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IK Multimedia Pianoverse MAX 1.0.11 macOS [HCiSO] 音乐会大钢琴 |
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支持系统:MAC |
音源厂商:https://www.ikmultimedia.com/products/pianoverse/?pkey=pianoverse-max |
使用 IK Multimedia Pianoverse 加载 |
文件大小:847MB |
Pianoverse 将世界顶级音乐会级钢琴与引人入胜的电影级音效相结合,打造出一款用途极其广泛的钢琴乐器,无论在古典音乐会、电影大片配乐还是现场爵士乐表演中,都能在任何需要世界级钢琴音色的场合展现卓越表现。 探索令人惊叹的音色范围,从最逼真的原声钢琴体验到最狂野的氛围和互动创意音效,所有这些都包含在一个插件中。而且,所有这一切都具有令人难以置信的易用性和鼓舞人心的工作流程。 → Pianoverse 规格: 12 种效果器: 可选乐器: 集世界顶级钢琴于一身 每件乐器都被带到意大利最顶尖的录音棚之一,进行手工调音和准备,然后使用多个麦克风设置和 IK 独特的定制机器人系统进行采样,该系统实现了传统采样工作流程无法比拟的力度测量、采样精度和可重复性。 机器人辅助采样,精准度无与伦比 只有高分辨率、高一致性的采样机器人才能捕捉到钢琴整体动态的细致呈现,而不会像传统采样那样将其过度简化或压扁。 我们结合硬件技术、专有软件以及精湛的工艺,设计了一款采样机器人,它由一个极其精准且静音的线性电机和顶部的弹性执行器组成,该电机由橡胶和 3D 打印材料制成,其声音必须与人类手指的触感相似。执行器与电机分离,以防止任何冲击传递到机器人结构,并模拟真实手指的触后效果。 控制电子元件包括电机专用驱动器、先进的可编程逻辑控制器系统,以及我们为降低驱动噪音并向软件发送特定控制信号而专门设计的一些电子元件。在这里,来自计算机的指令被转换成驱动线性电机的电力信号。 整个过程始于对每架钢琴进行精确校准,在采样前必须进行校准。校准的目的是感知乐器的动态,测量音色变化,并检查钢琴的其他特性。校准完成后,操作员可以定义特定钢琴的采样参数,并对其进行优化,以实现最佳的真实感。 在录音过程中,软件会监控一切:它会等待音符尾音完全消失后才停止录音,不断检查节拍以避免削波,还会检测录音过程中可能出现的噪音。当音符成功采样后,它会提示操作员将机器人移动到下一个琴键。 强大的全新演奏引擎 Pianoverse combines the world's finest concert-grade pianos with inspiring, cinematic effects to create an incredibly versatile piano instrument that can excel in any situation where a world-class piano sound is needed, from classical concerts to blockbuster movie soundtracks to live jazz performances. Explore a breathtaking sonic range, from the most true-to-life acoustic piano experience to the wildest atmospheric and interactive creative textures, all in a single plug-in. And all with incredible ease of use and an inspiring workflow. → Pianoverse Specifications: 12 Effects: Available instruments: The world's finest pianos in one instrument Each instrument was brought to one of Italy's finest studios, hand-tuned and prepared, then sampled using multiple microphone setups and IK's unique custom-built robotic system that allowed a degree of velocity measurement, sampling precision and repeatability that simply cannot be matched with traditional sampling workflows. Robot-assisted sampling for unmatched accuracy Only with a high-resolution, high-consistency sampling robot was possible to capture a detailed representation of the entire dynamics of the piano without flattening it or simplifying it too much, which is what necessarily happens with traditional sampling. Using a mix of hardware technology, proprietary software, and the right dose of craftsmanship in-between, we designed a sampling robot comprised of an extremely precise and silent linear motor with an elastic actuator on top, made with a combination of rubber and 3D printed material, which had to sound like a human finger. The actuator is decoupled from the motor to prevent any shock from spreading to the robot structure and to simulate the aftertouch of a real finger. The control electronics consist of the motor's dedicated drive, an advanced programmable logic controller system, as well as some custom electronics we had to design to make the actuation more silent and to send specific control signals to the software. This is where the commands from a computer are transformed into the electric power signals driving the linear motor. The process starts with an articulated calibration that must be run for each piano before it is sampled. This is done to sense the dynamic of the instrument, gage the timbre variation, and check other characteristics of the piano. Once this is done, it helps the operator define the parameters for the sampling of that specific piano and to optimize them for maximum realism. During the recording, the software monitors everything: it waits for the note tails to fade completely before stopping the recording, constantly checking the meters to avoid clipping, and it also detects potential unwanted noises during the recording. When the note is successfully sampled, it invites the operator to move the robot to the next key. A powerful new performance engine |