to form a guidance path. The voice input module inputs a name of the guidance path. The control module controls the autonomous mobile device to move according to the guidance path stored by the map interpretation module.
Abstract:
A smart vehicle charging device includes a charging unit, a communication unit communicating with the vehicle, a storage unit with pre-stored information, a display unit, and a processing unit. The processing unit obtains information as to instant vehicle condition, processes the information, and transmits the information of vehicle condition to the display unit. The processing unit further can compare the instant information with information as to vehicle condition which is pre-stored. The processing unit determines whether the instant vehicle condition matches with the pre-stored information. A system and a method for reminding as to vehicle condition are also provided.
Abstract:
In a method for an electronic device to adjust fool-proofing functions of operations, an algorithm corresponding to each of the operations, and ranges for triggering the fool-proofing functions of the operations are preset. When an operation inputted by an operator is obtained, the method calculates a skilled value of the operation according to reference parameters of the operator and an algorithm corresponding to the operation. The method further determines a fool-proofing function of the operation that is triggered by the electronic device according to the skilled value and the ranges for triggering the fool-proofing functions, and adjusts the electronic device to execute the determined fool-proofing function.