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    • 2. 发明授权
    • Apparatus and method for processing MIDI
    • 用于处理MIDI的装置和方法
    • US07427709B2
    • 2008-09-23
    • US11085950
    • 2005-03-21
    • Jae Hyuck LeeJung Min SongYong Chul ParkJun Yup Lee
    • Jae Hyuck LeeJung Min SongYong Chul ParkJun Yup Lee
    • G10H7/00
    • G10H1/0575G10H7/02G10H2230/021G10H2230/041G10H2240/056G10H2250/571
    • Provided are an apparatus and a method for processing MIDI in a wireless terminal capable of controlling a volume of sound source samples when the MIDI is played. According to the method, a plurality of notes, volume levels, volume section information, and note playback duration information are extracted from an inputted MIDI file. After a volume sample number in each section is calculated using the extracted volume level and the volume section information, a volume of the sound source samples that correspond to a note that is to be played is controlled using the volume sample numbers. Next, frequency of the sound source samples are converted to a frequency assigned to the notes and the sound source samples are outputted, reducing a system load caused by the real-time play of the MIDI.
    • 提供了一种用于处理无线终端中的MIDI的装置和方法,能够在播放MIDI时控制声源样本的音量。 根据该方法,从输入的MIDI文件中提取多个音符,音量,音量部分信息和音符重放持续时间信息。 在使用提取的音量等级和音量部分信息计算每个部分中的体积样本号之后,使用体积样本号来控制与要播放的音符相对应的声源样本的音量。 接下来,将声源样本的频率转换为分配给音符的频率,并且输出声源样本,从而减少由MIDI的实时播放引起的系统负载。
    • 8. 发明授权
    • Method of manufacturing lithium secondary battery
    • 锂二次电池的制造方法
    • US06599333B1
    • 2003-07-29
    • US09709710
    • 2000-11-13
    • Hee Tak KimJung Min SongSun Wook Kim
    • Hee Tak KimJung Min SongSun Wook Kim
    • H02M1004
    • H01M6/164H01M6/166H01M6/183H01M10/04H01M10/052H01M10/0565H01M10/446H01M2300/0082H01M2300/0085H01M2300/0091Y02T10/7011Y10T29/4911
    • Disclosed is a method of manufacturing a lithium secondary battery. A polymer mixture including a) polyvinylidene fluoride-based polymer and b) at least one polymer selected from the group consisting of polyacrylonitrile and polymethyl methacrylate is mixed with a solvent in which a lithium salt is dissolved. The mixing ratio of the polymer mixture and the solvent is about 1:3-10. Thus obtained first mixture is heated to obtain a polymer electrolyte composition. And this polymer electrolyte composition is coated onto a first electrode which is one of an anode and a cathode, and then dried to obtain a polymer electrolyte layer. Then, a second electrode which is a remaining one of the anode and cathode is attached onto the polymer electrolyte layer. The polymer electrolyte has a good mechanical strength and the lithium secondary battery has a stable charge/discharge characteristic.
    • 公开了一种锂二次电池的制造方法。 包含a)聚偏二氟乙烯类聚合物和b)至少一种选自聚丙烯腈和聚甲基丙烯酸甲酯的聚合物的聚合物混合物与其中溶解有锂盐的溶剂混合。 聚合物混合物和溶剂的混合比为约1:3-10。 将如此获得的第一混合物加热以获得聚合物电解质组合物。 并将该聚合物电解质组合物涂布在作为阳极和阴极之一的第一电极上,然后干燥以获得聚合物电解质层。 然后,将作为阳极和阴极中的剩余部分的第二电极附着在高分子电解质层上。 聚合物电解质具有良好的机械强度,锂二次电池具有稳定的充放电特性。