Abstract:
A testing system for an embedded system is provided. The testing system includes a plurality of devices and one or more host computers. Each device, which includes the embedded system to be tested, is connected to the host computer via a network based on the network file system protocol. The host computers are further connected with a control server, and each of the host computers comprises a root file system. The control server is configured for providing an interface for a user to set test parameters, controlling each of the host computers to invoke a test program, thereby testing the embedded system according to the test parameters, and receiving test results of the embedded system from the host computer. A related testing method is also provided.
Abstract:
A testing system for an embedded system is provided. The testing system includes a plurality of devices and one or more host computers. Each device, which includes the embedded system to be tested, is connected to the host computer via a network based on the network file system protocol. The host computers are further connected with a control server, and each of the host computers comprises a root file system. The control server is configured for providing an interface for a user to set test parameters, controlling each of the host computers to invoke a test program, thereby testing the embedded system according to the test parameters, and receiving test results of the embedded system from the host computer. A related testing method is also provided.
Abstract:
A method for testing a connection between an audio receiving device and a motherboard is disclosed. The method includes the steps of: preparing a data storage medium containing an original audio data file; playing the data storage medium on an audio playing device with audio signals generated thereof, the audio playing device being connected to the audio receiving device; receiving the audio signals by the audio receiving device; transmitting the audio signals to the motherboard via the connection between the audio receiving device and the motherboard; outputting the audio signals from an output port; receiving the audio signals by an input port; recording the audio signals as a recorded audio data file; comparing the two audio data file; and reporting a test result indicating that the connection is in good condition if the two audio data files are identical.
Abstract:
Methods and systems may provide for embedding thumbnail information into a video file such as a clip, stream, recording, and so forth. The thumbnail information may include, for example, a representative image of the video content in the file, an index to a key frame in the video content, or any combination thereof. If the thumbnail information includes the representative image, the representative image may be embedded at a predetermined location in the file. If the thumbnail information includes the index to a key frame, the index may be embedded in a header of the file.
Abstract:
The invention is concerned with the strains of B. coagulans for lactic acid production and the related methods, in which the carbon sources are pentose or hexose or the agricultural or industrial wastes containing pentose or hexose or a mixture of both. According to the invention, the highest amount of L-lactic acid produced from glucose is 173 g/L, the optical purity is over 99%, the yield is up to 0.98, and the productivity is up to 2.4 g/L per hour. The highest amount of L-lactic acid produced from xylose is 195 g/L, the optical purity is over 99%, the yield is up to 0.98, and the productivity is up to 2.7 g/L per hour. The highest amount of L-lactic acid produced from reducing sugars in xylitol byproducts is 106 g/L, the optical purity is over 99%, and the productivity is up to 2.08 g/L per hour. The B. coagulans strains XZL4 (DSM No. 23183) and XZL9 (DSM No. 23184) of the invention can directly utilize various reducing sugars in xylitol byproducts to produce high amounts of L-lactic acid, which improves the production efficiency at low costs, and the strains are, thus, appropriate for industrial productions.
Abstract:
An optical fiber connector includes a plug having a ferrule, a housing sleeved on the plug, a frame slidably positioned on the housing, and a shutter rotatably mounted on the frame. The shutter includes a covering portion for covering the ferrule and a rotating portion formed on the covering portion. The housing forms a urging portion adjacent to the ferrule implementing the rotating portion and rotating the covering portion to cover the ferrule when the frame slides on the housing to a predetermined position.
Abstract:
A method of mobile phone remote setup by utilizing SMS, which enables a mobile phone to send a normal SMS message, comprising a remote control function including a series of characters in a remote control selection and corresponding installation parameters, in the form of protocol data units (PDUs) through wireless communication network to another mobile phone for remote control functions. The method comprises the steps of decoding said SMS message in accordance with the PDUs while said SMS message being received by said another mobile phone; and implementing a remote control setup procedure corresponding to said remote control function being received by said another mobile phone and then sending a success or failure message back to said mobile phone.
Abstract:
A sound device includes: at least one speaker (1-1), a speaker body (1) including the at least one speaker (1-1), and a sleeve (2) made of vibration absorbing material, wherein the sleeve (2) includes a first portion (2-2) shaped for housing the speaker body (1) and a second portion (2-1) shaped for forming a mounting element, and wherein the first portion (2-2) and second portion (2-1) of the sleeve (2) are integrally formed.
Abstract:
Methods and systems may provide for invoking a plurality of parallel instances of a hardware video encoder, wherein the plurality of parallel instances includes a first encoder instance and a second encoder instance. Additionally, the first encoder instance may be used to make a scene change determination and a motion level determination with respect to the video content. In one example, the second encoder instance is used to encode the video content based on the scene change determination and the motion level determination.